| Gene information | Literature | Expression | lncRNA | Mutation | Homolog |
Basic Information | |
|---|---|
Gene ID | 4609 |
Name | MYC |
Synonymous | v-myc avian myelocytomatosis viral oncogene homolog;MYC;v-myc avian myelocytomatosis viral oncogene homolog |
Definition | avian myelocytomatosis viral oncogene homolog|class E basic helix-loop-helix protein 39|myc proto-oncogene protein|myc-related translation/localization regulatory factor|proto-oncogene c-Myc|transcription factor p64|v-myc myelocytomatosis viral oncogene h |
Position | 8q24.21 |
Gene type | protein-coding |
Title | Abstract |
| Methylation status of the 3rd exon of the c-MYC oncogene in B-cell malignancies. | We examined the methylation status of the third exon of the MYC oncogene in 39 patients with B-cell malignancies. DNA was digested with MspI plus EcoRI or HpaII plus EcoRI and hybridised with a probe specific for the third exon of MYC. Thirty four patients showed complete methylation of the CCGG site. Four patients, one with chronic B-cell leukaemia and one with pro-lymphocytic leukaemia (PLL) and two with B-cell lymphoma showed partial hypomethylation of the CCGG site, while another patient with PLL showed complete hypomethylation of the CCGG site. These results suggest that hypomethylation of the MYC oncogene is infrequent in B-cell tumours but may be involved in the development of some cases of B-cell malignancies. |
| [Effects of lithium chloride and harringtonine on the differentiation, proliferation and c-myc proto-oncogene expression of HL-60 cells]. | This research was to observe the effects of lithium chloride (LiCl) and Harringtonine (HT) on the proliferation and differentiation of HL-60 leukemia cells. The results obtained by liquid suspension culture, semi-solid colony culture and 3H-TdR incorporation into HL-60 cells indicated that different concentrations of LiCl (5-20 mmol/L) and HT (10(-8)-10(-5)mol/L) exerted the inhibitory effects in a dose-dependent manner on HL-60 cell proliferation respectively. When LiCl (10 mmol/L) and HT (10(-7) mol/L) were added together in the liquid culture or semi-solid culture of HL-60 cells, they showed much greater inhibitory effect than that by each agent separately. It was discovered that there was induction of the differentiation of HL-60 cells by lithium and HT and the induction of HL-60 cells differentiation by HT was markedly enhanced by the addition of low concentration of lithium. This work also showed that by treating HL-60 cells with lithium and HT, the expression of the c-myc proto-oncogene was markedly decreased as measured by RT/PCR-mRNA (P < 0.01). These findings provide some evidence of the mechanismcausing leukemic change and of the potential use of lithium and HT in the treatment of leukemia and in vitro purging of leukemic cells for autologous bone marrow transplantation. |
| Oncogene Expression and Cellular Radiation Resistance: A Modulatory Role for c-myc. | Background: Being able to predict the response of tumors to radiation therapy would improve the decision-making process involved in choosing treatment options for cancer. expression of certain oncogenes and/or inactivation of tumor suppressor genes has been shown to alter cellular radiation responses; however, it is still not clear what marker or combination of markers would best indicate a radioresistant tumor, or whether such screening would be clinically useful. Current choices of markers are derived mainly from in vitro studies on cell survival after irradiation. In general, expression of transforming oncogenes increases cellular radioresistance. This was also demonstrated in this study for v-abl, bcr abl, v-Ha-ras, v-mos, and v-fes expressed in rat-1 cells. There are, however, conflicting data. Some of the discrepancies may in part be due to interactions between the oncogene-activated signals and other intrinsic or activated pathways. One downstream pathway that is required for oncogene-induced transformation involves c-myc. There is evidence that in some systems myc expression can potentiate ras-induced radiation resistance. Myc may therefore play an important role in determining tumor radioresistancy in the context of other oncogenes. Methods and Results: In this study, the role of c-myc in modulating intrinsic and oncogene-induced cellular radiation responses was investigated in more detail. Retroviral vectors were used to express c-myc and dominant negative mutant c-myc genes in rat 1 cells, with and without ca-transfection of v-abl as measured by clonogenic assay, rat 1. Cells infected with c-myc or v-abl were more resistant to irradiation than neo-transfected cells or control cells; however, cells doubly infected were not resistant, even though they had an increased transformation index. This indicates that transformation-related events per se do not necessarily lead to radiation resistance. It also suggests that the effects of c-myc on radioresistance may depend on what other pathways are activated. This conclusion was strengthened by the finding that expression of a dominant negative c-myc (dn-myc) mutant gene blocked v-abl-induced radiation resistance, but on its own made rat-1 cells more resistant to radiation. Conclusions: The apparently contradictory effects of c-myc in either enhancing or reducing radioresponsiveness may be explained by the dualistic roles of c-myc in promoting signal transduction pathways resulting in either cell proliferation or death, depending on what other pathways are activated. The studies indicate that it will be difficult to predict tumor response to radiation purely by examining expression of transforming oncogenes and it is likely that a number of markers will need to be examined to derive a reliable indication of tumor radiation response. |
| The proto-oncogene c-myc is a direct target gene of Epstein-Barr virus nuclear antigen 2. | Epstein-Barr virus (EBV) infects and transforms primary B lymphocytes in vitro. Viral infection initiates the cell cycle entry of the resting B lymphocytes. The maintenance of proliferation in the infected cells is strictly dependent on functional EBNA2. We have recently developed a conditional immortalization system for EBV by rendering the function of EBNA2, and thus proliferation of the immortalized cells, dependent on estrogen. This cellular system was used to identify early events preceding induction of proliferation. We show that LMP1 and c-myc are directly activated by EBNA2, indicating that ALL cellular factors essential for induction of these genes by EBNA2 are present in the resting cells. In contrast, induction of the cell cycle regulators cyclin D2 and cdk4 are secondary events, which require de novo protein synthesis. |
| Deregulation of the proto-oncogene c-myc through t(8;22) translocation in Burkitt s lymphoma. | In Burkitt s lymphoma (BL) cells the proto-oncogene c-myc is juxtaposed to one of the immunoglobulin (Ig) loci on chromosomes 2, 14, or 22. The c-myc gene becomes transcriptionally activated as a consequence of the chromosomal translocation and shows preferential usage of promoter P1 over P2, a phenomenon referred to as promoter shift. In order to define the responsible regulatory elements within the Ig lambda locus, we studied the effect of the human Ig lambda enhancer (HuE lambda) on c-myc expression after stable transfection into BL cells. A 12 kb genomic fragment encompassing HuE lambda, but not HuE lambda alone, strongly activated c-myc expression and induced the promoter shift. To identify additional elements involved in c-myc deregulation, we mapped DNaseI hypersensitive sites within the 12 kb lambda fragment on the construct. Besides one hypersensitive site corresponding to HuE lambda, three additional sites were detected. Two of these elements displayed enhancer activity after transient transfection. The third element did not activate c-myc transcription, but was required for full c-myc activation and promoter shift. Deletion analyses of the c-myc promoter identified the immediate promoter region as sufficient for activation by the Ig lambda. locus, but also revealed that induction of the promoter shift requires additional upstream elements. |
| Development of a polyclonal antibody with defined specificity against synthetic peptides from the N-myc oncoprotein using multiple antigen peptide and hemocyanin conjugation methods. | BACKGROUND/PURPOSE: The importance of determining N-myc oncoprotein rather than genomic N-myc amplification has been emphasized in neuroblastoma, especially in an international project to register biological risk factors in ALL neuroblastomas. A method to raise a specific polyclonal antibody against the N-myc oncoprotein in large quantities was sought using the synthetic antigen peptide and the multiple antigen peptide (MAP) method. METHODS: Two sets of peptides, HGRGPPTAGSTAQSPG and GVAPPRPGGRQTSGGDH, conserved in the N-myc oncoprotein were synthesized. The hemocyanin-conjugated peptides and the lysine core-conjugated (multiple antigen peptide method) peptides were injected into rabbits with adjuvant. IgG fractions precipitated from the sera were purified on an affinity column coupled with these peptides, and the potency and specificity of the purified IgGs were examined by immunoblotting and immunohistochemistry in small cell lung cancer cell lines with known positivity-negativity of amplification and expression of N-myc, c-myc, and L-myc. RESULTS: Peptides conjugated to the lysine core raised more potent antibodies than those conjugated to hemocyanin. Purified IgG against GVAPPRPGGRQTSGGDH reacted positively with an N-myc-amplified lung cancer cell line, but not with N-myc-unamplified and c-myc/L-myc-amplified cell lines on either immunoblotting or immunostaining. This IgG strongly stained the nuclei of cells in a series of surgical specimens and cell lines of neuroblastoma with N-myc amplification. CONCLUSION: A polyclonal antibody specific for a synthetic peptide from the N-myc oncoprotein was thus obtained and will find wide international use. |
| Expression of the c-myc proto-oncogene is essential for HIV-1 infection in activated T cells. | We previously found that activation of primary CD4+ T cells via both the T cell antigen receptor (TCR) and CD28 is required for HIV-1 DNA to be translocated from the cytoplasm to the nucleus. Here we report that expression of c-Myc protein in CD4+ T cells is induced only after such costimulation. In addition, cyclosporin A not only inhibits nuclear import of HIV-1 DNA but also inhibits expression of c-Myc protein. Because of these correlations, we tested whether c-Myc is necessary for nuclear import of HIV-1 DNA. Specific c-myc antisense, but not sense or non-sense, phosphorothioate oligodeoxynucleotides selectively induced the accumulation of two NH2-terminally truncated c-Myc proteins and abolished HIV-1 genome entry into host nuclei. Consequently, both virus replication and HIV-1-induced apoptotic cell death were inhibited. Synthesis of viral full-length DNA was not affected. Specific c-myc antisense oligonucleotide inhibited HIV-1 infection under conditions that did not affect cell cycle entry or proliferation. Thus, c-Myc appears to regulate HIV-1 DNA nuclear import via a mechanism distinct from those controlling entry into the cell cycle. |
| c-myc oncogene family expression in glioblastoma and survival. | BACKGROUND: In gliomas, c-myc proto-oncogene expression has been found to correlate with the grade of malignancy, with low expression in Grade I and II and high expression in Grade III and IV tumors. We aimed to discover if myc expression is of prognostic significance in glioblastomas. METHODS: expression of the c-myc, N-myc, and L-myc proto-oncogenes and of the max gene was investigated in 46 supratentorial glioblastomas from adult patients using in situ hybridization. RESULTS: Seventy-eight percent of the tumors expressed c-myc m-RNA, 84% max m-RNA, 57% N-myc m-RNA, and 57% L-myc m-RNA. The postoperative survival of patients over 60 years of age and that of patients under 60 years of age were analyzed separately, since advancing age was found to be negatively correlated with the duration of postoperative survival (p = 0.004). There was no significant difference in postoperative survival in either age group between patients whose tumors expressed either c-myc, N-myc, or L-myc, respectively, and those whose tumors did not exhibit this characteristic. A difference in postoperative survival, however, was found in the over 60-year age group between patients whose tumors expressed max to an equal or lesser extent than c-myc and those whose tumors expressed max to a greater extent than c-myc or neither max nor c-myc. CONCLUSION: The biologic behavior of glioblastomas in older patients may depend on the relative, but not on the absolute content of the c-myc protein and interacting proteins. |
| [Study on relationship between proto-oncogene expression of c-fos and c-myc in airway, lung tissue and asthma in guinea pigs]. | In order to investigate the mechanism of the attack of asthma, the authors examined the proto-oncogene expression of c-fos and c-myc in the airway and lung tissue of the ovalbumin-induced asthmatic guinea pigs by using Dot-blot. Northern-blot and immunohistochemical techniques. There was a baseline expression of c-fos and c-myc in the controls, whereas the mRNA expression of c-fos and c-myc increased much more significantly in asthmatic guinea pigs, it reached maximum at 30 min after the onset of asthma and it was in a time dependant manner. The inducement could be inhibited partially by dexamethasone. Immunohistochemical investigation showed that c-fos and c-myc was distributed mainly in epithelial cells of the airway. The staining was more intensive in the asthmatic guinea pigs than in the controls. The results suggest that the increase in proto-oncogene expression of c-fos and c-myc may be related to the attack of asthma. |
| Activation of the N-myc2 oncogene by woodchuck hepatitis virus integration in the linked downstream b3n locus in woodchuck hepatocellular carcinoma. | In the woodchuck hepatitis virus (WHV)/woodchuck model for hepatitis B virus-induced hepatocellular carcinoma, frequent activation of N-myc oncogenes by WHV integration has been firmly established. N-myc2, the most frequently affected gene, was reported to be activated by WHV insertion either in the proximity of the gene or in a distant uncoding locus, win. We previously reported that a WHV integration cloned from a liver tumor was located in a chromosomal locus already described by others as the site of WHV integration in another hepatocellular carcinoma. On this basis, the locus, named b3n, was defined as a recurrent site of WHV integration. A scaffold or matrix attachment region (S/MAR) element was subsequently shown to be located in this locus approximately 1 kb from the WHV insertion sites. S/MARs are genetic elements involved both in structural and functional organization of chromosomal DNA and in stimulation of gene expression. In the present work, we investigated the possibility that an N-myc gene might be affected by integration in b3n. Analysis of a liver tumor harboring WHV integration in this locus showed N-myc2 overexpression. By restriction analysis, the b3n locus was shown to be located downstream of N-myc2, so the known sites of viral insertion in b3n were approximately 11 kb downstream of the N-myc2 promoter. Although these data support that WHV insertion in b3n activates N-myc2, the mechanisms previously described to be involved in N-myc2 activation do not appear to properly account for activation in this subset of WHV integrations. Available data suggest that activation of N-myc2 by WHV integration in b3n might be mediated by the S/MAR located near the WHV insertion. |
| Reversible activation of c-Myc in skin: induction of a complex neoplastic phenotype by a single oncogenic lesion. | The protooncogene c-myc regulates cell growth, differentiation, and apoptosis, and its aberrant expression is frequently observed in human cancer. However, the consequences of activating c-Myc in an adult tissue, in which these cellular processes are part of normal homeostasis, remain unknown. In order to achieve this, we have targeted expression of a switchable form of the c-Myc protein to the skin epidermis, a well characterized homeostatic tissue. We show that activation of c-MycER in adult suprabasal epidermis rapidly triggers proliferation and disrupts differentiation of postmitotic keratinocytes. Sustained activation of c-Myc is sufficient to induce papillomatosis together with angiogenesis--changes that resemble hyperplastic actinic keratosis, a commonly observed human precancerous epithelial lesion. ALL these premalignant changes spontaneously regress upon deactivation of c-MycER. |
| The Myc oncoprotein: a critical evaluation of transactivation and target gene regulation. | mutations which disrupt the regulation or expression level of the c-myc gene are among the most common found in human and animal cancers (reviewed in ref. Cole, 1986; Henriksson and Luscher, 1996; Marcu et al., 1992). Ectopic expression studies define numerous biological activities of the c-myc gene, including transformation, immortalization, blockage of cell differentiation and induction of apoptosis (Askew et al., 1991; Cole, 1986; Evan and Littlewood, 1993; Freytag et al., 1990; Henriksson and Luscher, 1996; Marcu et al., 1992). Furthermore, c-myc is required for efficient progression through the cell cycle (Goruppi et al., 1994; Prochownik et al., 1988; Yokoyama and Imamoto, 1987), although recent studies indicate that it is not absolutely essential (Mateyak et al., 1997). This fascinating array of biological activities makes the c-myc gene one of the most intriguing oncogenes and presents the challenging question of how a single gene can manifest so many different effects. The c-Myc protein exhibits sequence-specific DNA binding when dimerized with its partner Max, and DNA binding is mediated through the basic region, which recognizes the core sequence CACGTG (Berberich et al., 1992; Blackwell et al., 1993; Blackwood and Eisenman, 1991; Prendergast and Ziff, 1991; Prendergast et al., 1991), but exhibits somewhat higher affinity for the more extended sequence ACCACGTGGT (Berberich et al., 1992; Blackwell et al., 1993; Halazonetis and Kandil, 1991). There are three closely related Myc family proteins (c-Myc, N-Myc and L-Myc), each with documented oncogenic potential (Birrer et al., 1988; Schwab et al., 1985; Yancopoulos et al., 1985) and similar DNA binding properties (Mukherjee et al., 1992). For simplicity, we will use the term Myc to refer to ALL three proteins, but delineate any distinct activities where they apply. The goal of this review is to discuss Myc as a transcriptional activator and critically evaluate the evidence for the transactivation of specific target genes as direct downstream effectors. Since excellent comprehensive reviews on Myc have been published recently (Facchini and Penn, 1998; Henriksson and Luscher, 1996), we will focus on the latest observations that offer mechanistic insight into transactivation and oncogenic transformation. |
| The v-myc oncogene. | v-myc is the viral homolog of c-myc transduced by several acute transforming retroviruses, many of which encode this gene as a Gag-Myc fusion protein. The v-myc oncogene can transform several lineages of mammalian and avian cells either alone or in cooperation with other oncogenes. While the Gag portion of the Gag-Myc fusion protein and the nuclear localization signal each appear to be dispensable for transformation, the N- and C-termini of the Myc sequence have been found to be essential for transformation. ALL v-myc genes contain point mutations which seem to confer a greater potency to v-myc in the process of transformation, proliferation, and apoptosis. In v-myc-transformed myelomonocytic cells, secondary events occur, such as the expression of colony stimulating factor-1 (CSF-1) which play a critical role in immortalization and subsequent tumor progression. Inhibition of the autocrine loop of CSF-1 was found to induce apoptosis in the immortalized cells. While overexpression of v-Myc blocks terminal differentiation of hematopoietic cells, this is not sufficient to block the differentiation of certain neural and skeletal muscle cells. Recent developments on the effects of v-myc on cell growth, transformation, differentiation and apoptosis are discussed in this review. |
| Oncogene expression cloning by retroviral transduction of adenovirus E1A-immortalized rat kidney RK3E cells: transformation of a host with epithelial features by c-MYC and the zinc finger protein GKLF. | The function of several known oncogenes is restricted to specific host cells in vitro, suggesting that new genes may be identified by using alternate hosts. RK3E cells exhibit characteristics of epithelia and are susceptible to transformation by the G protein RAS and the zinc finger protein GLI. expression cloning identified the major transforming activities in squamous cell carcinoma cell lines as c-MYC and the zinc finger protein gut-enriched Kruppel-like factor (GKLF)/epithelial zinc finger. In oral squamous epithelium, GKLF expression was detected in the upper, differentiating cell layers. In dysplastic epithelium, expression was prominently increased and was detected diffusely throughout the entire epithelium, indicating that GKLF is misexpressed in the basal compartment early during tumor progression. The results demonstrate transformation of epithelioid cells to be a sensitive and specific assay for oncogenes activated during tumorigenesis in vivo, and identify GKLF as an oncogene that may function as a regulator of proliferation or differentiation in epithelia. |
| Interferon-gamma induces proliferation but not apoptosis in murine astrocytes through the differential expression of the myc proto-oncogene family. | Interferon-gamma (IFN-gamma) is a cytokine mainly secreted by activated T-lymphocytes. Treatment of mouse astrocytes in vitro with IFN-gamma augmented the basal expression of the primary response proto-oncogenes c-myc and L-myc as detected by Northern blotting. Such inductions were maximal at doses of 10 U/ml and after 60 min of treatment. Astrocytes fully differentiated in vitro do not express N-myc mRNA nor are induced to express it by exposure to IFN-gamma. As demonstrated by flow cytometry, the common protein product of the myc family was present in the nucleus of the cells. The specificity of IFN-gamma induction was demonstrated when antibodies against IFN-gamma completely suppressed the overinduction of these mRNAs. No apoptotic death can be detected in astrocytes treated with IFN-gamma at doses that induce c-myc expression. Conversely, treatment with a dose of 10 U/ml induced cells proliferation in astrocytic cells as measured by (3)H-thymidine incorporation. |
| Effects of polyamines, polyamine synthesis inhibitors, and polyamine analogs on casein kinase II using Myc oncoprotein as substrate. | Polyamines, casein kinase II (CKII), and the myc oncogene are directly involved in the regulation of molecular events in cell proliferation, differentiation, and apoptosis. Each is increased in rapidly growing cancer cells. In our current study, we showed that the Km values for purified CKII were similar for casein and Myc oncoprotein under a variety of assay conditions, and that specific natural and synthetic polyamines stimulated CKII phosphorylation of Myc oncoprotein 2- to 20-fold via increases in Vmax. When polyamine synthesis inhibitors and analogs were studied with this purified enzyme system, two polyamine analogs (N1,N12-bis-(ethyl)-spermine [BESpm] and 1,19-bis-(ethylamino)-5,10,15, triazononadecane [BE4X4]), which did not affect basal enzyme activity, did prevent (or inhibit) polyamine-stimulated CKII activity by approximately 70 and 85 percent, respectively. Because the Myc oncoprotein transactivates several genes for key proteins involved in the regulation of cellular proliferation, including the omithine decarboxylase gene (rate-limiting enzyme of polyamine synthesis), we suggest that there may be linkages between polyamines, CKII, and Myc in the control of cellular proliferation. We also suggest that the anticancer drugs BESpm and BE4X4 may inhibit cancer cell proliferation partially through interference with the above-suggested CKII linkages. |
| Measurement of c-myc oncogene expression provides an accurate prognostic marker for acral lentiginous melanoma. | Acral lentiginous melanoma is a particularly aggressive tumour with a worse prognosis than other varieties of primary cutaneous melanoma. In order to study the biology of this disease, the activity of the c-myc oncogene was studied in tumours from 45 patients using flow cytometry. High levels of oncoprotein were found in ALL tumours and exceeded that documented in other varieties of cutaneous melanoma. Survival analysis with stratification of patients according to oncogene activity provided a useful prognostic marker with shorter disease free interval (Log-Rank test, chi 2 = 16.7, P < 0.0001) and overall survival (Log-Rank test, chi 2 = 8.9, P = 0.002) in tumours with high oncoprotein levels. Multivariate analysis revealed c-myc oncogene expression to be more accurate in predicting clinical outcome than ALL existing clinicopathological parameters including the Breslow depth (Cox s proportional hazards model, P = 0.0011). This study provides biological evidence to explain the aggressive behaviour of acral melanoma and supports the application of oncogene measurement as an accurate prognostic marker. |
| Isolation and characterization of the porcine c-myc proto-oncogene and chromosomal assignment to SSC 4p13. | The proto-oncogene c-myc codes for a nuclear phosphoprotein, a transcription factor composed of the typical basic/helix-loop-helix/leucine zipper domains. Its expression is coupled to a multitude of physiological processes and regulated by a variety of hormones, growth factors, cytokines, lymphokines and the nutritional status, development and differentiation. Its key roles have been characterized, e.g. in adipogenesis, myogenesis and folliculogenesis. We have isolated and sequenced a 6.4-kb genomic fragment encoding the porcine c-myc proto-oncogene. The gene shows the typical c-myc structure with three exons, three putative promoters and a deduced protein of 439 amino acids. The porcine c-myc was mapped to chromosome 4p13 by screening of a porcine-rodent hybrid cell panel. |
| An EcoRV RFLP in the porcine c-myc proto-oncogene. | The proto-oncogene c-myc codes for a nuclear phosphoprotein, a transcription factor composed of the typical basic/helix-loop-helix/leucine zipper domains. Its expression is coupled to a multitude of physiological processes and regulated by a variety of hormones, growth factors, cytokines, lymphokines and the nutritional status, development and differentiation. Its key roles have been characterized, e.g. in adipogenesis, myogenesis and folliculogenesis. We have isolated and sequenced a 6.4-kb genomic fragment encoding the porcine c-myc proto-oncogene. The gene shows the typical c-myc structure with three exons, three putative promoters and a deduced protein of 439 amino acids. The porcine c-myc was mapped to chromosome 4p13 by screening of a porcine-rodent hybrid cell panel. |
| Proto-oncogene N-myc promoter is down regulated by the Wilms tumor suppressor gene WT1. | The Wilms tumor 1 (WT1) gene is a tumor suppressor gene that encodes a zinc-finger transcription factor. WT1 represses transcription of several growth factors and growth factor receptors. The N-myc proto-oncogene encodes a transcription factor which regulates cell growth and differentiation. N-myc is coexpressed with WT1 in the developing kidney and is overexpressed in many Wilms tumors. Here, we show that the proto-oncogene N-myc promoter was down-regulated by WT1 in transient transfection assays. However, mutant WT1 (R394W) which has a mutation in the DNA binding domain could not repress the N-myc promoter. Electrophoretic mobility shift assays showed that the oligonucleotides containing the WT1 motifs could bind recombinant WT1 proteins. This suggests that the repression of the N-myc promoter is mediated through the WT1 binding sites. This finding may help to elucidate the relationship of WT1 and N-myc in tumorigenesis and renal development. |
| Three unrelated viral transforming proteins (vIRF, EBNA2, and E1A) induce the MYC oncogene through the interferon-responsive PRF element by using different transcription coadaptors. | Kaposi sarcoma-associated herpesvirus vIRF is a viral transcription factor that inhibits interferon signaling and transforms NIH 3T3 cells, but does not bind interferon-stimulated response element (ISRE) DNA sequences. Here we show that induction of the MYC protooncogene is required for cell transformation by vIRF, and that vIRF increases MYC transcription up to 15-fold through specific promoter interactions at an ISRE sequence called the plasmacytoma repressor factor (PRF) element. These effects are resistant to cycloheximide but are inhibited by a dominant-negative ISRE-binding protein, indicating that vIRF acts together with a cellular cofactor at the PRF element to directly transactivate MYC. The coadaptor CREB-binding protein (CBP) binds vIRF and synergizes transactivation of MYC, but, unexpectedly, closely related histone acetyltransferases p300 and P/CAF potently suppress vIRF transactivation. On the basis of the prediction that other interferon-inhibiting viral transforming proteins behave similarly, we found that Epstein-Barr virus-induced nuclear antigen 2 (EBNA2) also binds p300/CBP, and that both EBNA2 and adenovirus E1A transactivate MYC through the PRF element. For E1A, P/CAF coactivates MYC, whereas both p300 and CBP suppress E1A transactivation. For EBNA2, both P/CAF and CBP coactivate the MYC promoter, whereas p300 suppresses EBNA2 transactivation. These findings demonstrate that viral transforming proteins can activate as well as inhibit transcription through coadaptor interactions. At some promoters CBP and p300 have previously unrecognized, competitive antagonism to each other. While ALL three viral proteins target the same promoter element, each has a different coadaptor use profile. These findings are consistent with cellular MYC repression playing a role in innate immunity as well as in control of cell proliferation. |
| Function of the c-Myc oncogenic transcription factor. | The c-myc gene and the expression of the c-Myc protein are frequently altered in human cancers. The c-myc gene encodes the transcription factor c-Myc, which heterodimerizes with a partner protein, termed Max, to regulate gene expression. Max also heterodimerizes with the Mad family of proteins to repress transcription, antagonize c-Myc, and promote cellular differentiation. The constitutive activation of c-myc expression is key to the genesis of many cancers, and hence the understanding of c-Myc function depends on our understanding of its target genes. In this review, we attempt to place the putative target genes of c-Myc in the context of c-Myc-mediated phenotypes. From this perspective, c-Myc emerges as an oncogenic transcription factor that integrates the cell cycle machinery with cell adhesion, cellular metabolism, and the apoptotic pathways. |
| Mmip-2, a novel RING finger protein that interacts with mad members of the Myc oncoprotein network. | Mad proteins are basic-helix-loop-helix-leucine zipper (bHLH-ZIP)-containing members of the myc oncoprotein network. They interact with the bHLH-ZIP protein max, compete for the same DNA binding sites as myc-max heterodimers and down-regulate myc-responsive genes. Using the bHLH-ZIP domain of mad1 as a yeast two-hybrid bait , we identified Mmip-2, a novel RING finger protein that interacts with ALL mad members, but weakly or not at ALL with c-myc, max or unrelated bHLH or bZIP proteins. The mad1-Mmip-2 interaction is mediated by the ZIP domain in the former protein and by at least two regions in the latter which do not include the RING finger. Mmip-2 can disrupt max-mad DNA binding and can reverse the suppressive effects of mad proteins on c-myc-responsive target genes and on c-myc + ras-mediated focus formation in fibroblasts. Tagging with spectral variants of green fluorescent protein showed that Mmip-2 and mad proteins reside in separate cytoplasmic and nuclear compartments, respectively. When co-expressed, however, the proteins interact and translocate to the cellular compartment occupied by the more abundant protein. These observations suggest a novel way by which Mmip-2 can modulate the transcriptional activity of myc oncoproteins. |
| Oncogenic potential of cyclin E in T-cell lymphomagenesis in transgenic mice: evidence for cooperation between cyclin E and Ras but not Myc. | To study the oncogenic activity of cyclin E in an in vivo system we generated transgenic mice expressing high levels of cyclin E in T-lymphocytes by using a construct containing the CD2 locus control region. These animals were neither predisposed to develop any tumors spontaneously nor showed an increased incidence when crossbred with Emu L-myc transgenic mice but developed hyperplasia in peripheral lymphoid organs at later age with an incidence of 27%. When treated with the DNA methylating carcinogen N-methylnitrosourea (MNU) that provokes the development of T-cell lymphomas, CD2-cyclin E transgenic animals came down with T-cell neoplasia showing a significant higher incidence (54%) than normal non transgenic controls (31%). In one of eight tumors that arose in normal MNU treated mice we could find an expected activating point mutation in the Ki-ras gene (12.5%). In contrast, the same mutation occurred in five of 16 tumors from CD2-cyclin E transgenic mice (31.2%). Whereas cyclin E overexpression alone did not lead to an increased CDK2 activity we observed in ALL tumors that emerged from either MNU treated normal mice or treated CD2-cyclin E transgenics a downregulation of p27KIP1 and a higher histone H1 kinase activity in CDK2 immunoprecipitates compared to normal tissue. These findings demonstrate that high level expression of cyclin E can predispose T-cells for hyperplasia and malignant transformation. However, the results also suggest that this activity of cyclin E is manifest only when other cooperating oncogenes in particular ras genes are present and activated. This would be consistent with our previous finding that cyclin E and Ha-Ras cooperate in focus formation assays in rat embryo fibroblasts. |
| Fluorescent in situ hybridization study of c-myc oncogene copy number in prostate cancer. | We previously conducted a study of 88 cases of prostate cancer in an attempt to identify potential prognostic biomarkers that can distinguish aggressive cases that must be treated immediately. Prostate cancer is a serious disease affecting men worldwide and compromises the quality of life of its patients. Biomarkers studied included chromosome 7 trisomy, chromosome 8 trisomy, and HER-2/neu oncogene amplification. These biomarkers were initially studied because trisomy 8 and oncogene amplification of the HER-2/neu gene have been reported in many other cancers, including those studied in this laboratory. In view of the fact that HER-2/neu amplification was not found to play a prominent role in the group of prostate cancer specimens that we studied, an exploration of other biomarkers was felt to be warranted. Thus, we began a pilot study of c-myc oncogene copy number in prostate cancer using the same protocol for fluorescent in situ hybridization and a direct-labeled SpectrumOrange LSI c-myc probe (Vysis, Inc., Downers Grove, IL) on formalin-fixed, paraffin-embedded tissue. From a total of 36 cases of prostate cancers successfully analyzed, we found 11 (31%) tumors exhibiting 3 or more positive signals for c-myc in 15% or more of the cells. Of these, only 7 tumors (19% of the total cases studied) had >/=3 signals in 20% or more of the cells. No case had >/=3 signals in 25% or more of the cells. Compared to other molecular probes tested, the c-myc signals were more faint and the quality of the preparation was less optimal than other tumor specimens that we previously studied. Based on the information available thus far, we conclude that an increased copy number in c-myc oncogene copy number was not a prominent finding in our cohort of prostate cancer patients. |
| Immunolocalizaiton of c-Myc and bcl-2 proto-oncogene products in gingival hyperplasia induced by nifedipine and phenytoin. | BACKGROUND: Hyperplastic gingival tissues show the histopathological characteristics of thick parakeratinized squamous epithelia with acanthosis and rete pegs elongated into the lamina propria. However, the pathogenic factors that contribute to the epithelial morphogenesis of this disease are obscure and remain to be studied. METHODS: We immunohistochemically examined the expression of both c-Myc and bcl-2 oncoprotein, which can exert influence on the epithelial morphogenesis and homeostasis, in 12 hyperplastic gingival tissues induced by nifedipine and phenytoin as well as 5 control tissues using avidin-biotin-peroxidase complex methods. RESULTS: Four specimens out of 5 nifedipine-induced and 5 out of 7 phenytoin-induced hyperplastic gingival tissues revealed the expression of c-Myc oncoprotein, whereas no significant immunostaining of c-Myc oncoprotein was found in 5 control tissues. The c-Myc oncoprotein-positive cells were observed to be localized in the basal and suprabasal cell layers of the hyperplastic gingival epithelia. Although ALL of the 12 hyperplastic gingival epithelia showed the distribution of bcl-2 oncoprotein in the basal and suprabasal layer cells, in 5 control epithelia the bcl-2 oncoprotein expression was slight and confined to the basal layer cells. CONCLUSIONS: The results of our present study indicate that the synergistic overexpression of c-Myc and bcl-2 oncoprotein may be related to the pathogenesis of gingival hyperplasia induced by nifedipine and phenytoin, especially to the morphogenesis of hyperplastic epithelia. |
| [Closely relationship between expression of endoplasmic reticulum molecular chaperone Grp94 and c-myc oncogene in human colorectal carcinoma cell lines]. | OBJECTIVE: To study the biological significance of Grp94 deleted product (Grp94 beta) expressed in human colorectal carcinoma cells. METHODS: The relationship between molecular chaperone Grp94 and c-myc oncogene expression in the human colorectal carcinoma cell line CCL229, CX-1 and retinoic acid (RA) induced CCL229 by both of digoxin labelled c-myc cDNA probe spot by-bridization and RT-PCR with endoplasmic reticulum molecular chaperone Grp94 proximal 3 end oligonucletide primers was investigated. RESULTS: In CCL229 cells, the expression of Grp94 beta and c-myc oncogene are significantly higher than those in CX-1 cells. Along with the RA inducing, both decreased with one accord, and to the lowest level after six days induction. CONCLUSION: The Grp94 normal expression (Grp94 alpha), which was undetectable in CCL229 cells increased after RA induction. The results showed that the expression of Grp94 beta may be closely related to that of c-myc oncogene. It is suggested that the Grp94 be related to some biological characteristics of cancer, for example, the invasiveness. |
| Retinoic acid induces persistent, RARalpha-mediated anti-proliferative responses in Epstein-Barr virus-immortalized b lymphoblasts carrying an activated C-MYC oncogene but not in Burkitt s lymphoma cell lines. | We have previously demonstrated that 13-cis-retinoic acid (RA), 9-cis-RA and all-trans-RA (ATRA) powerfully inhibit the proliferation of Epstein-Barr virus-immortalized B-lymphoblastoid cell lines (LCLs). The aim of the present study was to assess whether these compounds are effective at inhibiting the growth of B cells at more advanced stages of lymphomagenesis, including fully transformed B lymphocytes. To this end, c-myc-transfected LCLs (myc-LCLs) and Burkitt s lymphoma (BL) cell lines were used. We report that 13-cis-RA, 9-cis-RA and ATRA also markedly inhibit the proliferation of myc-LCLs by inducing G(0)/G(1) growth arrest as well as enhancing rates of apoptosis. Conversely, ALL but 1 (DG75) of the 8 BL cell lines investigated were poorly RA-responsive. Moreover, unlike LCLs and myc-LCLs, RA-treated DG75 cells rapidly resumed proliferation upon drug removal. Analysis of cell cycle-regulatory proteins showed that, as in LCLs, strong up-regulation of p27(Kip-1) and increased levels of under-phosphorylated pRb and p130 were detected in RA-treated DG75 cells. While the catalytic activity of ALL 3 G(1)-associated CDKs (CDK2, CDK4 and CDK6) was strongly inhibited in RA-treated LCLs, only CDK2-associated kinase activity was reduced in DG75 cells arrested in G(0)/G(1) by RA. Moreover, RA-treated DG75 cells failed to show the down-regulation of cyclin D3 observed in LCLs. Use of receptor-selective agonists and antagonists showed that in LCLs and RA-responsive BL cells, RA-induced growth arrest is mainly mediated by RARalpha. The RARalpha-selective agonist Ro 40-6055 was also effective at very low concentrations (10(-10) M). Nevertheless, comparable levels of RARalpha mRNA were found in RA-responsive and -resistant BL cell lines, indicating that mechanisms different from transcriptional deregulation of RARalpha probably underlie the differential responsiveness of BL cells. |
| Amplification of the c-myc oncogene in non-small cell lung cancer. | Fresh non-small cell lung carcinoma surgical specimens were taken from 17 patients and 3 controls and screened for genetic abnormalities of the c-myc oncogene. Southern blot hybridization analysis demonstrated two- to fivefold amplification of the c-myc gene in 10 cases, i.e., 7 of 13 epidermoid lung carcinomas, 2 of 3 adenocarcinomas and 1 of 1 osteogenic sarcoma metastatic to the lung. Two- to fivefold amplification was observed in tissues from stage III and IV epidermoid carcinomas and adenocarcinomas of the lung. A correlation between cancer stage and c-myc gene amplification was found. |
| Mapping of the oncogene c-myc (MYC) and the breast cancer susceptibility gene (BRCA2) in the pig by FISH. | Mastoparan, a widely used tetradecapeptide activator of Gi/Go G proteins, has been reported to be a potent co-mitogen for Swiss 3T3 fibroblasts. However, we have previously shown that the peptide promotes the release of lactate dehydrogenase from Swiss 3T3 cells and evokes only a modest and delayed increase in DNA. We suggested that the ability of the peptide to permeabilise these cells may account for its mitogenic action. Here we show that mastoparan caused a rapid release of fluorescein from cells which had been pre-incubated with fluorescein diacetate, indicating that the peptide increases membrane permeability to small molecules. Furthermore, the release of lactate dehydrogenase evoked by mastoparan was lost after prolonged (24 h) incubation of cells with the peptide. Together, these data indicate that mastoparan-induced cell permeabilisation is both rapid and transient. We have also shown that mastoparan increased c-fos mRNA accumulation and that this response was not influenced by pertussis toxin or indomethacin. Although mastoparan increased the intracellular calcium concentration, the removal of extracellular calcium had no effect on mastoparan stimulated c-fos mRNA accumulation. These data show that mastoparan-induced c-fos mRNA accumulation is not mediated by activation of a G protein and subsequent activation of phospholipase D nor by a non-selective increase in calcium influx. The data have significance for the interpretation of studies in which mastoparan is, or has been, used as an activator of Gi/Go. |
| Four PCR-RFLPs and a sequence polymorphism in the porcine c-myc proto-oncogene and confirmation of the chromosomal localisation on SSC4 by linkage mapping. | Mastoparan, a widely used tetradecapeptide activator of Gi/Go G proteins, has been reported to be a potent co-mitogen for Swiss 3T3 fibroblasts. However, we have previously shown that the peptide promotes the release of lactate dehydrogenase from Swiss 3T3 cells and evokes only a modest and delayed increase in DNA. We suggested that the ability of the peptide to permeabilise these cells may account for its mitogenic action. Here we show that mastoparan caused a rapid release of fluorescein from cells which had been pre-incubated with fluorescein diacetate, indicating that the peptide increases membrane permeability to small molecules. Furthermore, the release of lactate dehydrogenase evoked by mastoparan was lost after prolonged (24 h) incubation of cells with the peptide. Together, these data indicate that mastoparan-induced cell permeabilisation is both rapid and transient. We have also shown that mastoparan increased c-fos mRNA accumulation and that this response was not influenced by pertussis toxin or indomethacin. Although mastoparan increased the intracellular calcium concentration, the removal of extracellular calcium had no effect on mastoparan stimulated c-fos mRNA accumulation. These data show that mastoparan-induced c-fos mRNA accumulation is not mediated by activation of a G protein and subsequent activation of phospholipase D nor by a non-selective increase in calcium influx. The data have significance for the interpretation of studies in which mastoparan is, or has been, used as an activator of Gi/Go. |
| Elevated levels of RanBP7 mRNA in colorectal carcinoma are associated with increased proliferation and are similar to the transcription pattern of the proto-oncogene c-myc. | We have used suppression subtractive hybridisation, "in silico" cloning and reverse Northern dot blot analysis to identify significant up-regulation of RanBP7 transcription in a human colorectal carcinoma. Quantitative RT-PCR analyses using the Taqman system demonstrated that RanBP7 mRNA levels were elevated in 47/75 colorectal tumours. There was no significant difference in 17 matched normal and tumour pairs and reduced levels in 11. Since RanBP7 specifies a key member of nuclear transport receptors responsible for the nuclear import of histone H1 and ribosomal proteins, we investigated whether this up-regulation might be proliferation-associated. RanBP7 mRNA copy numbers were significantly correlated with those of proliferating cell nuclear antigen in both normal and cancer tissue. Interestingly, the transcription pattern of the proto-oncogene c-myc showed a similar correlation with PCNA mRNA. Our results highlight the need for the careful interpretation of quantitative data that compare mRNA levels in normal and cancer tissue. |
| The oncoprotein kinase chaperone CDC37 functions as an oncogene in mice and collaborates with both c-myc and cyclin D1 in transformation of multiple tissues. | CDC37 encodes a 50-kDa protein that targets intrinsically unstable oncoprotein kinases including Cdk4, Raf-1, and v-src to the molecular chaperone Hsp90, an interaction that is thought to be important for the establishment of signaling pathways. CDC37 is required for proliferation in budding yeast and is coexpressed with cyclin D1 in proliferative zones during mouse development, a finding consistent with a positive role in cell proliferation. CDC37 expression may not only be required to support proliferation in cells that are developmentally programmed to proliferate but may also be required in cells that are inappropriately induced to initiate proliferation by oncogenes. Here we report that mouse mammary tumor virus (MMTV)-CDC37 transgenic mice develop mammary gland tumors at a rate comparable to that observed previously in MMTV-cyclin D1 mice. Moreover, CDC37 was found to collaborate with MMTV-c-myc in the transformation of multiple tissues, including mammary and salivary glands in females and testis in males, and also collaborates with cyclin D1 to transform the female mammary gland. These data indicate that CDC37 can function as an oncogene in mice and suggests that the establishment of protein kinase pathways mediated by Cdc37-Hsp90 can be a rate-limiting event in epithelial cell transformation. |
| [c-Myc: an iron oncogene]. | Oncogenic Ras induces two products of the INK4a/ARF tumor suppressor locus (p16(INK4a) and p19(ARF)) in primary human and rodent fibroblasts, ultimately leading to a permanent state of cell cycle arrest resembling replicative senescence. Whereas p16(INK4a) antagonizes the activities of cyclin D-dependent kinases, p19(ARF) activates the p53 transcription factor. Immortalized rodent fibroblast cell lines that lack INK4a/ARF function, ARF alone, or p53 are resistant to the growth inhibitory effects of oncogenic Ras and instead continue to proliferate and undergo morphological transformation. Primary mouse embryo fibroblasts lacking Cip1 and Kip1 genes encoding inhibitors of cyclin-dependent kinase-2 were used to further explore the effects of oncogenic Ras on arrest of the cell division cycle. Although early passage primary fibroblast strains that lack both p21(Cip1) and p27(Kip1) fail to assemble cyclin D-dependent kinases, oncogenic Ras retained its ability to induce p19(ARF), but not p16(INK4a), protecting Cip/Kip-null cells from proliferating and undergoing transformation. Under these conditions, Ras did not induce G(1) phase arrest but instead triggered DNA synthesis, abnormal nuclear divisions, failure of cytokinesis, and emergence of polyploid cells. Therefore, in the absence of p16(INK4a), p21(Cip1), and p27(Kip1), oncogenic Ras affects the functions of genes required for completion of the cell cycle. |
| Prostatic neoplasia in transgenic mice with prostate-directed overexpression of the c-myc oncoprotein. | BACKGROUND: Promoter elements within the 5 DNA region of the rat C(3)1 gene have been shown to direct prostate-specific expression of gene products when they are fused through recombinant DNA procedures and used to produce transgenic mice. In order to test the in vivo effects of chronic overexpression of the mouse c-myc protooncogene on the prostate glands of transgenic mice, we created several lines of C(3)1-c-myc transgenic mice and then examined the phenotype of males with this genetic alteration. METHODS: The modified promoter and 5 region of the rat C(3)1 gene was fused to the coding region of the mouse c-myc gene using recombinant DNA techniques. This DNA was used to create three different founder lines of transgenic mice. Tissues from males and females heterozygous for the transgene were examined for expression of the recombinant mouse c-myc mRNA by an RNase protection assay. Prostates from males were examined for expression of recombinant c-myc mRNA by in situ hybridization. Thin sections of fixed ventral prostates from males were analyzed by microscopy for histological abnormalities. RESULTS: Three different lines of transgenic mice were obtained from these procedures. These mice demonstrated expression of recombinant mouse c-myc mRNA in the testis and ventral prostates of males and in the uterus of females. In situ hybridization demonstrated that the epithelial cells were the source of recombinant c-myc expression in the ventral prostates of the transgenic lines. Microscopic analysis of the ventral prostates from these mice demonstrated abnormalities in epithelial cell morphology seemingly typical of an intraepithelial neoplasia-like phenotype. However, none of the males of any of the lines developed overt prostatic adenocarcinoma over their lifetimes. CONCLUSIONS: Chronic overexpression of c-myc in the ventral prostate epithelial cells of C3(1)-c-myc transgenic mice leads to the development of epithelial cell abnormalities similar to those seen in low-grade prostatic intraepithelial neoplasia in humans. These abnormalities were not found to progress to adenocarcinoma over the lifetimes of the transgenic mice, suggesting the need for additional oncogenic changes in the pathway to prostatic adenocarcinomas. Furthermore, our cumulative experience with the use of the C3(1) gene promoter in the generation of transgenic mice suggests that the probasin promoter element provides a much more specific and effective means to target transgenes to the prostate glands of mice. |
| Activation of the myc oncoprotein leads to increased turnover of thrombospondin-1 mRNA. | The Myc oncoprotein is implicated in transcriptional regulation of a variety of genes pertaining to cell cycle and neoplastic transformation. Examples of both positive and negative regulation have been reported that involve E-box and initiator (Inr) promoter elements, respectively. In both cases, Myc is thought to induce changes in transcription initiation. We have previously shown that overexpression of Myc causes down-regulation of the thrombospondin-1 (tsp-1) gene, an important negative modulator of tumor angiogenesis. In this study, we demonstrate that Myc in combination with Max can bind, albeit with low affinity, to an E-box-like element in the tsp-1 promoter. However, the 2.7 kb DNA segment containing both this non-canonical E-box and an Inr-like sequence does not constitute a Myc-responsive element in a transient expression system. Furthermore, Myc does not significantly affect the rate of initiation or elongation of the tsp-1 mRNA. Thus, in this instance Myc does not act as a canonical transcription factor. Instead, as demonstrated by blocking de novo RNA synthesis, down-regulation of the tsp-1 gene by Myc occurs through increased mRNA turnover. To our knowledge, this is the first example of gene regulation by Myc that involves mRNA destabilization. |
| An ATPase/helicase complex is an essential cofactor for oncogenic transformation by c-Myc. | The c-Myc transactivation domain was used to affinity purify tightly associated nuclear proteins. Two of these proteins were identified as TIP49 and a novel related protein called TIP48, both of which are highly conserved in evolution and contain ATPase/helicase motifs. TIP49 and TIP48 are complexed with c-Myc in vivo, and binding is dependent on a c-Myc domain essential for oncogenic activity. A missense mutation in the TIP49 ATPase motif acts as a dominant inhibitor of c-Myc oncogenic activity but does not inhibit normal cell growth, indicating that functional TIP49 protein is an essential mediator of c-Myc oncogenic transformation. The TIP49 and TIP48 ATPase/helicase proteins represent a novel class of cofactors recruited by transcriptional activation domains that function in diverse pathways. |
| Opposite effects of antimicrotubule agents on c-myc oncogene expression depending on the cell lines used. | We investigated the expression of c-myc in HT29-D4, HBL100 and Caco-2 cells treated with microtubule stabilising (paclitaxel) or depolymerising agents (vinblastine, nocodazole). After induction by epidermal growth factor (EGF), c-myc expression decreased in HT29-D4 cells treated with ALL the antimicrotubule agents. In HBL100 and Caco-2, when microtubules were stabilised with paclitaxel, c-myc expression also decreased. In contrast, its expression increased after treatment with depolymerising agents. In both cell lines, we also observed that depolymerising agents alone induced c-myc expression whilst paclitaxel had no effect. This mRNA induction was confirmed at the protein level. In HT29-D4, no variation of c-myc expression was observed. Then, we showed that the increase of mRNA level was due to activation of gene transcription. These results indicate that modulation of c-myc expression varied depending on the cell lines used and the type of antimicrotubule agents. This work provides a potential link between the microtubular network and c-myc gene expression. |
| HMG-I/Y, a new c-Myc target gene and potential oncogene. | The HMG-I/Y gene encodes the HMG-I and HMG-Y proteins, which function as architectural chromatin binding proteins important in the transcriptional regulation of several genes. Although increased expression of the HMG-I/Y proteins is associated with cellular proliferation, neoplastic transformation, and several human cancers, the role of these proteins in the pathogenesis of malignancy remains unclear. To better understand the role of these proteins in cell growth and transformation, we have been studying the regulation and function of HMG-I/Y. The HMG-I/Y promoter was cloned, sequenced, and subjected to mutagenesis analysis. A c-Myc-Max consensus DNA binding site was identified as an element important in the serum stimulation of HMG-I/Y. The oncoprotein c-Myc and its protein partner Max bind to this site in vitro and activate transcription in transfection experiments. HMG-I/Y expression is stimulated by c-Myc in a Myc-estradiol receptor cell line in the presence of the protein synthesis inhibitor cycloheximide, indicating that HMG-I/Y is a direct c-Myc target gene. HMG-I/Y induction is decreased in Myc-deficient fibroblasts. HMG-I/Y protein expression is also increased in Burkitt s lymphoma cell lines, which are known to have increased c-Myc protein. Like Myc, increased expression of HMG-I protein leads to the neoplastic transformation of both Rat 1a fibroblasts and CB33 cells. In addition, Rat 1a cells overexpressing HMG-I protein form tumors in nude mice. Decreasing HMG-I/Y proteins using an antisense construct abrogates transformation in Burkitt s lymphoma cells. These findings indicate that HMG-I/Y is a c-Myc target gene involved in neoplastic transformation and a member of a new class of potential oncogenes. |
| Promotion of growth and apoptosis in c-myc nullizygous fibroblasts by other members of the myc oncoprotein family. | c-myc nullizygous fibroblasts (KO cells) were used to compare the abilities of c-myc, N-myc and L-myc oncoproteins to accelerate growth, promote apoptosis, revert morphology, and regulate the expression of previously described c-myc target genes. ALL three myc oncoproteins were expressed following retroviral transduction of KO cells. The proteins ALL enhanced the growth rate of KO cells and significantly shortened the cell cycle transition time. They also accelerated apoptosis following serum deprivation, reverted the abnormal KO cell morphology, and modulated the expression of previously described c-myc target genes. In most cases, L-myc was equivalent to c-myc and N-myc in restoring ALL of the c-myc-dependent activities. These findings contrast with the previously reported weak transforming and transactivating properties of L-myc. Myc oncoproteins may thus impart both highly similar as well as dissimilar signals to the cells in which they are expressed. |
| Expression of single chain antibodies (ScFvs) for c-myc oncoprotein in recombinant Escherichia coli membranes by using the ice-nucleation protein of Pseudomonas syringae. | The ice nucleation protein (INP) is a glycosyl phosphatidylinositol anchored outer membrane protein found in certain Gram-negative bacteria. In this study, the INP from Pseudomonas syringae was applied as a fusion partner with the single chain antibody fragment (ScFv) against the human oncoprotein c-myc. Two new plasmids pNinaZ-myc and pNinaZScFv-BsaA1 were constructed and cloned into Escherichia coli JM109. The expression of the fusion protein was successfully demonstrated in the cloned cells. The fusion proteins had no effect on the viability of the host cells. Ice nucleation activity measurements and flow cytometry studies were followed to investigate the membrane expression of the fusion protein. |
| c-myc oncogene gene dosage, serum CEA and CA-15.3 antigen levels, and cellular DNA values in relation to ex vivo chemosensitivity of primary human breast cancer. | A pilot study on relationships of selected molecular factors (c-myc oncogene average gene copy numbers (AGCN); serum CEA and CA 15.3 antigen levels; tumor cells DNA values), to the ex vivo chemosensitivity of primary female human breast cancer in a modified adenosine triphosphate cell viability chemosensitivity assay (ATP-CVA), was performed. Four drug combinations were tested. A group of 75 cases of female primary breast cancer was assessed. Numerous correlations were found among molecular factors tested but none, with the exception of tumor grading, of these reflected ex vivo chemosensitivity of tumors tested. The results suggest that the parameters tested may not be important factors related to adjuvant chemoresponsiveness of primary human breast cancer to tested drug combinations. |
| Relationship of c-myc and erbB oncogene family gene aberrations and other selected factors to ex vivo chemosensitivity of ovarian cancer in the modified ATP-chemosensitivity assay. | A pilot study on relationships of selected molecular factors [erbB-1, erbB-2, erbB-3, and c-myc oncogene average gene copy numbers (AGCN); steroid receptors and pS2 gene expression; tumor cells DNA values] to the ex vivo chemosensitivity of ovarian cancer in a modified adenosine triphosphate cell viability chemosensitivity assay (ATP-CVA), was performed. Despite the relatively small number of patients, numerous correlations among the factors tested were found. Nevertheless, only c-myc gene dosage positively affected ex vivo chemosensitivity of tumors tested. |
| The N-myc oncogene in human neuroblastoma cells: down-regulation of an angiogenesis inhibitor identified as activin A. | Angiogenesis, the formation of new blood vessels, is seen during embryonic development and tumor progression, but the mechanisms have remained unclear. Recent data indicate that developmental and tumor angiogenesis can be induced by cellular oncogenes, leading to the enhanced activity of molecules stimulating angiogenesis. However, activated oncogenes might also facilitate angiogenesis by down-regulating endogenous inhibitors of angiogenesis. We report here that enhanced expression of the N-myc oncogene in human neuroblastoma cells down-regulates an inhibitor of endothelial cell proliferation, identified by amino acid sequencing as being identical with activin A, a developmentally regulated protein. Down-regulation appears to involve interaction of the N-Myc protein with the activin A promoter. In addition, activin A inhibits both endothelial cell proliferation in vitro and angiogenesis in vivo, and it induces hemorrhage in vivo. We suggest that the N-myc-induced down-regulation of activin A could contribute to developmental and tumor angiogenesis. |
| Direct action of growth hormone-releasing hormone agonist JI-38 on normal human fibroblasts: evidence from studies on cell proliferation and c-myc proto-oncogene expression. | Growth hormone-releasing hormone (GHRH) is secreted by the hypothalamus and stimulates the release of growth hormone from the pituitary. Recent studies also indicate that in addition to its neuroendocrine function, GHRH may play a direct role in the proliferation of cancer cells, acting as growth factor for various human tumors. In the present study we investigated the effects of JI-38, an agonistic analog of GHRH, on the rate of proliferation of normal human diploid dermal fibroblasts (NHF) cultured in vitro. The effects of JI-38 on the levels of mRNA for c-myc proto-oncogene were also tested. Exposure to 10(-7) M JI-38 stimulated the rate of proliferation of early passage NHF by about 100%. Exposure of NHF cells to 10(-8)-5x10(-6) M JI-38 for 24 h resulted in about 0.5-3.5 fold increase in the levels of mRNA for c-myc proto-oncogene. The ability of JI-38 to stimulate the proliferation of NHF cells was abolished in cells cultured at late passage. Continuous exposure to 10(-7) M JI-38, over 6-7 passages (15-20 population doublings), progressively reduced the rate of proliferation of NHF compared with cells exposed to medium alone, indicating that GHRH agonist acted as a growth inhibitor. Our results suggest that at certain developmental stages, GHRH may act on various tissues, stimulating cell proliferation. |
| Extra c-myc oncogene copies in high risk cutaneous malignant melanoma and melanoma metastases. | Amplification and overexpression of the c-myc gene have been associated with neoplastic transformation in a plethora of malignant tumours. We applied interphase fluorescence in situ hybridization (FISH) with a locus-specific probe for the c-myc gene (8q24) in combination with a corresponding chromosome 8 alpha-satellite probe to evaluate genetic alterations in 8 primary melanomas and 33 advanced melanomas and compared it to 12 melanocytic nevi, 7 safety margins and 2 cases of normal skin. Additionally, in metaphase spreads of 7 melanoma cell lines a whole chromosome 8 paint probe was used. We investigated the functionality of the c-myc gene by detecting c-myc RNA expression with RT-PCR and c-myc protein by immunohistochemistry. 4/8 primary melanomas and 11/33 melanoma metastases showed additional c-myc signals relative to the centromere of chromosome 8 copy number. None of the nevi, safety margins or normal skin samples demonstrated this gain. In 2/7 melanoma cell lines (C32 and WM 266-4) isochromosome 8q formation with a relative gain of c-myc copies and a loss of 8p was observed. The highest c-myc gene expression compared to GAPDH was found in melanoma metastases (17.5%). Nevi (6.6%) and primary melanomas (5.0%) expressed the c-myc gene on a lower level. 72.7% of the patients with c-myc extra copies had visceral melanoma metastases (UICC IV), patients without c-myc gain in 35.0% only. The collective with additional c-myc copies also expressed the gene on a significantly higher level. These results indicate that a c-myc gain in relation to the centromere 8 copy number might be associated with advanced cutaneous melanoma. |
| Ongoing hypermutation in the Ig V(D)J gene segments and c-myc proto-oncogene of an AIDS lymphoma segregates with neoplastic B cells at different sites: implications for clonal evolution. | To investigate the role of somatic Ig hypermutation in the evolution of AIDS-associated B cell lymphomas, we analyzed the Ig V(D)J and c-myc genes expressed by neoplastic B cells in two extranodal sites, testis and orbit, and clonally related cells in the bone marrow. Testis and orbit B cells expressed differentially mutated but collinear V(H)DJ(H), V kappa J kappa and c-myc gene sequences. Shared mutations accounted for 10.2%, 8.4%, and 4.3% of the overall V(H)DJ(H), V kappa J kappa, and c-myc gene sequences. tumor-site specific V(H)DJ(H), V kappa J kappa, and c-myc mutations were comparable in frequency, and a single point-mutation gave rise to an EcoRI site in the testis c-myc DNA. Both shared and tumor site-specific V(H)DJ(H), V kappa J kappa, and c-myc mutations displayed predominance of transitions over transversions. The "neoplastic" V(H)DJ(H) sequence was expressed by about 10(-5) cells in the bone marrow, and contained two of the three orbital, but none of the testicular V(H)DJ(H) mutations. The nature and distribution of the Ig V(D)J mutations found in the kappa chain suggested a selection by antigen in testis and orbit. Our data suggest that, in AIDS-associated B cell lymphomas, the Ig hypermutation machinery targets V(H)DJ(H), V kappa J kappa, and c-myc genes with comparable efficiency and modalities. |
| Chrysotile-induced cell transformation and transcriptional changes of c-myc oncogene in human embryo lung cells. | It has been verified that asbestos induce neoplastic transformation of several rodent cell lines in vitro. Very little information is available, however, on asbestos-induced human cell line transformation and oncogene activation in the development of asbestos-induced cell transformation. This study was designed to investigate the induction of cell transformation and transcriptional changes of the c-myc oncogene by chrysotile asbestos fibers (CAF) in human embryo lung (HEL) cells. Surface-modified CAF soaked in aluminium citrate (AC), rare earth compounds (REC) or sodium selenite (SS) solutions were used to observe the effects of surface modification on chrysotile-induced cell transformation and transcriptional changes in the c-myc oncogene. The results showed that the natural CAF caused dose-dependent increases in transformed foci, along with increased transcription of the c-myc oncogene in HEL cells, while the pretreated CAF induced fewer transformed foci and less c-myc oncogene transcription than the natural CAF. The percent inhibition of equivalent AC, REC and SS were 38.9%, 50.0%, 33.3% (for transformation focus), 81.6%, 69.5%, 89.9% (for c-myc oncogene transcription), respectively. These results indicated that CAF may induce cell transformation and transcriptional changes and that the carcinogenicity of CAF might be reduced by pretreatment of CAF with the above-mentioned compounds. |
| Function of the c-Myc oncoprotein in chromatin remodeling and transcription. | Deregulated expression of the c-myc proto-oncogene contributes to malignant progression of a variety of tumors. The c-Myc protein (or Myc) is a transcription factor that positively or negatively regulates expression of distinct sets of target genes. Transcriptional activation by Myc is mediated through dimerization with Max and binding to the DNA consensus sequence CA(C/T)GTG (the E-box). Transcriptional inhibition is mediated through distinct DNA elements, and may be due to functional interference with factors that transactivate via these sequences. We review here our current knowledge on these transcriptional activities of Myc and their relationship to its biological function. The findings that Myc interacts with subunits of histone acetyl-transferase (HAT) complexes and of the ATP-dependent chromatin remodeling complex, SWI/SNF, suggest that localized changes in chromatin structure may mediate Myc function. We present a working hypothesis for the concerted action of HAT and SWI/SNF complexes in Myc-activated transcription and argue that this model should prompt re-thinking of the experimental strategies and criteria used to identify Myc target genes. |
| Structure, function, and dynamics of the dimerization and DNA-binding domain of oncogenic transcription factor v-Myc. | The protein product (c-Myc) of the protooncogene c-myc is a transcriptional regulator playing a key role in cellular growth, differentiation, and apoptosis. Deregulated myc genes, like the transduced retroviral v-myc allele, are oncogenic and cause cell transformation. The C-terminal bHLHZip domain of v-Myc, encompassing protein dimerization (helix-loop-helix, leucine zipper) and DNA contact (basic region) surfaces, was expressed in bacteria as a highly soluble p15(v-myc )recombinant protein. Dissociation constants (K(d)) for the heterodimer formed with the recombinant bHLHZip domain of the Myc binding partner Max (p14(max)) and for the Myc-Max-DNA complex were estimated using circular dichroism (CD) spectroscopy and quantitative electrophoretic mobility shift assay (EMSA). Multi-dimensional NMR spectroscopy was used to characterize the solution structural and dynamic properties of the v-Myc bHLHZip domain. Significant secondary chemical shifts indicate the presence of two separated alpha-helical regions. The C-terminal leucine zipper region forms a compact alpha-helix, while the N-terminal basic region exhibits conformational averaging with substantial alpha-helical content. Both helices lack stabilizing tertiary side-chain interactions and represent exceptional examples for loosely coupled secondary structural segments in a native protein. These results and CD thermal denaturation data indicate a monomeric state of the v-Myc bHLHZip domain. The (15)N relaxation data revealed backbone mobilities which corroborate the existence of a partially folded state, and suggest a "beads-on-a-string" motional behaviour of the v-Myc bHLHZip domain in solution. The preformation of alpha-helical regions was confirmed by CD thermal denaturation studies, and quantification of the entropy changes caused by the hydrophobic effect and the reduction of conformational entropy upon protein dimerization. The restricted conformational space of the v-Myc bHLHZip domain reduces the entropy penalty associated with heterodimerization and allows rapid and accurate recognition by the authentic Myc binding partner Max. |
| Down-regulation of alpha6 integrin, an anti-oncogene product, by functional cooperation of H-Ras and c-Myc. | BACKGROUND: The molecular basis of cooperation of H-Ras and c-Myc in regulating cellular behaviour, such as cell adhesiveness, is still poorly understood. To investigate the role of H-Ras and c-Myc in cell adhesiveness, a constitutively active H-RasV12 (H-RasV12) and c-Myc were stably expressed, singly or in combination in a haematopoietic cell line, and the expression and activity of cell adhesion molecules were monitored. RESULTS: We have shown that the ectopic expression of H-RasV12, but not c-Myc alone, in a haematopoietic cell line, induces the activation of very late antigen-6 (VLA-6, alpha6beta1) integrin. Co-expression of H-RasV12 and c-Myc in the same cells further resulted in the induction of expression of vascular cell adhesion molecule-1 (VCAM-1) and the inhibition of expression of alpha6 integrin, a candidate anti-oncogene product, leading to a loss of adhesiveness to laminin (Lm), a ligand for VLA-6. CONCLUSIONS: Cooperation of H-Ras and c-Myc reciprocally regulates expression of the adhesion molecules, alpha6 integrin and VCAM-1. Our results represent an unprecedented account of the cooperation of the oncogene products, H-Ras and c-Myc, to inhibit expression of an anti-oncogene product, alpha6 integrin. |
| Spectral karyotyping and fluorescence in situ hybridization detect novel chromosomal aberrations, a recurring involvement of chromosome 21 and amplification of the MYC oncogene in acute myeloid leukaemia M2. | Recurring chromosomal aberrations are of aetiological, diagnostic, prognostic and therapeutic importance in acute myeloid leukaemia (AML). However, aberrations are detected in only two thirds of AML cases at diagnosis and recurrent balanced translocations in only 50%. Spectral karyotyping (SKY) enables simultaneous visualization of ALL human chromosomes in different colours, facilitating the comprehensive evaluation of chromosomal abnormalities. Therefore, SKY was used to characterize 37 cases of newly diagnosed AML-M2, previously analysed using G-banding. In 15/23 patients it was possible to obtain metaphases from viably frozen cells; in 22 additional cases, fixed-cell suspensions were used. Of the 70 chromosomal aberrations identified by SKY, 30 aberrations were detected for the first time, 18 aberrations were redefined and 22 were confirmed. SKY detected two reciprocal translocations, t(X;3) and t(11;19). In five cases, eight structural aberrations resulted in partial gains of chromosome 21, six of which were undetected by G-banding. In 4/5 cases, these resulted in copy number increases for AML1. Amplification of MYC was detected in three cases. Using SKY and FISH, clonal aberrations were identified in 5/18 cases with a presumed normal karyotype; 3/5 aberrations were of known unfavourable prognostic significance. Karyotypes were entered into a custom-designed SKY database, which will be integrated with other cytogenetic and genomic databases. |
| Toxicity and toxicokinetics of a phosphorothioate oligonucleotide against the c-myc oncogene in cynomolgus monkeys. | A 2-week toxicity and toxicokinetic study of a 15-mer phosphorothioate oligonucleotide, INX-3280, against the c-myc oncogene was performed in cynomolgus monkeys. As this oligonucleotide readily adopts an aggregate structure, a quadruplex, which may be associated with adverse physiologic effects, this study was performed using INX-3280 that had been converted to its monomeric form. Animals received intravenous (i.v.) infusions of monomeric INX-3280 three times per week for 2 weeks at doses of 3 or 15 mg/kg per administration. The monkeys were examined for clinical signs: changes in hematology, serum chemistry, coagulation, and urinalysis parameters; complement activation; macroscopic findings at necropsy; and histopathologic alterations. In addition, the toxicokinetics of INX-3280 were evaluated, using a validated HPLC assay, after the first and last (sixth) doses. No treatment-related clinical signs of any adverse effects were observed, and there were no test article-related changes in hematology, serum chemistry, or complement activation parameters. The only alteration in clinical pathology parameters was a minor (30%) prolongation of the activated partial thromboplastin time (aPTT), reflecting slight inhibition of the intrinsic coagulation pathway, which was less than that reported with other oligonucleotides given at similar doses. Treatment-related histopathologic alterations consisted of characteristic accumulation of basophilic material in the cytoplasm of tubular epithelial cells in the kidney, resident macrophages in the lymph nodes, and Kupffer cells in the liver. These changes were graded as minimal in ALL cases. The basophilic material is believed to reflect accumulation of the oligonucleotide or metabolites or both. The pharmacokinetic parameters of INX-3280 were identical on the first and sixth administrations and were similar to those reported for other phosphorothioate oligonucleotides. Maximum concentration (Cmax) values for INX-3280 (101-119 microg/ml) were in excess of the threshold plasma concentrations reported to trigger complement activation by phosphorothioate oligonucleotides. It is concluded that the safety profile of monomeric INX-3280 in cynomolgus monkeys is quite favorable relative to the known effects of other phosphorothioate oligonucleotides, particularly with respect to the blood level-related toxicities of this class of compounds, including complement activation and inhibition of coagulation. This study found no toxicities that were expected to be clinically significant. |
| The helper virus envelope glycoprotein affects the disease specificity of a recombinant murine leukemia virus carrying a v-myc oncogene. | Many retroviruses that carry oncogenes (acute transforming viruses) are generally replication-defective and therefore require co-infection with a replication competent helper retrovirus for infectivity. The helper virus provides the retroviral proteins necessary for particle production and infection. These include the envelope glycoproteins that specifically bind to cell surface receptors and mediate viral adsorption and entry. Thus, a particular helper virus may influence the nature of disease induced by an oncogene-containing retrovirus due to tissue tropism of the helper. In a previous study, a replication-defective recombinant Moloney murine leukemia virus containing the v-myc oncogene was generated (M-MuLV(myc); Brightman B.K., Pattengale P.K., and Fan H., J Virol 60: 68-81, 1986). When M-MuLV(myc) was inoculated into mice using the non-pathogenic amphotropic murine leukemia virus (Am-MuLV 4070) as a helper, T- and B-lymphoblastic lymphomas resulted with the following two surface phenotypes, namely, (1) Thy 1.2+, B220- and (2) Thy 1.2-, B220+. Thy 1.2 surface antigen is characteristic of cells of the lymphoid lineage, whereas B220 surface antigen is characteristic of cells of the B-lymphoid lineage. In these experiments, to assess the influence of the helper virus on the disease specificity of M-MuLV(myc), two weakly pathogenic ecotropic helper MuLVs that interact with different cell surface receptors than Am-MuLV (Mo+PyF101 and AKV MuLV) were used to pseudotype M-MuLV(myc). In both cases, when inoculated into mice, these pseudotypes induced only T-lymphoblastic lymphoma. These results indicate that for M-MuLV(myc) the types of the tumors induced are influenced by the helper virus utilized, and they suggest that different lymphoid cells may express different levels of retroviral receptors. |
| The prognostic importance of c-myc oncogene expression in head and neck melanoma. | Melanomas of the head and neck have a poorer prognosis than melanomas arising at other cutaneous sites. To study the biology of this disease, the expression of the c-myc oncogene was studied in tumors from 97 patients with head and neck melanoma using the technique of flow cytometry. Survival analysis revealed that stratification of patients according to oncogene expression provided a prognostic marker with shorter overall survival in tumors with high nuclear c-myc oncoprotein positivity (log-rank test, chi2 = 8.77, p < 0.005). Multifactorial analysis using Cox s proportional hazards model revealed nuclear c-myc oncoprotein to be an independent prognostic marker (log-rank test, chi2 = 8.82, p = 0.005). These results support the authors previous studies of the prognostic value of c-myc expression in melanoma and suggest that estimation of c-myc oncoprotein may be of clinical importance in identifying high-risk patients. |
| Rearrangements of the c-myc oncogene are present in 15% of primary human multiple myeloma tumors. | Rearrangements of the c-myc oncogene have been found in most plasmacytomas induced in mice and human myeloma cell lines (HMCLs) analyzed so far. However, neither induced mouse plasmacytomas nor HMCLs represent relevant models for human multiple myeloma (MM). To evaluate the incidence of c-myc rearrangements in human plasma cell dyscrasias, sets of probes were generated to allow direct assessment of c-myc translocations on interphase plasma cells by using fluorescence in situ hybridization. After validation of these probes, a large cohort of patients with either newly diagnosed MM (n = 529), relapsed MM (n = 58), primary plasma cell leukemia (PCL; n = 23), monoclonal gammopathy of undetermined significance (n = 65), or smoldering MM (n = 24) were analyzed. C-myc rearrangements were identified in 15% of patients with MM or primary PCL, independently of the stage of the disease (ie, diagnosis or relapse and MM or primary PCL). Analysis of the 2 main translocations observed on karyotyping, ie, t(8;14) and t(8;22), revealed that these specific translocations represented only 25% (23 of 91) of c-myc rearrangements. c-myc rearrangements were then correlated with several other patients characteristics: illegitimate IgH recombinations, chromosome 13 deletions, and serum beta2-microglobulin levels. The only significant correlation was with a high beta2-microglobulin level (P =.002), although a trend for association with t(4;14) was observed (P =.08). Thus, c-myc rearrangement analysis in patients with MM revealed a strikingly lower incidence than that in HMCLs and plasmacytomas induced in mice, indicating that data obtained with these models cannot be directly extrapolated to human MM. |
| Amplification of c-myc oncogene by chromogenic and fluorescence in situ hybridization in archival breast cancer tissue array samples. | Fluorescence in situ hybridization (FISH) is currently considered to be the most specific and sensitive method for detection of oncogene amplifications in human tumor samples. However, FISH requires fluorescence microscopy, which is tedious and does not allow histopathologic evaluation of the cells and tissues examined. Here we compared FISH with the newly developed chromogenic in situ hybridization (CISH), which uses peroxidase enzyme for probe detection instead of fluorescent dyes. CISH was found to be highly concordant with FISH in a tissue array series of 177 archival breast cancer samples. This was true both when comparing CISH with single-color and two-color FISH, the latter including the chromosome 8 centromere probe as reference (the kappa coefficients were 0.67 and 0.76, respectively). Clinicopathologic correlations of c-myc amplification as detected by FISH and CISH were generally the same. By both methods, c-myc amplification was significantly associated with high histologic grade, negative progesterone receptor status, DNA aneuploidy, and high S-phase fraction. c-myc amplification was strongly associated with poor distant metastasis-free survival when amplification was detected by CISH (p = 0.0013), but this association was weaker when FISH was used (p = 0.16 for two-color FISH and p = 0.065 for single-color FISH). These data suggest that CISH is at least as sensitive and specific as FISH in the detection of oncogene amplification in human tumor samples. The possibility for concomitant tissue architecture evaluation using an ordinary transmitted light microscope may favor the use of CISH over FISH in oncogene amplification detection in large tumor series, and tissue arrays and, ultimately, in routine clinical diagnostics. |
| Myc oncogene: a key component in cell cycle regulation and its implication for lung cancer. | The Myc gene family which includes c-Myc, N-Myc and L-Myc, are transcription factors that play a role in cell proliferation, apoptosis and in the development of human tumors. Myc amplification and overexpression has been detected in lung cancer of different histologic subtypes. Although the mechanism of Myc action is not yet fully understood, Myc has been proposed to play a role in growth control and cell cycle progression by stimulating and repressing the expression of key cell cycle regulators. This review will focus on the role of Myc in stimulating the G1/S transition of the cell cycle by regulating the levels and activity of cyclins, cyclin dependent kinases (cdk), cdk inhibitors and the pRb-binding transcription factor E2F. It is proposed that both the overexpression of Myc and the deregulation of the pRB/E2F pathway promotes the G1 to S transition in parallel by activating cyclinE/cdk2 complexes in lung cancer cells. |
| Expression of the proto-oncogene c-myc in human stenotic aortocoronary bypass grafts. | Proliferation and differentiation of vascular smooth muscle cells (VSMC) are central events in vascular pathobiology and play a major role in the development of stenotic and restenotic lesions. The proto-oncogene c-myc and other early cell cycle-regulating genes have been implicated in the induction of cell proliferation and differentiation under diverse pathophysiological conditions. In the present study we analyzed c-myc mRNA expression by indirect nonradioactive in situ hybridization technique (NISH) in human stenotic venous bypass grafts (n = 32) retrieved during re-do operations of coronary artery disease and compared the results with 28 native veins (vena saphena magna) from the same patients. Stenotic bypass grafts showed enhanced c-myc expression located predominantly in VSMC in the media and neointima (severity score: ++-+++, 32/32 stenotic veins). In native veins we observed only low levels of c-myc mRNA (severity score: +, 28/28 native veins), ALL signals were restricted to endothelial cells of either the innermost intimal layer or of the vasa vasorum. Our in situ hybridization studies demonstrate enhanced mRNA expression of the proto-oncogene c-myc in stenotic venous bypass grafts. These results suggest that--in analogy to other pathophysiological conditions--c-myc exerts essential regulatory functions in cellular events operative during the initiation and progression of venous bypass graft disease. |
| BAF53 forms distinct nuclear complexes and functions as a critical c-Myc-interacting nuclear cofactor for oncogenic transformation. | The c-Myc oncoprotein functions as a transcription factor that can transform normal cells into tumor cells, as well as playing a direct role in normal cell proliferation. The c-Myc protein transactivates cellular promoters by recruiting nuclear cofactors to chromosomal sites through an N-terminal transactivation domain. We have previously reported the identification and functional characterization of four different c-Myc cofactors: TRRAP, hGCN5, TIP49, and TIP48. Here we present the identification and characterization of the actin-related protein BAF53 as a c-Myc-interacting nuclear cofactor that forms distinct nuclear complexes. In addition to the human SWI/SNF-related BAF complex, BAF53 forms a complex with TIP49 and TIP48 and a separate biochemically distinct complex containing TRRAP and a histone acetyltransferase which does not contain TIP60. Using deletion mutants of BAF53, we show that BAF53 is critical for c-Myc oncogenic activity. Our results indicate that BAF53 plays a functional role in c-Myc-interacting nuclear complexes. |
| Co-existence of pseudo-Chediak-Higashi anomaly and double minutes containing C-MYC oncogene in three patients with AML M2. | The c-Myc oncoprotein functions as a transcription factor that can transform normal cells into tumor cells, as well as playing a direct role in normal cell proliferation. The c-Myc protein transactivates cellular promoters by recruiting nuclear cofactors to chromosomal sites through an N-terminal transactivation domain. We have previously reported the identification and functional characterization of four different c-Myc cofactors: TRRAP, hGCN5, TIP49, and TIP48. Here we present the identification and characterization of the actin-related protein BAF53 as a c-Myc-interacting nuclear cofactor that forms distinct nuclear complexes. In addition to the human SWI/SNF-related BAF complex, BAF53 forms a complex with TIP49 and TIP48 and a separate biochemically distinct complex containing TRRAP and a histone acetyltransferase which does not contain TIP60. Using deletion mutants of BAF53, we show that BAF53 is critical for c-Myc oncogenic activity. Our results indicate that BAF53 plays a functional role in c-Myc-interacting nuclear complexes. |
| Activation of c-MYC and c-MYB proto-oncogenes is associated with decreased apoptosis in tumor colon progression. | BACKGROUND: An increasing amount of evidence suggests that progression from normal mucosa to colorectal cancer is accompanied by morphological and genetic alterations. Genetic abnormalities affect malignant transformation via a gradual imbalance of normal tissue homeostasis involving programmed cell death (PCD) or apoptosis. Therefore, it has been hypothesized that alterations in apoptosis may contribute to carcinogenesis. The aim of the present work was to investigate the relationship between frequency of spontaneous apoptosis during transition adenoma-to-carcinoma of the colorectal tract and the incidence of activation of c-myc and c-myb proto-oncogenes, involved both in colon tumorigenesis and apoptosis. MATERIALS AND METHODS: Ninety-five tissue specimens (60 polyps and 35 adenocarcinomas) were removed with autologous normal adjacent mucosa from colon cancer patients. Genomic DNA was extracted and analyzed for both apoptosis frequency (DNA fragmentation assay) and proto-oncogene activation (Southern blot analysis). On the same samples, Bcl-2 protein expression was evaluated by immunohistochemistry. RESULTS: Our results showed that: i) a significant relationship exists between apoptosis and genesis of colorectal cancer since, compared to adenomatous polyps and adjacent normal mucosa, cell death is markedly inhibited in tumors (p = 0.01); ii) during colon tumor progression, apoptosis and amplifications of c-myc/c-myb genes are inversely related; iii) Bcl-2 expression is retained in colon tumors even though at a significantly lower level with respect to adenomatous polyps. CONCLUSION: These results indicate that failure of the normal apoptotic process together with de-regulation of c-myc and c-myb proto-oncogenes might promote the development of colorectal tumors. |
| [Clinical significance of c-myc oncogene amplification in primary hepatocellular carcinoma by interphase fluorescence in situ hybridization]. | OBJECTIVE: To investigate the relationships between c-myc oncogene amplification in primary hepatocellular carcinoma (HCC) and its clinical prognosis. METHODS: To detect c-myc oncogene amplification in 100 cases with primary HCC and in 6 cases with satellite nodes by interphase fluorescence in situ hybridization (FISH). RESULTS: c-myc amplification was detected in 92 of 100 (92%) cases with HCC, 37 of which (37%) showed high copy amplification (HC), 55 (55%) low copy amplification (LC) and 8 (8%) single copy or no amplification (SC). There wasn t statistically different significance between the frequency of c-myc amplification and clinical stage and tumor size, and pathological types (P > 0.05), however, in the 90 follow-up resected cases, the one-year rates of recurrence in HC, LC and SC were 70.6% (24/34), 39.6% (19/48) and 12.5% (1/8) respectively (P < 0.05) but the recurrence rates after more than one year were 14.70% (5/34), 14.6% (7/48) and 0 (0/8) respectively (P > 0.05). Meanwhile, two-year survival rate of patients with HC was significantly lower in comparison with those with LC and SC (P = 0.001). CONCLUSIONS: There is a high frequency of c-myc oncogene amplification in primary HCC and the fact that the patients with HC showed poorer prognosis indicates that the level of c-myc oncogene amplification may be a sensitive index in the prognosis of HCC. |
| The myc oncogene: MarvelouslY Complex. | The activated product of the myc oncogene deregulates both cell growth and death check points and, in a permissive environment, rapidly accelerates the affected clone through the carcinogenic process. Advances in understanding the molecular mechanism of Myc action are highlighted in this review. With the revolutionary developments in molecular diagnostic technology, we have witnessed an unprecedented advance in detecting activated myc in its deregulated, oncogenic form in primary human cancers. These improvements provide new opportunities to appreciate the tumor subtypes harboring deregulated Myc expression, to identify the essential cooperating lesions, and to realize the therapeutic potential of targeting Myc. Knowledge of both the breadth and depth of the numerous biological activities controlled by Myc has also been an area of progress. Myc is a multifunctional protein that can regulate cell cycle, cell growth, differentiation, apoptosis, transformation, genomic instability, and angiogenesis. New insights into Myc s role in regulating these diverse activities are discussed. In addition, breakthroughs in understanding Myc as a regulator of gene transcription have revealed multiple mechanisms of Myc activation and repression of target genes. Moreover, the number of reported Myc regulated genes has expanded in the past few years, inspiring a need to focus on classifying and segregating bona fide targets. Finally, the identity of Myc-binding proteins has been difficult, yet has exploded in the past few years with a plethora of novel interactors. Their characterization and potential impact on Myc function are discussed. The rapidity and magnitude of recent progress in the Myc field strongly suggests that this marvelously complex molecule will soon be unmasked. |
| c-Myc oncoprotein: a dual pathogenic role in neoplasia and cardiovascular diseases?. | A growing body of evidence indicates that c-Myc can play a pivotal role both in neoplasia and cardiovascular diseases. Indeed, alterations of the basal machinery of the cell and perturbations of c-Myc-dependent signaling network are involved in the pathogenesis of certain cardiovascular disorders. Down-regulation of c-Myc induced by intervention with antioxidants or by antisense technology may protect the integrity of the arterial wall as well as neoplastic tissues. Further intervention studies are necessary to investigate the effects of tissue-specific block of c-Myc overexpression in the development of cardiovascular diseases. |
| C-myc oncoprotein expression and prognosis in patients with carcinoma of the cervix: an immunohistochemical study. | OBJECTIVE: Evaluation of the prognostic significance of c-Myc expression in carcinoma of the cervix. MATERIALS AND METHODS: 132 patients with carcinoma of the cervix presenting at the cancer Institute in Chennai from 1996-1999 were included in the study. ALL the cases were treated with a radical course of radiotherapy and had a median follow-up of 36 months. Paraffin blocks obtained from the punch biopsies from the tumours were used for immunohistochemistry. RESULTS: c-Myc nuclear immunoreactivity was observed in 44/132 (33.3%) of tumours. Patients with tumours in Stages 11 B and III B accounted for 112/132 (84.8%) of the cases. Patients with tumours expressing c-Myc nuclear immunoreactivity were found to have more advanced disease; less likely to achieve complete remission (54.5% vs. 78.4%; p < 0.005) and lower disease-free status (52.3% versus 73.8%; p < 0.014). The poor prognostic feature of c-Myc nuclear immunoreactivity was seen in both stage II B (52.9% vs. 76.3%) and stage III B (38.1% vs. 69.4%; p < 0.025). CONCLUSIONS: c-Myc nuclear immunoreactivity is a predictor of poorer response to radiotherapy and poorer disease free status in stage II B and III B carcinoma of the cervix. |
| Suppression of Myc-induced apoptosis in beta cells exposes multiple oncogenic properties of Myc and triggers carcinogenic progression. | To explore the role of c-Myc in carcinogenesis, we have developed a reversible transgenic model of pancreatic beta cell oncogenesis using a switchable form of the c-Myc protein. Activation of c-Myc in adult, mature beta cells induces uniform beta cell proliferation but is accompanied by overwhelming apoptosis that rapidly erodes beta cell mass. Thus, the oncogenic potential of c-Myc in beta cells is masked by apoptosis. Upon suppression of c-Myc-induced beta cell apoptosis by coexpression of Bcl-x(L), c-Myc triggers rapid and uniform progression into angiogenic, invasive tumors. Subsequent c-Myc deactivation induces rapid regression associated with vascular degeneration and beta cell apoptosis. Our data indicate that highly complex neoplastic lesions can be both induced and maintained in vivo by a simple combination of two interlocking molecular lesions. |
| A novel form of the RelA nuclear factor kappaB subunit is induced by and forms a complex with the proto-oncogene c-Myc. | Members of both Myc and nuclear factor kappaB (NF-kappaB) families of transcription factors are found overexpressed or inappropriately activated in many forms of human cancer. Furthermore, NF-kappaB can induce c-Myc gene expression, suggesting that the activities of these factors are functionally linked. We have discovered that both c-Myc and v-Myc can induce a previously undescribed, truncated form of the RelA(p65) NF-kappaB subunit, RelA(p37). RelA(p37) encodes the N-terminal DNA binding and dimerization domain of RelA(p65) and would be expected to function as a trans-dominant negative inhibitor of NF-kappaB. Surprisingly, we found that RelA(p37) no longer binds to kappaB elements. This result is explained, however, by the observation that RelA(p37), but not RelA(p65), forms a high-molecular-mass complex with c-Myc. These results demonstrate a previously unknown functional and physical interaction between RelA and c-Myc with many significant implications for our understanding of the role that both proteins play in the molecular events underlying tumourigenesis. |
| The proto-oncogene c-myc in hematopoietic development and leukemogenesis. | The proto-oncogene c-myc has been shown to play a pivotal role in cell cycle regulation, metabolism, apoptosis, differentiation, cell adhesion, and tumorigenesis, and participates in regulating hematopoietic homeostasis. It is a transcription regulator that is part of an extensive network of interacting factors. Most probably, different biological responses are elicited by different overlapping subsets of c-Myc target genes, both induced and suppressed. Results obtained from studies employing mouse models are consistent with the need for at least one, and possibly two, mutations in addition to deregulated c-myc for malignant tumor formation. Repression of c-myc is required for terminal differentiation of many cell types, including hematopoietic cells. It has been shown that deregulated expression of c-myc in both M1 myeloid leukemic cells and normal myeloid cells derived from murine bone marrow, not only blocked terminal differentiation and its associated growth arrest, but also induced apoptosis, which is dependent on the Fas/CD95 pathway. There is evidence to suggest that the CD95/Fas death receptor pathway is an integral part of the apoptotic response associated with the end of the normal terminal myeloid differentiation program, and that deregulated c-myc expression can activate this signaling pathway prematurely. The ability of egr-1 to promote terminal myeloid differentiation when co-expressed with c-myc, and of c-fos to partially abrogate the block imparted by deregulated c-myc on myeloid differentiation, make these two genes candidate tumor suppressors. Several different transcription factors have been implicated in the down-regulation of c-myc expression during differentiation, including C/EBPalpha, CTCF, BLIMP-1, and RFX1. Alterations in the expression and/or function of these transcription factors, or of the c-Myc and Max interacting proteins, such as MM-1 and Mxi1, can influence the neoplastic process. Understanding how c-Myc controls cellular phenotypes, including the leukemic phenotype, should provide novel tools for designing drugs to promote differentiation and/or apoptosis of leukemic cells. |
| N-myc oncogene overexpression down-regulates IL-6; evidence that IL-6 inhibits angiogenesis and suppresses neuroblastoma tumor growth. | Angiogenesis is an indispensable prerequisite for the progression and metastasis of solid malignancies. tumor angiogenesis appears to be governed by alterations of tumor suppressor or oncogenes operant in a broad range of tumors. We have addressed this issue in neuroblastoma, a malignancy characterized by the near-exclusive amplification and overexpression of the N-Myc oncogene. Here, we report that N-Myc overexpression results in down-regulation of interleukin-6 (IL-6) and that IL-6 is an inhibitor of endothelial cell proliferation and VEGF-induced rabbit corneal angiogenesis. STAT3 is instrumental for IL-6 activity as infection with adenoviruses expressing a phosphorylation deficient STAT3 mutant renders endothelial cells insensitive to the antiproliferative action of IL-6. Finally, though IL-6 does not influence neuroblastoma cell growth, IL-6-expressing xenograft tumors in mice exhibit reduced neovascularization and suppressed growth. Our data shed new light on the mechanisms by which N-myc oncogene amplification enhances the malignant phenotype in neuroblastomas. |
| c-Myc can induce DNA damage, increase reactive oxygen species, and mitigate p53 function: a mechanism for oncogene-induced genetic instability. | Oncogene overexpression activates p53 by a mechanism posited to involve uncharacterized hyperproliferative signals. We determined whether such signals produce metabolic perturbations that generate DNA damage, a known p53 inducer. Biochemical, cytological, cell cycle, and global gene expression analyses revealed that brief c-Myc activation can induce DNA damage prior to S phase in normal human fibroblasts. Damage correlated with induction of reactive oxygen species (ROS) without induction of apoptosis. Deregulated c-Myc partially disabled the p53-mediated DNA damage response, enabling cells with damaged genomes to enter the cycle, resulting in poor clonogenic survival. An antioxidant reduced ROS, decreased DNA damage and p53 activation, and improved survival. We propose that oncogene activation can induce DNA damage and override damage controls, thereby accelerating tumor progression via genetic instability. |
| The proto-oncogene c-myc acts through the cyclin-dependent kinase (Cdk) inhibitor p27(Kip1) to facilitate the activation of Cdk4/6 and early G(1) phase progression. | Progression through the early G(1) phase of the cell cycle requires mitogenic stimulation, which ultimately leads to the activation of cyclin-dependent kinases 4 and 6 (Cdk4/6). Cdk4/6 activity is promoted by D-type cyclins and opposed by Cdk inhibitor proteins. Loss of c-myc proto-oncogene function results in a defect in the activation of Cdk4/6. c-myc(-/-) cells express elevated levels of the Cdk inhibitor p27(Kip1) and reduced levels of Cdk7, the catalytic subunit of Cdk-activating kinase. We show here that in normal (c-myc(+/+)) cells, the majority of cyclin D-Cdk4/6 complexes are assembled with p27 and remain inactive during cell cycle progression; their function is presumably to sequester p27 from Cdk2 complexes. A small fraction of Cdk4/6 protein was found in lower molecular mass catalytically active complexes. Conditional overexpression of p27 in c-myc(+/+) cells caused inhibition of Cdk4/6 activity and elicited defects in G(0)-to-S phase progression very similar to those seen in c-myc(-/-) cells. Overexpression of cyclin D1 in c-myc(-/-) cells rescued the defect in Cdk4/6 activity, indicating that the limiting factor is the number of cyclin D-Cdk4/6 complexes. Cdk-activating kinase did not rescue Cdk4/6 activity. We propose that the defect in Cdk4/6 activity in c-myc(-/-) cells is caused by the elevated levels of p27, which convert the low abundance activable cyclin D-Cdk4/6 complexes into unactivable complexes containing higher stoichiometries of p27. These observations establish p27 as a physiologically relevant regulator of cyclin D-Cdk4/6 activity as well as mechanistically a target of c-Myc action and provide a model by which c-Myc influences the early-to-mid G(1) phase transition. |
| Newly established clear cell sarcoma (malignant melanoma of soft parts) cell line expressing melanoma-associated Melan-A antigen and overexpressing C-MYC oncogene. | Clear cell sarcoma (CCS), malignant melanoma of soft parts, is a rare malignant tumor with a poor prognosis. In this study, a CCS cell line, designated MP-CCS-SY, was established from a metastatic tumor of a 17-year-old Japanese girl that originated in the left Achilles tendon. A small number of melanosomes were detected in the cytoplasm by electron microscopy. The melanosomes immunoreacted with two melanoma-associated antibodies, HMB45 and Melan-A. A Western blot demonstrated the existence of a Melan-A antigen in this cell line. Although a t(12;22)(q13;q12), which is characteristic of CCS, was not identified by a chromosomal analysis with conventional banding techniques, fluorescence in situ hybridization analysis with painting probes of chromosomes 12 and 22 revealed the insertion of a chromosome 12 fragment into one of the long arms of chromosome 22. The chimeric EWS/ATF1 transcript was detected by the reverse transcriptase polymerase chain reaction. Extra copies and structural abnormalities of chromosome 8 were observed. Overexpression of c-myc mRNA was detected by Northern blot analysis and may have a role in malignant progression of CCS. The availability of this MP-CCS-SY cell line will help to understand the molecular biology of this malignancy and should be useful as a tool for developing an immunotherapy. |
| Effects of fluid shear stress on expression of proto-oncogenes c-fos and c-myc in cultured human umbilical vein endothelial cells. | The objective of our research was to reveal the effects of different shear stresses on the expression of proto-oncogenes c-fos and c-myc in cultured human umbilical vein endothelial cells (HUVEC). A parallel plate flow chamber was used to control the value and duration of shear stress (SS), and the expression of c-fos and c-myc protein was measured by immunocytochemistry methods and image analysis software. Some important conclusions were drawn. In the stationary state, c-fos protein levels were very low. The SS s of 4 dyn/cm(2) and 10 dyn/cm(2) induced rapid increases of c-fos protein levels, especially the SS of 10 dyn/cm(2). The levels peaked at 1.0 h. Then, c-fos protein levels began to decrease, after 2.5 h, they declined to almost basal levels. In the stationary state, the c-myc protein levels were also very low slowly increasing after the onset of shear stress. The effects of 4 dyn/cm(2) and 10 dyn/cm(2) SS on c-myc protein expression levels had no difference and apparently were less than the effect on c-fos protein levels. The c-myc protein levels peaked at 1.5 h. Subsequently, they fell to basal levels at 2.5 h. Increased expression of these proto-oncogenes mediated by shear stress may have important effects on the regulation of critical cell activities, such as proliferation and differentiation. |
| The expression of the developmentally regulated proto-oncogene Pax-3 is modulated by N-Myc. | N-Myc is a member of the Myc family of transcription factors that have been shown to play a pivotal role in cell proliferation and differentiation. In this report, we have investigated the relationship between N-Myc and the developmental control gene Pax-3. Using transient transfection assays, we show that the Pax-3 promoter is activated by both N-Myc-Max and c-Myc-Max. Moreover, we show that Myc regulation of Pax-3 promoter activity is dependent upon a noncanonical E box site in the 5 promoter region of Pax-3. In addition, we show that ectopic expression of both N-Myc and c-Myc leads to increased expression of Pax-3 mRNA. Furthermore, we show that Pax-3 mRNA expression is cell cycle-regulated and that the 5 promoter region of Pax-3 (bp -1578 to +56) can direct cell cycle-dependent gene expression with kinetics similar to that of the endogenous transcript. Site-directed mutagenesis of the E box site within the Pax-3 promoter significantly altered the pattern of expression through the cell cycle. These results suggest that the Myc family of transcription factors may modulate Pax-3 expression in vivo. |
| c-myc proto-oncogene expression in hemophilic synovitis: in vitro studies of the effects of iron and ceramide. | Hemophilia is a rare congenital bleeding disorder that is due to the deficiency of blood coagulation factor VIII or IX. Recurrent musculoskeletal bleeding is common and bleeding into joints results in a chronic inflammatory condition termed hemophilic synovitis. This destructive process is characterized by hemosiderin deposition in the superficial and deeper layers of the synovial membrane as well as a proliferation of synovial fibroblasts and vascular cells. The hyperplastic synovium and neovascular changes are reminiscent of the histopathologic appearance observed in malignant tissues. Indeed, the benign hyperplastic synovium in patients with hemophilia displays similar invasive and destructive behaviors suggesting the possibility of analogous disturbances in growth control and locally invasive mechanisms. Iron plays a role in malignant cell growth, local invasion, and tumor progression, possibly due to changes in the expression of the proto-oncogene, c-myc. We hypothesized that iron plays a similar role in hemophilic synovitis. To explore this hypothesis, we investigated the in vitro effects of iron on the proliferation of a primary, human synovial fibroblast cell (HSFC) line and the involvement of c-myc in this process. We also examined the role of ceramide, a sphingolipid capable of inducing apoptosis in this model system. HSFC proliferation was increased in a dose-dependent fashion and c-myc expression was enhanced by ferric citrate compared to sodium citrate control. Ceramide prevented both the iron-induced increases in HSFC proliferation and c-myc expression. These results indicate that iron probably plays a role in the proliferative changes observed in hemophilic joint disease and that aberrant expression of c-myc may underlie the iron effects. Furthermore, these results suggest that there may be a therapeutic role for ceramide in reversing these changes. |
| C-myc oncogene amplification in ductal carcinoma in situ of the breast. | The c-myc oncogene is frequently activated in invasive breast cancer and has been associated with high nuclear grade, lymph node metastasis and poorer disease outcome. We have examined c-myc oncogene amplification using fluorescence in situ hybridization in a series of 96 pure DCIS. Additionally we assessed amplification and expression of the Her2 and bcl-2 oncogenes. The findings were compared with clinicopathological data, Ki-67 proliferative index and hormone receptor status. We observed c-myc oncogene amplification in 19 tumours (20%). These cases were significantly associated with an average of 38% higher proliferative activity (p = 0.045), a 43% larger tumour size (p = 0.029) and the otherwise rare micropapillary subtype (p = 0.0005). Concluding the c-myc oncogene appears to be involved in the development of a more aggressive phenotype of DCIS. |
| Transcription from the tartrate-resistant acid phosphatase promoter is negatively regulated by the Myc oncoprotein. | TRAP, a characteristic marker of osteoclast differentiation, is an enzyme that plays an active role in the process of bone resorption. Despite the importance of TRAP in osteoclast biology, the components involved in the transcriptional regulation of this gene are largely unknown. This study investigated the regulation of TRAP transcription by the Myc oncoprotein in three different cell types. A series of nested TRAP promoter deletion constructs were cotransfected into P388D1 murine macrophages and C3H10T1/2 murine embryonic fibroblasts along with a backbone plasmid control or expression plasmids containing v-Myc, c-Myc, or an inactive v-Myc protein construct (delta84/NLS). Both v-Myc and c-Myc negatively regulated transcription from the TRAP promoter in P388D1 and C3H10T1/2 cells, 90% and 50%, respective to cell type and amount of endogenous Myc protein, and delta84/NLS had no effect. The functional Myc-responsive element(s) within the TRAP promoter was localized to a region between -436 and +1 bp, which contains two putative Myc-inhibitory binding sites coincident with an initiator element (Inr) at -116 bp and -18 bp. Conversely, in the HD-11EM chicken v-Myc transformed preosteoclast cell line, the full-length TRAP promoter transcription was increased when endogenous v-Myc levels were decreased in response to pretreatment of these cells with 1alpha,25-dihydroxyvitamin D3 [1alpha,25(OH)2D3]. This report provides the first evidence of the specific regulation of TRAP at the transcriptional level by Myc, a transcription factor that is normally expressed at relatively high levels in preosteoclasts and other myelomonocytic cells and suggests that Myc plays an active role in suppressing the transcription of a mature osteoclast selective gene. |
| Antisense peptide nucleic acids conjugated to somatostatin analogs and targeted at the n-myc oncogene display enhanced cytotoxity to human neuroblastoma IMR32 cells expressing somatostatin receptors. | Peptide nucleic acid (PNA) sequences are synthetic versions of naturally occurring oligonucleotides which display improved binding properties to DNA and RNA, but are still poorly internalized across cell membranes. In an effort to employ the rapid binding/internalization properties of somatostatin agonist analogs and the over-expression of somatostatin receptors on many types of tumor cells, PNAs complementary to target sites throughout 5 -UTR, translation start site and coding region of the n-myc oncogene were conjugated to a somatostatin analog (SSA) with retention of high somatostatin biological potency. IMR32 cells, which over-express somatostatin receptor type 2 (SSTR2) and contain the n-myc oncogene, were treated with these PNA-SSA conjugates. The results show that PNA conjugates targeted to the 5 -UTR terminus and to regions at or close to the translation start site could effectively inhibit n-myc gene expression and cell growth, whereas the non-conjugate PNAs were without effect at similar doses. The most potent inhibition of cell growth was achieved with PNAs binding to the translation start site, but those complementary to the middle coding region or middle upstream site between 5 -UTR and translation start site displayed no inhibition of gene expression. These observations were extended to four other cell lines: GH3 cells which express SSTRs with the n-myc gene, SKNSH cells containing a silent n-myc gene without SSTR2, HT-29 cells carrying the c-myc but no n-myc gene, and CHO-K1 cells lacking SSTR2 with n-myc gene. The results show that there was almost no effect on these four cell lines. Our study indicates that PNAs conjugated to SSA exhibited improved inhibition of gene expression possibly due to facilitated cellular uptake of the PNAs. These conjugates were mRNA sequence- and SSTR2-specific suggesting that many other genes associated with tumor growth could be targeted using this approach and that SSA could be a novel and effective transportation vector for the PNA antisense strategy. |
| Quantitative proteomic analysis of Myc oncoprotein function. | This study applies a new quantitative proteomics technology to the analysis of the function of the Myc oncoprotein in mammalian cells. Employing isotope-coded affinity tag (ICAT) reagent labeling and tandem mass spectrometry, the global pattern of protein expression in rat myc-null cells was compared with that of myc-plus cells (myc-null cells in which myc has been introduced) to generate a differential protein expression catalog. expression differences among many functionally related proteins were identified, including reduction of proteases, induction of protein synthesis pathways and upregulation of anabolic enzymes in myc-plus cells, which are predicted to lead to increased cell mass (cell growth). In addition, reduction in the levels of adhesion molecules, actin network proteins and Rho pathway proteins were observed in myc-plus cells, leading to reduced focal adhesions and actin stress fibers as well as altered morphology. These effects are dependent on the highly conserved Myc Box II region. Our results reveal a novel cytoskeletal function for Myc and indicate the feasibility of quantitative whole-proteome analysis in mammalian cells. |
| Role of Oncogenic Transcription Factor c-Myc in Cell Cycle Regulation, Apoptosis and Metabolism. | The myc gene was initially discovered as a prototypical retrovirally transduced oncogene. Over the decades, abundant evidence has emerged to support a causal role for the activated cellular gene, c-myc, in animal and human tumors. The gene encodes an oncogenic helix-loop-helix leucine zipper transcription factor that acts as a heterodimer with its partner protein, Max, to activate genes regulating the cell cycle machinery as well as critical metabolic enzymes. The additional ability of c-Myc to repress transcription of differentiation-related genes suggest that c-Myc is a central and key molecular integrator of cell proliferation, differentiation and metabolism. |
| In vivo angiogenic activity of neuroblastoma correlates with MYCN oncogene overexpression. | Neuroblastoma (NB) is the most common malignant solid tumor in early childhood. Amplification of the MYCN oncogene is associated with a more malignant course of disease and poor outcome. The role that MYCN plays in the regulation of angiogenesis in NB remains unclear. To better elucidate this matter, fresh biopsy samples from 21 patients, 10 with MYCN-amplified tumors (defined as having >10 copies of the oncogene) and 11 with nonamplified tumors, were tested for their angiogenic capacity using the chick embryo chorioallantoic membrane assay, a useful model for such investigation. Moreover, using the same experimental model, conditioned media obtained from 5 different human NB cell lines MYCN-amplified (HTLA-230, LAN-5 and GI-LI-N) or nonamplified (ACN and SH-SY5Y) and biopsy fragments obtained from xenografts derived from 4 NB cell lines (HTLA-230, GI-LI-N, ACN and SH-SY5Y) injected in nude mice were assayed for angiogenic potential. Our results clearly demonstrated that MYCN amplification parallels angiogenesis in NB. When fresh biopsy samples from patients, CM derived from NB cell lines and biopsy fragments derived from xenografts of the same cell lines injected in nude mice were tested, the response was univocal: the angiogenic response, evaluated both macroscopically and microscopically, was significantly higher in the MYCN-amplified specimens compared to the nonamplified ones. |
| Increased frequency of the S-allele of the L-myc oncogene in breast cancer. | BACKGROUND: Association between restriction fragment length polymorphisms (RFLP) of known oncogenes and a predisposition to develop cancer have been postulated. The L-myc gene is a potential molecular marker associated with cancer susceptibility as well as metastasis, prognosis, and adverse survival. Our aim was to test the hypothesis that there was an association between L-myc S allele in breast cancer and a predisposition to the disease. MATERIALS AND METHODS: The distribution of L-myc polymorphism in 56 patients with breast cancer was determined by polymerase chain reaction-based restriction fragment length polymorphism and compared with that of 51 healthy control subjects. RESULTS: The allele frequencies of L and S in breast cancer patients were 0.70 and 0.30, respectively and those in normal individuals were 0.54 and 0.46, respectively. This difference was primarily the result of a high frequency of the S allele among breast cancer patients compared to controls. The frequency of S allele was significantly higher in breast cancer patients than in normal individuals (p < 0.01). No correlation was observed between the presence of L-myc S allele and several parameters of each patient s history or characteristics of tumor. CONCLUSION: Our results suggested that L-myc polymorphism may be significant in an individual s susceptibility to breast cancer in Turkey and may be useful for identifying patients at high risk of developing breast cancer. |
| Upregulation of the oncogene c-myc in Barrett s adenocarcinoma: induction of c-myc by acidified bile acid in vitro. | BACKGROUND AND AIMS: C-myc over expression is implicated in malignancy although to date this has not been studied in Barrett s metaplasia. We sought to determine c-myc expression in the malignant progression of Barrett s metaplasia and whether it may be induced by bile acids seen in gastro-oesophageal refluxate. METHODS: C-myc protein and mRNA levels were assessed in 20 Barrett s metaplasia and 20 oesophageal adenocarcinoma samples by western blotting and real time polymerase chain reaction. Levels of c-myc and proliferation were also assessed in cell lines OE21, OE33, SW-480, and TE-7 stimulated with pulses or continuous exposure to the bile acids deoxycholic acid and chenodeoxycholic acid. RESULTS: C-myc protein was upregulated in 50% of Barrett s metaplasia and 90% of oesophageal adenocarcinoma samples compared with squamous, gastric, and duodenal controls. C-myc immunolocalisation in Barrett s metaplasia revealed discrete nuclear localisation, becoming more diffuse with progression from low to high grade dysplasia to adenocarcinoma. Both continual and pulsed bile acid induced c-myc at pH 4, with no effect at pH 7 or with acidified media alone. Pulsed bile acid treatment induced proliferation (p<0.05); in contrast, continuous exposure led to suppression of proliferation (p<0.05). CONCLUSIONS: We have shown upregulation of c-myc with malignant progression of Barrett s metaplasia and suggest that acidified bile may be a novel agent responsible for induction of this oncogene. |
| The c-myc oncogene: use of a biological prognostic marker as a potential target for gene therapy in melanoma. | The c-myc oncogene has been shown to be overexpressed in a number of malignancies, and may play an important role in the pathogenesis of malignant melanoma. Previous prognostic studies have demonstrated c-myc overexpression in a range of cutaneous melanomas, and levels of c-myc oncoprotein expression have been shown to correlate with clinical outcome in both primary and secondary disease. The purpose of this study was to investigate the in vitro manipulation of c-myc expression using antisense oligonucleotides. The human melanoma cell lines A375M, Be11 and WM115 were treated with c-myc antisense oligonucleotides, and the cellular growth was compared with controls. Antisense oligonucleotides reduced the growth rate of ALL three cell lines, and produced a reduction in c-myc gene expression as measured by flow cytometry. The growth inhibitions in the A375M, Be11 and WM115 cell lines at 72 h were 36.6%, 35.8% and 29.3%, respectively. Each of these was significantly different from control cultures (P<0.01). The c-myc antisense produced a mean 75% reduction in c-myc oncoprotein expression when compared with controls in the A375M cells (P<0.001), a 49% reduction in the Be11 cells (P<0.001) and a 28% reduction in the WM115 cells (P=0.005). This study demonstrates the importance of the c-myc oncogene in controlling melanoma growth. It suggests that blocking the expression of this gene, using an antisense approach, reduces melanoma cell growth, and may potentially provide a novel gene-therapy strategy for the treatment of advanced melanoma. |
| The in vivo binding site for oncoprotein c-Myc in the promoter for Epstein-Barr virus (EBV) encoding RNA (EBER) 1 suggests a specific role for EBV in lymphomagenesis. | BACKGROUND: Epstein-Barr virus (EBV) was isolated in the 1960s from the African childhood tumor, Burkitt s Lymphoma (BL), characterized by the translocation of the c-myc gene into one of the immunoglobulin loci. Due to the extreme discrepancy between the widespread dissemination of EBV infection and the overall rarity of EBV-related tumors, it remains an open question whether EBV is really a human tumor virus, and if so, what specific contribution EBV may have to tumorigenesis. MATERIAL/METHODS: Protein binding at the EBER locus of EBV was analyzed by genomic footprinting electrophoretic mobility shift, reporter gene assay, and chromatin immunoprecipitation in a panel of six B-cell lines. RESULTS: Several novel in vivo protein binding sites were found in the EBER locus. Among those, a prominent binding site, 130 base pairs upstream of the EBER1 gene, contains two E-boxes providing a consensus sequence for binding of the transcription factor and oncoprotein c-Myc to the EBV genome. CONCLUSIONS: Based on the discovery of a binding site for c-Myc in the EBV genome, a new molecular model for the specific role of EBV as a causal factor in the origin of endemic Burkitt s Lymphoma is proposed. Translocated and deregulated c-myc directly activates and maintains the antiapoptotic functions of the EBER locus in a single EBV-infected B cell undergoing the germinal center (GC) reaction. With the balance shifted towards cell survival, the oncogenic potential of the pro-apoptotic c-Myc protein is unmasked in the translocated GC cell. This single translocated and surviving cell is the founder cell of an endemic BL. The new model reinstitutes EBV as a real human tumor virus. |
| The c-Myc Oncoprotein Interacts with Bcr. | Bcr is a multifunctional protein that is the fusion partner for Abl (p210 Bcr-Abl) in Philadelphia chromosome positive leukemias. We have identified c-Myc as a binding partner for Bcr in both yeast and mammalian cells. We are also able to observe interactions between natively expressed c-Myc and Bcr in leukemic cell lines. Although Bcr and Max have overlapping binding sites on c-Myc, Bcr cannot interact with Max, or with the c-Myc.Max heterodimer. Bcr expression blocks activation of c-Myc-responsive genes, as well as the transformed phenotype induced by coexpression of c-Myc and H-Ras, and this finding suggests that one function of Bcr is to limit the activity of c-Myc. However, Bcr does not block c-Myc function by preventing its nuclear localization. Interestingly, increased Bcr dosage in COS-7 and K-562 cells correlates with a reduction in c-Myc protein levels, suggesting that Bcr may in fact be limiting c-Myc activity by regulating its stability. These data indicate that Bcr is a novel regulator of c-Myc function whose disrupted expression may contribute to the high level of c-Myc protein that is observed in Bcr-Abl transformed cells. |
| Functional analysis of the N-terminal domain of the Myc oncoprotein. | Myc is a multifunctional nuclear phosphoprotein that can drive cell cycle progression, apoptosis and cellular transformation. Myc orchestrates these activities at the molecular level by functioning as a regulator of gene transcription to activate or repress specific target genes. Previous studies have shown that both the Myc N-terminal domain (NTD) and the C-terminal domain (CTD) are essential for Myc functions. The role of the CTD is relatively well understood as it encodes a basic helix-loop-helix leucine zipper motif important for DNA binding and protein-protein interactions. By contrast, the role of the NTD and the specific domains responsible for different Myc activities are not as well defined. To investigate the regions of the NTD necessary for Myc function and to determine whether these activities are overlapping or independent of one another, we have conducted a detailed structure-function analysis of the Myc NTD. We assessed the ability of a number of deletion and point mutants within the highly conserved regions of the Myc NTD to induce cell cycle progression, apoptosis and transformation as well as repress and activate expression of endogenous target genes. Our analyses highlight the complexity of the Myc NTD and extend previous studies. For example, we show most Myc mutants that were compromised as repressors of gene transcription retained the ability to activate gene transcription, reinforcing the concept that these activities can be uncoupled. Repression of two different target genes could be distinguished by specific mutants, further supporting the notion of at least two different Myc repression mechanisms. Mutants disabled at both inducing and repressing gene transcription could not maximally drive the biological activities of Myc, indicating these functions are tightly linked. Indeed, a close association of Myc repression and apoptosis was also observed. |
| Amplification and overexpression of the L-MYC proto-oncogene in ovarian carcinomas. | Gene amplification is an important mechanism of oncogene activation in various human cancers, including ovarian carcinomas (OvCas). We used restriction landmark genomic scanning (RLGS) to detect amplified DNA fragments in the genomes of 47 primary OvCas. Visual analysis of the RLGS gel images revealed several OvCa samples with spots of greater intensity than corresponding spots from normal tissues, indicating possible DNA amplification in specific tumors. Two primary tumors (E1 and S12) shared four high-intensity spots. A recently developed informatics tool termed Virtual Genome Scans was used to compare the RLGS patterns in these tumors with patterns predicted from the human genome sequence. Virtual Genome Scans determined that three of the four fragments localized to chromosome 1p34-35, a region containing the proto-oncogene L-MYC. Sixty-eight primary OvCas, including 40 analyzed by RLGS, were screened by quantitative polymerase chain reaction (PCR) for possible amplification of L-MYC. Ten tumors with increased L-MYC copy number were identified, including tumor E1, which showed an approximately 24-fold increase in copy number compared to normal DNA. Southern analysis of several tumors confirmed the quantitative PCR results. Using sequence tagged site (STS) markers flanking L-MYC, increased DNA copy number in tumor E1 was found to span the region flanking L-MYC between D1S432 and D1S463 ( approximately 3.1 Mb). Other tumors showed amplification only at the L-MYC locus. Using oligonucleotide microarrays, L-MYC was found to be more frequently overexpressed in OvCas than either c-MYC or N-MYC relative to ovarian surface epithelium. Quantitative reverse transcriptase-PCR analysis confirmed elevated L-MYC expression in a substantial fraction of OvCas, including nine of nine tumors with increased L-MYC copy number. The data implicate L-MYC gene amplification and/or overexpression in human OvCa pathogenesis. |
| Repression of the TMEFF2 promoter by c-Myc. | TMEFF2 is a novel transmembrane protein, containing two follistatin domains and an epidermal growth factor-like motif that is mainly expressed in the prostate and brain. Recently, we showed that expression of TMEFF2 could inhibit prostate cancer cell growth. In addition, the TMEFF2 gene is frequently hypermethylated in human tumor cells, suggesting that it might be a tumor suppressor gene. We cloned the 5 -flanking region of the human TMEFF2 gene and using a luciferase reporter assay showed that it contains a functional promoter. The 0.7 kb region upstream to the TMEFF2 transcription start site encompasses the minimal promoter required for TMEFF2 expression. Sequence analysis of the TMEFF2 promoter revealed potential binding sites for several transcription factors including Sp1 and an E-box that could be recognized by c-Myc. An inverse correlation between TMEFF2 and c-Myc expression was found in CWR22 prostate xenografts. Reporter gene and mobility shift assays demonstrated that c-Myc could repress TMEFF2 gene expression through its cognate site. In light of the probable role of TMEFF2 in inhibiting cell growth, its suppression may contribute to the oncogenic properties of c-Myc. |
| Random mutagenesis of PDZ(Omi) domain and selection of mutants that specifically bind the Myc proto-oncogene and induce apoptosis. | Omi is a mammalian serine protease that is localized in the mitochondria and released to the cytoplasm in response to apoptotic stimuli. Omi induces cell death in a caspase-dependent manner by interacting with the X-chromosome linked inhibitor of apoptosis protein, as well as in a caspase-independent way that relies on its proteolytic activity. Omi is synthesized as a precursor polypeptide and is processed to an active serine protease with a unique PDZ domain. PDZ domains recognize the extreme carboxyl terminus of target proteins. Internal peptides that are able to fold into a beta-finger are also reported to bind some PDZ domains. Using a modified yeast two-hybrid system, PDZ(Omi) mutants were isolated by their ability to bind the carboxyl terminus of human Myc oncoprotein in yeast as well as in mammalian cells. One such PDZ(m) domain (PDZ-M1), when transfected into mammalian cells, was able to bind to endogenous Myc protein and induce cell death. PDZ-M1-induced apoptosis was entirely dependent on the presence of Myc protein and was not observed when c-myc null fibroblasts were used. Our studies indicate that the PDZ domain of Omi can provide a prototype that could easily be exploited to target specifically and inactivate oncogenes by binding to their unique carboxyl terminus. |
| c-Myc oncogene and Cdc25A cell activating phosphatase expression in non-Hodgkin s lymphoma. | The product of proto-oncogene c-Myc is a potent activator of cell proliferation. The prognostic importance of the over expression of c-Myc and its transcriptional target Cdc25A in non-Hodgkin lymphoma (NHL) patients remains to be elucidated. To determine the role and the prognostic relevance of c-Myc and Cdc25A over expression in this group, we analyzed the expression of c-Myc oncoprotein by immunohistochemistry and Cdc25A mRNA by reverse-transcription polymerase chain reaction (RT-PCR) in the biopsied lymph nodes of 59 NHL patients. Over expression of c-Myc oncoprotein (P62) was observed in 32 out of 59 samples (54.2%) and Cdc25A in 36 out of 59 (60.1%). The percentage of c-Myc oncoprotein and Cdc25A mRNA over expression was significantly increased from low grade (4/12=25%, 4/16=25%) through intermediate grade (9/20=45%, 10/20=50%) to high grade lymphoma (19/23=82.6%, 22/23=95.6%) respectively (P=0.001 for both). The proportion of patients with positive c-Myc and Cdc25A over expression was significantly higher among patients with elevated serum lactic dehydrogenase (sLDH), and serum beta 2 microglobulin compared to those with normal levels (P<0.05, <0.01, respectively). Moreover, 80 and 90% of NHL patients with bone marrow infiltration at diagnosis had c-Myc and Cdc25A over expression, respectively. On the other hand, positive c-Myc, and Cdc25A over expression were not significantly related to the grade of international prognostic index, or the presence of B symptoms or to histopathological type. The expression of c-Myc and Cdc25A was significantly elevated in those who died when compared to survivors (P<0.001 for both). Moreover, positive c-Myc and Cdc25A over expression was associated with shortened overall survival. IN CONCLUSION: over expression of c-Myc and Cdc25A may be poor prognostic factor in NHL and associated with poor outcome. Assessments of c-Myc and Cdc25A expression in NHL at diagnosis are likely to be helpful in predicting patient outcome and selecting optimal therapeutic regimen. |
| Identification of a novel Kruppel-associated box domain protein, Krim-1, that interacts with c-Myc and inhibits its oncogenic activity. | We have used the Ras recruitment system to screen for proteins that interact with the N-terminally located transactivation domain of c-Myc. The Ras recruitment system is based on the activation of the mitogenic RAS signaling pathway in yeast by the mammalian GTPase Ha-Ras. This screen led to the identification of two novel nuclear proteins termed Krim-1A and Krim-1B that both contain an N-terminal KRAB box domain and 12 or 9 Kruppel C2H2 type zinc fingers at the C terminus, respectively. We found that sequences covering the Myc box II homology region are essential for the interaction with the Krim-1 proteins and that the second N-terminal zinc finger of Krim-1 is essential for Myc binding. Both Krim-1A and -B genes appear to be expressed ubiquitously with highest levels in spleen and lymph nodes. In particular, Krim-1B and, to a lesser extent, Krim-1A are able to decrease E-box-dependent transcriptional transactivation by c-Myc-Max complexes and also the ability of Myc to malignantly transform primary rat embryo fibroblasts, which is consistent with the functional repressive properties of their KRAB domains. The transcriptional corepressor Tif-1beta is a binding partner for Krim-1 and stabilizes the protein. Our findings suggest that Myc-mediated functions can be negatively regulated by Krim-1, potentially in a complex with Tif-1beta. |
| The MYC oncogene as a cancer drug target. | The universal deregulation of c-myc gene expression in tumor cells suggests that this oncogene represents an attractive target for cancer therapeutic purposes. The same applies to the N-myc gene, which has a more restricted tissue specificity. Translocation (e.g., c-myc in Burkitt s lymphoma), or amplification (e.g., N-myc in neuroblastoma) of myc genes has been causally linked to tumor formation. Furthermore, the c-myc promoter integrates diverse mitogenic signalling cascades, which are constitutively activated in tumor cells, and translates them into expression of the c-MYC transcription factor, which promotes cell proliferation by regulating the expression of numerous target genes. Recent experimental data suggest, that even a brief inhibition of c-myc expression may be sufficient to permanently stop tumor growth and induce regression of tumors. Attempts to identify specific inhibitors of c-MYC/MAX dimerization have yielded promising results. In addition, downstream-target genes of c-MYC represent attractive targets for tumor therapy. tumor cells expressing c-MYC at elevated levels are sensitized to treatment with DNA-damaging drugs. In mice and presumably also in human patients, the successful treatment of c-myc-induced tumors with conventional chemotherapy depends on the presence of functional p53. Therefore, restoration of this pathway, which is commonly lost in cancer cells, may enhance therapy of c-myc-induced tumors. These and other recent developments, which address the use of myc genes as therapeutic targets for cancer treatment, are discussed in this review. |
| Inhibition of c-Myc oncoprotein limits the growth of human melanoma cells by inducing cellular crisis. | Here, we show that inhibition of c-Myc causes a proliferative arrest of M14 melanoma cells through cellular crisis, evident by the increase in size, multiple nuclei, vacuolated cytoplasm, induction of senescence-associated beta-galactosidase activity and massive apoptosis. The c-Myc-induced crisis is associated with decreased human telomerase reverse transcriptase expression, telomerase activity, progressive telomere shortening, glutathione (GSH), depletion and, increased production of reactive oxygen species. Treatment of control cells with L-buthionine sulfoximine decreases GSH to levels of c-Myc low expressing cells, but it does not modify the growth kinetic of the cells. Surprisingly, when GSH is increased in the c-Myc low expressing cells by treatment with N-acetyl-L-cysteine, cells escape crisis. To test the hypothesis that both oxidative stress and telomerase dysfunction are involved in the c-Myc-dependent crisis, we directly inhibited telomerase function and glutathione levels. Inactivation of telomerase, by expression of a catalytically inactive, dominant negative form of reverse transcriptase, reduces cellular lifespan by inducing telomere shortening. Treatment of cells with L-buthionine sulfoximine decreases GSH content and accelerates cell crisis. Analysis of telomere status demonstrated that oxidative stress affects c-Myc-induced crisis by increasing telomere dysfunction. Our results demonstrate that inhibition of c-Myc oncoprotein induces cellular crisis through cooperation between telomerase dysfunction and oxidative stress. |
| Mutual interference of adenovirus infection and myc expression. | During infection with adenovirus, massive changes in the transcription of virus genes are observed, suggesting that the expression of cellular genes may also be modulated. To characterize the levels of cellular RNA species in infected cells, cDNA arrays were screened 24 h after infection of HeLa cells with wild-type adenovirus type 5, strain dl309. Despite complete transduction of the cells, fewer than 20 cellular genes (out of 4,600 analyzed and 1,200 found detectable and expressed above background) were altered more than threefold in their corresponding RNA levels compared to mock-infected cells. In particular, the expression of the myc oncogene was reduced at the mRNA level. This reduction was dependent on the replication of virus DNA and partially dependent on the presence of the adenovirus gene products E1B-55 kDa and E4orf6, but not E4orf3. On the other hand, MYC protein had an increased half-life in infected cells, resulting in roughly constant steady-state protein levels. The adenovirus E1A gene product is necessary and sufficient to stabilize MYC. Overexpressed MYC inhibited adenovirus replication and the proper formation of the virus replication centers. We conclude that adenovirus infection leads to the stabilization of MYC, perhaps as a side effect of E1A activities. On the other hand, myc mRNA levels are negatively regulated during adenovirus infection, and this may avoid the detrimental effect of excessive MYC on adenovirus replication. |
| c-Myc oncoprotein: cell cycle-related events and new therapeutic challenges in cancer and cardiovascular diseases. | Advanced stages of both cancer and atherosclerosis are characterized by a local increase in tissue mass that may be hard to control. This increase in tissue mass can be attributed to oxidation-sensitive modification of cell cycle-related events, including cellular proliferation, differentiation, and apoptosis, which could be secondary to alteration in the activity of tumor suppressor gene and oncogene products. The oncogene c-Myc has classically been considered to be involved in carcinogenesis and has more recently been implicated in both endothelial dysfunction and atherogenesis as well. Consequently, inhibition of c-Myc-dependent signaling has become a novel therapeutic opportunity and challenge in atherosclerosis and other cardiovascular diseases. Antioxidant strategies, RNA synthesis inhibitors such as mithramycin, and gene therapeutic approaches with antisense oligonucleotides against c-Myc are some of the promising strategies. In general, the increased biologic understanding of the participation of cell cycle events and targeting these events may enable to attenuate or prevent some of the complications of vascular and neoplastic diseases. |
| c-myc coded oncoprotein for immunotargeting. Oropharyngeal and other tumors at S.N. Medical College, Agra, India. | To investigate HER-2/neu oncoprotein immunoreactivity, monoclonal antibody TA1 immunohistochemical examination of flash-frozen radical prostatectomy specimens was performed (n = 35). ALL prostatic specimens contained benign prostatic hyperplasia (BPH) and/or prostatic intraepithelial neoplasia (PIN), as well as prostatic carcinoma (CaP). HER-2/neu oncoprotein immunoreactivity in BPH tissues was not significantly different than that for the PIN basal cell layer (P = 0.10) or for the PIN luminal cells (P = 0.17). There was significantly more HER-2/neu oncoprotein immunoreactivity in BPH than in areas of CaP (P < 0.001). There was no significant difference in the amount of immunoreactivity present in PIN basal cells when compared to the PIN luminal cells (P = 0.49). Both the PIN basal cells and luminal cells stained for the HER-2/neu oncoprotein to a higher degree than cells in the CaP areas (P < 0.001 in both cases). HER-2/neu oncoprotein immunoreactivity is present at a significantly higher degree in BPH and PIN than in malignant prostatic epithelium. |
| The MYCN oncoprotein as a drug development target. | The transcription factor and proto-oncogene MYCN is reviewed as a potential specific target for cancer therapy. Amplification of MYCN is frequently found in a number of advanced-stage tumours, including neuroblastoma (25%), small cell lung cancers (7%), alveolar rhabdomyosarcoma and retinoblastoma. It is associated with rapid tumour progression and poor outcome in human neuroblastoma. MYCN is a member of the myc family of proto-oncogenes which encode nuclear proteins that form heterodimers with MAX protein through their conserved HLHZip domains. The MYC/MAX complexes transactivate a number of MYC-target genes in a sequence-specific manner. MYC-MAX interaction is essential for MYC-induced cell cycle progression, cellular transformation, and transcriptional activation. A causal link between the transformed phenotype and MYCN has been established by a range of in vitro and in vivo studies, including a transgenic model of neuroblastoma in which MYCN overexpression is targeted to neuronal tissue by the use of a tyrosine hydroxylase promoter. Downregulation of MYCN expression either by antisense treatment targeted against MYCN mRNA or by retinoids has been shown to decrease proliferation and/or induce neuronal differentiation of neuroblastoma cells. Inhibition of MYC-MAX dimerisation by small-molecule antagonists has recently been shown to interfere with MYC-induced transformation of chick embryo fibroblasts, indicating that functional inhibitors of the MYC family of oncoproteins have potential as therapeutic agents. Finally, we describe the development and validation of a functional MYCN reporter gene assay using neuroblastoma cells (NGP) which have been stably transfected with a luciferase gene construct under control of the ornithine decarboxylase gene promoter. This assay has been used for a pilot screen of 2800 compounds from the cancer Research-UK collection, identifying five compounds showing a consistent significant reduction of MYCN-dependent luciferase activity (>50%) in repeated screens. This cell-based, MYCN reporter gene assay will be scaled up for high throughput screens of compound libraries and will aid in the future development of specific therapeutic strategies in neuroblastoma and other tumours in which MYCN amplification has been implicated. |
| Dinucleotide repeat polymorphism at the human c-myc oncogene locus (MYC). | The occurrence of ERBB-2 (HER-2/NEU) oncogene amplification was studied in 203 DNA samples obtained from 175 cancer patients. Amplification of ERBB-2 oncogene was established in 14 out of 63 (22%) patients with breast cancer, 1 out of 23 cases of ovarian tumor, 1 out of 19 cases of large bowel cancer and 1 out of 27 patients with cancer of the thyroid. Patients with lung cancer (34), soft tissue sarcoma (6) and malignant melanoma (3) failed to reveal any changes in the above oncogene. A tendency was established for ERBB-2 oncogene amplification to be associated with lymph node involvement in female patients with breast cancer: amplification was observed in 9 out of 28 patients presenting with lymph node metastases and only in 5 out of 29 metastases-free cases. To summarize, ERBB-2 oncogene is fairly often activated in human tumors but a high occurrence of the gene amplification was observed in female patients with breast cancer only. |
| Fc gamma receptors are expressed on human neuroblastoma cell lines: lack of correlation with N-myc oncogene activity. | FcRs (Fc Receptors) have been detected on the cell surface of two human neuroblastoma cell lines; IMR 32 and SK-N-SH, by immunocytochemistry and flow cytometric analysis, using a previously characterized polyclonal antiserum raised against the Fc gamma R isolated from a human CLL line (Gorini, Medgyesi, Garavini, Dorrington and Down, 1987; Rozsnay, Sarmay, Szabo, Medgyesi, Gorini and Gergely, 1990). FcR is expressed on ALL the cells of both lines at least at the same level as on the HL60 promyelocyte cell line used as positive control. Two electrophoretic components displaying apparent molecular masses of 70 and 43 kDa respectively have been identified by SDS-PAGE followed by Western blotting analysis of crude cell membranes. In addition, "in situ" hybridization experiments seem to exclude a correlation between FcR expression and N-myc oncogene activity. The presence of FcR in neuroblastoma could be related to a possible functional role even on these cells which do not belong to the immune system; moreover, they could also be exploited for a diagnostic characterization of this tumor. |
| Immunolocalization of c-myc oncoprotein in mucinous and serous adenocarcinomas of the ovary. | Activation of c-myc oncogene has been reported in increasing numbers of human ovarian carcinomas and appears to play a role in the biologic behavior of the neoplasms. We have studied the immunohistochemical localization of p-62c-myc, the gene product of c-myc, in 44 cases of serous and mucinous cystadenoma, adenocarcinoma of low malignant potential, and invasive adenocarcinoma, using a monoclonal antibody raised to a synthetic human p62c-myc sequence (Myc 1-6E10). Both serous and mucinous cystadenomas demonstrated a higher frequency of nuclear localization than did carcinomas, which showed much greater cytoplasmic staining, while tumors of low malignant potential showed an intermediate pattern. However, the observed differences did not reach statistical significance. No significant correlation was observed between intracellular localization patterns of p62c-myc and histologic and nuclear grades and mitotic activity in the cases of carcinoma. Great care should be taken in the interpretation of immunohistochemical analysis of oncogene products, especially when attempting to correlate the findings with biologic tumor behavior. |
| [Immunohistochemical studies of recessive oncogene p53 and N-myc oncogene expression in 7, 12 dimethylbenz (a) anthracene-induced rat ovarian tumors]. | In the present study, the expressions of p53 and N-myc gene were analyzed immunohistochemically in rat ovarian tumors induced by 7,12 dimethylbenz (a) anthracene (DMBA). 1) p53 could be seen in the nucleolei of tumor cells. The positive rates were: adenomas 17%, adenocarcinomas 37%, sarcomas 0%, mixed mullerian tumor 0% and epidermal cysts 100%. Neither the serial-allografted tumor nor DMBA-OC-1 was positive. 2) N-myc could be seen in the cytoplasm and perinuclear cytoplasm of tumor cells. The positive rates were: adenomas 33%, adenocarcinomas 77%, sarcomas 100%, mixed mullerian tumors 100% and epidermal cysts 100%. Both the serial-allografted tumor and DMBA-OC-1 were positive. 3) The positive rates in both p53 and p21 were: adenocarcinoma 20% and epidermal cysts 100%. The positive rates in both N-myc and p21 at the were: adenoma 17%, adenocarcinoma 50%, sarcoma 33%. Both the serial-allografted tumor and DMBA-OC-1 were positive. Only two cases were positive for p53, N-myc and p21. p53 was detected in most of the adenomas. 4) The positive rate for both N-myc and p21 was higher than that for both p53 and p21. This was similar to other reports. The results suggested that p53 plays a role in precancerous tumor as a recessive oncogene. It was supposed that tumors with N-myc gene expression were had malignant growth characteristics. |
| Epstein-Barr virus (EBV) genomes and c-myc oncogene in oral Burkitt s lymphomas. | In addition to Burkitt s lymphomas, tentative evidence suggests the involvement of Epstein-Barr virus (EBV) in malignant lymphomas of T-cell origin. The c-myc proto-oncogene is strongly associated with the development of lymphoid neoplasias. In the present study, a series of 38 biopsies of oral lymphomas (29 Burkitt s lymphomas, 9 malignant lymphomas of other type) obtained from patients in Tanzania were studied using in situ hybridization (ISH) and polymerase chain reaction (PCR) for detection of EBV DNA and c-myc oncogene. In ISH applied on formalin-fixed, paraffin wax-embedded biopsies, the Bam HI W fragment of EBV DNA was used as the probe. Amplification of c-myc oncogene was studied by PCR with a primer set from Exon II area. As an internal standard beta-globin gene was simultaneously amplified. EBV DNA was disclosed by ISH in five Burkitt s lymphomas only. Using the PCR, 20 of the 29 cases (70%) of Burkitt s lymphomas showed amplification for EBV DNA. Of the other EBV-positive lymphomas, two were of the lymphocytic type (large non-cleaved cell), one histiocytic and one Burkitt s-like lymphoma. ALL EBV-positive cases found on the agarose gel were positive also with the dot blot, when hybridized with the 32P-labeled EBV Bam HI W-fragment probe. ALL lymphomas showed similar bands on the gel for c-myc and beta-globin indicating that no amplification of c-myc was present. |
| Induction of thymus-reestablishing lymphoid tumors by a murine leukemia virus carrying the avian v-myc oncogene. | Primary lymphoid tumor cells induced by wild type or recombinant Moloney murine leukemia viruses were inoculated intravenously into sublethally irradiated, syngeneic mice and compared for their ability to reestablish in the recipient thymus and spleen. Lymphoid tumors induced by one recombinant, M-MuLV(myc), containing the v-myc oncogene from the avian MC29 retrovirus consistently reestablished in the thymus and spleen of recipient mice. Since tumors in the recipient thymus and spleen could have arisen by infection of host cells, or could reflect an expansion of a minor subpopulation from the donor tumor, we verified the donor and clonal origin of these tumors by Southern blot analysis using a virus-specific probe. As few as 500 of these tumor cells could migrate to the thymus via the blood and flourish in that microenvironment. In contrast, the majority of tumors induced by wild type M-MuLV or two other M-MuLV recombinants not containing v-myc sequences, inefficiently reestablished in the thymus of recipient mice following i.v. inoculation, although splenic tumors developed. These tumors could, however, multiply within the recipient thymus when inoculated intrathymically. Thus, the inability of tumors induced by wild type M-MuLV or M-MuLV recombinants lacking v-myc to reestablish in the thymus following i.v. inoculation appears to reflect inefficient thymic homing rather than the ability to grow in the thymic microenvironment. Collectively, our data suggest that the thymic homing ability of M-MuLV(myc)-induced tumor cells is related to the presence of v-myc sequences or to the cell type transformed by M-MuLV(myc). Thus, we suggest that these cells may provide a useful model for studying how blood-borne metastatic cells, and possibly normal lymphocytes, enter the thymus by way of the microvasculature. |
| [Analysis of surface membrane antigens, cytoskeletal proteins and N-myc oncogene in pediatric solid malignant tumors, their diagnostic usefulness and relevant problems]. | Neuroblastoma (NB), primitive neuroectodermal tumor (PNET), Ewing s sarcoma and rhabdomyosarcoma (RMS) are solid malignant tumors in childhood. Microscopically these tumors are grouped as small-round-cell tumors, and a different diagnosis is sometimes difficult. Cell surface membrane antigen, cytoskeletal protein and N-myc amplification and over-expression were analyzed in these cell lines and tumor tissues for the accurate diagnosis. NB and PNET could be distinguished from Ewing s sarcoma and RMS by the panel of monoclonal antibodies against cell surface membrane antigens. The cytoskeletal protein analysis is useful for the diagnosis of RMS and leiomyosarcoma. Alpha-smooth muscle actin and/or desmin were demonstrated in the S-type (epithelial-like) cells in 3 NB cell lines, suggesting the differentiation pathway of NB into smooth muscle cells. N-myc amplification and over-expression were observed in NB cell lines as well as one RMS cell line. The occurrence of N-myc amplification and over-expression in the RMS cell line cautions us against using N-myc as a distinguishable marker for NB. |
| The N-myc proto-oncogene: developmental expression and in vivo site-directed mutagenesis. | The N-myc proto-oncogene is a member of the superfamily of transcription factors. In mammals, expression of this gene is predominantly restricted to the developing embryo. Specifically, the level of expression is highest in differentiating epithelial components of the embryo including those of the developing brain, kidney and lung. The observation that N-myc is expressed in differentiating but not terminally differentiated structures suggests that these genes may function in the maintenance of cells in a determined or proliferative state. Available evidence suggests that when N-myc expression is down-regulated, cells progress through differentiation and acquire their terminal phenotype. N-myc expression is also correlated with poor prognosis in a number of tumor systems. Since malignant tumors are usually poorly differentiated, this may reflect the role that N-myc plays in preventing differentiation of otherwise determined cells. In vivo site-directed mutagenesis by homologous recombination has made it possible to introduce a variety of mutations into mice. This review summarizes this technology and describes our initial results in the characterization of mice that lack a functional N-myc gene. Specifically, we have observed that in the absence of a functional N-myc gene, embryos arrest in midgestation. This body of work demonstrates that this gene is not required for normal development until the onset of organogenesis. |
| Amplification of the c-myc proto-oncogene in human chondrosarcoma. | The genomic organization of four oncogenes, i.e., c-myc, c-myb, c-Ha-ras, and c-fms, was investigated in fresh surgical specimens from 10 patients with cartilaginous tumors. Among nine chondrosarcomas, six were primary lesions and three local recurrences. The remaining case was a chondroblastoma. Amplification of the c-myc proto-oncogene was the sole abnormality detected in this series, occurring in two chondrosarcomas (four- and eight-fold). No other genetic alteration such as oncogene rearrangement was found. Nor was there any amplification of the other oncogenes studied. Both c-myc-amplified tumors were primary lesions and histologically classified as grade II; according to flow DNA cytometry, one was diploid and the other aneuploid. In our limited series, there was no overall relationship between c-myc amplification, on the one hand, and histologic subtype, malignancy grade, surgical stage, or ploidy level, on the other. Our study shows that amplification of the c-myc oncogene, presumed to be involved in the development of malignancy, is encountered in occasional human chondrosarcomas, however, without any relationship to other well-known features of this tumor entity. The clinical significance of this gene amplification remains to be established. |
| Oncoprotein (c-myc, c-erbB1, c-erbB2, c-fos) and suppressor gene product (p53) expression in squamous cell carcinomas of the lung. Clinical and biological correlations. | The expression of the protooncogene encoded proteins (c-erbB1, c-erb B2, c-myc, c-fos) and the suppressor gene product p53 was analyzed in 81 human squamous cell carcinomas of the lung and correlated with clinical parameters of the patients (patient survival, presence of metastases and tumor stage) and with biological characteristics of the tumors (tumor growth in nude mice, DNA-ploidy, proliferative activity, drug-resistance and P-glycoprotein or gluathione S-transferase expression). By means of immunohistochemistry, expression of c-erbB1 oncoprotein (EGF-receptor) was detected in 79% of the tumors, c-erbB2 (c-neu) proteins in 35%, c-myc proteins in 48%, c-fos proteins in 41%, and p53 in 43% of the tumors. Patients with c-erbB1 positive tumors had a poor prognosis (p = 0.021). In addition, these tumors were more frequently drug resistant (p = 0.0067). A significant correlation between the growth of the squamous lung carcinomas in nude mice and c-fos oncoprotein expression was demonstrated (p = 0.017). Therefore, EGF-receptor and c-fos products may serve as prognostic factors for the aggressiveness of squamous cell carcinomas of the lung and for the response of these tumors to chemotherapy. No significant correlation was found between the expression of the c-erbB1 or c-fos gene products and stage, metastasis and DNA-ploidy. In contrast to these results, no relationship was found between c-neu or c-myc gene products expression and any of the clinical or biological parameters examined. Aneuploid squamous cell carcinomas of the lung expressed p53 more frequently than diploid tumors (p = 0.027). However, there was no significant difference between p53 expression and stage, survival of patients, metastasis, growth of the tumors in nude mice, proliferative activity and drug-resistance of the tumors. |
| Preliminary study on oncogene product immunohistochemistry (c-erbB-2, c-myc, ras p21, EGFR) in breast pathology. | The expression of oncogene products related to cell growth (c-erbB-2, c-myc, ras p21, EGFR) was investigated in benign (15 cases) and malignant breast lesions (20 cases) by means of immunohistochemistry using the avidin-biotin-peroxidase technique with polyclonal and monoclonal antibodies. The aim of this study was to evaluate the relationship between the staining positivity and various morphological and biological features, such as tumour type, grading, hormone receptor status and cell kinetic parameters. In benign breast lesions, as expected, the kinetic parameters were low, both for Ki-67 and LI. ALL the specimens showed a diploid condition (the DI being equal to 1) and we found a limited degree of immunoreactivity for ALL the growth factors and oncogene products. In breast cancer we studied the distribution of immunohistochemical positivity for EGFR, c-erbB-2, c-myc, ras p21 and Ki-67, which was related to age, nodal status, ER and PgR receptor status, LI, DI and histopathological grading. A significant positive correlation was found both between ras p21 expression and nodal status and ER-ICA positivity. We observed a strong correlation between LI and Ki-67 and an inverse relation between Ki-67 and ER expression. These findings suggest the importance of studying the relationship between prognostic factors which may provide preoperative prediction in the biological behaviour of breast cancer, not only on biopsy specimens, but also on fine needle aspirates. |
| [The expression of C-myc oncogene in leukemia and its relationship to clinical symptoms]. | The expression of C-myc proto-oncogene were studied at the levels of protein in bone marrow cells obtained from patients with AML and CML. It was found that the expression of C-myc in florid AML and during blast phase of CML were much higher than that in remission of AML and in chronic phase of CML. In 7 cases of AML diagnosed for the first time, 2 cases with high C-myc expression had no remission after 3-6 months, while 5 with rare C-myc expression had remission after 3-6 months. This results suggest that the expression of C-myc proto-oncogene are possibly sensitive indicator of the prognosis of leukemia. |
| [Expression of c-myc and c-ki-ras oncogene in human pancreatic carcinoma]. | Using Northern blot technique, the oncogene expression in normal pancreatic tissue and human pancreatic carcinoma PC-2 and PC-3 cell lines was studied. Four oncogene probes (c-N-ras, c-ki-ras, c-myc and c-fos) consisting of recovered endonuclease digested fragments were nick translated. After hybridization and autoradiography, none of the four oncogenes was expressed in the normal human pancreatic tissue, but the human pancreatic carcinoma PC-2 and PC-3 cell lines expressed the c-myc and c-ki-ras genes. Their transcripts were 2.7 and 6.0 kb, respectively. expression of the other two oncogenes (c-N-ras and c-fos) was not detected. The results of this study together with those reported in the literature verify the fact that the expression of c-myc and c-ki-ras oncogenes may play a very important role in the development of human pancreatic carcinoma. |
| Transcriptional activation by the human c-Myc oncoprotein in yeast requires interaction with Max. | The c-myc protein (Myc) contains an amino-terminal transcriptional activation domain and a carboxy-terminal basic helix-loop-helix-leucine zipper (bHLH-Z) domain that directs dimerization of Myc with its partner, the max protein (Max), and promotes DNA binding to sites containing a CACGTG core consensus sequence. Despite these characteristics and the observation that Myc can modulate gene expression, a direct role for Myc or Max as transcription factors has never been demonstrated. Here we use Saccharomyces cerevisiae as an in vivo model system to show that the Myc protein is a sequence-specific transcriptional activator whose DNA binding is strictly dependent on dimerization with Max. Transactivation is mediated by the amino-terminal domain of Myc. We find that Max homodimers bind to the same DNA sequence as Myc+Max but that they fail to transactivate and thus can antagonize Myc+Max function. We also show that the Max HLH-Z domain has a higher affinity for the Myc HLH-Z domain than for itself, and suggest that the heterodimeric Myc+Max activator forms preferentially at equilibrium. |
| CCK, bombesin, and carbachol stimulate c-fos, c-jun, and c-myc oncogene expression in rat pancreatic acini. | To identify possible nuclear signals mediating long-term regulation of the pancreas by gastrointestinal hormones, the expression of c-fos, c-jun, and c-myc was investigated in rat pancreatic acini. Stimulation of the acini with cholecystokinin octapeptide (CCK-8, 100 pM), bombesin (10 nM), or carbachol (10 microM), but not gastrin (100 nM), secretin (100 nM), or vasoactive intestinal peptide (10 nM) induced an increase in oncogene mRNA expression. The percent increases of c-fos, c-jun, and c-myc mRNA were 207 +/- 40, 171 +/- 26, and 46 +/- 19 (n = 5) for CCK-8; 223 +/- 71, 159 +/- 31, and 43 +/- 21 (n = 5) for bombesin; and 125 +/- 51, 123 +/- 58, and 67 +/- 19 (n = 5) for carbachol, respectively. CCK-induced increases in oncogene mRNA were rapid and transient. c-fos and c-jun mRNA levels were increased after 30 min stimulation, peaked at 1 h, and returned to basal level in 2 h. Activation of c-myc was more prolonged with levels remaining elevated for at least 3 h. The effects of CCK-8 were concentration dependent. Detectable stimulation was seen at 10 pM; maximal stimulation occurred at 10 nM and was not affected by further increase in the concentration of CCK-8. JMV-180, a high-affinity site CCK receptor agonist and low-affinity site antagonist, alone did not stimulate c-fos mRNA expression but inhibited c-fos mRNA expression induced by CCK-8. These results suggest that the interaction between CCK and the low-affinity state of the CCK receptor is responsible for oncogene activation. |
| Amplification of the c-myc oncogene in radiation-induced rat skin tumors as a function of linear energy transfer and dose. | The c-myc oncogene was previously shown to be amplified in large, later-stage carcinomas of the rat skin induced by 0.8-MeV electrons. In a panel of 70 tumors induced by neon ions (45 keV/microns), c-myc amplification was rare, and in contrast to the data for tumors induced by low-linear-energy transfer (LET) (0.3 keV/microns) radiation, showed no correlation with tumor size, growth period, or time, but was associated with radiation dose. The tissue specificity for c-myc amplification seen in tumors induced by electrons was not seen in tumors induced by neon ions. These results suggest that quite distinct molecular mechanisms operate even in late stages of carcinogenesis that depend on the LET of the inducing radiation. Furthermore, the results suggest that c-myc amplification observed in tumors induced by low-LET radiation is not a general property of rat skin carcinomas, but is linked mechanistically to the inducing radiation, even though it is not detectable until many months after exposure and tumor appearance. |
| Analysis of c-myc oncogene in human esophageal carcinoma: immunohistochemistry, in situ hybridization and northern and Southern blot studies. | We have examined the c-myc gene expression and the gene organization in resected human esophageal squamous cell carcinomas, and in the adjacent normal esophageal mucosa from 20 patients undergoing radical surgery. Immunohistochemistry of p62c-myc was compared with that of proliferating cell nuclear antigen (PCNA) in order to examine the biologic significance of p62c-myc. Relative c-myc expression detected by Northern blot analysis ranged from 0.41 to 2.8, but the degree of c-myc expression did not correlate with other clinicopathological prognostic parameters. In sity hybridization localized the elevated c-myc mRNA expression to tumor cells and basal and parabasal cells of the adjacent normal mucosa. Immunohistochemistry showed altered localization of p62c-myc, i.e., both cytoplasmic and nuclear immunostaining in advanced carcinomas. c-myc immunoreactivity exhibited wider distribution compared with that of PCNA, a cell cycle related antigen, which may indicate induction of cell proliferation by p62c-myc. DNA hybridization showed mild amplification in one out of 17 tumors and no evidence of gene rearrangement. There was no distinct correlation between the results of Northern or Southern blot analysis and the results of in situ hybridization or immunohistochemistry. Gene alteration of the c-myc locus, as well as overexpression of the c-myc oncogene, appeared to be limited, and analysis of the c-myc gene yielded limited prognostic value in human esophageal carcinomas. |
| The c-MYC oncoprotein as a treatment target in cancer and other disorders of cell growth. | The c-MYC proto-oncogene is essential for cellular proliferation but, paradoxically, may also promote cell death. Deregulated expression of c-MYC is present in most, if not all, human cancers, and is associated with a poor prognosis. However, given that human tumours at diagnosis generally carry multiple genetic lesions that have accumulated during (although they are not necessarily essential for) tumour progression, it has proved difficult to attribute a specific role to any given single factor or indeed to explore the therapeutic potential of selectively mitigating their biological functions. Regulatable transgenic mouse models of oncogenesis have shed light on these issues, influenced our thinking about cancer and provided encouragement for the future development of cancer therapies based on targeting individual oncogenes such as c-MYC. Although still in its infancy, encouraging results have been reported using antisense oligodeoxynucleotide-based methods, as well as other approaches to interfere with MYC expression both in vitro and in vivo. |
| Cell transformation by the v-myc oncogene abrogates c-Myc/Max-mediated suppression of a C/EBP beta-dependent lipocalin gene. | Using differential hybridization techniques, a cDNA clone (Q83) was isolated that corresponds to a highly abundant mRNA in quail embryo fibroblasts transformed by the v-myc oncogene. The deduced 178 amino acid protein product of Q83 contains an N-terminal signal sequence and a lipocalin sequence motif, the hallmark of a family of secretory proteins binding and transporting small hydrophobic molecules of diverse biological function, including retinoids and steroids. The quail Q83 protein displays 87% sequence identity with a developmentally regulated chicken protein, termed p20K or Ch21. Cell transformation specifically by v-myc, but not by other oncogenic agents, induces high-level expression of Q83 mRNA and of the Q83 protein. Nucleotide sequence analysis and transcriptional mapping revealed that the Q83 gene encompasses seven exons with the coding region confined to exons 1 through 6. The promoter region contains consensus binding sites for the transcriptional regulators Myc and C/EBP beta. Transcriptional activation of Q83 is principally dependent on C/EBP beta, but is blocked in normal cells by the endogenous c-Myc/Max/Mad transcription factor network. In v-myc-transformed cells, high-level expression of the v-Myc protein and formation of highly stable v-Myc/Max heterodimers leads to abrogation of Q83 gene suppression and activation by C/EBP beta. A 157 amino acid residue recombinant protein representing the secreted form of Q83 was used for structure determination by nuclear magnetic resonance spectroscopy. Q83 folds into a single globular domain of the lipocalin-type. The central part consists of an eight-stranded up-and-down beta-barrel core flanked by an N-terminal 3(10)-like helix and a C-terminal alpha-helix. The orientation of the C-terminal alpha-helix is partially determined by a disulfide bridge between Cys59 and Cys152. The three-dimensional structure determination of the Q83 protein will facilitate the identification of its authentic ligand and the assessment of its biological function, including the putative role in myc-induced cell transformation. |
| An integrated database of genes responsive to the Myc oncogenic transcription factor: identification of direct genomic targets. | We report a database of genes responsive to the Myc oncogenic transcription factor. The database Myc Target Gene prioritizes candidate target genes according to experimental evidence and clusters responsive genes into functional groups. We coupled the prioritization of target genes with phylogenetic sequence comparisons to predict c-Myc target binding sites, which are in turn validated by chromatin immunoprecipitation assays. This database is essential for the understanding of the genetic regulatory networks underlying the genesis of cancers. |
| N-myc oncogene expression in neuroblastoma is driven by Sp1 and Sp3. | Regulation of N-myc oncogene expression is an important determinant of the biological behavior of neuroblastoma. The N-myc promoter contains several potential binding sites for transcription factors of the Sp1 family. mutation of a CT-box motif contained within a 26 bp region required for N-myc downregulation by retinoic acid decreased basal transcriptional activity and altered DNA-protein interactions of the promoter, while mutations flanking this motif did neither. On super-shift, this region was shown to recruit Sp1 and Sp3 transcription factor proteins, while a functionally significant CT-box mutation resulted in their replacement by NF-1 transcription factor. Lysates from Drosophila S2 cells expressing exogenous Sp1, Sp3, and NF-1 proteins were able to partially mimic gel shift complexes seen with neuroblastoma nuclear extract and either wild type or mutant probes. Transient transfections of S2 cells showed that both individually and together, Sp1 and Sp3 were able to trans-activate a wild type CT-box-driven luciferase reporter construct in a dose-dependent manner. Transfection of the wild type but not mutant CT-box oligonucleotide was able to decrease endogenous N-myc expression in neuroblastoma cells. Together these results suggest that the CT-box element serves a critically functional role, and in the basal state, allows for N-myc trans-activation by Sp1 and Sp3. Moreover when mutated, the CT-box may still function as a binding motif for alternate transcription factors such as NF-1 that can allow persistent N-myc expression. |
| Expressions of vascular endothelial growth factor in cirrhotic tissues and their relations to proto-oncogene c-fos, c-myc. | OBJECTIVE: To investigate the significance of vascular endothelial growth factor (VEGF) in the pathogenesis of liver cirrhosis and the correlation between VEGF and proto-oncogene c-fos and c-myc in cirrhotic liver. METHODS: The proteins of VEGF, c-fos, and c-myc were identified immunohistochemically in each tissue section of 53 cases of liver cirrhosis. The correlations between VEGF, c-fos and c-myc were analyzed. The levels of VEGF protein in different Child gradings were also compared. RESULTS: The proteins of VEGF were more highly expressed in Child A and B patients than in Child C patients and controls. The expressions of both c-fos and c-myc were not statistically significant between VEGF positive and negative patients. CONCLUSIONS: The protein level of VEGF can reflect the compensation status of cirrhosis patients and may act as an anti-cirrhotic factor. The proto-oncogene c-fos, c-myc and VEGF may have different mechanisms in the course of cirrhosis or hepatic tumorigenesis. |
| The coexistence of ERBB2, INT2, and CMYC oncogene amplifications and PTEN gene mutations in endometrial carcinoma. | PURPOSE: To evaluate the frequency of ERBB2, INT2 and CMYC oncogene amplifications and their coexistence with PTEN gene mutations in endometrial carcinomas. METHODS: In 54 endometrial carcinomas amplification of ERBB2, INT2 and CMYC was determined using differential polymerase chain reaction (dPCR), and mutations in ALL exons of PTEN were investigated by PCR-SSCP and direct sequencing methods. Results were correlated with clinicopathological features of tumors. RESULTS: In 31 out of 54 endometrial carcinomas (57.4%) genetic defects were found within the examined genes. Of ALL identified defects, mutations in PTEN and the amplification of CMYC were most frequent (26/54-48.1% and 10/54-18.5%, respectively). INT2 was amplified in 5.6% (3/54) of cases. In no case did we find ERBB2 amplification. In 77.4% (24/31) of cases only one gene was damaged. Of these, 20 cases showed only PTEN mutations, three cases only CMYC, and one case only INT2 amplification. In another seven out of 31 tumors (22.5%) defects in two or three genes coexisted simultaneously: PTEN and CMYC in five cases, CMYC and INT2 in one case, and PTEN, CMYC, and INT2 in one case. We found a number of interesting relations between the location of mutations within the PTEN sequence and the presence (+) or lack (-) of CMYC amplification. In the PTEN+CMYC- tumors the PTEN mutations were most frequent in exons 1-5, and less frequent in exons 7-8 (66.7% and 33.3%, respectively). In contrast, in the PTEN+CMYC+ carcinomas the PTEN mutations were found mainly in exons 7-8 (85.7%). PTEN mutations were equally frequent in both early and more advanced endometrial carcinomas. The CMYC amplification, however, was more frequent in advanced as compared to early tumors, although this difference did not reach statistical significance. CONCLUSIONS: Our data suggest that differences in the presence of genetic defects may reflect the different molecular pathways of endometrial carcinogenesis. These data also suggest that location of intragenic PTEN mutations and their coexistence with the CMYC amplification may play a crucial part in the development of various subtypes of endometrial carcinoma, but this preliminary suggestion requires further research. |
| Early overexpression of Cdk4 and possible role of KRF and c-myc in chewing tobacco mediated oral cancer development. | Cyclin Dependent Kinase 4 (Cdk4) is known to be an oncogene and is involved in various cancers. It is over-expressed either by genomic amplification or by c-myc dependent manner. Our preliminary results indicate high expression of protein and mRNA as well as absence of genomic amplification in early oral cancer development. One transcription factor (TF) binding site has been detected from -281 to -298 by using DNase I foot printing and confirmed by electrophoretic mobility shift assay. This is a novel DNA sequence. The recruitment of this new TF as well as the earlier reported c-myc was analyzed in various stage of oral cancer development. The binding activity of the new TF is present in normal tissues and observed more in initial stage samples whereas c-myc expression was absent in normal and more in higher stage of oral cancer development. On the basis of these findings we propose the new TF to be a possible CdK4 Regulating Factor (KRF). This might maintain the basal level transcription in normal and activates Cdk4 transcription in the initial stage, where as the same role is carried by c-myc in higher stage of chewing tobacco mediated oral cancer development. |
| Methylation status of c-myc oncogene in leukemic cells: hypomethylation in acute leukemia derived from myelodysplastic syndromes. | DNA methylation plays an important role in gene regulation. We have analyzed the methylation status of CCGG sites in and around the human proto-oncogene c-myc in blood cells from patients with acute and chronic leukemias and with myelodysplastic syndromes using restriction endonucleases. The 5 region of c-myc was unequivocally hypomethylated in ALL the 58 specimens studied, including 10 from normal bone marrow and 1 from human placenta. In contrast, the 3 region was hypermethylated in a great majority of cases. However, this region was hypomethylated in 1 of 12 patients with de novo acute myeloid leukemia, 1 of 6 patients with chronic myeloid leukemia, and 4 of 5 patients with acute myeloid leukemia preceded by a documented stage of myelodysplastic syndromes. One possible mechanism for the 3 region of c-myc to have remained hypomethylated may be a "delayed methylation" during transforming events toward a more aggressive stage of the disease, but the precise mechanism is unknown. |
| Prognostic value of N-myc oncogene amplification and S-100 protein positivity in children with neuroblastic tumors. | Data on 43 neuroblastic tumors (30 neuroblastomas and 13 ganglioneuroblastomas) obtained from 22 untreated and 21 pretreated children, were analyzed to determine the correlation between N-myc oncogene amplification and immunohistochemically identified S-100 protein positivity. Sixteen patients in whom the tumor showed significant amplification of N-myc (more than ten copies) died, irrespective of S-100 protein positivity and other conventional factors. Among 27 patients with low amplification of N-myc (less than ten copies), the estimated progression-free survival for those whose tumors had numerous S-100 protein-positive cells (P group), and few or no positive cells (N group) was 75% and 17%, respectively (p < 0.0001). Thus, in addition to N-myc oncogene amplification as a reliable indicator of outcome, S-100 protein positivity should be useful for prediction of prognosis in children with neuroblastic tumors showing low amplification of N-myc. Correlations among these results and other clinical factors are briefly discussed. |
| Lack of allelic preference in amplification and loss of the c-myc oncogene in methylcholanthrene-induced mouse sarcomas. | Sarcomas were induced in F1 mice between C57BL/6N and C3H/He strains by subcutaneous injection of methylcholanthrene. The c-myc oncogene was found to be amplified in 16 cases among 43 sarcomas of C57BL/6N x C3H/He mice and 1 case among 5 sarcomas of the reciprocal cross. The origin of the amplified allele was determined by the polymerase chain reaction single strand conformation polymorphism analysis. Among the 17 sarcomas, only one had both of the alleles amplified. The rest of the tumors carried the amplified c-myc allele coming either from C57BL/6N (9 cases) or from C3H/He (8 cases). These results indicate that the c-myc allele is amplified randomly in methylcholanthrene-induced mouse sarcomas irrespective of its origin, such as paternal or maternal allele and C57BL/6N or C3H/He allele. In addition to these changes, the unamplified c-myc oncogene was found to be lost in 12 cases out of the 17 sarcomas with the amplification. |
| C-myc oncoprotein expression and gene amplification in apocrine metaplasia and apocrine change within sclerosing adenosis of the breast. | Overexpression and/or amplification of c-myc oncogene are known to occur in human breast carcinomas, particularly those of high grade. Apocrine metaplasia (APM) is a common finding within fibrocystic change, and in some cases appears to be associated with an elevated risk of subsequent breast cancer. It has been suggested that apocrine metaplasia within sclerosing adenosis of the breast, also called apocrine adenosis (AA), has a premalignant potential. Little, however, is known about cellular level genetic alterations in either APM or AA of the breast. Because of this, c-myc expression and amplification in APM and AA were studied. Fluorescence in situ hybridisation (FISH) is a methodological approach to detecting these genetic alterations. In this study, APM and AA were studied immunohistochemically to detect c-myc oncoprotein expression, and FISH was employed using a DNA probe for the c-myc gene in archival tissue sections of cases of APM and AA of the breast. Nuclear immunostaining for c-myc was seen in ALL APM and AA cases studied, but amplification of the c-myc gene was not seen in any cases with APM or AA. The results of this study indicate that c-myc overexpression appears to occur early in breast oncogenesis. Amplification of the c-myc gene does not occur in APM or AA of the breast, however, suggesting that this particular genetic alteration constitutes a late event in the pathogenesis of breast carcinomas. |
| A signalling pathway controlling c-Myc degradation that impacts oncogenic transformation of human cells. | The stability of c-Myc is regulated by multiple Ras effector pathways. Phosphorylation at Ser 62 stabilizes c-Myc, whereas subsequent phosphorylation at Thr 58 is required for its degradation. Here we show that Ser 62 is dephosphorylated by protein phosphatase 2A (PP2A) before ubiquitination of c-Myc, and that PP2A activity is regulated by the Pin1 prolyl isomerase. Furthermore, the absence of Pin1 or inhibition of PP2A stabilizes c-Myc. A stable c-Myc(T58A) mutant that cannot bind Pin1 or be dephosphorylated by PP2A replaces SV40 small T antigen in human cell transformation and tumorigenesis assays. Therefore, small T antigen, which inactivates PP2A, exerts its oncogenic potential by preventing dephosphorylation of c-Myc, resulting in c-Myc stabilization. Thus, Ras-dependent signalling cascades ensure transient and self-limiting accumulation of c-Myc, disruption of which contributes to human cell oncogenesis. |
| Cell type-specific conditional regulation of the c-myc proto-oncogene by combining Cre/loxP recombination and tamoxifen-mediated activation. | Development of inducible genetic switches for in vivo use with transgenic mice has revolutionized many areas in modern molecular biology. Combining two techniques, Cre/loxP-based genetic recombination and ligand-dependent activation of a chimeric protein, we generated transgenic mice which allow for the spatiotemporal control of expression and of activity of the proto-oncogene c-myc. To these ends, the gene encoding the tamoxifen-inducible c-mycER(T) fusion protein (mycER(T)) was inserted in the ubiquitously active ROSA 26 gene locus by gene targeting. In the resulting ROSAMER allele, generalized transcription of the mycER(T) gene is prevented by a preceding transcriptional stop sequence which is flanked by loxP sites. Crosses of ROSAMER transgenic mice with Mox2 cre transgenic mice revealed tight control of mycER(T) transcription in various tissues unless the transcriptional stop sequence was removed by cre-mediated excision. Furthermore, we were able to demonstrate tamoxifen-dependent activation of the MycER(T) protein in embryonic fibroblasts derived from such mice. As a proof of principle, we demonstrate that primary neural crest cultures established from ROSAMER mice maintain their proliferative capacity in a 4-OHT-dependent manner. Furthermore, we demonstrate that such neural crest cells retain their differentiation potential as shown by expression of NF 160, a marker of neuronal differentiation upon 4-OHT withdrawal. The transgenic mice produced may thus be valuable tools for studying the cell type-specific effects of c-myc activity in development and disease. |
| PINning down the c-Myc oncoprotein. | We have previously shown that mammary epithelial specific expression of the activated erbB2 allele under the control of the endogenous promoter in mice resulted in the formation of mammary adenocarcinomas. To assess whether mammary tumorigenesis in this model is influenced by the developmental window of expression, we generated mice that expressed the activated erbB2 allele in the germ line. Although we were able to derive viable transgenic mice that were heterozygous for the activated erbB2 allele, mice homozygous for the activated erbB2 allele died at 12.5 days of embryogenesis. These two separate lines of mice expressed activated erbB2 at equal levels in the mammary gland. Surprisingly, unlike the tumor-prone mice expressing activated ErbB2 in the mammary epithelium, mice with the germ-line erbB2 allele failed to develop tumors. Gene expression analysis of the preneoplastic mammary glands revealed that there were a number of luminal epithelial markers expressed at higher levels in the tumor-prone mice. These data suggest either an expansion of a susceptible population in the tumor-prone mice or the loss of this population in the tumor-resistant mice. Taken together, these observations suggest that the temporal pattern of expression of activated ErbB2 is a critical determinant in mammary tumorigenesis. These results strongly suggest that there are feedback mechanisms present that can compensate for the expression of a potent oncogene. |
| C-myc oncogene expression in ocular melanomas. | We have investigated the expression of c-myc in 24 ocular melanomas by immunohistochemistry, using two monoclonal antibodies raised against a mid-sequence portion of the c-myc product (6E10) and against the C-terminus (9E10). The results were compared with other putative prognostic factors, including tumour size, cell type, proliferation index (determined by flow cytometry), and ploidy, as well as immunohistochemical staining for HMB-45 and S-100 antigens. Staining, often focal, for c-myc was found in both the nucleus and the cytoplasm of a proportion of the cells in most tumours studied. Total cell staining for myc protein correlated with proliferative index in diploid tumours; seven out of nine aneuploid and mixed aneuploid/diploid cells showed strong staining in at least one cellular compartment. A positive correlation with myc expression was also found for HMB-45 staining, but not for cell type or staining for S-100. The results support the hypothesis that myc protein is involved in cellular proliferation in uveal melanomas and indicate that immunohistochemistry for myc antigen may be a useful prognostic marker in these tumours. |
| N-myc transcription molecule and oncoprotein. | N-myc has emerged as a member of a transcriptional regulatory network which impinges directly on the machinery of cell growth and proliferation. Critical during neural crest embryogenesis, N-myc is rapidly down-regulated as tissues become terminally differentiated and growth-arrested. The involvement of N-myc in these fundamental cellular processes necessitates an intricate strategy for its regulation, which is still being elucidated. Deregulated N-myc over-expression has clear transforming ability in vitro and in vivo. The transcriptional target genes responsible for this activity are beginning to be unravelled. |
| Correlation of amplification and overexpression of the c-myc oncogene in high-grade breast cancer: FISH, in situ hybridisation and immunohistochemical analyses. | In this study, we analysed gene amplification, RNA expression and protein expression of the c-myc gene on archival tissue specimens of high-grade human breast cancer, using fluorescent in situ hybridisation (FISH), nonradioactive in situ hybridisation and immunohistochemistry. The specific question that we addressed was whether expression of c-Myc mRNA and protein were correlated with its gene copy amplification, as determined by FISH. Although c-Myc is one of the most commonly amplified oncogenes in human breast cancer, few studies have utilised in situ approaches to directly analyse the gene copy amplification, RNA transcription and protein expression on human breast tumour tissue sections. We now report that by using the sensitive FISH technique, a high proportion (70%) of high-grade breast carcinoma were amplified for the c-myc gene, irrespective of status of the oestrogen receptor. However, the level of amplification was low, ranging between one and four copies of gene gains, and the majority (84%) of the cases with this gene amplification gained only one to two copies. Approximately 92% of the cases were positive for c-myc RNA transcription, and essentially ALL demonstrated c-myc protein expression. In fact, a wide range of expression levels were detected. Statistically significant correlations were identified among the gene amplification indices, the RNA expression scores and protein expression scores. c-myc gene amplification, as detected by FISH, was significantly associated with expression of its mRNA, as measured by the intensity of in situ hybridisation in invasive cells (P=0.0067), and by the percentage of invasive cells positive for mRNA expression (P=0.0006). c-myc gene amplification was also correlated with the percentage of tumour cells which expressed high levels of its protein, as detected by immunohistochemistry in invasive cells (P=0.0016). Thus, although multiple mechanisms are known to regulate normal and aberrent expression of c-myc, in this study, where in situ methodologies were used to evaluate high-grade human breast cancers, gene amplification of c-myc appears to play a key role in regulating expression of its mRNA and protein. |
| Role of the c-myc proto-oncogene in the proliferation of hereditary gingival fibromatosis fibroblasts. | BACKGROUND: Hereditary gingival fibromatosis (HGF) is a fibrotic gingival enlargement. In previous work, HGF fibroblasts grew faster and produced more collagen and fibronectin (FN) than normal gingival (GN) fibroblasts. HGF FN and collagen production, but not proliferation, were under autocrine transforming growth factor (TGF)-beta control, suggesting other means of activation of HGF proliferation. Elevated/prolonged expression of the proto-oncogene c-myc is implicated in disregulation of cell growth. The objectives of this study were to: 1) determine if c-myc expression is abnormal in quiescent and serum-stimulated HGF and GN fibroblasts and 2) determine the relationship between c-myc expression and fibroblast proliferation using a c-myc antisense oligonucleotide (ODN). METHODS: Proliferation was determined by enzyme-linked immunosorbent assay (ELISA), measuring incorporation of bromodeoxyuridine into DNA. expression of c-myc was determined by quantitative polymerase chain reaction (PCR), using incorporation of fluorescent dCTP and detection via electrophoresis. RESULTS: Proliferation was minimal until 24 hours or more after serum stimulation, when HGF proliferation was greater than GN (P < or = 0.02). ALL cells expressed c-myc mRNA at quiescence and > or = 1 hour after serum stimulation. expression of c-myc in quiescent HGF fibroblasts was elevated, and it peaked and remained higher after serum stimulation than in GN cells. Proliferation of an HGF cell line was inhibited by 4 microM c-myc antisense ODN (14% decrease; P < or = 0.006) and 8 microM c-myc antisense ODN (approximately 80% decrease; P < or = 0.0001), but generally not by c-myc sense ODN. This effect was reversed by hybridizing the c-myc antisense and sense ODNs (P = 0.007). CONCLUSION: Data suggest that elevated proliferation of an HGF fibroblast cell line is related to elevated c-myc expression. |
| Repression of the human immunodeficiency virus type-1 long terminal repeat by the c-Myc oncoprotein. | The effect of trans-acting factors on cis-acting DNA elements on the HIV-1 promoter are the principal determinant regulating transcriptional activation and repression. Host factors that limit viral replication can contribute to the emergence and maintenance of proviral reservoirs. The current paradigm is that this sub-population of latently infected cells confers a biological advantage to the virus by facilitating evasion of immunologic responses and therapeutic strategies resulting in life-long and persistent infection. In this report, we show that ectopic expression of the nuclear phosphoprotein, c-Myc can inhibit HIV-1 gene expression and virus production in CD4+ T-lymphocytes. The effect exerted does not appear to involve other known functions of c-Myc such as proliferation, or apoptosis. The mechanism does implicate c-Myc in a direct role. We have found evidence that c-Myc can specifically recognize the HIV-1 initiator element surrounding the start site of transcription and linker scanning mutagenesis experiments confirmed a loss of c-Myc-mediated repression in the absence of this region. Moreover, we show that c-Myc can interact with the initiator binding proteins YY-1 and LBP-1 and can cooperate with these factors to synergistically repress HIV-1 LTR transcription. Taken together, these results indicate that c-Myc is an important regulator of HIV-1 transcription that potentially contributes to the latent proviral state. |
| The interplay between c-Myc oncogene expression and circulating vascular endothelial growth factor (sVEGF), its antagonist receptor, soluble Flt-1 in diffuse large B cell lymphoma (DLBCL): relationship to patient outcome. | The c-Myc is a ubiquitous and multifunctional oncogene. Recently, data obtained from experimental study suggests the involvement of c-Myc oncogene in angiogenesis. In the present study the interrelation of sVEGF, sFlt-1 concentrations and c-Myc oncoprotein expression at diagnosis were assessed in DLBCL and their impact on the patient outcome. Forty-five DLBCL patients beside 10 normal controls were included. C-Myc oncoprotein was assessed by immunohistochemistry. SVEGF and sFlt-1 were determined by enzyme linked immunosorbent assay. C-Myc over-expression was detected in 66.6% of DLBCL. The DLBCL patient group with positive c-Myc over-expression showed significantly higher sVEGF and significantly decreased sFlt-1 as compared to group with negative c-Myc over-expression (P = 0.000 and P = 0.009 respectively). SVEGF was positively correlated to sLDH and s.beta2 microglobulin (r = 0.6, P = 0.000, r = 0.69, P = 0.000) respectively. On the other hand sFlt-1 was negatively correlated to sLDH and s.beta2 microglobulin (r - 0.25, P > 0.05, r - 0.49, P = 0.001) respectively. The non-living DLBCL group showed significantly higher expression of c-Myc, higher concentration of sVEGF and lower concentration in sFlt-1 level as compared to the living group (P = 0.000 for all). Multivariate analysis revealed that c-Myc over-expression; high sVEGF and normal sFlt-1 levels at diagnosis had independent adverse influence on survival (relative risk: 17.9, 35.7, 29.3, 2.63; P < 0.0001, P < 0.0001, and P = 0.03 respectively) IN CONCLUSION: C-Myc over-expression significantly associated with high sVEGF and normal sFlt-1 level in DLBCL patients, suggesting a complex interrelationship between c-Myc oncogene expression and angiogenic regulators. C-Myc over-expression, high sVEGF and normal sFLt-1 levels at diagnosis had an independent adverse influence on survival in DLBCL patients and considered bad prognostic markers. |
| Absence of p21WAF1 cooperates with c-myc in bypassing Ras-induced senescence and enhances oncogenic cooperation. | The absence of p21waf1 combined with an ectopic expression of c-myc prevents ras-induced senescence in mouse embryo fibroblasts. Extension of lifespan after c-myc transduction into p21-null cells was followed at later passages by apoptosis of a large fraction of c-myc-overexpressing p21-null cells. This apoptotic effect could be overridden by inactivation of the p53 tumor suppressor or oncogenic ras expression. Ras-induced inhibition of apoptosis is mediated by PI3K activation. These results suggest a functional relationship between ras and myc that may explain their oncogenic cooperation. The number of foci formed by myc+ras increased cooperatively in the absence of p21waf1. Thus, the reciprocal cooperation between myc and ras in a p21-null background during cellular immortalization lead to increased oncogenic cooperation between ras and myc. |
| Tobacco-specific nitrosamine 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone promotes functional cooperation of Bcl2 and c-Myc through phosphorylation in regulating cell survival and proliferation. | Nitrosamine 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) is formed by nitrosation of nicotine and has been identified as the most potent carcinogen contained in cigarette smoke. NNK significantly contributes to smoking-related lung cancer, but the molecular mechanism remains enigmatic. Bcl2 and c-Myc are two major oncogenic proteins that cooperatively promote tumor development. We report here that NNK simultaneously stimulates Bcl2 phosphorylation exclusively at Ser(70) and c-Myc at Thr(58) and Ser(62) through activation of both ERK1/2 and PKCalpha, which is required for NNK-induced survival and proliferation of human lung cancer cells. Treatment of cells with staurosporine or PD98059 blocks both Bcl2 and c-Myc phosphorylation and results in suppression of NNK-induced proliferation. Specific depletion of c-Myc expression by RNA interference retards G(1)/S cell cycle transition and blocks NNK-induced cell proliferation. Phosphorylation of Bcl2 at Ser(70) promotes a direct interaction between Bcl2 and c-Myc in the nucleus and on the outer mitochondrial membrane that significantly enhances the half-life of the c-Myc protein. Thus, NNK-induced functional cooperation of Bcl2 and c-Myc in promoting cell survival and proliferation may occur in a novel mechanism involving their phosphorylation, which may lead to development of human lung cancer and/or chemoresistance. |
| Function of the c-Myc oncoprotein. | The c-Myc protein, the product of the c-myc proto-oncogene, is a nuclear phosphoprotein with DNA binding properties. Deregulated c-myc expression participates in the development of experimentally induced tumors, and its expression appears to be abnormal in many naturally occurring malignancies. Although the precise molecular mechanism of c-Myc activity in oncogenesis and in normal cell proliferation is unknown, recent advances have uncovered a series of molecular and cellular properties of c-Myc. These properties include nuclear localization, transcriptional activation, oligomerization nonspecific and specific DNA binding. Recently, the c-Myc protein was found to heterodimerize with Max, a protein that cooperates with c-Myc to bind specifically to a core DNA sequence, CAC(G/A)TG. These characteristics suggest that c-Myc participates in the regulation of gene transcription in normal and neoplastic cells. |
| c-myc and bcl-2 Expression in supraglottic squamous cell carcinoma of the larynx. | OBJECTIVES: To evaluate the expression and prognostic significance of c-myc and bcl-2 oncogenes in squamous cell carcinoma (SCC) of the supraglottic larynx. Study design A retrospective cohort study of 61 patients who underwent surgery for SCC of the supraglottic larynx. Gender, age, TNM status, operative procedure, recurrences, and disease-free survival periods were recorded. METHODS: Hematoxylin and eosin-stained sections were reexamined for grade, invasion of tumor margins, lymphovascular invasion, lymphocyte infiltration, and perineural invasion. Immunohistochemical detection of c-myc and bcl-2 oncogenes was performed using monoclonal antibodies. RESULTS: No correlation was observed between either c-myc or bcl-2 and the clinical and histopathologic parameters. Survival analysis revealed no correlation of either c-myc (P = 0.88) or bcl-2 (P = 0.85) with the disease-free survival. c-myc expression was found to be significantly higher in bcl-2-positive patients (P = 0.001). CONCLUSION: Neither c-myc nor bcl-2 had shown to be prognostic factor for laryngeal carcinoma in this present study. Correlation between c-myc and bcl-2 supports the experimental observations of cooperative action between these two genes in tumorigenesis. |
| Expression of c-myc oncoprotein in laryngeal squamous cell carcinoma. | OBJECTIVE: c-myc seems to play a pivotal role in normal growth and development as well in cellular transformation and carcinogenesis. Overexpression of the c-myc oncogene has been observed in many hematopoetic and solid tumors. The role of c-myc protein in squamous cell carcinoma of the head and neck in general and laryngeal squamous cell carcinomas (LSCCs) in particular is far from clear. The aim of this study was to evaluate the relations between the level of c-myc protein in LSCCs and the clinicopathological data of patients, DNA ploidy and the SG2M phase index (PI). MATERIAL AND METHODS: The c-myc protein level was evaluated immunohistochemically in tumor specimens from 50 patients with LSCC. The DNA index and SG2M PI were determined by means of flow cytometry. RESULTS: We found c-myc protein in 34 (68%) tumors. expression of c-myc protein was demonstrated to be frequent in nonmetastatic cases (p = 0.016). There was no association between c-myc protein level and age, primary tumor size, histological grading or type of cancer. In 13 (26%) cases we observed DNA aneuploid tumors. The mean value of the SG2M PI was 22.5%. expression of c-myc protein was not related to SG2M PI or DNA ploidy. CONCLUSIONS: We have shown that c-myc oncoprotein may be involved in the genesis of LSCC. Our findings suggest that the detectability of c-myc protein is associated with a lower metastatic potential. The c-myc oncogene is probably not as important in laryngeal cancers compared to other cancers. Further investigations must be performed to establish the value of predicting nodal metastases in LSCC. |
| Transcriptional activation of c-myc proto-oncogene by WT1 protein. | The Wilms tumor 1 gene (WT1) plays an essential role in urogenital development and malignancy. Through DNA binding, WT1 can either enhance or repress transcription depending on the context of the DNA-binding sites or the cell type in which it is expressed. WT1 is overexpressed in a variety of human cancers, including leukemia and breast cancer; in these diseases, the expression of WT1 is associated with a poor prognosis. To determine how WT1 affects c-myc expression in the context of breast cancer cells, we have examined the ability of both endogenous and exogenous WT1 proteins in breast cancer cells to bind to the c-myc promoter in vivo. Using c-myc-promoter-driven luciferase constructs, we found that different forms of WT1 could enhance the expression of the reporter. Unlike other studies where WT1 is reported to be a negative regulator of c-myc, we found that both the - and + KTS forms of WT1 could act to enhance c-myc expression, depending on the cell type. The WT1-binding site near the second major transcription start site of the c-myc promoter was confirmed to be involved in upregulation of human c-myc by WT1. Finally, we demonstrated that overexpression of WT1 induced a significant increase in the abundance of endogenous c-myc protein in breast cancer cells, consistent with the upregulation of c-myc transcription following WT1 induction. These observations strongly argue that in the case of breast cancer WT1 is functioning as an oncogene in part by stimulating the expression of c-myc. |
| NMR-driven discovery of benzoylanthranilic acid inhibitors of far upstream element binding protein binding to the human oncogene c-myc promoter. | Reversal of aberrant gene expression that is induced by the proto-oncogene c-myc is likely to be effective for treating a variety of tumors that rely on this pathway for growth. One strategy to down-regulate the c-myc pathway is to target transcription factors that regulate its own expression. A host of proteins act in coordination to regulate c-myc expression and any one of them are theoretical targets for small-molecule therapy. Experimentally, it has been shown that the far upstream element (FUSE) binding protein (FBP) is essential for c-myc expression, and reductions in FBP levels both reduce c-myc expression and correlate with slower cell growth. FBP binds to ssDNA by capturing exposed DNA bases in a hydrophobic pocket. This suggests that a small molecule could be designed to occupy this pocket and inhibit FBP function. Using a variety of screening methodologies, we have identified ligands that bind to the DNA binding pockets of the KH domains of FBP. Gel shift analyses using full length FBP and a related transcription factor confirm that a small-molecule lead compound inhibits DNA binding in a specific manner. The benzoylanthranilic acid compounds described here represent leads in the design of FBP inhibitors that can serve as useful tools in the study of c-myc regulation and in the development of therapeutics that target the c-myc pathway. |
| Hemopoietic neoplasms in lethally irradiated mice repopulated with bone marrow cells carrying the human c-myc oncogene: a repopulation assay. | Bone marrow (BM) cells from two transgenic mice carrying the human c-myc oncogene were separately harvested, and each sample was injected into 25 lethally irradiated mice. We observed the contribution of the myc gene to the occurrence of hemopoietic neoplasms in the BM-repopulated mice, establishing a new experimental system for analyzing oncogene expression in the hemopoietic system in vivo. The hybrid gene that was transferred into the original transgenic mice was a combination of the human c-myc gene with a regulatory unit consisting of a murine immunoglobulin-heavy chain with an SV40 early-T promoter gene (Ig/Tp-myc). Among the transgenic lines, the tested BM cells were chosen from two lines that had been low-prone in leukemia; in these lines hemopoietic neoplasms did not appear for greater than or equal 200 days after birth. Lethally irradiated controls received BM cells from litters of transgenic mice that did not carry c-myc. The lifetime incidence of hemopoietic neoplasms was 94% and 91% in the two groups of mice repopulated with myc+ BM. By contrast, only 15% of control mice with myc- BM developed hemopoietic lesions. The incidence of hemopoietic malignancies combined with nonthymic lymphomas and myeloma cases (88% and 65%) was higher in the repopulated mice than the incidence of pre-B cell lymphomas in the original transgenic lines (56%). Thirty-two of the 40 myc+ mice that were examined showed the presence of the transferred gene in either the normal hemopoietic tissue or in the hemopoietic neoplasm. Furthermore, 18 of 22 hemopoietic neoplasms studied by Northern hybridization expressed mRNA from the transgenic gene; in other four neoplasms, expression was weak or absent. |
| Deregulated expression of the Myc cellular oncogene drives development of mouse "Burkitt-like" lymphomas from naive B cells. | Chromosomal translocations juxtaposing immunoglobulin (Ig) and MYC genes are the hallmarks of human Burkitt lymphoma (BL), with deregulated MYC expression being a critical factor in pathogenesis. By inserting an intact mouse Myc gene into the mouse genome, proximal to the Ig enhancer Emu, the effect of a precise mimic of the major t(8;14) translocation of human endemic BL (eBL) could be investigated. Knock-in mice developed IgM-positive B-cell tumors, with most being typical of eBL by histology and immunophenotype, including expression of the germinal center (GC)-associated protein, BCL6. Unlike eBL, however, analysis of Ig V(H) sequences revealed no significant level of somatic mutation. Thus, constitutive expression of Myc in the knock-in mice is apparently able to induce "Burkitt-like" lymphomas before antigen stimulation and formation of a GC. In contrast, human eBL development occurs in a GC or post-GC site with a likely contribution to pathogenesis from Epstein-Barr virus (EBV) and other epigenetic factors. |
| Acquisition of responsiveness to chemical carcinogens by rodent embryo fibroblasts expressing high levels of the c-myc proto-oncogene. | We investigated the ability of overexpression of the c-myc proto-oncogene to potentiate in vitro transformation by model chemical carcinogens. A mouse c-myc gene was introduced to C3H 10T1/2 and Rat 6 embryo fibroblast cell lines via a retroviral vector containing the gene for neomycin resistance. Our present work extends previous findings by showing that individual vectored C3H 10T1/2 clones have enhanced (two-fold to sevenfold) sensitivity to benzo[a]pyrene (BP) and N-methyl-N-nitro-N -nitrosoguanidine (MNNG). Rat 6 clones acquiring the c-myc gene display various degrees of altered morphology. They form orderly but densely packed cells, grow to higher saturation density, and yield microcolonies in soft agar. The degree of altered growth properties is directly correlated with the level of c-myc expression. Transient exposure of c-myc-expressing clones to BP and MNNG induced the formation of distinct, large colonies in soft agar, whereas the untreated cells formed microcolonies and the parental Rat 6 cells remained single cells in soft agar. We also demonstrated that the degree of responsiveness to chemical carcinogens of the clones correlates with their ability to form microcolonies in soft agar. These cells overexpressing c-myc may be used as a model system to study the interaction between oncogenes and chemical carcinogens in the process of multistage carcinogenesis. |
| The c-MYC oncoprotein is a substrate of the acetyltransferases hGCN5/PCAF and TIP60. | The c-MYC oncoprotein functions as a sequence-specific transcription factor. The ability of c-MYC to activate transcription relies in part on the recruitment of cofactor complexes containing the histone acetyltransferases mammalian GCN5 (mGCN5)/PCAF and TIP60. In addition to acetylating histones, these enzymes have been shown to acetylate other proteins involved in transcription, including sequence-specific transcription factors. This study was initiated in order to determine whether c-MYC is a direct substrate of mGCN5 and TIP60. We report here that mGCN5/PCAF and TIP60 acetylate c-MYC in vivo. By using nanoelectrospray tandem mass spectrometry to examine c-MYC purified from human cells, the major mGCN5-induced acetylation sites have been mapped. Acetylation of c-MYC by either mGCN5/PCAF or TIP60 results in a dramatic increase in protein stability. The data reported here suggest a conserved mechanism by which acetyltransferases regulate c-MYC function by altering its rate of degradation. |
| Oncogenic cooperation between H-Twist and N-Myc overrides failsafe programs in cancer cells. | N-Myc oncogene amplification is a frequent event in neuroblastoma and is strongly correlated with advanced disease stage and treatment failure. Similarly to c-Myc oncogenic activation, N-Myc deregulation promotes both cell proliferation and p53-dependent apoptosis by sensitizing cells to a variety of insults. Intriguingly, p53 mutations are uncommon in neuroblastomas, strongly suggesting that an alternative cooperating event circumvents this safeguard against oncogene-driven neoplasia. By performing a pangenomic cDNA microarray analysis, we demonstrate that human Twist is constantly overexpressed in N-Myc-amplified neuroblastomas. H-Twist overexpression is responsible for the inhibition of the ARF/p53 pathway involved in the Myc-dependent apoptotic response. This oncogenic cooperation of two key regulators of embryogenesis causes cell transformation and malignant outgrowth. |
| Induction of apoptosis by flavopiridol in human neuroblastoma cells is enhanced under hypoxia and associated with N-myc proto-oncogene down-regulation. | PURPOSE: Neuroblastoma is the most common extracranial solid tumor of children that arises from the sympathetic nervous system. Survival rates for neuroblastoma patients is low despite intensive therapeutic intervention, and the identification of new effective drugs remains a primary goal. The cyclin-dependent kinase inhibitor, flavopiridol, has demonstrated growth-inhibitory and cytotoxic activity against various tumor types. Our aim was to investigate flavopiridol effects on advanced-stage, N-myc proto-oncogene (MYCN)-amplified human neuroblastomas and the modulation of its activity by hypoxia, a critical determinant of tumor progression and a major challenge of therapy. EXPERIMENTAL DESIGN: Cell viability was monitored by 3-(4,5 dimethyl-2 thiazolyl)-2,5 diphenyl-2H tetrazolium bromide (MTT) and trypan blue dye exclusion assays; DNA synthesis was assessed with the bromodeoxyuridine pulse-labeling technique; apoptosis was studied by Giemsa staining, DNA fragmentation, terminal deoxynucleotidyl-transferase-mediated dUTP nick end labeling reaction, flow cytometric determination of hypodiploid DNA content, and evaluation of caspase activity and cytochrome c (CytC) release; MYCN expression was determined by Northern and Western blotting. RESULTS: Flavopiridol caused dose- and time-dependent decreases in neuroblastoma viability by inducing apoptosis, as confirmed by morphologic and biochemical criteria. Cell death was preceded by DNA synthesis inhibition and G1-G2 arrest, reversed by the pancaspase inhibitor, zVAD-fmk, and associated with caspase-3 and -2 activation and CytC increase. Moreover, flavopiridol strongly down-regulated MYCN mRNA and protein expression. Exposure to hypoxia enhanced both the extent of apoptosis and flavopiridol effects on CytC, caspase 3, and MYCN. CONCLUSIONS: These results indicate that flavopiridol has growth-inhibitory and apoptotic activity against advanced-stage neuroblastomas in vitro and is worthy of further investigation for the treatment of this disease. |
| Cooperative induction of rat mammary cancer by radiation and 1-methyl-1-nitrosourea via the oncogenic pathways involving c-Myc activation and H-ras mutation. | Humans are continually exposed to various environmental carcinogens. cancers may arise as a result of exposure to carcinogenic chemicals, ionizing radiation or a combination thereof. However, the mechanism of combined carcinogenesis has been only deduced from oncogenic actions of individual agents. Here, we analyzed experimental mammary carcinogenesis caused by a combination of radiation and a chemical carcinogen, 1-methyl-1-nitrosourea (MNU). Seven-week-old female Sprague-Dawley rats were divided into 4 groups: control, g gamma-irradiated (2 Gy), MNU-treated (40 mg/kg, i.p.) and combined treatment of radiation with subsequent MNU after 3 days. Rats with palpable tumors were sacrificed at 50 weeks of age to collect tumors for histologic typing and mutational analysis of the H-ras gene codon 12. The combined treatment induced adenocarcinomas, but not fibroadenomas, more efficiently than radiation or MNU alone. The H-ras mutation was not seen in radiation-induced carcinomas and was specific to MNU-induced carcinomas in individually treated groups. In the combined treatment group, H-ras-mutated, but not nonmutated, tumors were more frequent and developed significantly earlier than in the MNU-treated group. Significantly higher numbers of cells were stained for activated c-Myc protein in g gamma-ray- and combined treatment-induced cancers than in MNU-induced cancers. These results indicate that combined exposure to the 2 carcinogens elicits an unexpected cooperativity in which pre-irradiation enhances mammary carcinogenesis predominantly through the oncogenic pathway involving H-ras, possibly by synergism with c-Myc activation. |
| Solution structure of the biologically relevant G-quadruplex element in the human c-MYC promoter. Implications for G-quadruplex stabilization. | The nuclease hypersensitivity element III(1) (NHE III(1)) of the c-MYC promoter strongly controls the transcriptional activity of the c-MYC oncogene. The purine-rich strand of the NHE III(1) element has been shown to be a silencer element for c-MYC transcription upon formation of a G-quadruplex structure. We have determined the predominant G-quadruplex structure of this silencer element in potassium solution by NMR. The G-quadruplex structure adopts an intramolecular parallel-stranded quadruplex conformation with three guanine tetrads and three side loops, including two single-nucleotide side loops and one double-nucleotide side loop, that connect the four guanine strands. The three side loops are very stable and well-defined. The 3 -flanking sequence forms a stable fold-back stacking conformation capping the top end of the G-quadruplex structure. The 5 -flanking A and G bases cap the bottom end of the G-quadruplex, with the adenine stacking very well with the bottom tetrad. This paper reports the first solution structure of a G-quadruplex found to form in the promoter region of an oncogene (c-MYC). This G-quadruplex structure is extremely stable, with a similar melting temperature (>85 degrees C) to that of the wild-type 27-mer purine-rich NHE III(1) sequence of the c-MYC promoter. This predominant quadruplex structure has been shown to be biologically relevant, and the structural information revealed in this research provides an important basis for the design of new drug candidates that specifically target the c-MYC G-quadruplex structure and modulate gene expression. |
| Knockdown of c-Myc expression by RNAi inhibits MCF-7 breast tumor cells growth in vitro and in vivo. | INTRODUCTION: Breast cancer is the leading cause of cancer death in women worldwide. Elevated expression of c-Myc is a frequent genetic abnormality seen in this malignancy. For a better understanding of its role in maintaining the malignant phenotype, we used RNA interference (RNAi) directed against c-Myc in our study. RNAi provides a new, reliable method to investigate gene function and has the potential for gene therapy. The aim of the study was to examine the anti-tumor effects elicited by a decrease in the protein level of c-Myc by RNAi and its possible mechanism of effects in MCF-7 cells. METHOD: A plasmid-based polymerase III promoter system was used to deliver and express short interfering RNA (siRNA) targeting c-myc to reduce its expression in MCF-7 cells. Western blot analysis was used to measure the protein level of c-Myc. We assessed the effects of c-Myc silencing on tumor growth by a growth curve, by soft agar assay and by nude mice experiments in vivo. Standard fluorescence-activated cell sorter analysis and TdT-mediated dUTP nick end labelling assay were used to determine apoptosis of the cells. RESULTS: Our data showed that plasmids expressing siRNA against c-myc markedly and durably reduced its expression in MCF-7 cells by up to 80%, decreased the growth rate of MCF-7 cells, inhibited colony formation in soft agar and significantly reduced tumor growth in nude mice. We also found that depletion of c-Myc in this manner promoted apoptosis of MCF-7 cells upon serum withdrawal. CONCLUSION: c-Myc has a pivotal function in the development of breast cancer. Our data show that decreasing the c-Myc protein level in MCF-7 cells by RNAi could significantly inhibit tumor growth both in vitro and in vivo, and imply the therapeutic potential of RNAi on the treatment of breast cancer by targeting overexpression oncogenes such as c-myc, and c-myc might be a potential therapeutic target for human breast cancer. |
| Backbone assignment of the dimerization and DNA-binding domain of the oncogenic transcription factor v-Myc in complex with its authentic binding partner Max. | OBJECTIVE: The aim of the present study was to investigate the significance of p53 and bcl-2 as prognostic factors among others in renal cell carcinoma patients. METHODS: We evaluated the stages, histological grades, tumor diameters, cellular patterns and the presence of mutant p53 protein and bcl-2 overexpression in 57 cases of renal cell carcinoma (RCC). Kaplan-Meier and log-rank tests estimated the survival function of each parameter. The study was carried out in the Department of Pathology and the Department of Urology, Faculty of Medicine, Dicle University Hospital, Diyarbakir, Turkey, in 2003. RESULTS: The p53 mutation was 35% and bcl-2 overexpression incidence was 89.4% in the RCC cases included in the study. The 5-year disease specific survival rates of mutant p53 positive was 46.6% and p53 negative cases were 83.3%, (p=0.0063). There was no pathological parameter associated in bcl-2, and it has no prognostic significance. CONCLUSION: The tumor stage, grade, diameter and p53 mutations affect the survival of RCC cases. The bcl-2 staining did not play any role to estimate patients at high risk of the disease progression. |
| What determines the instability of c-myc proto-oncogene mRNA?. | The c-myc proto-oncogene is believed to be involved in the regulation of cell growth and differentiation. Deregulation of this gene, resulting in an inappropriate increase of gene product, can contribute to cancer formation. One of the ways in which the expression of the c-myc gene can be deregulated is by the stabilization of the labile c-myc mRNA. The rapid degradation of the c-myc transcript appears to be mediated by at least two distinct regions in the mRNA. One lies in the 3 untranslated region, and presumably consists of (A+U)-rich sequences. The other lies in the C-terminal part of the coding region and colocalizes with sequences encoding protein-dimerization motifs. The exact mechanism by which the destabilizing elements function is not yet clear. Shortening of the poly(A) tail of the c-myc message appears to precede degradation of the transcript. When translation is blocked, this shortening is slowed down and the mRNA is stabilized. This suggests that deadenylation is required before degradation of the mRNA body can take place. |
| Comparison of the effect of ELF on c-myc oncogene expression in normal and transformed human cells. | The c-myc proto-oncogene is believed to be involved in the regulation of cell growth and differentiation. Deregulation of this gene, resulting in an inappropriate increase of gene product, can contribute to cancer formation. One of the ways in which the expression of the c-myc gene can be deregulated is by the stabilization of the labile c-myc mRNA. The rapid degradation of the c-myc transcript appears to be mediated by at least two distinct regions in the mRNA. One lies in the 3 untranslated region, and presumably consists of (A+U)-rich sequences. The other lies in the C-terminal part of the coding region and colocalizes with sequences encoding protein-dimerization motifs. The exact mechanism by which the destabilizing elements function is not yet clear. Shortening of the poly(A) tail of the c-myc message appears to precede degradation of the transcript. When translation is blocked, this shortening is slowed down and the mRNA is stabilized. This suggests that deadenylation is required before degradation of the mRNA body can take place. |
| Tissue microarray analysis of C-MYC oncogene copy number changes in larynx carcinoma. | PURPOSE OF THE STUDY: Copy number changes and structural rearrangements of 8q in tumors from the head and neck region have been reported by numerous studies. To give better insights into the role of 8q abnormalities in larynx carcinoma, C-MYC copy number changes were studied in a large number of tumor materials. PROCEDURES: Fluorescent in situ hybridization with DNA locus-specific probe for C-MYC genewas applied on tissue microarrays presented by 863 larynx tumors. RESULTS: 32.02% had increased copy number of C-MYC. Of these, 6.16% hadamplification and 25.86% had C-MYC gains. The analysis revealed a significant difference in the frequency of gains in primary and advanced tumors. Furthermore, we observed an association of gains with advanced clinical stage (I-III to IV). No association was found between the frequency of oncogene amplification and the tumor phenotype. CONCLUSIONS: These results suggest that the C-MYC gains are significant for the larynx tumor progression. |
| Immunohistochemical localization of c-myc oncogene product in oral papilloma. | The expression of c-myc oncogene products in oral papillomas was studied by using an immunohistochemical method. The oncogene products were detected in 17(70.8%) of the 24 oral papillomas under study. The expression of the products was evaluated, and the histologic localization in proliferating epithelial cells of the oral papillomas was determined. In the basal cell layer, the products were detected in the nuclei of 16 oral papillomas, and in the cytoplasm of 12 oral papillomas. In the nuclei of cells in the spinous cell layer, the products were detected in 4 oral papillomas, and in the cytoplasm of 13 oral papillomas. In the keratinized cells, the products were not detected in the nuclei, but they were identified in the cytoplasm of three oral papillomas. The results suggested that the c-myc oncogene product might play an important role for proliferation and differentiation of the oral papilloma. |
| Posttranscriptional regulation of c-myc proto-oncogene expression and growth inhibition by recombinant human interferon-beta ser17 in a human colon carcinoma cell line. | Recombinant human interferon-beta ser17 (IFN-beta ser17), a cytokine that exhibits both antiviral and antiproliferative activity against a wide variety of cell types, causes a time- and dose-dependent inhibition of monolayer growth and of the expression of the c-myc proto-oncogene in DLD-1 Clone A human colon-carcinoma cells. The suppression of c-myc expression mediated by IFN-beta ser17 is due to a posttranscriptional destabilization of c-myc mRNA rather than to an inhibition of c-myc mRNA transcription. There is evidence suggesting that the selective reduction in the half-life of c-myc mRNA in IFN-beta ser17-treated cells occurs through an increase in the activity of the 2 ,5 -oligoadenylate synthetase/RNase L [2 ,5 -oligo (A) synthetase] pathway in DLD-1 Clone A cells. Cotreatment of these cells with IFN-beta ser17 and the anticancer agent N-methylformamide leads to the partial abrogation of 2 ,5 -oligo (A) synthetase activity and the stabilization of c-myc mRNA. These findings suggest that there is a correlation between the IFN-beta ser17-mediated suppression of c-myc expression and the induction of 2 ,5 -oligo (A) synthetase activity in DLD-1 clone A cells. |
| DNA-activated protein kinase in Raji Burkitt s lymphoma cells. Phosphorylation of c-Myc oncoprotein. | Autophosphorylation of a DNA-activated protein kinase (DNA-PK) in Raji Burkitt s lymphoma cells generated a band that corresponded to a phosphoprotein of about 300 kDa on SDS/PAGE. This band corresponds to a 300-350-kDa DNA-PK found previously in HeLa cells. In addition to the 300-kDa phosphoprotein, the band of a highly phosphorylated 58-kDa protein was detected by SDS/PAGE of partially purified DNA-PK preparations after the phosphorylation reaction in the presence of double-stranded DNA. This phosphoprotein was specifically immunoprecipitated by phosphoprotein nor detectable activities of other kinases, phosphorylated recombinant c-Myc proteins in the presence of DNA. The c-Myc phosphorylation by DNA-PK was markedly stimulated by relaxed, double-stranded DNA, but neither by single-stranded DNA nor by RNA. Phosphopeptide mapping and phosphoamino acid analysis indicated that DNA-PK phosphorylates c-Myc in vitro at several serine residues. |
| [Expression and significance of TERT and c-Myc oncogene protein product on cholesteatoma epithelium]. | OBJECTIVE: To detect the expression and localization of human telomerase catalytic subunit (hTERT) and c-Myc oncogene protein product in human middle ear cholesteatoma, and to evaluate their roles in the proliferation of cholesteatoma epithelium. METHOD: The specimens from the middle ear cholesteatoma tissue of 32 cases and external ear skin of 14 cases were examined by immunohistochemical SP method and computer image analysis system for TERT and c-Myc oncogene protein product. RESULT: ALL 32 samples of cholesteatoma showed a stronger expression of TERT and c-Myc oncogene protein product than that of the external ear skin. The indexes, such as mean positive cell rate and mean obsorbency of cholesteatoma epithelium are much higher than that of the normal external ear shin remarkably( P < 0.05). Accompanied with numerous inflammatory cells(lymphocytes, plasmocytes, neutrophils and macrophages) subcutaneously, the high expression of TERT and c-Myc oncogene protein product were correlated with each other( P < 0. 05). CONCLUSION: Excessive proliferation and keratinization of cholesteatoma are presented by the expression of TERT and c-Myc oncogene protein product in different ways, both of which play a cooperative role in the development of cholesteatoma. Subcutaneous inflammatory response may contribute to the excessive proliferation of keratose cells. |
| Chlamydia trachomatis modulates expression of tumor suppressor gene caveolin-1 and oncogene C-myc in the transformation zone of non-neoplastic cervical tissue. | OBJECTIVES: The obligate intracellular bacterium Chlamydia trachomatis is frequently found in association with benign proliferative, pre-neoplastic and malignant changes in cervical epithelium. The present study addresses the possible role of C. trachomatis infection of the uterine cervix in modulating human cancer gene expression. METHODS: RNA was extracted from both C. trachomatis infected and non-infected human fibroblast cultures treated with ITFgamma. The extracted RNA was used for cDNA microarrays carrying 33,000 human genes to detect abnormal gene expression induced by Chlamydia. Forty specimens of cervix dissected from the transformation zone had previously tested negative for HPV and positive for C. trachomatis by standard DNA PCR (20). These samples were subjected to RT-PCR to detect the expression of the abnormal genes induced by Chlamydia infection. RESULTS: The ITFgamma-induced, non-replicative Chlamydia-infected fibroblast cultures showed significant modulation of gene expression. The cultures showed a 2-fold decrease in the expression of the gene coding for the tumor suppressor caveolin-1, and increased expression of the oncogene C-myc, a promoter of cervical carcinogenesis. In tissues from the Chlamydia-infected cervical transformation zone, real-time RT-PCR demonstrated a highly significant average 4.7-fold reduction of caveolin-1 mRNA (P < or = 0.0001) and an average 2.1-fold increase in C-myc (P < 0.05). CONCLUSIONS: Human ITFgamma-treated fibroblasts as well as non-neoplastic cervical tissues responded to C. trachomatis with a strong down-regulation of caveolin-1 mRNA and a light up-regulation of C-myc mRNA. These changes were independent of the HPV high-risk types. This study reveals possible mechanisms by which C. trachomatis infection may contribute to neoplastic changes in the transformation of uterine cervix. These possible mechanisms require further evaluation. |
| Ras and Myc can drive oncogenic cell proliferation through individual D-cyclins. | D-type cyclins serve as cell cycle recipients of several oncogenic pathways. The specific sequences of the promoters of the cyclin D genes are thought to render particular D-cyclins responsive to specific oncogenic pathways. For instance, the Ras oncogene was postulated to signal through cyclin D1, while Myc can impact the cell cycle machinery by transcriptionally upregulating cyclin D2. In the current study we engineered mouse fibroblasts to express only cyclin D1, only D2, or only D3. These single-cyclin cells allowed us to rigorously test the ability of cyclin D1, D2, or D3, when expressed on their own, to serve as recipients of the Ras- and Myc-driven oncogenic pathways. We found that each of the D-cyclins was sufficient to drive oncogenic proliferation of mouse fibroblasts. This, together with our recent observations that cells lacking ALL three D-cyclins show greatly reduced susceptibility to the oncogenic action of Ras and Myc, reveals that the Ras and Myc oncogenes can impact the core cell cycle machinery through ALL three D-cyclins. |
| Increased expression of c-myc proto-oncogene in biopsies of ulcerative colitis and Crohn s colitis. | The steady state levels of c-myc mRNA have been measured in RNA samples extracted from colonoscopic biopsies of inflammatory bowel disease patients obtained at routine endoscopy sessions. Biopsies were immediately frozen in liquid nitrogen limiting the ischaemic time to less than 15 seconds, and can be stored for up to 96 hours before separation of RNA. Yields of RNA using biopsies were 0.137 (0.041)% wet wt (mean (SD), n = 68), these are significantly better than those obtained from surgical material (0.064 (0.063)% wet wt (mean (SD), n = 21) where the tissue ischaemic time was 45 minutes to one hour 40 minutes. Functional activity of RNA extracted was demonstrated by the ability to direct in vitro protein translation in the rabbit reticulocyte system. We have used this technique to show that there is an increased ratio of steady state c-myc proto-oncogene expression in inflamed tissue from 18 patients with left sided ulcerative colitis and five patients with segmental Crohn s colitis, compared with an uninvolved region of the colon in each case. No difference in c-myc expression was seen in biopsies at least 30 cm apart in 11 control patients with no macroscopic or histological abnormalities. Increased expression of c-myc in inflammatory bowel disease is consistent with the activation of this proto-oncogene during altered cell cycle control resulting from the inflammatory process. |
| Metastasis-associated protein 1 (MTA1) is an essential downstream effector of the c-MYC oncoprotein. | The c-myc oncogene is among the most commonly overexpressed genes in human cancer. c-myc encodes a basic helix-loop-helix/leucine zipper (bHLH/LZ) transcription factor (c-MYC) that activates a cascade of downstream targets that ultimately mediate cellular transformation. Although a large number of genes are regulated by c-MYC, only a few have been functionally linked to c-MYC-mediated transformation. By expression profiling, the metastasis-associated protein 1 (MTA1) gene was identified here as a target of the c-MYC oncoprotein in primary human cells, a result confirmed in human cancer cells. MTA1 itself has been previously implicated in cellular transformation, in part through its ability to regulate the epithelial-to-mesenchymal transition and metastasis. MTA1 is a component of the Mi-2/nucleosome remodeling and deacetylating (NURD) complex that contains both histone deacetylase and nucleosome remodeling activity. The data reported here demonstrate that endogenous c-MYC binds to the genomic MTA1 locus and recruits transcriptional coactivators. Most importantly, short hairpin RNA (shRNA)-mediated knockdown of MTA1 blocks the ability of c-MYC to transform mammalian cells. These data implicate MTA1 and the Mi-2/NURD complex as one of the first downstream targets of c-MYC function that are essential for the transformation potential of c-MYC. |
| The proto-oncogene c-myc is involved in cell differentiation as well as cell proliferation: studies on growth plate chondrocytes in situ. | A combination of immunocytochemistry and microdensitometry has been used to localize and quantify the expression of the proto-oncogene c-myc within chondrocytes of the proximal growth plates of rat and chick long bones. Although the c-myc protein was localized in ALL chondrocytes of the growth plate of both species the most intense staining was restricted to the proliferating and differentiating chondrocytes. These were identified by their ability to synthesize DNA (bromodeoxyuridine positive) and the presence of alkaline phosphatase activity, respectively. Species differences did exist with the c-myc concentration of the chick proliferating and differentiating chondrocytes being higher (128% and 240%, respectively) than the respective chondrocytes of the rat. The higher c-myc concentration in the chick proliferating chondrocytes paralleled the differences in the bromodeoxyuridine labelling index between the two species. In the rat, the concentration of c-myc protein present in the differentiating chondrocytes was 74% higher than in the respective proliferating chondrocytes, while in the chick it was 146% higher. The data not only provides further evidence for a role of the c-myc protein in cell proliferation but also suggests involvement of this protein in chondrocyte differentiation and/or hypertrophy. |
| Oncogenic remodeling of the three-dimensional organization of the interphase nucleus: c-Myc induces telomeric aggregates whose formation precedes chromosomal rearrangements. | The three-dimensional (3D) organization of the normal interphase nucleus permits the regulated completion of transcription and replication and assures proper chromosome organization. Aberrations from the normal 3D structural order of the nucleus are found in tumor cells. When examining the 3D organization of telomeres in nuclei of normal and tumor cells, we found that telomeres of normal nuclei do not overlap, while telomeres of tumor cells form aggregates of various numbers and sizes. To understand how such changes occur and what their implications are we have recently examined the role of the oncoprotein c-Myc in inducing changes in the 3D nuclear organization of telomeres. We found that c-Myc remodels the organization of telomeres and chromosomes in the interphase nucleus. It induces the formation of telomeric aggregates and fusions that are followed by breakage-bridge fusion cycles, and lead to the onset of chromosomal rearrangements that are typical of tumor cells. |
| Amplification of the N-myc oncogene in an adenocarcinoma cell line of the lung. | Myc gene abnormalities were studied in 30 human lung cancer cell lines. N-myc gene amplification was found in an adenocarcinoma cell line, VMRC-LCD. Neither c- or L-myc gene amplifications nor K-ras codon 12, 13, 61 point mutations were observed in this tumor. Cytomorphologically the VMRC-LCD cells had positive characteristics of typical adenocarcinoma, and the carcinoembryonic antigen in the culture medium was strongly positive. N-myc gene amplification in adenocarcinoma of the lung is extremely rare, therefore we report herein on this case. |
| c-myc oncogene copy number in squamous carcinoma of the head and neck. | PURPOSE: Altered resident cellular genetic sequences (oncogenes) may result in malignant transformation, maintenance of tumor growth, and metastatic propensity. In this pilot study, we have elected to probe c-myc oncogene in evaluating specimens from human squamous cell carcinoma. MATERIALS AND METHODS: Samples were obtained from 24 patients with squamous cell carcinoma of the head and neck. The ratio of tumor DNA values to that of control DNA was used to estimate the c-myc copy number. RESULTS: Data from material obtained from eight patients was analyzed to the point of c-myc copy number. tumors varied from stage II through IV. Five originated in the oral cavity and three in the larynx. Analysis of primary tumors demonstrated that two of eight had increased c-myc copy numbers. Histologically positive neck specimens were encountered in five of the study patients. Three demonstrated elevated c-myc copy numbers, two of which had had increased copy number at the primary site. CONCLUSION: This study confirms that c-myc amplification can be present in squamous cell carcinoma of the head and neck. c-myc Amplification may also be present in neck metastasis. oncogene amplification in neck metastasis may indicate an increased metastatic propensity for individual tumor cells demonstrating c-myc amplification. |
| A MAPK/HNRPK pathway controls BCR/ABL oncogenic potential by regulating MYC mRNA translation. | Altered mRNA translation is one of the effects exerted by the BCR/ABL oncoprotein in the blast crisis phase of chronic myelogenous leukemia (CML). Here, we report that in BCR/ABL+ cell lines and in patient-derived CML blast crisis mononuclear and CD34+ cells, p210(BCR/ABL) increases expression and activity of the transcriptional-inducer and translational-regulator heterogeneous nuclear ribonucleoprotein K (hnRNP K or HNRPK) in a dose- and kinase-dependent manner through the activation of the MAPK(ERK1/2) pathway. Furthermore, HNRPK down-regulation and interference with HNRPK translation-but not transcription-regulatory activity impairs cytokine-independent proliferation, clonogenic potential, and in vivo leukemogenic activity of BCR/ABL-expressing myeloid 32Dcl3 and/or primary CD34+ CML-BC patient cells. Mechanistically, we demonstrate that decreased internal ribosome entry site (IRES)-dependent Myc mRNA translation accounts for the phenotypic changes induced by inhibition of the BCR/ABL-ERK-dependent HNRPK translation-regulatory function. Accordingly, MYC protein but not mRNA levels are increased in the CD34+ fraction of patients with CML in accelerated and blastic phase but not in chronic phase CML patients and in the CD34+ fraction of marrow cells from healthy donors. Thus, BCR/ABL-dependent enhancement of HNRPK translation-regulation is important for BCR/ABL leukemogenesis and, perhaps, it might contribute to blast crisis transformation. |
| Mechanism of estrogen activation of c-myc oncogene expression. | The estrogen receptor complex is a known trans-acting factor that regulates transcription of specific genes through an interaction with a specific estrogen-responsive cis-acting element (ERE). In previous studies we have shown that in estrogen-responsive human breast cancer cells estrogen rapidly activates c-myc expression. This activated expression occurs through enhanced transcription and does not require the synthesis of new protein intermediates; therefore, an ERE is present in the human c-myc gene regulatory region. To localize the ERE, constructs containing varying lengths of the c-myc 5 -flanking region ranging from -2327 to +25 (relative to the P1 promoter) placed adjacent to the chloramphenicol acetyl transferase reporter gene (CAT) were prepared. They were used in transient transfection studies in MCF-7 and HeLa cells co-transfected with an estrogen receptor expression vector. These studies reveal that ALL constructs containing the P2 promoter region exhibited estrogen-regulated CAT expression and that a 116-bp region upstream and encompassing the P2 TATA box is necessary for this activity. Analysis of this 116-bp region failed to identify a cis-acting element with sequences resembling the consensus ERE; however, co-transfection studies with mutant estrogen receptor expression vectors showed that the DNA-binding domain of the receptor is essential for estrogen-regulated CAT gene expression. We have also observed that anti-estrogen receptor complexes can weakly trans-activate from this 116-bp region but fail to do so from the ERE-containing ApoVLDLII-CAT construct. To explain these results we propose a new mechanism of estrogen trans-activation in the c-myc gene promoter. |
| Development of multidrug resistance due to multiple factors including P-glycoprotein overexpression under K-selection after MYC and HRAS oncogene activation. | Multistep tumorigenesis is a form of microevolution consisting of mutation and selection. To clarify the role of selection modalities in tumor development, we examined two alternative evolutionary conditions, r-selection in sparse culture, which allows cells to proliferate rapidly, and K-selection in confluent culture, in which overcrowding constrains cell proliferation. Using MYC- and EJ-RAS-transformed rat embryo fibroblasts, we found that K-selected cells acquired and stably maintained multidrug resistance (MDR) to DOX, VCR, MTX and Ara-C. Then, we examined the involvement of a number of factors potentially causal of the development of MDR, that is, ploidy, Tp53 mutation, doubling time and the expression levels of genes related to drug resistance. Although ploidy status and Tp53 mutations did not correlate with MDR, we found that Abcb1/Mdr1, encoding P-glycoprotein (Pgp), was significantly upregulated after K-selection. Cyclosporin A, a competitive inhibitor of Pgp, increased the intracellular accumulation of DOX and reduced the resistance to it. Indeed, the population of Pgp-transfected cells significantly expanded under K-, but not under r-selection. In addition to Pgp upregulation, altered expression of other genes such as Cda/cytidine deaminase and Slc29a1/equilibrative nucleoside transporter 1 and prolonged doubling times were associated with MDR. This system reproduces events associated with MDR in vivo and would be useful for analysis of MDR development. |
| Genetic heterogeneity of the MYC oncogene in advanced juvenile angiofibromas. | Despite their benign histological appearance, juvenile angiofibromas sometimes exhibit an aggressive growth behavior. Molecular and genetic analyses have detected beta-catenin mutations and androgen receptor gene gains in this tumor. Because intensive cross-talk among beta-catenin, androgen receptor, and C-MYC has been detected recently, we analyzed expression of the C-MYC protooncogene (MYC) on the genetic, transcriptional and translational level in seven sporadic juvenile angiofibromas. Two-color in situ hybridization analyses for chromosome 8 and MYC found in ALL seven juvenile angiofibromas significant MYC losses. In the three advanced juvenile angiofibromas of this series (Fisch stages III and IV) additional significant MYC gains were observed demonstrating a genetic heterogeneity for the MYC protooncogene. In cases of genetic MYC heterogeneity, reverse transcriptase-polymerase chain reaction (RT-PCR) analysis, Western blot investigations, and immunohistology showed increased C-MYC mRNA and protein levels. Semiquantitative RT-PCR analyses from laser microdissected endothelial cells and fibroblasts found no differences of C-MYC mRNA levels, leaving open the question of the neoplastic cell in juvenile angiofibromas. The finding of genetic MYC heterogeneity associated with C-MYC overexpression on the mRNA and protein level in advanced juvenile angiofibromas indicates involvement of the MYC oncogene in aggressive growth behavior. |
| Human papillomavirus type-related DNA and c-myc oncogene alterations in colon cancer cell lines. | Although squamous-cell epithelium is the most frequent target site of human papillomavirus (HPV) infection, a similar infection is demonstrated in columnar epithelial cells in this paper. The papillomavirus expression in three cell lines was detected in colorectal adenocarcinoma of Chinese patients. The HPV-16 and HPV-18 DNA sequences were found in colorectal cancer cell lines, which might suggest the correlation of HPV to the etiology of colorectal cancers. In addition, c-myc oncogene was identified by amplification in ALL three colorectal cancer cell lines, but only normal germ-line fragments were found in control tissue. The correlation between HPV and c-myc, and the implications of these findings in colorectal cancers are also discussed. |
| Molecular cloning of the avian acute transforming retrovirus MH2 reveals a novel cell-derived sequence (v-mil) in addition to the myc oncogene. | Mill-Hill-2 virus (MH2) proviral DNA was cloned from a transformed non-producer cell culture (MH2QB2) through insertion of randomly cut high mol. wt. cellular DNA in the lambdoid vector L47.1. Restriction analysis of a suitable recombinant phage by Southern DNA blotting and hybridization with different probes allowed us to characterize the genetic organization of the provirus and to identify a novel MH2-specific sequence of at least 1.1kbp. Such a sequence, for which we propose the name v-mil, from MilI-Hill-2 virus, is not homologous to v-myc, the previously described oncogene of MH2, nor to avian leukaemia virus-related sequences. Evidence is presented here that v-mil has a cellular counterpart (c-mil) phylogenetically conserved in birds and mammals, including man, and expressed as a single RNA species at least in some tissues. MH2 virus might thus be regarded, like avian erythroblastosis virus or E26, as another example of retroviruses having recombined with more than one cellular gene. |
| c-fos and c-myc oncoprotein expression in human hepatocellular carcinomas. | Amounts of the proteins encoded by the two oncogenes c-myc and c-fos have been compared in seven specimens of hepatocellular carcinoma and two normal liver samples using a Western blot procedure. It was found that with the exception of one tumour, the amount of these proteins was markedly increased in the tumours when compared to the normal specimens. Furthermore, there appeared to be elevated c-myc and c-fos mRNA concentrations in the tumours which correlated with the protein levels. This is the first report of such a correlation in human hepatocellular carcinoma. We propose that transactivation of these oncogenes may in part be responsible for transformation in hepatocellular carcinoma. |
| Integration of papillomavirus DNA near myc genes in genital carcinomas and its consequences for proto-oncogene expression. | DNA sequences of specific human papillomavirus (HPV) types are found integrated in the cell genome in most invasive genital carcinomas. We have determined the chromosomal localization of integrated HPV type 16 (HPV-16) or HPV-18 genomes in genital cancers by in situ hybridization experiments. In three cancers, HPV sequences were localized in chromosome band 8q24.1, in which the c-myc gene is mapped, and in one cancer HPV sequences were localized in chromosome band 2p24, which contains the N-myc gene. In three of the four cases, the proto-oncogene located near integrated viral sequences was found to be structurally altered and/or overexpressed. These data indicate that HPV genomes are preferentially integrated near myc genes in invasive genital cancers and support the hypothesis that integration plays a part in tumor progression via an activation of cellular oncogenes. |
| The MYC oncogene in breast cancer progression: from benign epithelium to invasive carcinoma. | One hypothesis for breast cancer development suggests that breast carcinogenesis involves a progression of events leading from benign epithelium to hyperplasia (with or without atypia) to carcinoma in situ and then invasive carcinoma. The MYC gene (alias c-Myc) is a transcriptional regulator whose expression is strongly associated with cell proliferation and cell differentiation. The present study is a descriptive analysis of MYC status throughout the hypothesized stages of invasive ductal carcinoma progression. A tissue microarray (TMA) was constructed including representative selected areas (normal cells, hyperplasia, in situ carcinoma, and invasive carcinoma) from each of 15 patients. Fluorescence in situ hybridization (FISH) with the LSI c-MYC/CEN8/IgH probe was performed. Two cases displayed MYC amplification (13%), showing this amplification only in the invasive carcinoma zones selected. Five cases displayed polysomy of chromosome 8 (33%), detected only in ductal in situ and invasive zones selected. Benign lesions and normal adjacent cells were classified as normal. None of the hyperplasia specimens and normal specimens analyzed showed any alterations in MYC status or any aneusomies of chromosome 8. The presence of MYC amplification only in invasive cells suggests that the finding of MYC amplification could reflect an advanced tumor progression. |
| Evaluation of c-myc proto-oncogene in primary human breast carcinomas. | The expression of the c-myc proto-oncogene product was examined by immunohistochemistry in 11 normal breast tissues, 31 invasive and 14 non-invasive breast carcinomas. The c-myc product was detected in ALL breast carcinoma specimens and in seven of 11 normal breast tissues. Invasive tumors stained more frequently with the anti-myc monoclonal antibody (MAb) than non-invasive tumors, while the level of expression in normal breast tissue was much less than that in a breast cancer. Marked heterogeneity in the c-myc expression was seen among different tumors and within individual tumors. None of the eight invasive tumors with a high protein level of the c-myc showed evidence of gene amplification by Southern blot analysis. |
| Immunohistochemical study of oncogene product ras p21, c-myc and growth factor EGF in breast carcinomas. | The expression of the oncogene products ras p21, c-myc and the growth factor EGF (epidermal growth factor) was studied immunohistochemically in the tissue of 119 benign and malignant human breasts. In most cases, histologically normal breast tissues and benign lesions were found to be negative or poorly-expressive for reactivity with each antibody. Similar findings were observed in carcinoma in situ. Invading breast carcinomas demonstrated a significantly higher percentage of stained cells than that observed in benign lesions or carcinoma in situ; forty-two of 66 invasive breast carcinomas (63.6%) were highly-expressive for ras p21, thirty-eight (57.6%) for c-myc and twenty (30.3%) for EGF, but overall correlations between each oncogene expression and the clinical stage, tumor size or degree of differentiation were not found. The overall 5-year survival rate was studied in 58 patients with Stage II and III in association with each oncogene or EGF expression. Their survival rate was significantly effected by the EGF expression (0.05 less than p less than 0.1) but not by ras p21 or c-myc expression. Analysis of 36 specimens available with ER (estrogen-receptor) level revealed a significant correlation between the ER status and c-myc or E2 (estradiol) and a significant inverse correlation between ER status and ras p21 or EGF expression (P less than 0.05). The expression of ras p21, EGF and c-myc was not associated with metastatic tumor progression. |
| Transcriptional activation by the Myc oncoprotein. | The Myc transcription factor functions as a downstream effector of most mitogenic signals. Myc is synthesized rapidly in response to extracellular mitogenic signals, and blocking Myc induction abolishes or at least severely attenuates any mitogenic response. Furthermore, ectopic Myc expression can often bypass the requirement for extracellular signals for entry into S phase. Thus, the Myc transcription factor is both necessary and in many ways sufficient to promote the growth of diverse cell types. Given this potent biological activity, it is not surprising that mutations in the myc gene are among the most frequent in human and animal cancers. Understanding the molecular basis of Myc function has been a central issue in the fields of cancer biology and signal transduction for 20 years. |
| N-myc oncogene amplification in a pediatric case of glioblastoma multiforme. | A sample of a primary brain tumor of glial cell origin was surgically removed from a 7-year-old girl. The histopathological analysis showed a heterogeneous tumor containing highly cellular areas composed of small, poorly differentiated cells with frequent mitoses suggestive of a glioblastoma multiforme. There were also areas presenting as features of lower-grade astrocytoma. Strong immunohistochemical staining for glial fibrillar acidic protein was demonstrated, while vimentin, neurofilament, and S-100 protein were ALL positive in just the astrocytic part of the tumor. The DNA extracted from a fresh tumor sample at diagnosis was processed by Southern blot analysis and hybridized with a 2.0 kb N-myc oncogene probe recognizing the first intron and the second exon of the human gene. A 20-fold amplification of the oncogene was found. The possible role of such a molecular alteration is discussed in light of the clinical presentation and histopathological features. |
| Expression of glial fibrillary acidic protein, vimentin, fibronectin, and N-myc oncoprotein in primary human brain tumor cell explants. | Cultured cells of explants from 23 human gliomas (seven astrocytomas, eleven anaplastic astrocytomas, three ependymal tumors and two medulloblastomas) were studied to examine cell morphology and expression of glial fibrillary acidic protein (GFAP), vimentin, fibronectin, and N-myc oncoprotein. The most common antigenic phenotype consisted of cells that were GFAP-positive and fibronectin-positive. Both low and high grade astrocytomas retained GFAP expression after several passages in vitro. The establishment of glial tumors in vitro may not necessarily result in loss of GFAP expression early in passage nor is expression of GFAP and fibronectin mutually exclusive. N-myc oncoprotein was seen in only two specimens, one anaplastic astrocytoma and one ependymoma. |
| The c-Myc oncogene directly induces the H19 noncoding RNA by allele-specific binding to potentiate tumorigenesis. | The product of the MYC oncogene is widely deregulated in cancer and functions as a regulator of gene transcription. Despite an extensive profile of regulated genes, the transcriptional targets of c-Myc essential for transformation remain unclear. In this study, we show that c-Myc significantly induces the expression of the H19 noncoding RNA in diverse cell types, including breast epithelial, glioblastoma, and fibroblast cells. c-Myc binds to evolutionarily conserved E-boxes near the imprinting control region to facilitate histone acetylation and transcriptional initiation of the H19 promoter. In addition, c-Myc down-regulates the expression of insulin-like growth factor 2 (IGF2), the reciprocally imprinted gene at the H19/IGF2 locus. We show that c-Myc regulates these two genes independently and does not affect H19 imprinting. Indeed, allele-specific chromatin immunoprecipitation and expression analyses indicate that c-Myc binds and drives the expression of only the maternal H19 allele. The role of H19 in transformation is addressed using a knockdown approach and shows that down-regulation of H19 significantly decreases breast and lung cancer cell clonogenicity and anchorage-independent growth. In addition, c-Myc and H19 expression shows strong association in primary breast and lung carcinomas. This work indicates that c-Myc induction of the H19 gene product holds an important role in transformation. |
| EGF promotes in vivo tumorigenic growth of primary chicken embryo fibroblasts expressing v-myc and enhances in vitro transformation by the v-erbA oncogene. | We report that the activation of the endogenous chicken EGF receptor leads to the tumorigenic growth in vivo of early passage chicken embryo fibroblasts (CEFs) that express a nonsarcomagenic oncogene, v-myc. To provide a continuous paracrine source of this growth factor in vivo, we employed irradiated Rat-1 cells which had been stably transfected with a synthetic cDNA to human EGF. expression of another non-sarcomagenic nuclear oncogene, v-erbA, prones the CEFs to in vitro transformation by EGF, but does not cause EGF dependent tumorigenicity in vivo. The short period of incubation in the in vivo assay employed by our study (10 days), together with the genetic stability of primary chicken embryo fibroblasts, make it very likely that the reported alterations in cellular behaviour are a direct and primary effect of the expression of the relevant oncogenes and their cooperation with the EGF induced response. Dose response and ligand binding assays suggest that the EGF response is transmitted via the chicken c-erbB molecule, which by virtue of its preference for TGF-alfa is distinct from the mammalian EGF receptors studied so far. The level of expression of the endogenous chicken EGF receptor is within the same range as that reported for primary human fibroblasts (5-7 x 10(3) per cell). The cooperative effect of v-myc with chicken c-erbB probably takes place at a post receptor level, as its expression did not affect the steady state level or affinity for ligand of the chicken EGF receptor. |
| Myc influences global chromatin structure. | The family of myc proto-oncogenes encodes transcription factors (c-, N-, and L-Myc) that regulate cell growth and proliferation and are involved in the etiology of diverse cancers. Myc proteins are thought to function by binding and regulating specific target genes. Here we report that Myc proteins are required for the widespread maintenance of active chromatin. Disruption of N-myc in neuronal progenitors and other cell types leads to nuclear condensation accompanied by large-scale changes in histone modifications associated with chromatin inactivation, including hypoacetylation and altered methylation. These effects are largely reversed by exogenous Myc as well as by differentiation and are mimicked by the Myc antagonist Mad1. The first chromatin changes are evident within 6 h of Myc loss and lead to changes in chromatin structure. Myc widely influences chromatin in part through upregulation of the histone acetyltransferase GCN5. This study provides the first evidence for regulation of global chromatin structure by an oncoprotein and may explain the broad effects of Myc on cell behavior and tumorigenesis. |
| Nonrandom distribution of N-myc oncogene genotypes in neuroblastoma. | The distributions of Pvu II and Sph I alleles of the N-myc oncogene (also known as MYCN) were studied in a series of normal individuals and pediatric patients with solid tumors. In the case of Pvu II, where the polymorphic site is located 3 of the gene, the frequencies of the allele were 0.27 (11-kilobase fragment) and 0.73 (8-kilobase fragment) in 43 unrelated normal Caucasians. The frequencies of the allele were similar in 40 non-N-myc-amplified neuroblastomas, 47 Wilms tumors, and 31 other pediatric tumors. In these cases, the genotypes were in Hardy-Weinberg equilibrium. In 18 N-myc-amplified neuroblastomas, however, the observed genotype frequencies deviated from Hardy-Weinberg equilibrium (P less than .005). Similar observations were made with an Sph I restriction fragment length polymorphism where the polymorphic site is located in intron 2. The differences between amplified and nonamplified neuroblastomas suggest a possible involvement of sequences at or near N-myc in the progression of tumors where the N-myc gene is amplified. |
| Effects of IL-3 on promoter usage, attenuation and antisense transcription of the c-myc oncogene in the IL-3-dependent Ba/F3 early pre-B cell line. | The c-myc gene uses two major promoters, P1 and P2, for production of mRNA. In most proliferating normal cells, transcripts initiated from P2 predominate over the ones from P1. Furthermore, transcription of normal and translocated c-myc genes is bidirectional and overlapping. In this study, we have measured the effects of interleukin 3 (IL-3) deprivation and restimulation on c-myc promoter usage in the IL-3-dependent pre-B cell line Ba/F3. The rapid drop in c-myc mRNA expression observed in Ba/F3 cells upon IL-3 deprivation is reversible upon restimulation with interleukin. The use of P1 and P2 promoters, as judged by P1/P2 ratio, shifted from 0.2 in cells in exponential growth or in quiescence to 1.3 following IL-3 stimulation. This change was not due to selective instability of one of the two myc transcripts. In vitro nuclear run-on experiments indicated that IL-3 addition resulted in a large release of transcriptional attenuation, as well as a significant increase in transcriptional initiation. These results are consistent with the hypothesis that P1/P2 promoter usage is involved in the control of transcriptional elongation. Furthermore, deprivation of IL-3 resulted in a dramatic increase in antisense transcription, whereas little change was observed in the rate of initiation of elongation of c-myc mRNA precursors. This correlation suggests a negative role for antisense transcription in expression of c-myc mRNA levels in IL-3-deprived Ba/F3 cells. |
| Overexpression of c-myc in pancreatic cancer caused by ectopic activation of NFATc1 and the Ca2+/calcineurin signaling pathway. | The nuclear factor of activated T cell (NFAT) proteins are a family of Ca2+/calcineurin-responsive transcription factors primarily recognized for their central roles in T lymphocyte activation and cardiac valve development. We demonstrate that NFATc1 is commonly overexpressed in pancreatic carcinomas and enhances the malignant potential of tumor cells through transcriptional activation of the c-myc oncogene. Activated NFATc1 directly binds to a specific element within the proximal c-myc promoter and upregulates c-myc transcription, ultimately resulting in increased cell proliferation and enhanced anchorage-independent growth. Conversely, c-myc transcription and anchorage-dependent and -independent cell growth is significantly attenuated by inhibition of Ca2+/calcineurin signaling or siRNA-mediated knock down of NFATc1 expression. Together, these results demonstrate that ectopic activation of NFATc1 and the Ca2+/calcineurin signaling pathway is an important mechanism of oncogenic c-myc activation in pancreatic cancer. |
| HER2, TOP2A, CCND1, EGFR and C-MYC oncogene amplification in colorectal cancer. | AIM: Recent studies had suggested substantial molecular differences between tumours from different ethnic groups. In this study, the molecular differences between the incidences of colorectal carcinoma in Saudi and Swiss populations are investigated. METHOD: 518 cases of colon cancer tumours (114 from Saudi Arabia and 404 from Switzerland) were analysed in a tissue microarray format. Fluorescence in situ hybridisation (FISH) was used to estimate frequencies of copy number changes of known oncogenes, including HER2, TOPO2A, CCND1, EGFR and C-MYC. RESULTS: Using FISH, amplifications were mostly low level (gene-to-centromere ratio 2 to 4), which is in contrast with other tumour types with more frequent gene amplifications. The amplifications were particularly frequent for MYC (Saudi 9% and Swiss 14.2%) but unrelated to clinical outcome and pathological information. Remarkably, there were four tumours exhibiting classic high-level gene amplification for HER2 (Swiss 1.3%), a pattern often accompanied by response to trastuzumab (Herceptin) in breast cancer. Occasional high-level amplifications were also observed for CCND1 (Saudi 1/106, 0.9%; Swiss 2/373, 0.5%) and EGFR (Swiss 2/355; 0.6%). CONCLUSIONS: Rare high-level amplifications of therapeutic target genes were found in patients with colon cancer. Although no molecular differences were found between incidences of colon cancer cases in Swiss and Saudi populations, these observations emphasise the urgent need for clinical studies investigating the effect of targeted therapies. |
| N-myc oncogene expression and amplification in metastatic lesions of stage IV-S neuroblastoma. | The authors determined the levels of N-myc oncogene amplification and RNA expression in three infants with metastatic neuroblastoma. By clinical staging Patients 1 and 2 were Stage IV-S, a disease with limited metastatic potential and generally favorable outcome; Patient 3 was Stage IV. Southern blots of chromosomal DNA showed normal N-myc copy number in the primary tumor of Patient 1, extensive (200-fold) gene amplification in the primary tumor from Patient 2, and intermediate (100-fold) gene amplification in the primary tumor and metastatic lesions from Patient 3. N-myc RNA was expressed in ALL of the primary and metastatic tumor tissues tested. The level of N-myc RNA expression roughly corresponded to the extent of N-myc gene amplification in Patients 2 and 3 and was overexpressed from a single N-myc gene copy in Patient 1. N-myc gene amplification and RNA expression levels were approximately the same in the primary and metastatic lesions for each of the patients tested. The two patients with N-myc gene amplification had a poor outcome, but the patient with normal N-myc gene copy number had no evidence of disease. Despite the clinical picture in Patient 2 of Stage IV-S neuroblastoma, the pattern of N-myc amplification and expression more closely resembled that of Patient 3 (Stage IV neuroblastoma) than that of Patient 1 (bona fide Stage IV-S neuroblastoma). |
| The Myc oncoprotein as a therapeutic target for human cancer. | Myc expression is deregulated in a wide range of human cancers and is often associated with aggressive, poorly differentiated tumors. The Myc protein is a transcription factor that regulates a variety of cellular processes including cell growth and proliferation, cell-cycle progression, transcription, differentiation, apoptosis, and cell motility. Potential strategies that either inhibit the growth promoting effect of Myc and/or activate its pro-apoptotic function are presently being explored. In this review, we give an overview of Myc activation in human tumors and discuss current strategies aimed at targeting Myc for cancer treatment. Such therapies could have potential in combination with mechanistically different cytotoxic drugs to combat and eradicate tumors cells. |
| Noncorrelative c-myc and ras oncogene expression in squamous cell carcinoma cells with tumorigenic potential. | The distribution of heterogeneous cell types within human tumors was examined, and the biological behavior of tumors and different tumor cell lines was evaluated following implantation into surrogate hosts. In situ hybridization and immunohistochemistry were used to examine the expression of oncogenes and localization of the squamous cell carcinoma cell surface-associated antigens. Increased levels of H-ras mRNA and p21 protein were present in six tumors, but enhanced c-myc mRNA expression was observed in just two tumors. The distribution of oncogene mRNA and SCC antigen-positive cells was not uniform throughout the tumor. Isolation of cells from the tumors was accomplished by cell culture, growth in soft agar, and growth in the nude mouse. One nontumorigenic immortalized cell line, SCC-83-01-82, isolated by passage through soft agar, was treated with 50 micrograms/ml of methyl methane sulfonate (MMS). These MMS-converted cells subsequently expressed a tumorigenic phenotype. In situ hybridization of the tumors that developed in nude mice revealed increased c-myc and H-ras mRNA expression. Serial passage of the MMS-converted tumors in vivo was accompanied by consistent enhanced c-myc expression. However, the levels of H-ras and keratin mRNA expression decreased with passage in vitro. Northern blot analysis of c-myc and H-ras mRNA levels from the original SCC cell line showed no change in expression following MMS treatment. The data suggest that SCC-83-01-82 is a premalignant cell line established from a mixed cell population in the tumor mass. It can be converted to a malignant phenotype by treatment with MMS, and the persistence of malignancy is under molecular control other than changes in the level of c-myc and ras gene expression. |
| 25 years of the c-Myc oncogene. | TCL1 is an AKT kinase coactivator that, when dysregulated, initiates mature lymphocyte malignancies in humans and transgenic mice. While TCL1 augments AKT pathway signaling, additional TCL1 interacting proteins that may contribute to cellular homeostasis or transformation are lacking. Here, an exoribonuclease, PNPase, was identified in a complex with TCL1. The AKT interaction domain on TCL1 bound either RNase PH repeat domain of PNPase without influencing its RNA degrading activity, which was compatible with predicted docking models for a TCL1-PNPase complex. Our data provide a novel protein interaction for mammalian PNPase that may impact TCL1 mediated transformation. |
| The c-myc proto-oncogene regulates cardiac development in transgenic mice. | During the maturation of the cardiac myocyte, a transition occurs from hyperplastic to hypertrophic growth. The factors that control this transition in the developing heart are unknown. proto-oncogenes such as c-myc have been implicated in the regulation of cellular proliferation and differentiation, and in the heart the switch from myocyte proliferation to terminal differentiation is synchronous with a decrease in c-myc mRNA abundance. To determine whether c-myc can influence myocyte proliferation or differentiation, we examined the in vivo effect of increasing c-myc expression during embryogenesis and of preventing the decrease in c-myc mRNA expression that normally occurs during cardiac development. The model system used was a strain of transgenic mice exhibiting constitutive expression of c-myc mRNA in cardiac myocytes throughout development. In these transgenic mice, increased c-myc mRNA expression was found to be associated with both atrial and ventricular enlargement. This increase in cardiac mass was secondary to myocyte hyperplasia, with the transgenic hearts containing more than twice as many myocytes as did nontransgenic hearts. The results suggest that in the transgenic animals there is additional hyperplastic growth during fetal development. However, this additional proliferative growth is not reflected in abnormal myocyte maturation, as assessed by the expression of the cardiac and skeletal isoforms of alpha-actin. The results of this study indicate that constitutive expression of c-myc mRNA in the heart during development results in enhanced hyperplastic growth and suggest a regulatory role for this proto-oncogene in cardiac myogenesis. |
| WS5, a direct target of oncogenic transcription factor Myc, is related to human melanoma glycoprotein genes and has oncogenic potential. | We have isolated a gene (WS5) that is specifically expressed at the mRNA and protein level in avian fibroblasts transformed by the v-myc oncogene of avian acute leukemia virus MC29. In a conditional cell transformation system, WS5 gene expression was tightly correlated with v-myc activation. The WS5 gene contains 11 exons, encoding a 733-amino acid protein with a transmembrane region and a polycystic kidney disease (PKD) domain. Near the transcriptional start site, the WS5 promoter contains a cluster of four binding sites for the Myc-Max complex and a binding site for transcription factor C/EBPalpha. Electrophoretic mobility shift assays and chromatin immunoprecipitation showed that Myc, Max and C/EBPalpha bind specifically to these sites. Functional promoter analyses revealed that both the Myc-binding site cluster and the C/EBPalpha-binding site are essential for strong transcriptional activation, and that Myc and C/EBPalpha synergistically activate the WS5 promoter. Ectopic expression of WS5 led to cell transformation documented by anchorage-independent growth. The human melanoma antigen Pmel17, a type I transmembrane glycoprotein, is the mammalian protein with the highest amino acid sequence identity (38%) to WS5. The Pmel17 gene is regulated by the MITF protein, a bHLHZip transcription factor with DNA binding specificities similar to those of Myc/Max. WS5 is also related to human glycoprotein GPNMB expressed in metastatic melanoma cells and implicated in the progression of brain and liver tumors. |
| Quantitative mRNA expression analysis of neurotrophin-receptor TrkC and oncogene c-MYC from formalin-fixed, paraffin-embedded primitive neuroectodermal tumor samples. | Most recent studies analyzing candidate biological prognostic factors (including neurotrophin receptor TrkC and proto-oncogene c-MYC) in childhood primitive neuroectodermal brain tumors (PNET) are limited by small patient numbers due to dependence on fresh-frozen tumor material. In contrast, large archives of formalin-fixed, paraffin-embedded PNET samples exist from homogeneously treated patients. The ability of real-time RT-PCR to assay very small mRNA fragments makes this assay amenable to studies where the RNA is moderately or even highly degraded. We have optimized RNA isolation from archive PNET samples and found that TrkC and c-MYC mRNA measurements significantly correlated with those obtained from matching fresh-frozen tissues. Exploitation of already existing archives of formalin-fixed paraffin-embedded PNET samples may accelerate the building of better stratification systems for PNET patients. |
| Antiproliferative effects of antisense oligonucleotides directed to the RNA of c-myc oncogene. | Several groups have reported the use of antisense oligonucleotides to inhibit c-myc gene expression and study its biological role. However high concentrations of free oligonucleotides were generally needed. To lower their concentration and stabilize the antisense effect against c-myc, oligonucleotides were covalently linked to poly(L-lysine) and administered in ternary complexes formed with heparin (100 micrograms/ml). A sequence specific growth inhibition was observed at concentrations lower than 1 microM, while oligonucleotide-poly(L-lysine) conjugates alone were inefficient. Similar results occurred with other polyanionic compounds. Inhibition of proliferation was correlated to a reduction of c-myc protein and to a transient decrease in c-myc mRNA level. However, implication of RNase H in this process could not be demonstrated. |
| Astrocyte elevated gene-1 (AEG-1) is a target gene of oncogenic Ha-ras requiring phosphatidylinositol 3-kinase and c-Myc. | It is well established that Ha-ras and c-myc genes collaborate in promoting transformation, tumor progression, and metastasis. However, the precise mechanism underlying this cooperation remains unclear. In the present study, we document that astrocyte elevated gene-1 (AEG-1) is a downstream target molecule of Ha-ras and c-myc, mediating their tumor-promoting effects. AEG-1 expression is elevated in diverse neoplastic states, it cooperates with Ha-ras to promote transformation, and its overexpression augments invasion of transformed cells, demonstrating its functional involvement in Ha-ras-mediated tumorigenesis. We now document that AEG-1 expression is markedly induced by oncogenic Ha-ras, activating the phosphatidylinositol 3-kinase signaling pathway that augments binding of c-Myc to key E-box elements in the AEG-1 promoter, thereby regulating AEG-1 transcription. In addition, Ha-ras-mediated colony formation is inhibited by AEG-1 siRNA. This is a demonstration that Ha-ras activation of a tumor-promoting gene is regulated directly by c-Myc DNA binding via phosphatidylinositol 3-kinase signaling, thus revealing a previously uncharacterized mechanism of Ha-ras-mediated oncogenesis through AEG-1. |
| DNA repair in the c-myc proto-oncogene locus: possible involvement in susceptibility or resistance to plasmacytoma induction in BALB/c mice. | This report describes an unexpected difference in the efficiency of removal of UV-induced DNA damage in the c-myc locus in splenic B lymphoblasts from two inbred strains of mice. In cells from plasmacytoma-resistant DBA/2N mice, 35% of UV-induced damage in the regulatory and 5 flank of c-myc is removed by 12 h. However, in cells from plasmacytoma-susceptible BALB/cAn mice, damage is not removed from this region. In the protein-encoding region and 3 flank of c-myc as well as in two dihydrofolate reductase gene fragments, UV damage is repaired with similar efficiency in B lymphoblasts from both strains of mice. Furthermore, in the protein-encoding portion and 3 flank of c-myc, damage is selectively removed from only the transcribed strand. No repair is detected in the nontranscribed strand. In contrast, DNA repair in the 5 flank of c-myc is not strand specific; in DNA from DBA/2N cells, UV damage is rapidly removed from both the transcribed and nontranscribed strands. In BALB/cAn cells no repair was detected in either strand in the 5 flank, consistent with the results with double-stranded, nick-translated probes to this region of c-myc. In addition to the repair studies, we have detected post-UV-damage formation: in most of the genes studied, we find that additional T4 endonuclease-sensitive sites are formed in the DNA 2 h after irradiation. Our findings provide new insights into the details of gene-specific and strand-specific DNA repair and suggest that there may be close links between DNA repair and B-cell neoplastic development. |
| NOTCH1 directly regulates c-MYC and activates a feed-forward-loop transcriptional network promoting leukemic cell growth. | The NOTCH1 signaling pathway directly links extracellular signals with transcriptional responses in the cell nucleus and plays a critical role during T cell development and in the pathogenesis over 50% of human T cell lymphoblastic leukemia (T-ALL) cases. However, little is known about the transcriptional programs activated by NOTCH1. Using an integrative systems biology approach we show that NOTCH1 controls a feed-forward-loop transcriptional network that promotes cell growth. Inhibition of NOTCH1 signaling in T-ALL cells led to a reduction in cell size and elicited a gene expression signature dominated by down-regulated biosynthetic pathway genes. By integrating gene expression array and ChIP-on-chip data, we show that NOTCH1 directly activates multiple biosynthetic routes and induces c-MYC gene expression. Reverse engineering of regulatory networks from expression profiles showed that NOTCH1 and c-MYC govern two directly interconnected transcriptional programs containing common target genes that together regulate the growth of primary T-ALL cells. These results identify c-MYC as an essential mediator of NOTCH1 signaling and integrate NOTCH1 activation with oncogenic signaling pathways upstream of c-MYC. |
| Detection of human papillomavirus and relevant tumor suppressors and oncoproteins in laryngeal tumors. | PURPOSE: The mechanism of larynx oncogenesis is complex and controlled by various factors, most of them involved in cell proliferation and apoptosis. In this study, we evaluated the levels of two suppressor proteins (pRb and p53) and two oncogenic proteins (c-Myc and Bcl-2), as well as the apoptotic levels and the presence of human papillomavirus (HPV) in both tumor types. EXPERIMENTAL DESIGN: Low- or high-risk HPV viral DNA was determined by PCR and in situ PCR; the level of cellular proteins was examined by immunohistochemistry; the presence of apoptotic cells was evaluated by in situ cell death detection. RESULTS: Most laryngeal papillomatosis samples contained low-risk HPV determined by both techniques. However, 25% of laryngeal carcinoma samples were positive for HPV employing PCR or in situ PCR. In papillomatosis, pRb and p53 levels were higher than in normal larynxes, whereas laryngeal cancer presented the lowest levels. c-Myc oncogene expression was very low in normal and cancer tissues but highly increased in papillomatosis. Bcl-2 expression was low and showed no significant difference between laryngeal papillomatosis and normal larynxes. By contrast, Bcl-2 was clearly up-regulated in cancer. Normal larynx samples and those from laryngeal papillomatosis exhibited similar relatively high numbers of apoptotic cells, whereas in malignant tumors, these cells were scarce. CONCLUSION: Our results suggest that HPV is an important risk factor in papillomatosis and in some malignant larynx tumors with a strong participation of cellular genes, specifically involved in proliferation and apoptosis. In benign papillomatosis lesions but not in larynx cancer, high p53 activity might preserve the apoptosis process. In larynx cancer, low p53 levels and high bcl-2 expression may be playing an important role to block apoptosis. |
| Possible collaboration between c-fos and c-myc proto-oncogene products in in vivo lymphomagenesis. | Transgenic mice carrying the exogenous c-myc gene under regulation of the Ig enhancer (Ig-c-myc) were mated with mice carrying exogenous c-fos gene under control of the H-2Kb promoter (H2-c-fos) to examine their functional collaboration in in vivo lymphomagenesis. Two of the 33 (c-fos x c-myc) mice developed pre-B cell lymphomas within 22 weeks of age. None of the other F1 progeny expressing c-fos or c-myc alone showed malignant change within 14 months of age, suggesting that the exogenous c-fos and c-myc collaborate in in vivo lymphomagenesis. The exogenous c-myc RNA was overexpressed in the lymphomas, but the amount of exogenous c-fos RNA was not affected, suggesting that the large abundance of c-myc protein is a prerequisite for lymphoma onset or progression and c-fos protein plays a complementary role. C-fos protein induced immunodeficiency in the (c-fos x c-myc) mice like H2-c-fos mice. Natural killer cell activity of (c-fos x c-myc) mice was partially impaired. Therefore, these lymphomas may be a consequence of the synergism of two independent actions caused by the exogenous c-myc (lymphomagenesis) and the exogenous c-fos (low NK activity) in (c-fos x c-myc) mice. |
| [Amplification of L-myc oncogene in malignant meningioma. Case report]. | Amplification of L-myc oncogene was noticed in a malignant meningioma originating from the right sphenoidal wing of a 54-year-old female. The patient underwent three surgical resections plus radiotherapy over a period of 11 years and then the growth rate of the tumor became much greater with a severely invasive appearance. Using Southern blot hybridization, L-myc amplification was examined on the specimen resected at the fourth operation. As a result, approximately five-fold amplification was confirmed, which has not been previously reported except for that in a small cell carcinoma of the lung. This result may suggest that L-myc amplification is responsible to some extent for the malignant transformation in this meningioma. |
| Lack of mutagenicity and clastogenicity of PNAEmu-NLS targeted to a regulatory sequence of the translocated c-myc oncogene in Burkitt s lymphoma. | Peptide nucleic acids (PNAs) are synthetic homolog of nucleic acids in which the phosphate-sugar polynucleotide backbone is replaced by a flexible polyamide. They bind complementary polynucleotide sequences with higher affinity and specificity than their natural counterparts. PNAs linked to the appropriate nuclear localization signal (NLS) peptide have been used to selectively down-regulate the expression of several genes in viable cells. For example in Burkitt s lymphoma (BL) cells the c-myc oncogene is translocated in proximity to the Emu enhancer of the Ig gene locus and upregulated. PNAs complementary to the second exon of c-myc or to the Emu enhancer sequence (PNAEmu-NLS), selectively and specifically block the expression of the c-myc oncogene and inhibit cell growth in vitro and in vivo. PNAEmu-NLS administration to mice did not exhibit toxic effects even at the highest concentration allowed by the experimental conditions. Because of the accumulating data confirming PNAEmu-NLS potential therapeutic value, PNAEmu-NLS was evaluated for the inability to induce mutations in tester strains of Salmonella typhimurium, Escherichia coli, and at the hprt locus in Chinese hamster ovary cells (CHO). Moreover, the induction of chromosomal aberrations in CHO cells and of micronuclei in human lymphocytes were investigated. We may conclude that PNAEmu-NLS neither induces mutations nor has clastogenic effects as detectable by treatment under the standard test conditions. |
| Histological detection of c-myb and c-myc proto-oncogene expression in infiltrating cells in cutaneous lupus erythematosus-like lesions of MRL/l mice by in situ hybridization. | A relationship between lymphocytic activation and the overexpression of proto-oncogenes such as c-myb or c-myc has been demonstrated in human autoimmune disease. In autoimmune-prone MRL/l mice, which spontaneously develop lupus erythematosus (LE)-like lesions on the back, increased expression of myb RNA has been found in the lymphoid organs. We detected the overexpression of c-myb and c-myc proto-oncogenes in infiltrating cells in the cutaneous lesions of MRL/l mice by using in situ hybridization. No specific hybridization signals of either of the probes used were seen in the nonlesional skin of MRL/l mice or in the apparently normal skin of aged MRL/n and young MRL/l mice. These results suggest that the increased expression of myb and myc proto-oncogenes in the cutaneous LE-like lesions of MRL/l mice is related to a state of activation in the infiltrating cells and is involved in the development of these lesions. |
| Identification of Myc-associated protein with JmjC domain as a novel therapeutic target oncogene for lung cancer. | Through genome-wide expression profile analysis for non-small cell lung cancers (NSCLC), we found overexpression of a Myc-associated protein with JmjC domain (MAPJD) gene in the great majority of NSCLC cases. Induction of exogenous expression of MAPJD into NIH3T3 cells conferred growth-promoting activity. Concordantly, in vitro suppression of MAPJD expression with small interfering RNA effectively suppressed growth of NSCLC cells, in which MAPJD was overexpressed. We found four candidate MAPJD target genes, SBNO1, TGFBRAP1, RIOK1, and RASGEF1A, which were the most significantly induced by exogenous MAPJD expression. Through interaction with MYC protein, MAPJD transactivates a set of genes, including kinases and cell signal transducers that are possibly related to proliferation of lung cancer cells. As our data imply that MAPJD is a novel member of the MYC transcriptional complex and its activation is a common feature of lung cancer, selective suppression of this pathway could be a promising therapeutic target for treatment of lung cancers. |
| Involvement of the oncoprotein c-Myc in viral telomerase RNA gene regulation during Marek s disease virus-induced lymphomagenesis. | Marek s disease virus (MDV) is an alphaherpesvirus that induces a highly malignant T-lymphoma in chickens. The viral genome encodes two identical copies of a viral telomerase RNA subunit (vTR) that exhibits 88% sequence identity to its chicken ortholog chTR. The minimal telomerase ribonucleoprotein complex consists of a protein subunit with reverse transcriptase activity (TERT) and an RNA subunit (TR). The active complex compensates for the progressive telomere shortening that occurs during mitosis and is involved in the cell immortalization process. We show here that the upregulation of telomerase activity is associated with an increase in vTR gene expression in chickens infected with the highly oncogenic MDV strain RB-1B. A comparative functional analysis of the viral and chicken TR promoters, based on luciferase reporter assays, revealed that the vTR promoter was up to threefold more efficient than the chTR promoter in avian cells. We demonstrated, by directed mutagenesis of the vTR promoter region, that the stronger transcriptional activity of the vTR promoter resulted largely from an E-box located two nucleotides downstream from the transcriptional start site of the vTR gene. Furthermore, transactivation assays and chromatin immunoprecipitation assays demonstrated the involvement of the c-Myc oncoprotein in the transcriptional regulation of vTR. Finally, an Ets binding site was specifically implicated in the transcriptional regulation of vTR in the MDV-transformed lymphoblastoid cell line MSB-1. |
| Induction of apoptosis and autophagic cell death by the vanillin derivative 6-bromine-5-hydroxy-4-methoxybenzaldehyde is accompanied by the cleavage of DNA-PKcs and rapid destruction of c-Myc oncoprotein in HepG2 cells. | Autophagy is a regulated lysosomal pathway involving the bulk degradation of cytoplasmic contents, and is an emerging attractive therapeutic approach for treating cancers. In the present study, we demonstrates that bromovanin (6-bromine-5-hydroxy-4-methoxybenzaldehyde), a vanillin derivative, exhibits a potent antiproliferative effect on a broad spectrum of cancer cell lines, but it induces apoptosis with a large variation in extent on different cancer cell lines. Ultrastructural observation in transmission electron microscopy reveals that autophagy is another type of cell death induced by bromovanin in HepG2 cells. Treatment with bromovanin significantly increases cellular ROS level as well as elicits DNA double-strand breaks as indicated by comet assay and the increased phosphorylated H2AX. Cleavage and inactivation of DNA-PKcs induced by bromovanin is found to occur concurrently with a rapid destruction of c-Myc oncoprotein. These multiple effects of bromovanin, especially the induction of both apoptosis and autophagy, make it very appealing for the development as a novel anticancer drug. |
| Deregulated expression of a novel component of TFTC/STAGA histone acetyltransferase complexes, rat SGF29, in hepatocellular carcinoma: possible implication for the oncogenic potential of c-Myc. | c-Myc N-terminal conserved domains, MbI and MbII, are essential for c-Myc-mediated transformation and transactivation. These domains recruit the STAGA (SPT3-TAF9-GCN5-acetyltransferase) coactivator complex, but not TFTC (TATA-binding protein-free TAF-containing) to the target gene promoter. Although components of this complex are well conserved between yeast and mammals, four mammalian orthologs of yeast SPT8, SPT20, SGF11 and SGF29 remain to be identified. Here, we isolated a rat ortholog of yeast SGF29, a component of yeast SAGA (SPT-ADA-GCN5-acetyltransferase) complex. Both rat (r) SGF29 and c-myc mRNAs were overexpressed in five out of the eight tested rodent tumor cells. rSGF29 directly interacted with rADA3 and co-immunoprecipitated with two other TFTC/STAGA components, rGCN5 and rSPT3. rSGF29 was recruited to the c-Myc target gene promoters together with c-Myc, and it activated c-Myc target gene expressions. Downregulation of rSGF29 suppressed the expression of c-Myc target genes and inhibited anchorage-independent growth and tumorigenicity and lung metastasis of rat hepatoma K2 cells when injected into nude mice. These results show that rSGF29 is a novel component of TFTC/STAGA complexes and could be involved in the c-Myc-mediated malignant transformation. |
| Expression of exogenous c-myc oncogene does not initiate DNA synthesis in primary rat hepatocyte cultures. | Cultured hepatocytes from adult rats stimulated with combinations of growth factors enter into S phase but do not undergo multiple rounds of DNA synthesis nor mitosis. We have examined the potential of an introduced oncogene to induce alterations in the DNA synthetic activity of the cultured hepatocytes in response to epidermal growth factor (EGF). Overexpression of c-myc did not initiate significant DNA synthesis in rat hepatocyte cultures alone, although it cooperated with added EGF to super-induce thymidine incorporation into DNA. From our results, it is suggested that EGF is also necessary to initiate hepatocyte DNA synthesis probably by inducing a battery of cell cycle-related genes if incubated with c-myc transfected cultures for only 5 hours. Hepatocyte polypeptides reacting with anti-MYC antisera were found to migrate between 55-67 KDa in SDS-PAGE; only the 64-67 KDa species were found to be phosphorylated, and the observed size heterogeneity may be due to proteolytic degradation or may reflect presently unknown posttranslational modifications. |
| Stabilization of G-quadruplex DNA and down-regulation of oncogene c-myc by quindoline derivatives. | Stabilization of G-quadruplex structures in the promoter region of certain oncogenes is an emerging field in anticancer drug design. Human c-myc gene is one of these oncogenes, and G-quadruplexes have been proven to be the transcriptional controller of this gene. In the present study, the interaction of quindoline derivatives with G-quadruplexes in c-myc was investigated. The experimental results indicated that these derivatives have the ability to induce/stabilize the G-quadruplexes in c-myc, which lead to down-regulation of the c-myc in the Hep G2 cell line. It was found that derivatives with terminal amino groups in their side chains would selectively bind to the isomers with the double nucleotide loops in the absence of K+. Molecular modeling studies revealed the binding mode between the derivatives and the G-quadruplexes is end-stacking at the 3 -position, and the positively charged side chain on the quindoline derivatives may contribute to the selectivity to certain loop isomers of topological quadruplexes as well as the improved stabilization action. |
| Investigation of nuclear c-MYC oncoprotein expression in human hematopoiesis: suitability of a rapid and reliable semiquantitative evaluation system. | The biologic functions mediated by the nuclear protooncogene, c-MYC are correlated to gene dosage. Since automated quantification programs are expensive, time-consuming and not easily available, and since analysis by flow cytometry is difficult in the case of nuclear antigens, we examined the suitability and reproducibility of a semiquantitative in situ evaluation system. This system was based on the percentage of nuclear area staining positively, and comprised the following categories: 0: negative, 1+: single scattered grains of the immunocytochemical staining product, 2+: confluence of grains to patches but less than 50% nuclear area positive, and 3+: greater than 50% positive nuclear area. In addition, sensitivity and specificity of two anti-c-MYC antibodies were investigated. Although both antibodies differed slightly in staining pattern and sensitivity, the four quantification categories were applicable for immunostainings of both antisera and highly reproducible when re-evaluated by the same observer (r = 0.98; p = 0.0001) or a second investigator (rAb155 = 0.98, rAb DCPm = 0.96; p = 0.0001), both reading blindly and independently. Comparing our semiquantitative evaluation categories and results of computer-assisted image analysis, the percentage of positive nuclear area (p less than 0.0001), the median staining intensity (p less than 0.0001), and the product of both (p less than 0.0001) differed significantly in the four evaluation categories. This result still held true after correction for nuclear size, which differed appreciably in various cell types (p less than 0.0001). The product of positive nuclear area, staining intensity and nuclear size (microns 2), which best approximates the absolute amount of c-MYC within a certain cell, was clearly different within the four staining categories (p less than 0.0001) and did not depend on cellular morphology within the staining categories 0 to 2. Also, the immunocytochemical technique proved highly reproducible (median day/day variance 0.65% (0-13); r = 0.995). The practicability of this system for semiquantification was demonstrated by (a) correlation of H score values of immunocytochemical stainings with densitometric scans of Western blots and (b) by the fact that peripheral blood lymphocytes, Phytohemagglutinin stimulated blasts, 13 cases of multiple myeloma and HL-60 cells differed concerning their estimated c-MYC amounts (p = 0.0125). This confirms on the effector molecule level results previously reported from mRNA in situ and Northern blotting analyses. We conclude that a simple and highly reproducible evaluation system can be used for in situ comparison of nuclear oncogene dosage. |
| Metabolic enzymes regulated by the Myc oncogene are possible targets for chemotherapy or chemoprevention. | The Myc oncogenes are dysregulated in 70% of human cancers. They encode transcription factors that bind to E-box sequences in DNA, driving the expression of a vast amount of target genes. The biological outcome is enhanced proliferation (which is counteracted by apoptosis), angiogenesis and cancer. Based on the biological effects of Myc overexpression it was originally assumed that the important Myc target genes are those encoding components of the cell cycle machinery. Recent work has challenged this notion and indicates that Myc target genes encoding metabolic enzymes deserve attention, as they may be critical arbiters of Myc in cancer. Thus targeting metabolic enzymes encoded by Myc-target genes may provide a new means to treat cancer that have arisen in response to deregulated Myc oncogenes. |
| Detection of DNA copy number changes and oncogenic signaling abnormalities from gene expression data reveals MYC activation in high-grade papillary renal cell carcinoma. | Papillary renal cell carcinoma (RCC) represents 10% to 15% of adult renal neoplasms; however, the molecular genetic events that are associated with the development and progression of sporadic papillary RCC remain largely unclear. Papillary RCCs can be divided into two subtypes based on histologic, cytogenetic, and gene expression differences. Type 1 tumors ( approximately 60-70%) are generally low grade with favorable outcome, whereas type 2 tumors ( approximately 30-40%) are associated with increased cytogenetic complexity, high tumor grade, and poor prognosis. In this study, computational analysis of gene expression data derived from papillary RCC revealed that a transcriptional signature indicative of MYC pathway activation is present in high-grade type 2 papillary RCC. The MYC signature is associated with amplification of chromosome 8q and overexpression of MYC that maps to chromosome 8q24. The importance of MYC activation was confirmed by both pharmacologic and short interfering RNA-mediated inhibition of active Myc signaling in a cell line model of type 2 papillary RCC. These results provide both computational and genetic evidence that activation of Myc is associated with the aggressiveness of papillary type 2 RCC. Therefore, it will be useful to consider inhibition of components of the MYC signaling pathway as avenues for therapeutic intervention in high-grade papillary RCC. |
| Mnt takes control as key regulator of the myc/max/mxd network. | Myc is the most frequently deregulated oncogene in human tumors. The protein belongs to the Myc/Max/Mxd network of transcriptional regulators important for cell growth, proliferation, differentiation, and apoptosis. The ratio between Mnt/Max and c-Myc/Max on the 5 -CACGTG-3 E-box sequence at shared target genes is of great importance for cell cycle progression and arrest. Serum stimulation of quiescent cells results in phosphorylation of Mnt and disruption of the critical Mnt-mSin3-HDAC1 interaction. This in turn leads to increased expression of the Myc/Mnt target gene cyclin D2. It is therefore possible that Myc function relies on its ability to overcome transcriptional repression by Mnt and that relief of Mnt-mediated transcriptional repression is of greater importance for regulation of target genes than the sole activation by Myc. In addition, Mnt has many features of a tumor suppressor and may thus be nonfunctional or inactivated in human tumors. In summary, accumulating evidence supports the model of Mnt as the key regulator of the network in vivo. |
| The peptide nucleic acid targeted to a regulatory sequence of the translocated c-myc oncogene in Burkitt s lymphoma lacks immunogenicity: follow-up characterization of PNAEmu-NLS. | The present study aims to evaluate the antigenicity of a PNA complementary to the Emu sequence (PNAEmu) with cancer therapeutic potential properties in Burkitt s lymphoma (BL). In BL cells, the c-myc oncogene is repositioned next to the Emu enhancer of the immunoglobulin (Ig) locus, due to chromosomal translocation, and up-regulated. PNAEmu linked to a nuclear localization signal peptide was shown specifically to block c-myc hyperexpression by inhibiting cell growth in vitro and in vivo. Recently, we reported that the administration of PNAEmu to mice, following inoculation with BL cells, hinders tumor growth without toxic effects. To investigate the potential use of PNAEmu in clinical applications further, we tested its antigenicity. Mice were inoculated with an emulsion of free PNA or PNA crosslinked to the immunogenic carrier keyhole limpet hemocyanin (KLH) with Freund s adjuvant. Antibodies to free PNA were undetected, whereas both IgG and IgM antibodies to PNA-KLH were detected in mouse serum 28 and 38 days after inoculation. |
| Induction of c-myc oncoprotein and of cellular proliferation by radiation in normal human urothelial cultures. | Normal urothelial cultures were established from transplant ureters and irradiated or exposed to nitrosamines. The cells which survived the treatment were monitored for expression of c-myc oncoprotein. The cultures were also exposed to tritiated thymidine (3HTdR) to determine the total number of cells synthesizing DNA. The area of explant outgrowth was also measured. Proliferation is considered to be a fundamental precondition which has to be present before malignant change can take place or which has to accompany this change. The results indicate that the overall growth rate of the carcinogen-treated cultures is relatively faster than that of the controls. This is particularly true one to two weeks after carcinogen exposure. Certain areas of the culture develop abnormally, cells are different in size and shape to the normal uroepithelial cell and have the capacity to pile up and form characteristic foci. These foci continue to proliferate after senescence of control cultures and after senescence of normal areas of treated cultures. The cells in these foci express high levels of c-Myc oncoprotein. Control and treated but normal cells are negative for this antigen under the conditions used. N-ethyl nitrosamine (NEN) (0.005-0.05 micrograms/ml) and radiation (2.5-10.0 Gy) are both able to induce the changes described. The results suggest that radiation and/or nitrosamine treatment can induce uroepithelial cells to divide at a faster rate than usual. Certain cells within this fast growing culture attain the capacity to pile up and acquire a different morphology. These cells do not senescence at the usual time and are c-myc positive. They may represent a subpopulation which has undergone some pre or early malignant changes. |
| Loss of amplification and appearance of a novel translocation site of the c-myc oncogene in HL-60 leukemia cells. | The chromosomal localization of c-myc sequences was determined by in situ hybridization in HL-60 cells (HL-60a) which contain an amplified c-myc locus and in an HL-60 subline (T-HL60) which has lost the amplification and has proportionately lower levels of c-myc RNA. While in HL-60a cells amplified c-myc sequences were found on the M3q+ marker chromosome, in T-HL60 cells one or few residual c-myc copies were found on a novel 4q+ marker chromosome. Comparative phenotypic analysis of HL-60a and T-HL60 cells show that the decrease in c-myc amplification/expression is not accompanied by changes in the malignant phenotype, namely in doubling time and clonogenic capability in semi-solid media. The significance of these results is discussed in the context of the role of c-myc amplification in the establishment and/or maintenance of the leukemic phenotype in HL-60 cells. In general, these results further underscore the utility of in situ hybridization analysis in identifying oncogene translocations which are not detectable by conventional karyotypic analysis. |
| A prospective analysis of c-myc oncoprotein levels as a prognostic marker in malignant melanoma. | BACKGROUND: Previous studies from our group had identified c-myc oncoprotein expression as an important prognostic parameter in a series of retrospective studies of primary and metastatic melanoma and other variants of this disease. This study set out to prospectively evaluate the prognostic significance of c-myc positivity in a consecutive series of primary melanomas presenting at Mount Vernon Hospital Regional Plastic Surgery and Burns Centre. METHODS: A consecutive series of 117 primary melanomas underwent flow cytometric analysis for c-myc expression at diagnosis. Routine clinical and histological parameters were collected from each patient s clinical records and survival assessed. The mean follow up was 45 months. RESULTS: Kaplan-Meier survival analysis demonstrated that Breslow depth, histogenic subtype, ulceration, age and sex had prognostic significance. Survival analysis revealed high c-myc positivity to be significantly associated with poorer outcome (P<0.043). Each of the main prognostic parameters were assessed for their independent significance using Cox Proportional Hazards; only c-myc retained independent significance (P<0.039). CONCLUSIONS: The strength of this study is that it was performed in a consecutive series of patients followed up in a longitudinal prospective study. c-myc was not the strongest predictor of survival in univariate analysis, but was the only parameter that retained significance in multivariate analysis. |
| The PVT-1 oncogene is a Myc protein target that is overexpressed in transformed cells. | The human PVT-1 gene is located on chromosome 8 telomeric to the c-Myc gene and it is frequently involved in the translocations occurring in variant Burkitt s lymphomas and murine plasmacytomas. It has been proposed that PVT-1 regulates c-Myc gene transcription over a long distance. To get new insights into the functional relationships between the two genes, we have investigated PVT-1 and c-Myc expression in normal human tissues and in transformed cells. Our findings indicate that PVT-1 expression is restricted to a relative low number of normal tissues compared to the wide distribution of c-Myc mRNA, whereas the gene is highly expressed in many transformed cell types including neuroblastoma cells that do not express c-Myc. Reporter gene assays were used to dissect the PVT-1 promoter and to identify the region responsible for the elevated expression observed in transformed cells. This region contains two putative binding sites for Myc proteins. The results of transfection experiments in RAT1-MycER cells and chromatin immunoprecipitation (ChIP) assays in proliferating and differentiated neuroblastoma cells indicate that PVT-1 is a downstream target of Myc proteins. |
| c-myc oncoprotein function. | Genetic alterations of the c-myc locus in various malignancies and the ability of c-myc to transform cultured cells and induce tumors in transgenic animals attest to its central role in many neoplasms. By dissecting the c-Myc protein, a number of critical functional domains of c-Myc have been identified and characterized; these findings suggest a model for c-Myc function and intracellular activity (Fig. 4). c-Myc is synthesized in the cytoplasm and undergoes oligomerization another protein such as Max. Its nuclear localization signal allows c-Myc to be targeted to and retained in the nucleus, where the protein seeks out and binds to specific DNA sites, perhaps facilitated by c-Myc s ability to bind non-specifically to DNA. Once bound to specific DNA sequences, c-Myc then activates or inhibits transcription of a number of target genes, with consequent alterations in cell growth and differentiation. Continued studies of c-Myc and its partner Max should further elucidate the mechanisms by which c-Myc can contribute both to the regulation of normal cell growth and the alteration in that regulation in neoplasia. |
| Myc goes global: new tricks for an old oncogene. | Myc, a transcription factor commonly deregulated in tumorigenesis, is thought to mediate its diverse cellular effects by altering the expression of specific target genes. However, it has been difficult to gain a precise understanding of how Myc drives cancer because Myc acts rather weakly at many of its target loci, and it has been reported to regulate as many as 10% to 15% of ALL cellular genes. A new perspective on this issue has been provided by a recent study that revealed Myc can regulate chromatin structure in a global fashion. These findings suggest actions for Myc that extend beyond the traditional concept of a targeted gene regulator. |
| Morphological and cytogenetic characterization and N-myc oncogene analysis of a newly established neuroblastoma cell line. | A permanent cell line established from a xenograft of neuroblastoma which occurred in a 5-year-old girl was investigated for its morphological and biological characteristics. The cultured cells were tumorigenic in nude mice. Microscopically, each tumor consisted of small round to polygonal cells with irregular nuclei and prominent nucleoli, corresponding to the features of the primary and xenografted tumor cells. Electron microscopic examination revealed that both the transplanted tumor cells and the cultured cells contained scanty microtubules and dense-core neurosecretory granules. Chromosome analysis of this cell line showed monosomy for chromosomes 1, 10, 19 and X, and structural rearrangements involving chromosomes 8, 17 and 20, in addition to numerous double minutes. The N-myc oncogene was found to be amplified 40- to 80-fold in the transplanted and cultured tumor cells, as well as in the primary tumor cells. In situ hybridization with a digoxigenin-labeled uridine-triphosphate N-myc RNA probe detected abundant mRNA in the tumor cells. This neuroblastoma line may become a valuable in vitro experimental model system for studies aimed at better characterization of neuroblastoma. |
| The small Rho GTPase Rac1 controls normal human dermal fibroblasts proliferation with phosphorylation of the oncoprotein c-myc. | Proliferation of dermal fibroblasts is crucial for the maintenance of skin. The small Rho GTPase, Rac1, has been identified as a key transducer of proliferative signals in various cell types, but in normal human dermal fibroblasts its significance to cell growth control has not been studied. In this study, we applied the method of RNA interference to suppress endogenous Rac1 expression and examined the consequences on human skin fibroblasts. Rac1 knock-down resulted in inhibition of DNA synthesis. This effect was not mediated by inhibition of the central transducer of proliferative stimuli, ERK1/2 or by activation of the pro-apoptotic p38. Rather, as a consequence of the suppressed Rac1 expression we observed a significant decrease in phosphorylation of c-myc, revealing for the first time that in human fibroblasts Rac1 exerts control on proliferation through c-myc phosphorylation. Thus Rac1 activates proliferation of normal fibroblasts through stimulation of c-myc phosphorylation without affecting ERK1/2 activity. |
| Amplification of c-myc and cyclin D1 genes in primary and metastatic carcinomas of the liver. | The c-myc and cyclin D1 genes are included among the oncogenes the amplifications of which have been detected in cancers of various organs. However, there have been few reports on the amplification of both these genes in primary and metastatic liver carcinomas. In the present study, c-myc and cyclin D1 gene amplification was examined in 76 primary and metastatic liver carcinomas using formalin-fixed paraffin-embedded tissue sections and a differential polymerase chain reaction procedure. c-myc and cyclin D1 gene amplification was detected in 15 (33%) and two (4%) of 46 hepatocellular carcinomas (HCC), one (10%) and 0 (0%) of 10 intrahepatic cholangiocarcinomas (ICC), one (33%) and 0 (0%) of three combined hepatocellular and cholangiocarcinomas (HCC + ICC), and nine (56%) and three (19%) of 16 metastatic lesions to the liver from colorectal adenocarcinoma (MCA), respectively. The incidence of c-myc amplification was significantly higher in MCA than in ICC (P = 0.023), and it tended to be higher in HCC than in ICC. These results indicate that the amplification of the c-myc proto-oncogene is not unusual in HCC and MCA, and its detection may have a useful diagnostic significance in differentiating ICC from MCA or HCC from ICC. |
| Suppression of oncogenic properties of c-Myc by LKB1-controlled epithelial organization. | Cellular organization into epithelial architecture maintains structural integrity and homeostasis by suppressing cell proliferation and apoptosis. However, it is unclear whether the epithelial organization is sufficient to block induction of cell-autonomous cell cycle progression and apoptotic sensitivity by activated oncogenes. We show that chronic activation of oncogenic c-Myc, starting in the developing 3D organotypic mammary acinar structures, results in hyperproliferation and transformed acinar morphology. Surprisingly, acute c-Myc activation in mature quiescent acini with established epithelial architecture fails to reinitiate the cell cycle or transform these structures. c-Myc does reinitiate the cell cycle in quiescent, but structurally unorganized, acini, which demonstrates that proper epithelial architecture is needed for the proliferation blockade. The capability of c-Myc to reinitiate the cell cycle in acinar structures is also restored by the loss of LKB1, a human homologue of the cell polarity protein PAR4. The epithelial architecture also restrains the apoptotic activity of c-Myc, but coactivation of c-Myc and a complementary TNF-related apoptosis-inducing ligand death receptor pathway can induce a strong Bim and Bid-mediated apoptotic response in the established acini. The results together expose surprising proliferation and apoptosis resistance of organized epithelial structures and identify a role for the polarity regulator LKB1 in the development of c-Myc-resistant cell organization. |
| Increased expression of the proto-oncogene, c-myc, in human neuroblastoma cells by reversible inhibition of cell growth. | expression of the proto-oncogenes N-myc and c-myc in the human neuroblastoma cell line, IMR32, was examined after reversible inhibition of DNA synthesis by treatment with deferoxamine. After 48 h treatment with 10(-5) M deferoxamine, the number of c-myc expressing cells doubled, while N-myc expressing cells did not change. The expression level of c-myc in each cell also increased. These results suggested that the synthesis of cellular factor(s) involved in the degradation of c-myc RNA or its product was suppressed by reversible inhibition of cell growth. The regulatory mechanisms of expression of N-myc and c-myc may be distinct. |
| Flow cytometric and immunohistochemical analysis of p62c-myc oncoprotein in the bronchial epithelium of lung cancer patients. | The expression of p62c-myc in bronchial resection lines (BRLs) from lung cancer and control patients, has been examined by immunohistochemistry and parallel flow cytometry using antibodies directed against the p62c-myc oncoprotein. Both methods indicated a marked increase in nuclear p62c-myc levels in BRLs from tumour cases as compared to control BRLs. Immunohistochemistry also revealed greater cytoplasmic positivity in BRLs from cancer patients than from control cases. Flow cytometric quantitation of nuclear p62c-myc confirmed the immunohistochemical findings demonstrating that the median level of nuclear p62-myc fluorescence in BRLs from tumour cases was 1919 fluorescence units (FU) (range:216-7367 FU) and 144 FU (range:0-1365 FU) for non-tumour control BRLs. No consistent difference in p62c-myc fluorescence was observed between BRLs from smokers and non smokers. Both methods indicated that in lung tumour cases, nuclear p62c-myc was increased in histologically normal and abnormal BRLs, suggesting that hyperexpression of this protein is an early event preceding detectable morphological change. These results suggest that increased p62c-myc levels may be an early event in the pathogenesis of lung cancer. |
| Nuclear receptor hepatocyte nuclear factor 4alpha1 competes with oncoprotein c-Myc for control of the p21/WAF1 promoter. | The dichotomy between cellular differentiation and proliferation is a fundamental aspect of both normal development and tumor progression; however, the molecular basis of this opposition is not well understood. To address this issue, we investigated the mechanism by which the nuclear receptor hepatocyte nuclear factor 4alpha1 (HNF4alpha1) regulates the expression of the human cyclin-dependent kinase inhibitor gene p21/WAF1 (CDKN1A). We found that HNF4alpha1, a transcription factor that plays a central role in differentiation in the liver, pancreas, and intestine, activates the expression of p21 primarily by interacting with promoter-bound Sp1 at both the proximal promoter region and at newly identified sites in a distal region (-2.4 kb). Although HNF4alpha1 also binds two additional regions containing putative HNF4alpha binding sites, HNF4alpha1 mutants deficient in DNA binding activate the p21 promoter to the same extent as wild-type HNF4alpha1, indicating that direct DNA binding by HNF4alpha1 is not necessary for p21 activation. We also observed an in vitro and in vivo interaction between HNF4alpha1 and c-Myc as well as a competition between these two transcription factors for interaction with promoter-bound Sp1 and regulation of p21. Finally, we show that c-Myc competes with HNF4alpha1 for control of apolipoprotein C3 (APOC3), a gene associated with the differentiated hepatic phenotype. These results suggest a general model by which a differentiation factor (HNF4alpha1) and a proliferation factor (c-Myc) may compete for control of genes involved in cell proliferation and differentiation. |
| Premalignant cervical lesions are characterized by dihydrofolate reductase gene amplification and c-Myc overexpression: possible biomarkers. | OBJECTIVE: The c-Myc oncoprotein deregulation is associated with overall genomic instability and locus-specific genomic instability involving the dihydrofolate reductase (DHFR) locus. This study analyzes c-Myc protein levels and the stability of the DHFR gene in cervical tissue biopsies. MATERIALS AND METHODS: The stability of the DHFR gene was examined by fluorescence in situ hybridization (FISH). c-Myc protein levels were evaluated using quantitative fluorescent immunohistochemistry. Forty-four cervical tissue biopsies were analyzed and included 33 preinvasive cervical lesions identified by histology, 14 samples were cervical intraepithelial neoplasia (CIN) 1; 7 were CIN 2; and 12 were CIN 3. Eleven biopsies had negative histology. RESULTS AND CONCLUSION: c-Myc protein levels were elevated in CIN 1, 2, and 3 (p = .02) biopsies. Concomitantly, DHFR gene amplification was detected in CIN 1, 2, and 3 (p = .0001). The degrees of DHFR gene amplification and of c-Myc protein levels were a measure of the progressive degree of the lesion. |
| Growth hormone receptor (Ghr) and hemoglobin alpha-chain pseudogene 3 (Hba-ps3) map proximal to the myelocytomatosis oncogene (Myc) on mouse chromosome 15. | Amplification and activation of c-Ki-ras gene was studied in normal human pancreas and a cell line (T-3) derived from normal pancreas explants exposed to methylnitrosourea (MNU) for 26 weeks. Normal genomic DNAs from pancreas and derived cell lines showed no transforming activity in NIH 3T3 cells. However, DNAs isolated from tumorigenic cell line derived from MNU treated human pancreas explants transformed NIH 3T3 cells. The hybridization profiles showed that the c-Ki-ras gene was amplified 5 fold in the tumorigenic cells (T-3). The level of mRNA specific to the c-Ki-ras gene was found to be 50-60 fold higher in the malignant cells than in normal human pancreas. These results suggest that higher expression of ras genes is due to gene amplification and/or activation, which is an important step in carcinogenesis. |
| [Regulatory protein factor CTCF interacts with a segment of the chicken c-myc oncogene promotor, capable of changing to a noncanonical conformation]. | To identify the regions in the chicken c-myc promoter that are necessary for the binding of a nuclear trans-acting factor CTCF--the potential oncogene activator--we used a synthetic analog of the natural binding site that contains three correctly spaced CCCTC-repeats that are known to be involved in CTCF-binding. Gel retardation experiments failed to detect any CTCF-binding activity with this synthetic site. We conclude that GC-transversions made in the regions presumed to be invalid, do in fact interfere with the protein binding. The secondary structure analysis with S1-nuclease shows the presence of an unusual DNA conformation of the CTCF-binding site in the supercoiled plasmids, that can not be detected with the artificial construction. The precise mapping of S1 nuclease cleavage reveals several hypersensitive sites in the CCCTC-zone. Thus, an altered secondary structure may be functionally important for the protein recognition in vivo. |
| Circular dichroism study of DNA binding by a potential anticancer peptide nucleic acid targeted against the MYCN oncogene. | The interaction with DNA of a peptide nucleic acid (PNA) oligomer (16nt) conjugated with a nuclear localization signal (NLS) peptide, which was previously found to be able to inhibit tumor cell proliferation through block of transcription of the MYCN oncogene, was studied by UV and CD spectroscopy. While data obtained by UV were not conclusive, the use of circular dichroism gave clear-cut evidence of the formation of a PNA:DNA duplex of exceptionally high stability (Tm >or= 90 degrees C). Using the same approach, the effect of mutations on DNA:PNA stability was evaluated, and was found in accordance with that expected for a Watson-Crick interaction. The role of the NLS peptide was evaluated by using a PNA lacking of this part, which gave rise to less stable PNA:DNA duplexes. Finally, a competition experiment carried out with a 26mer dsDNA, containing the target 16mer sequence in its middle region, in the presence of PNA-NLS gave evidence for the formation of a ternary complex at 25 degrees , while at higher temperature, the PNA:DNA duplex and the displaced homologous DNA strand were detected. The present results support the possibility of an analogous mechanism of action of this antitumor PNA in vivo. |
| [The regulation of DNA repair processes in mammalian cells. II. The repair of DNA radiation damage in NIH 3T3 murine cells transformed by the v-myc oncogene]. | The kinetics of repair of the ionizing radiation-induced DNA single- and double-strand breaks in the normal NIH 3T3 mouse cells and in those transformed with virus oncogenes v-myc has been investigated. The incubation of non-transformed cells for 18 hours in serum-free medium results in significant decrease in the rate of the single-strand DNA breaks repair during the first minutes of post-irradiation incubation. This effect is absent in transformed cells. The DNA double-strand breaks repair is more efficient in transformed NIH 3T3 cells as compared to that in the non-transformed ones both after their incubation in the medium with 10% fetal bovine serum or without serum. However, more significant differences in the rate of elimination of these DNA lesions was found in the serum-free medium. Hence, the presence of v-myc sequences in the transformed cells prevented from a decrease in the efficiency of DNA repair due to incubation of cell culture in serum-free medium. These results agree with the assumption that c-myc gene product may be a mediator in regulation of DNA repair by the epidermal growth factor. These data also show that the c-myc gene expression in an important condition providing a high efficiency of the constitutive DNA repair process. |
| STAGA recruits Mediator to the MYC oncoprotein to stimulate transcription and cell proliferation. | Activation of eukaryotic gene transcription involves the recruitment by DNA-binding activators of multiprotein histone acetyltransferase (HAT) and Mediator complexes. How these coactivator complexes functionally cooperate and the roles of the different subunits/modules remain unclear. Here we report physical interactions between the human HAT complex STAGA (SPT3-TAF9-GCN5-acetylase) and a "core" form of the Mediator complex during transcription activation by the MYC oncoprotein. Knockdown of the STAF65gamma component of STAGA in human cells prevents the stable association of TRRAP and GCN5 with the SPT3 and TAF9 subunits; impairs transcription of MYC-dependent genes, including MYC transactivation of the telomerase reverse transcriptase (TERT) promoter; and inhibits proliferation of MYC-dependent cells. STAF65gamma is required for SPT3/STAGA interaction with core Mediator and for MYC recruitment of SPT3, TAF9, and core Mediator components to the TERT promoter but is dispensable for MYC recruitment of TRRAP, GCN5, and p300 and for acetylation of nucleosomes and loading of TFIID and RNA polymerase II on the promoter. These results suggest a novel STAF65gamma-dependent function of STAGA-type complexes in cell proliferation and transcription activation by MYC postloading of TFIID and RNA polymerase II that involves direct recruitment of core Mediator. |
| Both Wnt and mTOR signaling pathways are involved in insulin-stimulated proto-oncogene expression in intestinal cells. | Subjects with Type II diabetes mellitus are more vulnerable in developing colorectal tumors, suggesting that hyperinsulinemia may stimulate proto-oncogene expression, and the existence of crosstalk between insulin signaling and pathways that are involved in colorectal tumor formation. We show here that insulin stimulates cell proliferation and c-Myc expression in colon cancer cell lines HT29 and Caco-2, intestinal non-cancer cell line IEC-6, and primary fetal rat intestinal cell (FRIC) cultures. The effect of insulin was blocked by phosphoinositide-3 Kinase (PI3K) inhibition, but only partially attenuated by inhibition of Protein kinase B (PKB), indicating the existence of both PKB-dependent and -independent mechanisms. The PKB-dependent mechanism of insulin-stimulated c-Myc expression in HT29 cells was shown to involve the activation of mTOR in c-Myc translation. In the investigation of the PKB-independent mechanism, we found that insulin-induced nuclear translocation of beta-catenin (beta-cat), an effector of Wnt signaling. Furthermore, insulin stimulated the expression of TopFlash, a Wnt-responsive reporter gene. Finally, chromatin immunoprecipitation (ChIP) detected significant increases in the binding of beta-cat to two TCF binding sites of the human c-Myc promoter following insulin treatment. Our observations support the existence of crosstalk between insulin and Wnt signaling pathways, and suggest that the crosstalk involves a PKB-independent mechanism. |
| Concurrent gain of 17q and the MYC oncogene in a medullomyoblastoma. | Medullomyoblastoma (MMB) is a rare cerebellar childhood tumor containing both myoblastic and primitive neuroectodermal components. Similar to the scenario in classical medulloblastoma, which contains the primitive neuroectodermal component only, gain of sequences from the long arm of chromosome 17 (17q) and gain of the MYC gene in 8q have been implicated in the pathogenesis of MMB. Because karyotypic analysis has not previously been performed for MMB, the mechanisms behind genomic imbalances in this tumor have remained unknown. Several other central aspects of this tumor, such as histocytogenetic origin, clinical characteristics, tumor behavior and prognosis, also remain unknown. We here report neuropathological and cytogenetic features of an MMB in a 3-year-old boy. Chromosome banding analysis and multicolor karyotyping revealed a hyperdiploid karyotype including an unbalanced 1; 17 translocation and isochromosome 17q formation, both leading to gain of 17q. There were also two extra copies of chromosome 8, leading to gain of the MYC oncogene, trisomies 5 and 13, and monosomy 9. Clonal chromosome changes were present in both the myoblastic and neuroectodermal components. Our findings support the notion that MMB and classical medulloblastoma arise through similar genetic mechanisms and that the two main tissue components in MMB are clonally related. |
| Antibodies to sperm surface antigens and the c-myc proto-oncogene product inhibit early embryonic development in mice. | The effects of antibodies against sperm antigens and the c-myc proto-oncogene product on early embryonic development were investigated in mice. Affinity-purified Fab antibodies against lithium diiodosalicylate (LIS)-solubilized murine sperm extract and fertilization antigen (FA-1) reduced (p less than 0.01 to p less than 0.001) blastulation rates of in vitro cultured 2-cell murine embryos primarily because of an arrest of development at the morula stage. Similarly, the c-myc monoclonal antibody (mAb) affected early embryonic development in a dose-dependent manner. These effects were specific, since immunoabsorption, with its respective peptide, completely blocked the inhibitory effect of the c-myc mAb. Anti-LIS sperm Fab identified four protein bands (approx. 36, 29, 24.6, and 17.6 kDa) on Western blots of extracts from unfertilized and fertilized ova, one band (approx. 68 kDa) each on 4-8-cell embryo and morula extracts, and one band (approx. 53 kDa) on blastocyst extracts. Anti-FA-1 Fab did not react with unfertilized or fertilized ova, but specifically identified two protein bands (approx. 53 and 25.7 kDa) on blots of 2-cell-embryo extract, one band (approx. 25.7 kDa) on morula extract, and one band (approx. 53 kDa) on blastocyst extract. The c-myc mAb did not react with any band corresponding to the c-myc protein on blots of extracts from unfertilized or fertilized ova, 2-cell embryos, 4-8-cell embryos, morulae, or blastocysts. These results suggest that some of the cross-reacting sperm antigens that are expressed during early cleavages, and the product of the c-myc proto-oncogene may have a role in normal early embryonic development. |
| Immunohistochemical analysis of the expression of the c-myc oncoprotein in human stomach cancers. | In an immunohistopathological study, we have used the specific monoclonal antibody myc 1-9E10 to the c-myc oncoprotein in 88 gastric carcinomas (22 gastric biopsies and 66 gastrectomies for cancer). Positive myc p62 immunoreactivity was shown in 48 (55%) cases with moderate or intense staining. The remaining 40 cases exhibited negative or equivocal staining. Normal stomach mucosa was generally nonreactive, with the exception of parietal cells. Elevated c-myc expression was not found to correlate with histological differentiation or in patients with metastases in one or more perigastric lymph nodes. A correlation was found between the level of c-myc expression and the stage of the disease, (p = 0.04); positive c-myc staining was found in 0/4 early gastric cancers and in 48/84 with advanced disease. Also, an association was found between the elevated c-myc expression and depth of invasion (p = 0.1; 0/4 mucosa and submucosa, 2/6 muscularis propria and 25/47 serosa). The c-myc monoclonal myc 1-9E10 may therefore be of use as a marker of advanced disease and depth of invasion in stomach cancer. |
| Dynamic regulation of c-Myc proto-oncogene expression during lymphocyte development revealed by a GFP-c-Myc knock-in mouse. | c-Myc induces widely varying cellular effects, including cell proliferation and cell death. These different cellular effects are determined, in part, by c-Myc protein expression levels, which are regulated through several transcriptional and post-transcriptional pathways. c-Myc transcripts can be detected in cells at ALL stages of B and T lymphocyte development. However, little is known about c-Myc protein expression, and how it varies, in developing lymphocytes. Here mice have been generated in which the endogenous c-Myc locus has been modified (c-Myc(G)) so that it encodes a GFP-c-Myc fusion protein. c-Myc(G/G) mice are viable, appear normal and exhibit grossly normal lymphocyte development. Flow cytometric analyses revealed significant heterogeneity in c-Myc protein expression levels in developing c-Myc(G/G) B and T lymphocytes. GFP-c-Myc expression levels were highest in proliferating lymphocytes, suggesting that c-Myc up-regulation is important for promoting lymphocyte cell division, and demonstrating that GFP-c-Myc expression is a marker of proliferating lymphocytes in vivo. |
| The Jak2V617F oncogene associated with myeloproliferative diseases requires a functional FERM domain for transformation and for expression of the Myc and Pim proto-oncogenes. | The V617F activating point mutation in Jak2 is associated with a proportion of myeloproliferative disorders. In normal hematopoietic cells, Jak2 signals only when associated with a growth factor receptor, such as the erythropoietin receptor (EpoR). We sought to identify the molecular requirements for activation of Jak2V617F by introducing a point mutation in the FERM domain (Y114A), required for receptor binding. Whereas BaF3.EpoR cells are readily transformed by Jak2V617F to Epo independence, we found that the addition of the FERM domain mutation blocked transformation and the induction of reactive oxygen species. Further, while cells expressing Jak2V617F had constitutive activation of STAT5, cells expressing Jak2V617F/Y114A did not, suggesting that signaling is defective at a very proximal level. In addition, expression of the Myc and Pim proto-oncogenes by Jak2V617F was found to be FERM domain dependent. An inducible constitutively active STAT5 mutant expressed in BaF3 cells was sufficient to induce Myc and Pim. Finally, the FERM domain in Jak2V617F was also required for abnormal hematopoiesis in transduced primary murine fetal liver cells. Overall, our results suggest that constitutive activation of Jak2 requires an intact FERM domain for a transforming phenotype, and is necessary for activation of the major target of Jak2, STAT5. |
| The prognostic value of c-myc oncoprotein levels in malignant melanoma. | Kryptolebias marmoratus is the only known internally self-fertilizing vertebrate. It shows high susceptibility to many chemical carcinogens and has been proposed as a potential cancer model species alternative to mammals. Since use of this fish species is expected to rise in cancer research, regulation of oncogenes from K. marmoratus needs proper understanding. We cloned and deduced full-length sequence of cDNA of N-ras oncogene from K. marmoratus. Study of expression profile of N-ras by using quantitative real-time RT-PCR revealed that brain had the highest level of expression compared to other tissues. Some embryonic stages showed more N-ras expression than juveniles and adults. Exposure to two environmental endocrine disrupting chemicals (EDCs), bisphenol A (BPA) and 4-nonylphenyl (NP) caused up-regulation of N-ras in gonad, intestine and liver of hermaphrodite K. marmoratus. It is suggested that K. marmoratus may be a suitable model species for oncogene expression studies. The observed EDC-induced expression of N-ras supports the assumption that EDC exposure may predispose the host to the risk of environmental carcinogenesis. |
| Activation of the M-CSF gene in mouse macrophages immortalized by retroviruses carrying a v-myc oncogene. | We have recently immortalized murine brain macrophages (microglial cells) with a complex of retroviruses (3RV) transducing separately the myc and mil oncogenes. Surprisingly, the immortalized cells harboured an exogenous v-myc oncogene, but no v-mil sequences. The transformed macrophage cell lines grew in vitro without the addition of exogenous growth factors and were also able to grow in vivo in nude mice. In addition, they released oncogenic retroviruses able to immortalize mouse macrophages from primary splenic or thymic cultures. Molecular cloning of the provirus (VN-11) harboured in a microglial clone demonstrated that no cell-derived sequences apart from an avian v-myc gene were transduced by the recombinant retrovirus. When cells were tested for production of myeloid growth factors, they were found to transcribe and synthesize the Macrophage-Colony Stimulating Factor (M-CSF). The correlation between viral infection and activation of the M-CSF gene was tested using a M-CSF dependent cell line from which growth factor independent clones could be readily obtained after infection. The synthesis of M-CSF was detected only in cells expressing the avian v-myc protein. These data support the hypothesis that, in our conditions, macrophages can be immortalized by the expression of v-myc and the concomitant establishment of an autocrine loop triggered by viral infection. |
| Epstein-Barr virus nuclear antigen 3C interacts with and enhances the stability of the c-Myc oncoprotein. | Epstein-Barr virus (EBV) was the first human DNA virus to be associated with cancer. Its oncogenic potential was further demonstrated by its ability to transform primary B lymphocytes in vitro. EBV nuclear antigen 3C (EBNA3C) is one of a small subset of latent antigens critical for the transformation of human primary B lymphocytes. Although EBNA3C has been shown to modulate several cellular functions, additional targets involved in cellular transformation remain to be explored. EBNA3C can recruit key components of the SCF(Skp2) ubiquitin ligase complex. In this report, we show that EBNA3C residues 130 to 190, previously shown to bind to the SCF(Skp2) complex, also can strongly associate with the c-Myc oncoprotein. Additionally, the interaction of EBNA3C with c-Myc was mapped to the region of c-Myc that includes the highly conserved Skp2 binding domain. Skp2 has been shown to regulate c-Myc stability and also has been shown to function as a coactivator of transcription for c-Myc target genes. We now show that the EBV latent oncoprotein EBNA3C can stabilize c-Myc and that the recruitment of both c-Myc and its cofactor Skp2 to c-Myc-dependent promoters can enhance c-Myc-dependent transcription. This same region of EBNA3C also recruits and modulates the activity of retinoblastoma and p27, both major regulators of the mammalian cell cycle. The inclusion of c-Myc in the group of cellular targets modulated by this domain further accentuates the importance of these critical residues of EBNA3C in bypassing the cell cycle checkpoints. |
| Adenovirus E1A oncoprotein liberates c-Myc activity to promote cell proliferation through abating Bin1 expression via an Rb/E2F1-dependent mechanism. | Adenovirus E1A oncogene transforms primary rodent fibroblasts in cooperation with activated Ras. Conversely, the c-Myc oncoprotein-binding tumor suppressor, Bin1, inhibits Ras/E1A-mediated cell transformation. Since E1A does not directly bind to and inhibit Bin1, the primary mechanism by which E1A counteracts Bin1 to liberate oncogenic c-Myc activity is poorly understood. Here we show that wild-type E1A, but not an Rb binding-defective E1A mutant, suppresses endogenous Bin1 expression in cultured rodent fibroblasts. Similarly, other anti-Rb agents, such as human papillomavirus E7, mitogenic stimuli, and small interfering RNA (siRNA) for Rb, consistently decrease Bin1 promoter activity. In contrast, serum starvation, which activates Rb, enhances endogenous Bin1 levels. These findings suggest that Bin1 may be a novel component of Rb-mediated G1 arrest. Consistent with this premise, chromatin immunoprecipitation assays demonstrate that Rb protein directly interacts with the Bin1 promoter only upon removal of serum. Furthermore, ectopically expressed E2F1, which is primarily inhibited by Rb under serum-starved condition, represses Bin1 promoter activity in a manner that is dependent on the DNA-binding and transactivation domains of E2F1. Lastly, depletion of endogenous Bin1 per se is biologically meaningful since antisense or siRNA of Bin1 transfection releases endogenous c-Myc transcriptional activity and, concomitantly, accelerates cell proliferation. Our results suggest that Bin1 gene suppression caused by oncogenic E1A via Rb inactivation is an essential step in cell cycle progression promoted by c-Myc, and subsequently, E1A transformation. We propose a novel G1 arrest signaling mechanism by which Rb indirectly curbs oncogenic c-Myc activity via sustaining Bin1 expression. |
| Significance of HER2 and C-MYC oncogene amplifications in breast cancer in atomic bomb survivors: associations with radiation exposure and histologic grade. | BACKGROUND: It has been postulated that radiation induces breast cancers in atomic bomb (A-bomb) survivors. oncogene amplification is an important mechanism during breast carcinogenesis and also serves as an indicator of genomic instability (GIN). The objective of this study was to clarify the association of oncogene amplification in breast cancer in A-bomb survivors with radiation exposure. METHODS: In total, 593 breast cancers were identified in A-bomb survivors from 1968 to 1999, and the association between breast cancer incidence and A-bomb radiation exposure was evaluated. Invasive ductal cancers from 67 survivors and 30 nonsurvivors were analyzed for amplification of the HER2 and C-MYC genes by fluorescence in situ hybridization, and expression levels of hormone receptors were analyzed by immunostaining. RESULTS: The incidence rate increased significantly as exposure distance decreased from the hypocenter (hazard ratio per 1-km decrement, 1.47; 95% confidence interval [95% CI], 1.30-1.66). The incidence of HER2 and C-MYC amplification was increased significantly in the order of the control group, the distal group (P = .0238), and the proximal group (P = .0128). Multivariate analyses revealed that distance was a risk factor for the coamplification of C-MYC and HER2 in breast cancer in survivors (odds ratio per 1-km increment, 0.17; 95% CI, 0.01-0.63). The histologic grade of breast cancers became significantly higher in the order of the control group, the distal group, and the proximal group and was associated with oncogene amplifications. CONCLUSIONS: The current results suggested that A-bomb radiation may affect the development of oncogene amplification by inducing GIN and may be associated with a higher histologic grade in breast cancer among A-bomb survivors. |
| Oncogene cooperation in tumor maintenance and tumor recurrence in mouse mammary tumors induced by Myc and mutant Kras. | Most, if not all, cancers are composed of cells in which more than one gene has a cancer-promoting mutation. Although recent evidence has shown the benefits of therapies targeting a single mutant protein, little attention has been given to situations in which experimental tumors are induced by multiple cooperating oncogenes. Using combinations of doxycycline-inducible and constitutive Myc and mutant Kras transgenes expressed in mouse mammary glands, we show that tumors induced by the cooperative actions of two oncogenes remain dependent on the activity of a single oncogene. Deinduction of either oncogene individually, or both oncogenes simultaneously, led to partial or complete tumor regression. Prolonged remission followed deinduction of Kras(G12D) in the context of continued Myc expression, deinduction of a MYC transgene with continued expression of mutant Kras produced modest effects on life extension, whereas simultaneous deinduction of both MYC and Kras(G12D) transgenes further improved survival. disease relapse after deinduction of both oncogenes was associated with reactivation of both oncogenic transgenes in ALL recurrent tumors, often in conjunction with secondary somatic mutations in the tetracycline transactivator transgene, MMTV-rtTA, rendering gene expression doxycycline-independent. These results demonstrate that tumor viability is maintained by each gene in a combination of oncogenes and that targeted approaches will also benefit from combination therapies. |
| The c-myc oncoprotein forms a specific complex with the product of the retinoblastoma gene. | The bcr-abl chimeric gene of Philadelphia chromosome positive chronic myelogenous leukemias is only weakly transforming. This transformation activity is greatly enhanced by a Lys-for-Glu substitution at position 832 in the c-abl gene, as occurs in the highly transforming v-abl genes. It has been suggested that this mutation results in a significant structural change in the encoded protein product. Using conformational energy analysis, we have determined the allowed low-energy conformations for residues 828-836 of this protein with Lys and Glu at position 832. In both cases, the overwhelmingly preferred conformation for this region is a bend-helix motif. The helix terminates at residue 836, and there are no discernible differences in conformation between the Lys- and Glu-containing sequences. These results suggest that the activating amino acid substitution at position 832 in the c-abl protein product does not produce its effect via a local conformational change. |
| Adenovirus E1A targets p400 to induce the cellular oncoprotein Myc. | Adenovirus E1A drives oncogenesis by targeting key regulatory pathways that are critical for cellular growth control. The interaction of E1A with p400 is essential for many E1A activities, but the downstream target of this interaction is unknown. Here, we present evidence that the oncoprotein transcription factor Myc is the target of this interaction. We show that E1A stabilizes Myc protein via p400 and promotes the coassociation of Myc and p400 at Myc target genes, leading to their transcriptional induction. We also show that E1A requires Myc for its ability to activate Myc-dependent gene expression and induce apoptosis, and that forced expression of Myc is sufficient to rescue the activity of an E1A-mutant defective in p400 binding. Together, these findings establish that Myc, via p400, is an essential downstream target of E1A. |
| DNA-dependent protein kinase catalytic subunit modulates the stability of c-Myc oncoprotein. | BACKGROUND: C-Myc is a short-lived oncoprotein that is destroyed by ubiquitin-mediated proteolysis. Dysregulated accumulation of c-Myc commonly occurs in human cancers. Some of those cases with the dysregulated c-Myc protein accumulation are attributed to gene amplification or increased mRNA expression. However, the abnormal accumulation of c-Myc protein is also a common finding in human cancers with normal copy number and transcription level of c-Myc gene. It seems that the mechanistic dysregulation in the control of c-Myc protein stabilization is another important hallmark associated with c-Myc accumulation in cancer cells. Here we report a novel mechanistic pathway through which DNA-dependent protein kinase catalytic subunit (DNA-PKcs) modulates the stability of c-Myc protein. RESULTS: Firstly, siRNA-mediated silencing of DNA-PKcs strikingly downregulated c-Myc protein levels in HeLa and HepG2 cells, and simultaneously decreased cell proliferation. The c-Myc protein level in DNA-PKcs deficient human glioma M059J cells was also found much lower than that in DNA-PKcs efficient M059K cells. ATM deficiency does not affect c-Myc expression level. Silencing of DNA-PKcs in HeLa cells resulted in a decreased stability of c-Myc protein, which was associated the increasing of c-Myc phosphorylation on Thr58/Ser62 and ubiquitination level. Phosphorylation of Akt on Ser473, a substrate of DNA-PKcs was found decreased in DNA-PKcs deficient cells. As the consequence, the phosphorylation of GSK3 beta on Ser9, a negatively regulated target of Akt, was also decreased, and which led to activation of GSK 3beta and in turn phosphorylation of c-Myc on Thr58. Moreover, inhibition of GSK3 activity by LiCl or specific siRNA molecules rescued the downregulation of c-Myc mediated by silencing DNA-PKcs. Consistent with this depressed DNA-PKcs cell model, overexpressing DNA-PKcs in normal human liver L02 cells, by sub-chronically exposing to very low dose of carcinogen 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), increased c-Myc protein level, the phosphorylation of Akt and GSK3 beta, as well as cell proliferation. siRNA-mediated silencing of DNA-PKcs in this cell model reversed above alterations to the original levels of L02 cells. CONCLUSION: A suitable DNA-PKcs level in cells is necessary for maintaining genomic stability, while abnormal overexpression of DNA-PKcs may contribute to cell proliferation and even oncogenic transformation by stabilizing the c-Myc oncoprotein via at least the Akt/GSK3 pathway. Our results suggest DNA-PKcs a novel biological role beyond its DNA repair function. |
| Establishment and characterization of human signet ring cell gastric carcinoma cell lines with amplification of the c-myc oncogene. | Two unique human signet ring cell gastric carcinoma cell lines (designated HSC-39 and HSC-40A) were established in vitro from the ascites of a 54-year-old male patient. Both cell lines were biologically quite similar, grew in vitro in suspension with a population doubling time of 28-30 h, and had cytological features of mucinous epithelial tumor cells. They formed colonies in soft agar, with a cloning efficiency of 0.8-1.0%. Ultrastructurally, numerous granules were observed in the cytoplasm, suggesting secretory activity. The frequent presence of desmosome and the tight junction at the cell boundary certifies the epithelial origin of the lines. Immunocytochemistry and radioimmunoassay showed production of tumor marker antigens (carcinoembryonic antigen, CA 19-9, and sialyl-Lex-i) and gastrin in both lines. These lines were transplantable in athymic BALB/c nude mice. The histopathology of each line growing in athymic BALB/c nude mice was similar to that of the original tumor. The karyotype of the cells was highly aberrant with structural and numerical changes. The presence of numerous double minute chromosomes and loss of the 13 chromosome and Y-chromosome characterize these lines. In addition, the amplified c-myc oncogene (16-32-fold) was found in both cell lines and original ascitic tumor cells. Overexpression of the c-myc mRNA was noted. These cell lines may be a useful tool, providing both in vivo and in vitro systems for further studies of the biology and therapy of human signet ring cell (or Borrmann s type IV carcinoma) gastric carcinoma. |
| Cooperation of Gata3, c-Myc and Notch in malignant transformation of double positive thymocytes. | Gata transcription factors are critical regulators of proliferation and differentiation implicated in various human cancers, but specific genes activated by Gata proteins remain to be identified. We previously reported that enforced expression of Gata3 during T cell development in CD2-Gata3 transgenic mice induced CD4(+)CD8(+) double-positive (DP) T cell lymphoma. Here, we show that the presence of the DO11.10 T-cell receptor transgene, which directs DP cells towards the CD4 lineage, resulted in enhanced lymphoma development and a dramatic increase in thymocyte cell size in CD2-Gata3 transgenic mice. CD2-Gata3 DP cells expressed high levels of the proto-oncogene c-Myc but the Notch1 signaling pathway, which is known to induce c-Myc, was not activated. Gene expression profiling showed that in CD2-Gata3 lymphoma cells transcription of c-Myc and its target genes was further increased. A substantial fraction of CD2-Gata3 lymphomas had trisomy of chromosome 15, leading to an increased c-Myc gene dose. Interestingly, most lymphomas showed high expression of the Notch targets Deltex1 and Hes1, often due to activating Notch1 PEST domain mutations. Therefore, we conclude that enforced Gata3 expression converts DP thymocytes into a pre-malignant state, characterized by high c-Myc expression, whereby subsequent induction of Notch1 signaling cooperates to establish malignant transformation. The finding that Gata3 regulates c-Myc expression levels, in a direct or indirect fashion, may explain the parallel phenotypes of mice with overexpression or deficiency of either of the two transcription factors. |
| The HECT-domain ubiquitin ligase Huwe1 controls neural differentiation and proliferation by destabilizing the N-Myc oncoprotein. | Development of the nervous system requires that timely withdrawal from the cell cycle be coupled with initiation of differentiation. Ubiquitin-mediated degradation of the N-Myc oncoprotein in neural stem/progenitor cells is thought to trigger the arrest of proliferation and begin differentiation. Here we report that the HECT-domain ubiquitin ligase Huwe1 ubiquitinates the N-Myc oncoprotein through Lys 48-mediated linkages and targets it for destruction by the proteasome. This process is physiologically implemented by embryonic stem (ES) cells differentiating along the neuronal lineage and in the mouse brain during development. Genetic and RNA interference-mediated inactivation of the Huwe1 gene impedes N-Myc degradation, prevents exit from the cell cycle by opposing the expression of Cdk inhibitors and blocks differentiation through persistent inhibition of early and late markers of neuronal differentiation. Silencing of N-myc in cells lacking Huwe1 restores neural differentiation of ES cells and rescues cell-cycle exit and differentiation of the mouse cortex, demonstrating that Huwe1 restrains proliferation and enables neuronal differentiation by mediating the degradation of N-Myc. These findings indicate that Huwe1 links destruction of N-Myc to the quiescent state that complements differentiation in the neural tissue. |
| FRAT1 overexpression leads to aberrant activation of beta-catenin/TCF pathway in esophageal squamous cell carcinoma. | Esophageal squamous cell carcinoma (ESCC) is an aggressive tumor with a poor prognosis. Although aberrant activation of beta-catenin/T-cell factor (TCF) pathway has been observed in ESCC, mechanisms underlying this phenomenon remain unknown. Frequently rearranged in advanced T-cell lymphomas-1 (FRAT1), overexpressed in some ESCC lines, is a positive regulator of beta-catenin/TCF pathway. However, little is known about the molecular relationship between FRAT1 and beta-catenin/TCF in ESCC. In this study, we analyzed freshly resected ESCC specimens and demonstrated that FRAT1 was overexpressed in approximately 74% of tumor samples compared with matched normal tissue. Overexpression of FRAT1 significantly promoted esophageal cancer cells growth, whereas suppression of FRAT1 level by RNAi markedly inhibited their growth. In addition, FRAT1 overexpression induced the nuclear accumulation of beta-catenin and promoted the transcriptional activity of beta-catenin/TCF. These effects were reversed by coexpression of GSK 3beta or DeltaN TCF4. Furthermore, accumulation of beta-catenin was correlated with FRAT1 overexpression in ESCC and the basal layer of normal esophageal epithelium. Finally, continued expression of c-Myc is necessary and sufficient for maintenance of the growth state in cells expressing FRAT1. Taken together, these results support the novel hypothesis that aberrant activation of beta-catenin/TCF pathway in esophageal cancer appears to be due to upstream events such as FRAT1 overexpression, and c-Myc may be an important element in oncogenesis of human ESCC induced by FRAT1. |
| Single molecule conformational analysis of the biologically relevant DNA G-quadruplex in the promoter of the proto-oncogene c-MYC. | Single molecule fluorescence spectroscopy has been employed to resolve the conformational heterogeneity, hybridization kinetics and study mutational effects on the c-MYC promoter G-quadruplex. |
| [Inhibition of proliferation in MCF-7 breast cancer cells by plasmid-based siRNA targeting to oncogene c-myc]. | OBJECTIVE: To investigate the effects of plasmid-based siRNA targeting to oncogene c-myc on c-myc/ c-Myc expressions and cells proliferation in MCF-7 breast cancer cells. METHODS: siRNA eukaryotic expression plasmid p-Mat01-1 targeting to the sequence 589-609 of oncogene c-myc and its mismatch plasmid p-Mis09-1 were constructed, and transiently transfected MCF-7 cells using Lipo2000. Semi-quantitative RT-PCR and Western blot were used to analyze the expressions of c-myc/c-Myc in MCF-7 cells, and cells proliferation was detected by MTT assay. RESULTS: p-Mat01-1 inhibited the expressions of c-myc mRNA (24 h: P < 0.01) and c-Myc protein (5 d. P < 0.01) in MCF-7 cells as compared with pEGFP-C1 and p-Mis09-1 controls, and suppressed the proliferation of MCF-7 cells significantly (3 d: P < 0.05, 5, 7 d: P < 0. 01). CONCLUSION: Plasmid-based siRNA targeting to oncogene c-myc could inhibit the expressions of c-myc/c-Myc in MCF-7 breast cancer cells efficiently, suggesting that the downregulation of c-myc/c-Myc could suppress the proliferation of MCF-7 cells in vitro. |
| N-myc oncogene enhances mitogenic responsiveness of diploid human fibroblasts to growth factors but fails to immortalize. | The N-myc gene is amplified in several types of human tumors. To assess the role of the N-myc gene in the transformation of normal human cells, we transfected an N-myc expression vector into diploid human fibroblasts. Transfected clones were isolated and found to express the N-myc gene at levels similar to those seen in a tumor cell line (neuroblastoma LA-N-1) which contains an amplified N-myc gene. The level of N-myc expression decreased as the N-myc clones senesced. Clones expressing N-myc had an increased saturation density and an altered morphology but did not have an extended lifespan. Under low serum conditions, neither the clones expressing N-myc nor the control cells showed anchorage-dependent growth. Clones expressing N-myc were compared to control cells to determine if different growth factors would affect the ability of cells to grow in soft agarose. Clones expressing N-myc and the control cells did not grow in soft agarose supplemented with epidermal growth factor (EGF) or transforming growth factor-alpha (TGF-alpha). However, compared to control cells, clones expressing N-myc grew in agarose 2.8- to 18-fold higher in response to basic fibroblast growth factor (bFGF) and 5.5- to 55-fold higher in response to platelet-derived growth factor B-chain homodimer (PDGF-BB). |
| 9-N-Substituted berberine derivatives: stabilization of G-quadruplex DNA and down-regulation of oncogene c-myc. | A series of 9-N-substituted berberine derivatives (2a-j) were synthesized and evaluated as a new class of G-quadruplex binding ligands. G-quadruplex of DNA had been proven to be the transcription controller of human c-myc gene. The interaction of 9-N-substituted berberine derivatives with G-quadruplex DNA in c-myc was examined via EMSA, CD spectroscopy, FRET-melting method, PCR-stop assay, competitive dialysis, cell proliferation assay, and RT-PCR assay. The experiment results indicated that these derivatives could selectively induce and stabilize the formation of intramolecular parallel G-quadruplex in c-myc, which led to down-regulation of transcription of the c-myc in the HL60 lymphomas cell line. The related structure-activity relationships were also discussed. |
| AID expression levels determine the extent of cMyc oncogenic translocations and the incidence of B cell tumor development. | Immunoglobulin (Ig) isotype switching is a recombination event that changes the constant domain of antibody genes and is catalyzed by activation-induced cytidine deaminase (AID). Upon recruitment to Ig genes, AID deaminates cytidines at switch (S) recombination sites, leading to the formation of DNA breaks. In addition to their role in isotype switching, AID-induced lesions promote Igh-cMyc chromosomal translocations and tumor development. However, cMyc translocations are also present in lymphocytes from healthy humans and mice, and thus, it remains unclear whether AID directly contributes to the dynamics of B cell transformation. Using a plasmacytoma mouse model, we show that AID(+/-) mice have reduced AID expression levels and display haploinsufficiency both in the context of isotype switching and plasmacytomagenesis. At the Ig loci, AID(+/-) lymphocytes show impaired intra- and inter-switch recombination, and a substantial decrease in the frequency of S mutations and chromosomal breaks. In AID(+/-) mice, these defects correlate with a marked decrease in the accumulation of B cell clones carrying Igh-cMyc translocations during tumor latency. These results thus provide a causality link between the extent of AID enzymatic activity, the number of emerging Igh-cMyc-translocated cells, and the incidence of B cell transformation. |
| Presence and role of c-myc proto-oncogene product in mammalian sperm cell function. | The presence and role of c-myc protein was investigated in mature sperm cells of the human, mouse, and rabbit. The monoclonal antibodies against c-myc protein (c-myc) reacted with the acrosomal region of the sperm of these mammalian species in the indirect immunofluorescence technique. The c-myc monoclonal antibody (MCA) recognized c-myc protein of 62 and 64 kDa on Western blots of lithium diiodosalicylate-solubilized sperm preparations of these species. The c-myc MCA showed a dose-dependent inhibition of human sperm penetration of zona-free hamster eggs, inhibition of murine in vitro fertilization, and reduced in vivo fertilization in rabbits. There was no effect of the antibody on percent sperm motility, though the antibody significantly affected various motility characteristics such as mean and maximum amplitude of lateral head displacement and curvilinear velocity involved in hyperactivation phenomenon of human sperm cells. These results suggest that c-myc or c-myc-like protein is present in mature sperm cells and may have a role in sperm cell function especially in capacitation and/or acrosome reaction. |
| Control of nucleotide biosynthesis by the MYC oncoprotein. | Previously we showed that end-binding protein 1 (EB1) may promote cellular growth by activating beta-catenin/T-cell factor (TCF) pathway. To further investigate the role of EB1 in regulating cellular growth, we established an EB1-inducible expression system in which the protein level of EB1 was significantly upregulated upon doxycycline induction. We found that EB1 promoted cellular growth and resulted in a significant increase in colony formation. In addition, EB1 could induce tumor formation in nude mice, activate beta-catenin-dependent gene expression and upregulate the transcriptional activity of c-myc. We also showed that EB1 in this manner inhibited apoptosis of 293-T-REx cells upon cisplatin and upregulated expression of Bcl-2, whereas DeltaN TCF4, an inhibitor of beta-catenin/TCF pathway, could completely or partially abolish the effects of EB1 on the promotion of cell growth and the inhibition of apoptosis activity. Moreover, knockdown of c-myc by RNAi could abrogate upregulation of EB1-dependent induction of Bcl-2 expression. Overall, EB1 acts as a potential oncogene via activating beta-catenin/TCF pathway to promote cellular growth and inhibit apoptosis. |
| Oncogenic NOTCH1 control of MYC and PI3K: challenges and opportunities for anti-NOTCH1 therapy in T-cell acute lymphoblastic leukemias and lymphomas. | The identification of activating mutations in NOTCH1 in the majority of T-cell acute lymphoblastic leukemias and lymphomas (T-ALL) has brought much interest in inhibiting NOTCH1 signaling as therapeutic target in this disease. Small-molecule inhibitors of the gamma-secretase complex, which mediates a critical proteolytic cleavage required for NOTCH1 activation, hold the promise of becoming an effective molecular therapy against relapsed and refractory T-ALL. Recent progress in the elucidation of the transcriptional regulatory networks downstream of oncogenic NOTCH1 has uncovered a central role of NOTCH1 signaling in promoting leukemic cell growth and revealed an intricate circuitry that connects NOTCH1 signaling with MYC and the PI3K-AKT signaling pathway. The identification of the downstream effector pathways controlled by NOTCH1 should pave the way for the rational design of anti-NOTCH1 therapies for the treatment of T-ALL. |
| MYC and gastric adenocarcinoma carcinogenesis. | MYC is an oncogene involved in cell cycle regulation, cell growth arrest, cell adhesion, metabolism, ribosome biogenesis, protein synthesis, and mitochondrial function. It has been described as a key element of several carcinogenesis processes in humans. Many studies have shown an association between MYC deregulation and gastric cancer. MYC deregulation is also seen in gastric preneoplastic lesions and thus it may have a role in early gastric carcinogenesis. Several studies have suggested that amplification is the main mechanism of MYC deregulation in gastric cancer. In the present review, we focus on the deregulation of the MYC oncogene in gastric adenocarcinoma carcinogenesis, including its association with Helicobacter pylori (H pylori) and clinical applications. |
| The parafibromin tumor suppressor protein inhibits cell proliferation by repression of the c-myc proto-oncogene. | Parafibromin is a tumor suppressor protein encoded by HRPT2, a gene recently implicated in the hereditary hyperparathyroidism-jaw tumor syndrome, parathyroid cancer, and a subset of kindreds with familial isolated hyperparathyroidism. Human parafibromin binds to RNA polymerase II as part of a PAF1 transcriptional regulatory complex. The physiologic targets of parafibromin and the mechanism by which its loss of function can lead to neoplastic transformation are poorly understood. We show here that RNA interference with the expression of parafibromin or Paf1 stimulates cell proliferation and increases levels of the c-myc proto-oncogene product, a DNA-binding protein and established regulator of cell growth. This effect results from both c-myc protein stabilization and activation of the c-myc promoter, without alleviation of the c-myc transcriptional pause. Chromatin immunoprecipitation demonstrates the occupancy of the c-myc promoter by parafibromin and other PAF1 complex subunits in native cells. Knockdown of c-myc blocks the proliferative effect of RNA interference with parafibromin or Paf1 expression. These experiments provide a previously uncharacterized mechanism for the anti-proliferative action of the parafibromin tumor suppressor protein resulting from PAF1 complex-mediated inhibition of the c-myc proto-oncogene. |
| Simultaneous quantification of c-myc oncoprotein, total cellular protein, and DNA content using multiparameter flow cytometry. | Variations in total cellular protein content can confound interpretation of the significance of modulations of specific cellular proteins. In an effort to overcome this problem, a technique is described for the simultaneous measurement of a specific cellular protein, total cellular protein, and DNA content. The method utilizes dual-laser (uv and 488 nm) excitation and three fluorescent dyes: FITC, SR101, and DAPI. FITC-labelled antibody coupled with indirect immunofluorescence was used to quantify the c-myc oncoprotein, whereas SR101 and DAPI were used to measure total cellular protein and cellular DNA, respectively. Flow cytometric measurements of c-myc oncoprotein were compared to densitometric readings of p64c-myc. SR101 protein determinations were compared to those obtained by the Lowry technique. Results indicated that flow cytometric measurements correlated well with those obtained by the biochemical methods. The usefulness of the technique was further examined following treatment of exponentially growing HL-60 cells with 2.5 micrograms/ml cycloheximide for 0 to 12 h. Cycloheximide treatment was found to cause a significant decrease in c-myc oncoprotein content within 2 h (P less than 0.05), a relative increase in the proportion of G0/G1 cells and a modest decrease in total cellular protein. This technique appears to provide a rapid, quantitative approach, useful for investigating alterations in cellular growth balance occurring with cell differentiation, neoplastic transformation, or cell treatment with radiation or cytostatic drugs. |
| Suppression of Myc oncogenic activity by ribosomal protein haploinsufficiency. | The Myc oncogene regulates the expression of several components of the protein synthetic machinery, including ribosomal proteins, initiation factors of translation, RNA polymerase III and ribosomal DNA. Whether and how increasing the cellular protein synthesis capacity affects the multistep process leading to cancer remains to be addressed. Here we use ribosomal protein heterozygote mice as a genetic tool to restore increased protein synthesis in Emu-Myc/+ transgenic mice to normal levels, and show that the oncogenic potential of Myc in this context is suppressed. Our findings demonstrate that the ability of Myc to increase protein synthesis directly augments cell size and is sufficient to accelerate cell cycle progression independently of known cell cycle targets transcriptionally regulated by Myc. In addition, when protein synthesis is restored to normal levels, Myc-overexpressing precancerous cells are more efficiently eliminated by programmed cell death. Our findings reveal a new mechanism that links increases in general protein synthesis rates downstream of an oncogenic signal to a specific molecular impairment in the modality of translation initiation used to regulate the expression of selective messenger RNAs. We show that an aberrant increase in cap-dependent translation downstream of Myc hyperactivation specifically impairs the translational switch to internal ribosomal entry site (IRES)-dependent translation that is required for accurate mitotic progression. Failure of this translational switch results in reduced mitotic-specific expression of the endogenous IRES-dependent form of Cdk11 (also known as Cdc2l and PITSLRE), which leads to cytokinesis defects and is associated with increased centrosome numbers and genome instability in Emu-Myc/+ mice. When accurate translational control is re-established in Emu-Myc/+ mice, genome instability is suppressed. Our findings demonstrate how perturbations in translational control provide a highly specific outcome for gene expression, genome stability and cancer initiation that have important implications for understanding the molecular mechanism of cancer formation at the post-genomic level. |
| Structural rationale for the coupled binding and unfolding of the c-Myc oncoprotein by small molecules. | The basic-helix-loop-helix-leucine-zipper domains of the c-Myc oncoprotein and its obligate partner Max are intrinsically disordered (ID) monomers that undergo coupled folding and binding upon heterodimerization. We have identified the binding sites and determined the structural means by which two unrelated small molecules, 10058-F4 and 10074-G5, bind c-Myc and stabilize the ID monomer over the highly ordered c-Myc-Max heterodimer. In solution, the molecules bind to distinct regions of c-Myc and thus limit its ability to interact with Max and assume a more rigid and defined conformation. The identification of multiple, specific binding sites on an ID domain suggests that small molecules may provide a general means for manipulating the structure and function of ID proteins, such as c-Myc. |
| Characteristics of an infinite life span diploid human fibroblast cell strain and a near-diploid strain arising from a clone of cells expressing a transfected v-myc oncogene. | Diploid human fibroblasts were transfected with a plasmid carrying a v-myc oncogene linked to the neo gene or with a vector control carrying a neo gene. Drug-resistant clones were isolated and subcultured as needed. ALL populations went into crisis and eventually senesced. But while they were senescing, viable-appearing clones were noted among the progeny of a transfected population that expressed the v-myc oncogene. After several months, these cells began replicating more rapidly. Karyotype analysis indicated that they were clonally derived since ALL of them had 45 chromosomes, including 2 marker chromosomes. This cell strain was designated MSU-1.1. Similar analysis showed that cells from an earlier passage were diploid. These cells were designated MSU-1.0. Both strains have undergone more than 200 population doublings since their siblings senesced, without any change in chromosome complement. Both strains express the v-myc protein and have the same integration site for the transfected v-myc and neo genes. The MSU-1.0 cells cannot grow without exogenously added growth factors. The MSU-1.1 cells grow moderately well under the same conditions and grow to a higher saturation density than MSU-1.0 cells. Since the chance of human cells acquiring an infinite life span in culture is very rare, the data suggest that MSU-1.1 cells are derived from MSU-1.0 cells. The expression of v-myc is probably required for acquisition of an infinite life span, since this phenotype did not develop in populations not expressing this oncogene. However, expression of v-myc is clearly not sufficient, since ALL of the progeny of the clone that gave rise to the MSU-1.0 cells expressed this oncogene, but the vast majority of them senesced. |
| IFI16 and NM23 bind to a common DNA fragment both in the P53 and the cMYC gene promoters. | In the melanoma M14 cell line, we found that the antimetastatic protein NM23/nucleoside diphosphate kinase binds to the promoters of the oncogene cMYC and of P53, a gene often mutated in human cancer (Cervoni et al. [2006] J. Cell. Biochem. 98:421-428). In a further study, we find now that IFI16, a transcriptional repressor, in both promoters binds to the G-rich fragment that also binds NM23/NDPK. These fragments possess non-B DNA structures. Moreover, by sequential chromatin immunoprecipitation (re-ChIP) we show that the two proteins (IFI16 and NM23/NDPK) are simultaneously bound in vivo to the same DNA fragments. Since P53 stimulates apoptosis and inhibits cellular growth, and cMYC promotes cell growth and, in several instances, also apoptosis, the presence of NM23 and IFI16 on the same DNA fragments suggests their common involvement in the reduced development of some tumors. |
| Chromosomal location targets different MYC family gene members for oncogenic translocations. | The MYC family of cellular oncogenes includes c-Myc, N-myc, and L-myc, which encode transcriptional regulators involved in the control of cell proliferation and death. Accordingly, these genes become aberrantly activated and expressed in specific types of cancers. For example, c-Myc translocations occur frequently in human B lymphoid tumors, while N-myc gene amplification is frequent in human neuroblastomas. The observed association between aberrations in particular MYC family genes and specific subsets of malignancies might reflect, at least in part, tissue-specific differences in expression or function of a given MYC gene. Since c-Myc and N-myc share substantial functional redundancy, another factor that could influence tumor-specific gene activation would be mechanisms that target aberrations (e.g., translocations) in a given MYC gene in a particular tumor progenitor cell type. We have previously shown that mice deficient for the DNA Ligase4 (Lig4) nonhomologous DNA end-joining factor and the p53 tumor suppressor routinely develop progenitor (pro)-B cell lymphomas that harbor translocations leading to c-Myc amplification. Here, we report that a modified allele in which the c-Myc coding sequence is replaced by N-myc coding sequence (NCR allele) competes well with the wild-type c-Myc allele as a target for oncogenic translocations and amplifications in the Lig4/p53-deficient pro-B cell lymphoma model. tumor onset, type, and cytological aberrations are similar in tumors harboring either the wild-type c-Myc gene or the NCR allele. Our results support the notion that particular features of the c-Myc locus select it as a preferential translocation/amplification target, compared to the endogenous N-myc locus, in Lig4/p53-deficient pro-B cell lymphomas. |
| Far upstream element-binding protein-1, a novel caspase substrate, acts as a cross-talker between apoptosis and the c-myc oncogene. | Far upstream element-binding protein-1 (FBP-1) binds to an upstream element of the c-myc promoter and regulates the c-myc mRNA level. Earlier, FBP-1 was identified as a candidate substrate of caspase-7. Here, we report that FBP-1 is cleaved by executor caspases, both in vitro and during apoptosis. Cleavage occurs at the caspase consensus site (DQPD(74)) located within the classical bipartite nuclear localization signal sequence. In cells subjected to apoptotic stimuli, the caspase-mediated cleavage of FBP-1 leads to its decreased presence in the nucleus, concomitant with the marked downregulation of c-Myc and its various target proteins. By contrast, cells transfected with a non-cleavable mutant of FBP-1 (D74A) maintain higher levels of c-Myc and are protected from apoptosis. On the basis of these results, we suggest that the oncogenic potential of c-Myc is switched off after apoptosis induction as a consequence of the caspase-mediated cleavage of FBP-1. |
| Transgenic animals as a tool for studying the effect of the c-myc proto-oncogene on cardiac development. | Transgenic animals provide a model system to elucidate the role of specific proteins in development. This model is now being used increasingly in the cardiovascular system to study cardiac growth and differentiation. During cardiac myocyte development a transition occurs from hyperplastic to hypertrophic growth. In the heart the switch from myocyte proliferation to terminal differentiation is synchronous with a decrease in c-myc mRNA abundance. To determine whether c-myc functions to regulate myocyte proliferation and/or differentiation, we examined the in vivo effect of increasing c-myc expression during fetal development and of preventing the decrease in c-myc mRNA expression that normally occurs during myocyte development. The model system used was a strain of transgenic mice exhibiting constitutive expression of c-myc mRNA in cardiac myocytes throughout development. Increased c-myc mRNA expression is associated with both atrial and ventricular enlargement in the transgenic mice. This increase in cardiac mass is secondary to myocyte hyperplasia, with the transgenic hearts containing greater than twice as many myocytes as nontransgenic hearts. The results of this study indicate that constitutive expression of c-myc mRNA in the heart during development results in enhanced hyperplastic growth, and suggest a regulatory role for the c-myc protooncogene in cardiac myogenesis. |
| 3D view to tumor suppression: Lkb1, polarity and the arrest of oncogenic c-Myc. | Machiavelli wrote, in his famous political treatise Il Principe, about disrupting organization by planting seeds of dissension or by eliminating necessary support elements. tumor cells do exactly that by disrupting the organized architecture of epithelial cell layers during progression from contained benign tumor to full-blown invasive cancer. However, it is still unclear whether tumor cells primarily break free by activating oncogenes powerful enough to cause chaos or by eliminating tumor suppressor genes guarding the order of the epithelial organization. Studies in Drosophila have exposed genes that encode key regulators of the epithelial apicobasal polarity and which, upon inactivation, cause disorganization of the epithelial layers and promote unscheduled cell proliferation. These polarity regulator/tumor suppressor proteins, which include products of neoplastic tumor suppressor genes (nTSGs), are carefully positioned in polarized epithelial cells to maintain the order of epithelial structures and to impose a restraint on cell proliferation. In this review, we have explored the presence and prevalence of somatic mutations in the human counterparts of Drosophila polarity regulator/tumor suppressor genes across the human cancers. The screen points out LKB1, which is a causal genetic lesion in Peutz-Jeghers cancer syndrome, a gene mutated in certain sporadic cancers and a human homologue of the fly polarity gene par-4. We review the evidence linking Lkb1 protein to polarity regulation in the scope of our recent results suggesting a coupled role for Lkb1 as an architect of organized acinar structures and a suppressor of oncogenic c-Myc. We finally present models to explain how Lkb1-dependent formation of epithelial architecture is coupled to suppression of normal and oncogene-induced proliferation. |
| HeLaTG cells have mitochondrial DNA inserted into the c-myc oncogene. | To determine whether mitochondrial DNA (mtDNA) fragments found within the nucleus are transcribed, we have differentially screened a HeLaTG cDNA library. A clone that hybridized to mtDNA as well as to c-myc was identified. Analysis of the cDNA disclosed that it contained a mtDNA sequence, encoding cytochrome-c oxidase subunit III (coxIII) that was contiguous with and 5 of a c-myc sequence corresponding to part of exon 2 and exon 3. Hybridization of ScaI-digested DNA with a 1.05 kb c-myc probe revealed a unique band in HeLaTG cells, as well as a band common to HeLaTG and 13 other cell types examined. Solution hybridization of HeLaTG RNA with a radiolabeled, single-stranded cDNA probe containing the coxIII-c-myc junction demonstrated a nuclease-resistant band that matched the full length of the junctional cDNA probe. A smaller band that equaled the size of the c-myc portion alone was also detected. Only the smaller band coinciding with the c-myc sequences was protected from nuclease digestion by RNA from other cells. When a radiolabeled probe synthesized in the opposite orientation was used, nuclease-resistant bands equal in length to the coxIII portion of the probe were detected after hybridization with RNA from ALL cells. These results indicate that insertion of mtDNA fragments into nuclear genes occurs and that subsequent transcription of a chimaeric or fusion mRNA containing both mitochondrial and nuclear sequences can ensue. |
| Heterogeneity of the MYCN oncogene in neuroblastoma. | PURPOSE: MYCN amplification is an important therapy-stratifying marker in neuroblastoma. Fluorescence in situ hybridization with signal detection on the single-cell level allows a critical judgement of MYCN intratumoral heterogeneity. EXPERIMENTAL DESIGN: The MYCN status was investigated by fluorescence in situ hybridization at diagnosis and relapse. Heterogeneity was defined as the simultaneous presence of amplified cells (>/=5 cells per slide) and nonamplified cells within one tumor or sequential change of the amplification status during the course of the disease. Likewise, heterogeneity can be detected between primary tumor and metastasis. RESULTS: From 1,341 patients analyzed, 1,071 showed no amplification, 250 showed homogeneous amplification, and 20 patients showed MYCN heterogeneity. Of the patients with heterogeneity, 12 of 20 had clusters of MYCN amplifications, 3 of 20 had amplified single cells, 3 of 20 showed MYCN amplifications in the bone marrow but not in the primary tumor, and 2 of 20 acquired MYCN amplification during the course of the disease. ALL stage 4 patients were treated according to high-risk protocols; 7 of 8 later progressed. Four patients with localized disease were treated according to high-risk protocol because of MYCN-amplified clusters; 1 of 4 later progressed. One patient treated with mild chemotherapy experienced progression. Seven patients with localized/4S disease underwent no chemotherapy: 4 of 5 patients with MYCN heterogeneity at diagnosis remained disease-free, and 1 of 5 experienced local progression. Two patients had normal MYCN status at diagnosis but acquired MYCN amplification during the course of the disease. CONCLUSION: MYCN heterogeneity is rare. Our results suggest that small amounts of MYCN-amplified cells are not correlated to adverse outcomes. More patients with heterogeneity are warranted to clarify the role of MYCN heterogeneity for risk classification. |
| Expression of c-myc proto-oncogene during podophyllotoxin induced IW32 erythroleukemia cell differentiation. | The effect of hemin or podophyllotoxin on the differentiation of the erythropoietin (epo)-producing IW32 erythroleukemia cells was investigated. Podophyllotoxin induced IW32 cells to differentiate, and hemin potentiated the differentiation. Hemin had no effect on cell proliferation whereas podophyllotoxin inhibited cell growth. c-myc mRNA levels decreased biphasically by hemin or podophyllotoxin, while the combined treatment of hemin plus podophyllotoxin did not result in the initial decrease in c-myc mRNA level. Our data suggested that down-regulation of c-myc expression was not a prerequisite of IW32 cell differentiation induced by hemin and podophyllotoxin combined. |
| All-trans retinoic acid induces Thrombospondin-1 expression in acute promyelocytic leukemia cells though down-regulation of its transcription repressor, c-MYC oncoprotein. | Thrombospondin-1 (TSP-1) was found to mediate the therapeutic effects of all-trans retinoic acid (ATRA) for leukemia. The aim of the present study was to evaluate the role of c-MYC, a key transcription factor that contributes to the genesis of many human tumors, in TSP-1 induction by ATRA in acute promyelocytic leukemia (APL). ATRA treatment markedly increased TSP-1 level and inhibited c-MYC expression in NB4 APL leukemic cells compared with controls. Promoter assays indicated that c-MYC responsive element is functional relevant to the induction of TSP-1 promoter activity by ATRA. c-MYC recruitment to TSP-1 promoter was dramatically decreased in NB4 cells following ATRA treatment. shRNA-mediated inhibition of c-MYC resulted in a marked up-regulation of endogenous TSP-1 expression. Moreover, transient over-expression of c-MYC totally abolished TSP-1 induction by ATRA in NB4 cells. Collectively, our results indicate that ATRA induces TSP-1 expression in APL cells though down-regulation of its transcription repressor, c-MYC oncoprotein. |
| [Effect of silicosis alveolar macrophages on expression of c-myc in human embryo lung fibroblast in vitro]. | OBJECTIVE: To study the effect of silicosis alveolar macrophages (AM) restimulated by SiO(2) on expression of c-myc oncogene in human embryo lung fibroblasts. METHODS: The bronchoalveolar lavage of silicosis patients was collected. AMs were divided into 2 groups: (1) SiO(2): AMs were stimulated with SiO(2) (30 microg/ml) for 1, 2, 6, 12, 24 and 36 h; (2) control: treated for the same time without SiO(2). Fibroblasts were cultured with different AMs supernatants for 2 h or 7 h respectively. The expression of c-myc mRNA was determined by RT-PCR and protein by Western Blot. RESULTS: There was no c-myc expression when fibroblasts were static. The supernatants in the S6 group stimulated expression of c-myc mRNA and protein, with the peak expression at 2 h and 7 h respectively. In the control group, AMs supernatants cultured in different time stimulated expression of c-myc mRNA and protein with the most evident expression at 12 h. The ratios were 0.749 +/- 0.088 and 0.759 +/- 0.101 respectively. Compared with control in the same period, c-myc mRNA and protein expression were significantly stronger treated with the supernatants in which AMs were stimulated for 1 h, 2 h and 6 h by SiO(2) (P < 0.05 or P < 0.01). CONCLUSION: AMs stimulated with SiO(2) has the ability to induce c-myc oncogene expression in human embryo lung fibroblasts. |
| The N-Myc oncoprotein is associated in vivo with the phosphoprotein Max(p20/22) in human neuroblastoma cells. | Proteins encoded by the proto-oncogenes c-myc, L-myc, and N-myc contain at their carboxy-terminus a tripartite segment comprising a basic DNA binding region (BR), a helix-loop-helix (HLH) and a leucine zipper motif (Zip), that are believed to be involved in DNA binding and protein-protein interaction. The N-Myc oncoprotein is overexpressed in certain human tumors that share neuroectodermal features due to amplification of the N-myc gene. Using a monoclonal antibody directed against an N-terminal epitope of the N-Myc protein in immunoprecipitations performed with extracts of neuroblastoma cells, two nuclear phosphoprotein, p20/22, forming a hetero-oligomeric complex with N-Myc are identified. Both proteins are phosphorylated by casein kinase II in vitro. By partial proteolytic maps we show that p20 and p22 are structurally related to each other and that p20 is identical with Max, a recently described in vitro binding partner of myc proteins. Time course experiments show the presence of the complex in cellular extracts immunoprecipitated within a 5 min interval after the preparation of the cell extract. While the expression of N-myc is restricted, expression of both Max(p20/22) and the murine homolog Myn(p20/22) was observed in cells of diverse human and murine embryonal lineages as detected by heterologous complex formation. By introduction of expression vectors containing the wild type N-myc gene or N-myc genes with in frame deletions or point mutations into recipient cells and subsequent immunoprecipitation of the resulting N-Myc proteins we show that the HLH-Zip region is essential to the formation of the N-Myc-p20/22 complex. |
| The v-abl, c-fms, or v-myc oncogene induces gamma radiation resistance of hematopoietic progenitor cell line 32d cl 3 at clinical low dose rate. | A variety of viral and cellular oncogenes have been described with differing mechanisms of action but with the common property of inducing morphologic alteration of cells in culture. Subclonal lines of oncogene expressing cells have been shown to produce tumors in vivo. expression of the N-ras oncogene in embryo fibroblast NIH/3T3 cells has been demonstrated to increase radioresistance in vitro, and these results have been confirmed and extended to human cell lines expressing the c-raf oncogene. In the present report, we have examined the effects of expression of the c-fms, v-abl, or v-myc oncogene in a clonal hematopoietic progenitor cell line 32D cl 3. The 32D cell line is nonmalignant in vivo and is dependent upon a source of Interleukin-3 (IL-3) for growth in vitro. The radiation survival of 32D cl 3 cells transfected and expressed in the c-fms oncogene showed significant increase in the radioresistance at both 5 cGy/min and 116 cGy/min. A clone of 32D cl 3 transfected and expressing the v-myc oncogene demonstrated increased radioresistance at both dose rates. Results of split dose experiments suggested significant repair of sublethal irradiation damage of 32D-v-abl cells. Results were compared with expression of the same v-abl oncogene in the NIH/3T3 embryo fibroblast cell line. The data demonstrate that gamma irradiation resistance is significantly increased by each oncogene expressed in 32D cl 3 cells. The data on cell line 32D cl 3 may correlate with the radioresistance of v-abl expressing human hematopoietic cell malignancies treated by irradiation therapy. |
| [In vitro studies on the expression of c-myc oncogene product in gynecological cultured cancer cells]. | In this study, immunocytochemical and biochemical detection of c-myc protein in gynecological cultured cancer cells were performed together with gene expression of the cells. OMC-1 (cervical squamous carcinoma cell line), OMC-2 (endometrial adenocarcinoma cell line), OMC-3 (ovarian mucinous adenocarcinoma cell line) and OMC-4 (cervical adenocarcinoma cell line) were used. Immunocytochemically, c-myc protein was detected in both nuclei and cytoplasms of cultured cells when they were fixed in 95% ethanol, 10% formalin and 4% paraformaldehyde (PFA) including 10mM NaCl. However, it was detected in the nuclei of almost ALL of the cells in nuclei of the cells when they were fixed in 4% PFA including 1,000mM NaCl. Western blotting against a nuclear fraction of the cells demonstrated 66Kd protein in OMC-1 and 62Kd protein in OMC-2,3,4, respectively. They were completely absorbed by c-myc synthetic peptide. However, there was no reaction against the cytoplasmic fraction of the cells. Slot blot hybridization against the DNA of the cells demonstrated 15 times and 5 times c-myc gene amplification in OMC-2 and OMC-4, respectively. These results suggest that OMC-1,2,3,4 can be used as positive controls for the immunocyto- and histochemical detection of c-myc protein in clinical materials. However, it must be noted that the redistribution of c-myc nuclear protein into the cytoplasm may occur in the fixation process. |
| Multiple independent binding sites for small-molecule inhibitors on the oncoprotein c-Myc. | Deregulation of the c-Myc transcription factor is involved in many types of cancer, making this oncoprotein an attractive target for drug discovery. One approach to its inhibition has been to disrupt the dimeric complex formed between its basic helix-loop-helix leucine zipper (bHLHZip) domain and a similar domain on its dimerization partner, Max. As monomers, bHLHZip proteins are intrinsically disordered (ID). Previously we showed that two c-Myc-Max inhibitors, 10058-F4 and 10074-G5, bound to distinct ID regions of the monomeric c-Myc bHLHZip domain. Here, we use circular dichroism, fluorescence polarization, and NMR to demonstrate the presence of an additional binding site located between those for 10058-F4 and 10074-G5. ALL seven of the originally identified Myc inhibitors are shown to bind to one of these three discrete sites within the 85-residue bHLHZip domain of c-Myc. These binding sites are composed of short contiguous stretches of amino acids that can selectively and independently bind small molecules. Inhibitor binding induces only local conformational changes, preserves the overall disorder of c-Myc, and inhibits dimerization with Max. NMR experiments further show that binding at one site on c-Myc affects neither the affinity nor the structural changes taking place upon binding to the other sites. Rather, binding can occur simultaneously and independently on the three identified sites. Our results suggest the widespread existence of peptide regions prone to small-molecule binding within ID domains. A rational and generic approach to the inhibition of protein-protein interactions involving ID proteins may therefore be possible through the targeting of ID sequence. |
| Facilitating replication under stress: an oncogenic function of MYC?. | Deregulated expression of MYC contributes to the genesis of multiple human tumours. The encoded protein, MYC, functions through the transcriptional regulation of large numbers of target genes. Recent publications show that MYC is closely involved in DNA replication and the checkpoint processes that monitor progress through the S phase, and suggest that limiting replication stress is a key function of this protein. These findings could have considerable implications for our understanding of how MYC transforms cells and which mechanisms protect normal cells from transformation by activated oncogenes. |
| [Abnormal expression of c-myc, p53, p16 protein and GNAS1 gene mutation in fibrous dysplasia]. | OBJECTIVE: To study the significance of c-myc, p53 and p16 protein expression in fibrous dysplasia, to detect the GNAS1 gene mutation in fibrous dysplasia, and to explore the property of fibrous dysplasia. METHODS: The expression of c-myc, p53 and p16 protein was evaluated by immunohistochemistry SP method in 35 cases of fibrous dysplasia including 1 FD with malignancy, 1 Mazabraud syndrome and 20 control cases (10 cases of bony callus, 10 cases of osteosarcoma). Genomic DNA extraction, PCR amplification and gene sequencing were used to detect GNAS1 gene mutation in 35 cases of fibrous dysplasia. RESULTS: C-myc protein immunoreactivity was detected in 91 percentage of FD (P = 0.001). Compared with the negative control group, the difference was significant. P16 positive was detected in 34 FD cases (P = 0.001). The difference was significant as compared with the positive control group. Positive p53 protein expression was detected in the only 1 case of fibrous dysplasia with malignant transformation. PCR amplification was successful in 12 of 35 FD cases. Two of the 12 FD cases were detected to have GNAS1 gene mutation, in which 1 case was FD of Mazabraud syndrome, 1 case was a monostotic lesion. CONCLUSIONS: C-myc could be another protooncogene in addition to c-fos in the fibrous dysplasia disease. P53 protein overexpression could be useful in the diagnosis of FD malignancy and in the prediction of the prognosis of FD. The abnormal expression of the gene p16 might play an important role in the formation of FD. The GNAS1 mutation exist in FD. ALL of the results indicate that FD could be a neoplasia disease, caused by multiple factors leading to a dysfunction of bone development. |
| Colocalization of somatic and meiotic double strand breaks near the Myc oncogene on mouse chromosome 15. | Both somatic and meiotic recombinations involve the repair of DNA double strand breaks (DSBs) that occur at preferred locations in the genome. Improper repair of DSBs during either mitosis or meiosis can lead to mutations, chromosomal aberration such as translocations, cancer, and/or cell death. Currently, no model exists that explains the locations of either spontaneous somatic DSBs or programmed meiotic DSBs or relates them to each other. One common class of tumorigenic translocations arising from DSBs is chromosomal rearrangements near the Myc oncogene. Myc translocations have been associated with Burkitt lymphoma in humans, plasmacytoma in mice, and immunocytoma in rats. Comparing the locations of somatic and meiotic DSBs near the mouse Myc oncogene, we demonstrated that the placement of these DSBs is not random and that both events clustered in the same short discrete region of the genome. Our work shows that both somatic and meiotic DSBs tend to occur in proximity to each other within the Myc region, suggesting that they share common originating features. It is likely that some regions of the genome are more susceptible to both somatic and meiotic DSBs, and the locations of meiotic hotspots may be an indicator of genomic regions more susceptible to DNA damage. |
| Expression of the c-myc oncogene and the presence of HPV 18: possible surrogate markers for cervical cancer?. | The study aims to evaluate the cause of cervical cancer in a cohort of patients and to establish whether or not human papillomavirus (HPV) is the leading risk factor and to determine whether or not c-myc oncogene over-expression is a predicative marker for the disease. Cone biopsy samples are examined from 53 patients diagnosed with either adenocarcinoma or squamous cell carcinoma of the cervix. Results showed that 19% of the patients studied were positive for high-grade HPV 18 DNA by polymerase chain reaction (PCR). For the c-myc gene expression, only three (23%) of the 13 control slides were positive. Of 49 known cervical cancer patients examined, 41% were positive, 51% were negative and 8% were doubtful. Of those who were positive for HPV, only two were positive for a mutation in the c-myc gene and one slide gave a doubtful result. P value for hysterectomy patients was 0.23 and for cancer patients was 0.48. In the cervical cancer patients studied, the HPV 18 prevalence rate was very low compared to that found in other studies. Therefore, the presence of HPV and expression of the c-myc oncogene cannot be used as surrogate markers for cervical cancer. |
| Loss of heterozygosity of the L-myc oncogene in human breast tumors. | Recent studies suggest that loss of heterozygosity may play an important role in various human neoplasia. Cytogenetic abnormalities detected in primary breast tumors led us to examine breast tumor DNAs for deletions. In the present study, we demonstrate, using restriction fragment length polymorphism (RFLP) analysis at the L-myc proto-oncogene (chromosome 1p32), a frequent loss of heterozygosity in primary breast tumor DNAs (55 out of 152 informative tumor DNAs). Most of these deletions appear to be limited to chromosome 1p. No correlation was observed between this genetic alteration and several parameters of each patient s history or characteristics of the tumor. However, a significantly (P = 0.011) shorter survival period after relapse was observed for patients with loss of heterozygosity at L-myc in primary tumor DNAs compared with patients with tumor DNAs lacking this alteration. |
| Driving gradual endogenous c-myc overexpression by flow-sorting: intracellular signaling and tumor cell phenotype correlate with oncogene expression. | Insulin-exposed rat mammary cancer cells were flow sorted based on a c-myc reporter plasmid encoding a destabilized green fluorescent protein. Sorted cells exhibited gradual increases in c-myc levels. Cells overexpressing c-myc by only 10% exhibited phenotypic changes attributable to c-myc overexpression, such as cell cycle disturbances, increased cell size, and overexpression of the S6 ribosomal protein. Cells overexpressing c-myc by 70% exhibited additional phenotypic changes typical of c-myc overexpression, such as increased histone H3 phosphorylation, and reduced adherence. Sorted cells also exhibited overexpression of the IGF-1R, and slightly elevated expression of the IR. Increased susceptibility to the mitogenic effect of insulin was seen in a small proportion of the sorted cells, and insulin was more effective in activating the p44/42 MAPK pathway, but not the PI3K pathway, in the sorted cells than in the nonsorted cell population. To our knowledge, this is the first in vitro system allowing functional coupling between mitogenic signaling by a well-defined growth factor and gradual overexpression of the normal, endogenous c-myc gene. Thus, our flow-sorting approach provides an alternative modeling of the receptor-mediated carcinogenic process, compared to the currently used approaches of recombinant constitutive or conditional overexpression of oncogenic transmembrane receptor tyrosine kinases or oncogenic transcription factors. |
| Expression of multiple drug resistance gene, MDR1, and N-myc oncogene in an Italian population of human neuroblastoma patients. | Thirty-four patients of an Italian population affected by neuroblastoma (NB) were evaluated at diagnosis for multidrug resistance gene (MDR1) and N-myc oncogene amplification. No patients showed MDR1 amplification, while extra copies of the N-myc gene were found in 9 out of 34 patients (26%). N-myc amplification was correlated (p = 0.008) with a shorter progression-free survival. RNA was purified from fresh tumor biopsies and analysed in 29 NB samples. MDR1 gene expression was found to be increased in 5 out of 29 tumor samples at onset (17%) and in 1 out of 3 at relapse, but none of them expressed both MDR1 and N-myc genes simultaneously. No correlation was found between MDR1 or N-myc genes expression and tumor progression. MDR1 mRNA transcription may occur spontaneously after onset, suggesting that certain NB tumors could be resistant to antineoplastic drugs at onset. ALL 5 patients showing MDR1 mRNA transcription achieved complete or partial clinical remission after polychemotherapy. This was presumably due to inclusion in the therapeutic protocol of a high dose of Cisplatin, a drug not susceptible to the effects of the MDR1 gene product. Our findings show that cells which actively transcribe for the MDR1 gene are present in several untreated NB patients. No gene amplification was detected and probably the MDR1 gene expression is regulated at the transcriptional level. |
| Mina53, a novel c-Myc target gene, is frequently expressed in lung cancers and exerts oncogenic property in NIH/3T3 cells. | PURPOSE: Mina53, whose expression is directly induced by c-Myc, is overexpressed in various cancers and plays an important role in cell growth. To clarify the involvement of Mina53 in lung cancers, we investigated its expression in human lung cancer tissues as well as in various lung cancer cell lines. METHODS: Mina53 expression was determined by real-time RT-PCR, western blotting, and immunohistochemistry using lung cancer cell lines, normal human bronchial epithelial cells, and lung cancer tissues. Biological effects of Mina53 were evaluated by soft agar colony formation assay and tumorigenicity in nude mice using Mina53-transfected NIH/3T3 cells. cDNA microarray analysis was performed to determine the gene alteration by Mina53 and confirmation was made using real-time RT-PCR with mina53 expression plasmid or mina53 shRNA-transfected NIH/3T3 cells. RESULTS: We observed that 62% of patients evidenced overexpression of Mina53 from the early clinical stages of lung cancer. Differences according to gender, smoking status, or histologic type were not statistically significant. Forced expression of Mina53 in NIH/3T3 cells induced cell transformation, and mina53-transfected NIH/3T3 clones produced tumors in nude mice, demonstrating that Mina53 has oncogenic potential. cDNA microarray revealed that 254 genes had altered expression in a mina53-transfected NIH/3T3 clone. Mina53 regulates several genes related to cell adhesion and metabolism, which have also been reported to be regulated by c-Myc. Genes regulated by Mina53, but not by c-Myc included cytokine/growth factor related genes such as EGFR, IL-6, and HGF. CONCLUSION: Our results suggest that Mina53 plays an important role in carcinogenesis and may be a target for cancer prevention. |
| Neuroblastoma and the clinical significance of N-myc oncogene amplification. | expression of the 93-kd tyrosine kinase encoded by the human c-fes proto-oncogene (also known as FES) is restricted to mature hematopoietic cells of the granulocytic and monocytic lineages, suggestive of a function essential to normal myeloid differentiation. However, recent studies have shown that c-fes can transform fibroblasts if sufficient levels of gene expression are achieved. These findings indicate that strict regulation of the c-fes gene is critical to normal myeloid development, whereas elevated c-fes expression may contribute to malignant transformation. In the present study, we compared the c-fes messenger RNA (mRNA) levels in leukemia blasts from patients with myeloid or lymphoid leukemia with those of peripheral monocytes from a normal donor with the use of a quantitative ribonuclease protection assay. The presence of c-fes mRNA was readily detected in both acute myeloid leukemia (AML) and chronic myeloid leukemia (CML) cells, but c-fes mRNA was present in low levels or was absent in lymphoid leukemia cells. The leukemia cells of two of five AML patients and four of four CML patients expressed more c-fes mRNA than monocytes from a normal donor, with more than a threefold elevation in the cells of one CML patient. No evidence of amplification or rearrangement of the c-fes gene was detectable by Southern blot analysis of myeloid leukemia DNA, suggesting that the variation in c-fes mRNA levels are related to differences in transcriptional activity and/or message stability. These results indicate that elevated c-fes expression is a common feature of myeloid leukemia cells that could potentially contribute to the leukemia phenotype. |
| Stabilization of G-quadruplex DNA with platinum(II) Schiff base complexes: luminescent probe and down-regulation of c-myc oncogene expression. | The interactions of a series of platinum(II) Schiff base complexes with c-myc G-quadruplex DNA were studied. Complex [PtL(1a)] (1 a; H(2)L(1a)=N,N -bis(salicylidene)-4,5-methoxy-1,2-phenylenediamine) can moderately inhibit c-myc gene promoter activity in a cell-free system through stabilizing the G-quadruplex structure and can inhibit c-myc oncogene expression in cultured cells. The interaction between 1 a and G-quadruplex DNA has been examined by (1)H NMR spectroscopy. By using computer-aided structure-based drug design for hit-to-lead optimization, an in silico G-quadruplex DNA model has been constructed for docking-based virtual screening to develop new platinum(II) Schiff base complexes with improved inhibitory activities. Complex [PtL(3)] (3; H(2)L(3)=N,N -bis{4-[1-(2-propylpiperidine)oxy]salicylidene}-4,5-methoxy-1,2-phen ylenediamine) has been identified with a top score in the virtual screening. This complex was subsequently prepared and experimentally tested in vitro for its ability to stabilize or induce the formation of the c-myc G-quadruplex. The inhibitory activity of 3 (IC(50)=4.4 muM) is tenfold more than that of 1 a. The interaction between 1 a or 3 with c-myc G-quadruplex DNA has been examined by absorption titration, emission titration, molecular modeling, and NMR titration experiments, thus revealing that both 1 a and 3 bind c-myc G-quadruplex DNA through an external end-stacking mode at the 3 terminal face of the G-quadruplex. Such binding of G-quadruplex DNA with 3 is accompanied by up to an eightfold increase in the intensity of photoluminescence at lambda(max)=652 nm. Complex 3 also effectively down-regulated the expression of c-myc in human hepatocarcinoma cells. |
| UV damage and repair in the domain of the human c-myc oncogene. | We have used a modification of the Southern hybridization method to analyze the removal of UV-induced pyrimidine cyclobutane dimers from the domain of the c-myc oncogene. The study was performed in human COLO320HSR cells, which exhibit a 30- to 40-fold amplification of c-myc that is maintained in a marker chromosome as a homogeneously staining region. Intron 2 and the region upstream from the gene showed better dimer removal than intron 1 or the region downstream from the c-myc gene. Regions showing less repair coincide with regions that are hotspots for mutations and chromosome translocations. Therefore, it is proposed that the inefficiency of DNA repair may play an important role in the origin of c-myc rearrangements. |
| Oncogene transformation frequency of nonsenescent SFME cells is increased by c-myc. | Immortalized, postcrisis mouse embryo cell cultures derived in serum-containing medium display genomic abnormalities and an altered, preneoplastic phenotype. These lines can be transformed with single oncogenes, such as Ha-ras, while efficient transformation of precrisis, genomically unaltered rodent embryo cultures require cooperating oncogenes, such as Ha-ras and the mouse c-myc gene constitutively expressed. Serum-free mouse embryo (SFME) cells, cultured under conditions in which serum is replaced by growth factors and other supplements, are immortalized in the genomically unaltered state. SFME cells do not exhibit growth crisis or gross chromosomal aberration, and are dependent on epidermal growth factor for survival, growth inhibited by serum, and are nontumorigenic. Transformation of SFME cells can be achieved with ras alone, but the introduction of c-myc increased the transfection frequency upon subsequent transfection with ras by as much as twenty fold. Similar results were obtained with mutationally activated neu oncogene and with genomic human tumor DNA. Constitutive expression of c-myc alone did not alter the properties of the SFME cells. These results demonstrate that c-myc alters cellular responses to oncogenes in a culture system in which oncogene-induced immortalization is not a factor, indicating that the effects of myc may extend beyond an immortalization function in these cells. |
| Immunohistochemical demonstration of epidermal growth factor and c-myc oncogene product in normal, benign and malignant thyroid tissues. | The expression of epidermal growth factor (EGF) and c-myc oncogene product was studied immunohistochemically in 65 benign and malignant human thyroids. Normal thyroid tissues were usually negative with each antibody. Benign and malignant neoplastic thyroid tissues demonstrated a high percentage of stained cells. However, there was no significant difference in positivity between benign and malignant neoplastic tissues. In Graves disease 25% of the cases were positive for EGF, and 100% for c-myc product. The effect of EGF or c-myc expression on prognosis was also examined in 42 patients with papillary thyroid carcinoma. When the cases were divided into two groups with regard to their EGF staining score (highly-expressed and poorly-expressed groups), the frequency of highly-expressed tumours was significantly higher in the recurrence-positive group compared with the recurrence-free group (86% vs 57%), but there was no significant difference between the groups in respect of c-myc expression. |
| MYCN oncoprotein targets and their therapeutic potential. | The MYCN oncogene encodes a transcription factor which is amplified in up to 40% of high risk neuroblastomas. MYCN amplification is a well-established poor prognostic marker in neuroblastoma, however the role of MYCN expression and the mechanisms by which it acts to promote an aggressive phenotype remain largely unknown. This review discusses the current evidence identifying the direct and indirect downstream transcriptional targets of MYCN from recent studies, with particular reference to how MYCN affects the cell cycle, DNA damage response, differentiation and apoptosis in neuroblastoma. |
| Dihydroartemisinin accelerates c-MYC oncoprotein degradation and induces apoptosis in c-MYC-overexpressing tumor cells. | Artemisinin and its derivatives (ARTs) are effective antimalarial drugs and also possess profound anticancer activity. However, the mechanism accounted for its distinctive activity in tumor cells remains unelucidated. We computed Pair wise Pearson correlation coefficients to identify genes that show significant correlation with ARTs activity in NCI-55 cell lines using data obtained from studies with HG-U133A Affymetrix chip. We found c-myc is one of the genes that showed the highest positive correlation coefficients among the probe sets analyzed (r=0.585, P<0.001). Dihydroartemisinin (DHA), the main active metabolite of ARTs, induced significant apoptosis in HL-60 and HCT116 cells that express high levels of c-MYC. Stable knockdown of c-myc abrogated DHA-induced apoptosis in HCT116 cells. Conversely, forced expression of c-myc in NIH3T3 cells sensitized these cells to DHA-induced apoptosis. Interestingly, DHA irreversibly down-regulated the protein level of c-MYC in DHA-sensitive HCT116 cells, which is consistent to persistent G1 phase arrest induced by DHA. Further studies demonstrated that DHA accelerated the degradation of c-MYC protein and this process was blocked by pretreatment with the proteasome inhibitor MG-132 or GSK 3beta inhibitor LiCl in HCT116 cells. Taken together, ARTs might be useful in the treatment of c-MYC-overexpressing tumors. We also suggest that c-MYC may potentially be a biomarker candidate for prediction of the antitumor efficacies of ARTs. |
| [Activation of N-myc oncogene and associated genes to chemoresistance, prognostic value for neuroblastoma]. | N-myc amplification and ploidic index are important prognosis factors in neuroblastoma. Combined overexpression of the multidrug resistance gene, MDR1 and of Glutathion-S-Transferase, GST-pi may be related to the response of tumors to chemotherapy. Measurements of these parameters may contribute to define responders and non-responders to chemotherapy and provide the clinician with additional criteria to manage treatment. |
| N-myc oncogene expression in porcine renal development and oncogenesis. | N-myc oncogene expression was characterized in porcine kidneys to investigate the potential role of this gene in normal renal development and oncogenesis. N-myc RNA expression was detected in porcine kidneys from birth until 5 wk of age, which corresponds to the time when glomerular differentiation is completed. Immunohistochemical studies revealed that N-myc protein was selectively expressed in the primordia of renal proximal tubule epithelial cells. These cells were cultured in vitro and continued to express N-myc for a limited time. Comicroinjection of a mutant ras oncogene and N-myc into these cells led to focus formation in soft agar, loss of contact inhibition, and the establishment of an immortalized cell line. These findings support a multistep model of renal oncogenesis that involves overexpression of N-myc. |
| [The expression of oncogene c-myc and its role on human laryngeal cancer]. | OBJECTIVE: To detect the expression of oncogene c-myc and explore its role on human laryngeal cancer. METHOD: The mRNA and of oncogene c-myc levels were detected in human laryngeal cancer tissues and laryngeal normal tissues by the means of real-time PCR and immunohistochemistry, respectively. RESULT: Compared with normal laryngeal tissues, the mRNA and protein levels of oncogene c-myc were both upregulated in laryngeal cancer tissues of ALL differentiation degree (P<0.05). Moreover, the level of c-myc was inverse correlated with the differentiation degree in human laryngeal cancer tissues. CONCLUSION: The oncogene c-myc is overexpressed in human laryngeal cancer tissues, and c-myc may play an important role in carcinogenesis and progression of human laryngeal cancer tissues. It may provide a new target for gene therapy of human laryngeal cancer. |
| The lethal giant larvae tumour suppressor mutation requires dMyc oncoprotein to promote clonal malignancy. | BACKGROUND: Neoplastic overgrowth depends on the cooperation of several mutations ultimately leading to major rearrangements in cellular behaviour. Precancerous cells are often removed by cell death from normal tissues in the early steps of the tumourigenic process, but the molecules responsible for such a fundamental safeguard process remain in part elusive. With the aim to investigate the molecular crosstalk occurring between precancerous and normal cells in vivo, we took advantage of the clonal analysis methods that are available in Drosophila for studying the phenotypes due to lethal giant larvae (lgl) neoplastic mutation induced in different backgrounds and tissues. RESULTS: We observed that lgl mutant cells growing in wild-type imaginal wing discs show poor viability and are eliminated by Jun N-terminal Kinase (JNK)-dependent cell death. Furthermore, they express very low levels of dMyc oncoprotein compared with those found in the surrounding normal tissue. Evidence that this is a cause of lgl mutant cells elimination was obtained by increasing dMyc levels in lgl mutant clones: their overgrowth potential was indeed re-established, with mutant cells overwhelming the neighbouring tissue and forming tumourous masses displaying several cancer hallmarks. Moreover, when lgl mutant clones were induced in backgrounds of slow-dividing cells, they upregulated dMyc, lost apical-basal cell polarity and were able to overgrow. Those phenotypes were abolished by reducing dMyc levels in the mutant clones, thereby confirming its key role in lgl-induced tumourigenesis. Furthermore, we show that the eiger-dependent Intrinsic tumour Suppressor pathway plays only a minor role in eliminating lgl mutant cells in the wing pouch; lgl-/- clonal death in this region is instead driven mainly by dMyc-induced Cell Competition. CONCLUSIONS: Our results provide the first evidence that dMyc oncoprotein is required in lgl tumour suppressor mutant tissue to promote invasive overgrowth in larval and adult epithelial tissues. Moreover, we show that dMyc abundance inside versus outside the mutant clones plays a key role in driving neoplastic overgrowth. |
| The Yin and Yang functions of the Myc oncoprotein in cancer development and as targets for therapy. | The Myc proto-oncoprotein coordinates a number of normal physiological processes necessary for growth and expansion of somatic cells by controlling the expression of numerous target genes. Deregulation of MYC as a consequence of carciogenic events enforces cells to undergo a transition to a hyperproliferative state. This increases the risk of additional oncogenic mutations that in turn can result in further tumor progression. However, Myc activation also provokes intrinsic tumor suppressor mechanisms including apoptosis, cellular senescence and DNA damage responses that act as barriers for tumor development and therefore needs to be overcome during tumorigenesis. Myc thus possesses two seemingly contradictory "faces" here referred to as "Yin and Yang". Observations that many tumor suppressor pathways remain intact but are latent in tumor cells opens the possibility that pharmacological inhibition of the Yin or activation of the Yang functions can prevail and offer new attractive approaches for treating diverse types of cancer. |
| Inducement of G-quadruplex DNA forming and down-regulation of oncogene c-myc by bile acid-amino acid conjugate-BAA. | Human c-myc gene is a central regulator of cellular proliferation and cell growth, and G-quadruplexes have been proven to be the transcriptional controller of this gene. In this study, the interaction of bile acid-amino acid conjugate (BAA) with G-quadruplexes in c-myc was investigated by circular dichroism spectroscopy, nuclear magnetic resonance (NMR) measurement, and quantitative real-time polymerase chain reaction (PCR) assay. The experimental results indicated that BAA has the ability to selectively induce the formation of parallel G-quadruplexes in c-myc, which leads to down-regulation of c-myc transcription in the human breast cancer cell MCF-7. |
| Structure-based design of platinum(II) complexes as c-myc oncogene down-regulators and luminescent probes for G-quadruplex DNA. | A series of platinum(II) complexes with tridentate ligands was synthesized and their interactions with G-quadruplex DNA within the c-myc gene promoter were evaluated. Complex 1, which has a flat planar 2,6-bis(benzimidazol-2-yl)pyridine (bzimpy) scaffold, was found to stabilize the c-myc G-quadruplex structure in a cell-free system. An in silico G-quadruplex DNA model has been constructed for structure-based virtual screening to develop new Pt(II)-based complexes with superior inhibitory activities. By using complex 1 as the initial structure for hit-to-lead optimization, bzimpy and related 2,6-bis(pyrazol-3-yl)pyridine (dPzPy) scaffolds containing amine side-chains emerge as the top candidates. Six of the top-scoring complexes were synthesized and their interactions with c-myc G-quadruplex DNA have been investigated. The results revealed that ALL of the complexes have the ability to stabilize the c-myc G-quadruplex. Complex 3 a ([Pt(II)L2R](+); L2=2,6-bis[1-(3-piperidinepropyl)-1H-enzo[d]imidazol-2-yl]pyridine, R=Cl) displayed the strongest inhibition in a cell-free system (IC(50)=2.2 microM) and was 3.3-fold more potent than that of 1. Complexes 3 a and 4 a ([Pt(II)L3R](+); L3=2,6-bis[1-(3-morpholinopropyl)-1H-pyrazol-3-yl]pyridine, R=Cl) were found to effectively inhibit c-myc gene expression in human hepatocarcinoma cells with IC(50) values of approximately 17 microM, whereas initial hit 1 displayed no significant effect on gene expression at concentrations up to 50 microM. Complexes 3 a and 4 a have a strong preference for G-quadruplex DNA over duplex DNA, as revealed by competition dialysis experiments and absorption titration; 3 a and 4 a bind G-quadruplex DNA with binding constants (K) of approximately 10(6)-10(7) dm(3) mol(-1), which are at least an order of magnitude higher than the K values for duplex DNA. NMR spectroscopic titration experiments and molecular modeling showed that 4 a binds c-myc G-quadruplex DNA through an external end-stacking mode at the 3 -terminal face of the G-quadruplex. Intriguingly, binding of c-myc G-quadruplex DNA by 3 b is accompanied by an increase of up to 38-fold in photoluminescence intensity at lambda(max)=622 nm. |
| Occurrence and expression of p53 suppressor gene and c-Myc oncogene in dog eyelid tumors. | PURPOSE: To detect the occurrence and expression of the suppressor gene p53 and of the oncogene c-Myc in eyelid tumors of dogs using the PCR, RT-PCR, PCR-ELISA and RT-PCR-ELISA techniques. These genes have not been described in dog eyelid tumors before. METHODS: Nine samples of eyelid or third eyelid epithelial tumors were obtained from the archives of the Department of Veterinary Pathology. tumor diagnosis was confirmed by evaluation of hematoxylin-eosin stained sections, and immunohistochemistry for cytokeratin AE1/AE3 and vimentin V9. A canine mammary tumor was used for positive control. Agarose gel electrophoresis, PCR-ELISA and RT-PCR-ELISA were used to detect p53 and c-Myc genes. RESULTS: The occurrence of p53 was detected in most of the eyelid tumors and third eyelid tumors studied (88.8%, n = 8) and was expressed in 75% of the positive samples, as indicated by ELISA. The c-Myc gene was found in 77.7% (n = 7) of the samples and was expressed in eight samples. CONCLUSIONS: Eyelid and third eyelid tumors of dogs express both the p53 and the c-Myc genes as shown by PCR and RT-PCR. However, PCR ELISA and RT-PCR ELISA were more efficient in assessing occurrence and expression of these genes because they identified amplified products that were not detected by agarose gel electrophoresis. |
| 8q24 prostate, breast, and colon cancer risk loci show tissue-specific long-range interaction with MYC. | The 8q24 gene desert contains risk loci for multiple epithelial cancers, including colon, breast, and prostate. Recent evidence suggests these risk loci contain enhancers. In this study, data are presented showing that each risk locus bears epigenetic marks consistent with enhancer elements and forms a long-range chromatin loop with the MYC proto-oncogene located several hundred kilobases telomeric and that these interactions are tissue-specific. We therefore propose that the 8q24 risk loci operate through a common mechanism-as tissue-specific enhancers of MYC. |
| Depletion of c-myc with specific antisense sequences reverses the transformed phenotype in ras oncogene-transformed NIH 3T3 cells. | ras oncogene-transformed NIH 3T3 cells expressing glucocorticoid-inducible antisense c-myc cDNA transcripts at levels sufficient to deplete c-myc protein lost their transformed morphology and the ability to grow in soft agar; their ability to form tumors in nude mice was also impaired. These changes were dependent on the continuous expression of the antisense sequences. No major effects on plating efficiencies, growth rates in monolayer culture, or immortalization were observed in the revertant cells, indicating that the observed effects were not a toxic consequence of c-myc protein depletion. Transfection with the same vector expressing c-myc in the sense orientation or other control vectors had no effect on transformation. These results suggest that a certain minimum level of expression of c-myc is required for the maintenance of ras transformation in NIH 3T3 cells. |
| The c-Myc target glycoprotein1balpha links cytokinesis failure to oncogenic signal transduction pathways in cultured human cells. | An increase in chromosome number, or polyploidization, is associated with a variety of biological changes including breeding of cereal crops and flowers, terminal differentiation of specialized cells such as megakaryocytes, cellular stress and oncogenic transformation. Yet it remains unclear how cells tolerate the major changes in gene expression, chromatin organization and chromosome segregation that invariably accompany polyploidization. We show here that cancer cells can initiate increases in chromosome number by inhibiting cell division through activation of glycoprotein1b alpha (GpIbalpha), a component of the c-Myc signaling pathway. We are able to recapitulate cytokinesis failure in primary cells by overexpression of GpIbalpha in a p53-deficient background. GpIbalpha was found to localize to the cleavage furrow by microscopy analysis and, when overexpressed, to interfere with assembly of the cellular cortical contraction apparatus and normal division. These results indicate that cytokinesis failure and tetraploidy in cancer cells are directly linked to cellular hyperproliferation via c-Myc induced overexpression of GpIbalpha. |
| Genomic rearrangement of the c-myc proto-oncogene in non-AIDS-related lymphoma in Japan. | Southern blot analysis was employed to analyze the structural alterations of the c-myc oncogene in genomic DNA derived from tumor specimens of 35 adults with pathologically classified and immunophenotyped non-AIDS-related, non-Hodgkin s lymphoma in Japan. In this study, seven cases (20%), including one peripheral T-cell lymphoma and six B-cell lymphomas of various histological types, were demonstrated to have additional c-myc fragments. An interesting feature is that c-myc rearrangements were found in three out of eight primary gastrointestinal lymphomas. Analyses with several restriction enzymes revealed that the breakpoints in these cases were clustered in a region spanning the first exon, first intron and nearby 5 -flanking sequences of the c-myc gene, suggesting that the alteration of this region may represent an important molecular event in activating the oncogenic potential of the c-myc gene. |
| Therapeutic potential of a synthetic lethal interaction between the MYC proto-oncogene and inhibition of aurora-B kinase. | The Myc protein and proteins that participate in mitosis represent attractive targets for cancer therapy. However, their potential is presently compromised by the threat of side effects and by a lack of pharmacological inhibitors of Myc. Here we report that a circumscribed exposure to the aurora kinase inhibitor, VX-680, selectively kills cells that overexpress Myc. This synthetic lethal interaction is attributable to inhibition of aurora-B kinase, with consequent disabling of the chromosomal passenger protein complex (CPPC) and ensuing DNA replication in the absence of cell division; executed by sequential apoptosis and autophagy; not reliant on the tumor suppressor protein p53; and effective against mouse models for B-cell and T-cell lymphomas initiated by transgenes of MYC. Our findings cast light on how inhibitors of aurora-B kinase may kill tumor cells, implicate Myc in the induction of a lethal form of autophagy, indicate that expression of Myc be a useful biomarker for sensitivity of tumor cells to inhibition of the CPPC, dramatize the virtue of bimodal killing by a single therapeutic agent, and suggest a therapeutic strategy for killing tumor cells that overexpress Myc while sparing normal cells. |
| Expression of the c-myc proto-oncogene in multiple myeloma and chronic lymphocytic leukemia: an in situ analysis. | The c-myc gene plays a pivotal role in mediating the competence state for cell cycle transversion. This biologic role is in contradiction to reports of elevated expression of the gene in multiple myeloma, a tumor with restricted self-renewal capacity. To more clearly define the role of this gene in plasma cells of myeloma patients, c-myc messenger RNA (mRNA) and/or oncoprotein expression were semiquantitatively analyzed on the single cell level in 19 cases of multiple myeloma, among them 1 biclonal case and 1 case with coexistent chronic lymphocytic leukemia (CLL). Performing anti-sense/mRNA in situ hybridization, mature c-myc gene transcripts were detected in 92% (12 of 13) of cases and could definitely be attributed to the plasma cells by our study. The number of Ki 67-positive plasma cells actively passing the cell cycle was less than 1% and independent of c-myc gene expression. However, because the presence of the 152-c-MYC epitope was correlated to extent of marrow plasmacytosis (r = .64; P = .043) and content of plasmablasts (P = .09), the c-myc gene might serve a function different from proliferative activity, but also associated with tumor cell mass. In CLL cells (21 of 22 cases) and their benign counterparts, ie, bone marrow and peripheral blood lymphocytes, the anti-sense/c-myc mRNA hybridization signals remained below the threshold considered as cutpoint between negative and positive. The low amounts of c-myc transcripts were correlated to neither stage of disease (P = .52) nor lymphocyte counts (P = .24). Because the numbers of peripheral blood lymphoma cells were independent of tumor mass and of c-myc gene transcripts expressed, peripheral blood lymphocytosis might more likely reflect homing processes than proliferative activity in CLL. |
| DJ-1, an oncogene and causative gene for familial Parkinson s disease, is essential for SV40 transformation in mouse fibroblasts through up-regulation of c-Myc. | Simian virus 40 (SV40) is a tumor virus and its early gene product large T-antigen (LT) is responsible for the transforming activity of SV40. Parkinson s disease causative gene DJ-1 is also a ras-dependent oncogene, but the mechanism of its oncogene function is still not known. In this study, we found that there were no transformed foci when fibroblasts from DJ-1-knockout mice were transfected with LT. We also found that DJ-1 directly bound to LT and that the expression level of c-Myc in transformed cells was parallel to that of DJ-1. These findings indicate that DJ-1 is essential for SV40 transformation. |
| Establishment of an orthotopic transplantable gastric cancer animal model for studying the immunological effects of new cancer therapeutic modules. | tumor cell growth is influenced by the cellular microenvironment including the presence of immune cells and blood vessels. Currently, no transplantable gastric cancer syngeneic animal models exist; therefore, we set out to establish a mouse gastric carcinoma cell line, which was named mouse gastric carcinoma cell line 3I (MGCC3I), from forestomach carcinoma developed in benzo[a]pyrene-treated ICR mice. MGCC3I cells showed epithelial-like morphology, multinuclear giant cell formation, and retained an intestinal phenotype, which are similar to human gastric cancer carcinoma cells. The expression of gastric cancer markers MUC1, MUC2, and MUC5AC, and oncogenes c-myc, c-met, cyclin E1, and cancer stem cell marker CD44 was determined in MGCC3I cells. MGCC3I cells formed poorly differentiated stomach tumors following orthotopic implantation into the stomachs of syngeneic ICR mice. Histone deacetylase inhibitors are recognized as a new class of anticancer drugs. The immunological therapeutic effects of the histone deacetylase inhibitors sodium butyrate and valproic acid were evaluated in this new animal tumor model. Sodium butyrate inhibited MGCC3I stomach tumor formation in animal models. Increased tumor infiltration by CD8 T cells and neutrophils was observed in mice treated with sodium butyrate or valproic acid. Depletion of CD8 T cells significantly attenuated tumor regression mediated by histone deacetylase inhibitors, which is correlated with enhancement of the MHC class I pathway in MGCC3I cells. Taken together, we have successfully established an orthotopic transplantable gastric tumor animal model and demonstrated its usefulness in revealing the role of CD8 T cells in the therapeutic effects of sodium butyrate. |
| Tumorigenesis in transgenic mice expressing the c-myc oncogene with various lymphoid enhancer elements. | The protein product of the v-myb oncogene of avian myeloblastosis virus, v-Myb, differs from its normal cellular counterpart, c-Myb, by (i) expression under the control of a strong viral long terminal repeat, (ii) truncation of both its amino and carboxyl termini, (iii) replacement of these termini by virally encoded residues, and (iv) substitution of 11 amino acid residues. We had previously shown that neither the virally encoded termini nor the amino acid substitutions are required for transformation by v-Myb. We have now constructed avian retroviruses that express full-length or singly truncated forms of c-Myb and have tested them for the transformation of chicken bone marrow cells. We conclude that truncation of either the amino or carboxyl terminus of c-Myb is sufficient for transformation. In contrast, the overexpression of full-length c-Myb does not result in transformation. We have also shown that the amino acid substitutions of v-Myb by themselves are not sufficient for the activation of c-Myb. Rather, the presence of either the normal amino or carboxyl terminus of c-Myb can suppress transformation when fused to v-Myb. Cells transformed by c-Myb proteins truncated at either their amino or carboxyl terminus appear to be granulated promyelocytes that express the Mim-1 protein. Cells transformed by a doubly truncated c-Myb protein are not granulated but do express the Mim-1 protein, in contrast to monoblasts transformed by v-Myb that neither contain granules nor express Mim-1. These results suggest that various alterations of c-Myb itself may determine the lineage of differentiating hematopoietic cells. |
| Structural features of the amplified N-myc oncogene detected by micrococcal nuclease digestion of neuroblastoma cell nuclei. | The structure of chromatin containing amplified N-myc in neuroblastoma and retinoblastoma cells was investigated using micrococcal nuclease digestion of isolated nuclei. The size distribution of DNA fragments containing N-myc, produced by micrococcal nuclease digestion of nuclei, was determined and compared to that of DNA containing the structural gene for dihydrofolate reductase. A perturbation of the native structure of chromatin containing N-myc was evident from the association of N-myc with more extensively digested DNA when compared with chromatin containing dihydrofolate reductase. |
| Overexpression of C-MYC oncogene in prostate cancer predicts biochemical recurrence. | Alterations of chromosome 8, including amplification at 8q24 harboring the C-MYC oncogene, have been noted as one of the most common chromosomal abnormalities in prostate cancer (CaP) progression. However, the frequency of C-MYC alterations in CaP has remained uncertain. A recent study, using a new anti-MYC antibody, described prevalent upregulation of nuclear C-MYC protein expression as an early oncogenic alteration in CaP. Further, we have recently reported regulation of C-MYC expression by ERG and a significant correlation between C-MYC overexpression and TMPRSS2-ERG fusion in early stage CaP. These emerging data suggest that increased C-MYC expression may be a critical and early oncogenic event driving CaP progression. In this study, we assessed whether C-MYC mRNA overexpression in primary prostate tumors was predictive of more aggressive tumor or disease progression. Our approach was to quantitatively determine C-MYC mRNA expression levels in laser capture micro-dissected tumor cells and matched benign epithelial cells in a radical prostatectomy cohort with long follow-up data available. On the basis of our results, we conclude that elevated C-MYC expression in primary prostate tumor is biologically relevant and may be a predictor of future biochemical recurrence. |
| Probing the binding affinity of small-molecule natural products to the G-quadruplex in C-myc oncogene by electrospray ionization mass spectrometry. | IMPORTANCE OF THE FIELD: Invasive growth is a genetic program involved in embryonic development and adult organ regeneration and usurped by cancer cells. Although its control is complex, tumor- and context-specific and regulated by several cytokines and growth factors, the role played by the MET oncogene is well documented. In human cancers the contribution of MET to invasive growth is mainly through overexpression, driven by unfavorable microenvironmental conditions. MET activation confers a selective advantage to neoplastic cells in tumor progression and drug resistance. A subset of tumors feature alterations of the MET gene and a consequent MET-addicted phenotype. AREAS COVERED IN THIS REVIEW: The molecular basis and rationale of MET inhibition in cancer and metastases are discussed. A number of molecules designed to block MET signaling are under development and several Phase II trials are ongoing. WHAT THE READER WILL GAIN: Knowledge of the state of the art of anti-MET targeted approaches and the molecular basis and strategies to select patients eligible for treatment with MET inhibitors. TAKE HOME MESSAGE: Due to its versatile functions MET is a promising candidate for cancer therapy. Understanding molecular mechanisms of sensitization and resistance to MET inhibitors is a priority to guide tailored therapies and select patients that are most likely to achieve a clinical benefit. |
| Expression of the N-myc proto-oncogene during the early development of Xenopus laevis. | The N-myc proto-oncogene is expressed in a wide range of tissues during mammalian embryogenesis. This observation, along with the oncogenic capacity of this gene, has led to the suggestion that N-myc plays an important role in early development. However, due to the complexity of the expression pattern and the difficulty of manipulating mammalian embryos, little progress has been made towards understanding the developmental function of this gene. To enable a more detailed analysis of the role of this gene in early development, a study of the Xenopus homologue of N-myc was undertaken. Xenopus N-myc cDNA clones were isolated from a neurula library using a murine N-myc probe. Analysis of the timing of expression of N-myc mRNA and of the distribution of N-myc protein during Xenopus development indicate that this gene may be playing an important role in the formation of a number of embryonic structures, including the nervous system. N-myc is initially expressed as a maternal RNA, but this mRNA is degraded by the gastrula stage of development. Zygotic expression does not commence until late neurula. Examination of the distribution of the N-myc protein by whole-mount immunohistochemistry indicates that the early embryonic expression occurs in the central nervous system, the neural crest, the somites and the epidermis. Later expression is mostly within the head and somites. Specific structures within the head that express the protein include the eye, otic vesicle, fore and hindbrain and a number of cranial nerves. The results demonstrate that while N-myc is expressed in the developing nervous system of Xenopus, the timing of expression indicates that it is unlikely to be involved in regulation of the very first stages of neurogenesis. |
| Suppression of Aurora-A oncogenic potential by c-Myc downregulation. | The abnormality of serine/threonine kinase Aurora-A is seen in many types of cancers. Although in physiological context it has been shown to play a vital role in cellular mitosis, how this oncogene contributes to tumorigenesis remains unclear. Here we demonstrate that Aurora-A overexpression enhances both the expression level and transcriptional activity of c-Myc. The inhibition of c-Myc expression by RNA interference significantly impaired the oncogenic potential of Aurora-A, resulting in attenuated cellular proliferation and transformation rates as well as fewer centrosomal aberrations. Furthermore, downregulation of c-Myc effectively overcame Aurora-A-induced resistance to cisplatin in esophageal cancer cells. Taken together, our results suggest an important role for c-Myc in mediating the oncogenic activity of Aurora-A, which may in turn allow for future targeting of c-Myc as a potential therapeutic strategy for tumors with Aurora-A overexpression. |
| B-cell activating factor and v-Myc myelocytomatosis viral oncogene homolog (c-Myc) influence progression of chronic lymphocytic leukemia. | Mice bearing a v-Myc myelocytomatosis viral oncogene homolog (c-Myc) transgene controlled by an Ig-alpha heavy-chain enhancer (iMyc(Calpha) mice) rarely develop lymphomas but instead have increased rates of memory B-cell turnover and impaired antibody responses to antigen. We found that male progeny of iMyc(Calpha) mice mated with mice transgenic (Tg) for CD257 (B-cell activating factor, BAFF) developed CD5(+) B-cell leukemia resembling human chronic lymphocytic leukemia (CLL), which also displays a male gender bias. Surprisingly, leukemic cells of Myc/Baff Tg mice expressed higher levels of c-Myc than did B cells of iMyc(Calpha) mice. We found that CLL cells of many patients with progressive disease also expressed high amounts of c-MYC, particularly CLL cells whose survival depends on nurse-like cells (NLC), which express high-levels of BAFF. We find that BAFF could enhance CLL-cell expression of c-MYC via activation the canonical IkappaB kinase (IKK)/NF-kappaB pathway. Inhibition of the IKK/NF-kappaB pathway in mouse or human leukemia cells blocked the capacity of BAFF to induce c-MYC or promote leukemia-cell survival and significantly impaired disease progression in Myc/Baff Tg mice. This study reveals an important relationship between BAFF and c-MYC in CLL which may affect disease development and progression, and suggests that inhibitors of the canonical NF-kappaB pathway may be effective in treatment of patients with this disease. |
| Immunohistochemical detection of c-myc oncoprotein in paraffin embedded tissues. | In almost ALL studies using paraffin embedded tissue, c-myc protein has been found in the cytoplasm of cells. Since the protein is normally localized in the nucleus it is difficult to determine which histochemical observations are real and which are artefactual. The study designed here evaluated several different methods of fixation prior to paraffin embedding in an attempt to identify which would prevent the diffuse of the protein out of the nucleus. Using various fixation procedures (formalin, paraformaldehyde, B-5, Zamboni and AMeX) we found that fixation in cold acetone (-20 degrees C) overnight followed by 2x15 min fixation in acetone at +4 degrees c and at room temperature, cleared in methyl benzoate and xylene (AMeX procedure) gives reproducible nuclear staining when a variety of normal and tumor tissues are treated with an anti c-myc protein antibody. This method was then compared to frozen sections. While there was no cytoplasmic staining in same tissue specimens in both AMeX processed and frozen sections, the tissue architecture was much better preserved in AMeX processed samples. Our data strongly suggest that AMeX fixation, originally developed for T and B lymphocyte antigens, should be used for immunolocalization of c-myc oncoprotein in paraffin embedded tissues. |
| Myc/miR-378/TOB2/cyclin D1 functional module regulates oncogenic transformation. | The c-Myc transcription factor activates a cascade of downstream targets to form a complex transcriptional program that ultimately leads to cellular transformation. Although a large number of protein-encoding genes as well as non-coding RNAs were identified as Myc targets, only a few have been validated to be functionally important for c-Myc-driven transformation. Here, we identify a microRNA (miRNA), miR-378, as a novel target of the c-Myc oncoprotein that is able to cooperate with activated Ras or HER2 to promote cellular transformation. Mechanistically, miR-378 achieves this oncogenic effect, at least in part, by targeting and inhibiting the anti-proliferative BTG family member, TOB2, which is further elucidated as a candidate tumor suppressor to transcriptionally repress proto-oncogene cyclin D1. Therefore, our study identifies miR-378-TOB2-cyclin D1 as a functional module to mediate the cross talk between Myc and Ras signaling in cellular transformation. |
| Phosphorylation regulates c-Myc s oncogenic activity in the mammary gland. | expression of the c-Myc oncoprotein is affected by conserved threonine 58 (T58) and serine 62 (S62) phosphorylation sites that help to regulate c-Myc protein stability, and altered ratios of T58 and S62 phosphorylation have been observed in human cancer. Here, we report the development of 3 unique c-myc knock-in mice that conditionally express either c-Myc(WT) or the c-Myc(T58A) or c-Myc(S62A) phosphorylation mutant from the constitutively active ROSA26 locus in response to Cre recombinase to study the role of these phosphorylation sites in vivo. Using a mammary-specific Cre model, we found that expression of c-Myc(WT) resulted in increased mammary gland density, but normal morphology and no tumors at the level expressed from the ROSA promoter. In contrast, c-Myc(T58A) expression yielded enhanced mammary gland density, hyperplastic foci, cellular dysplasia, and mammary carcinoma, associated with increased genomic instability and suppressed apoptosis relative to c-Myc(WT). Alternatively, c-Myc(S62A) expression reduced mammary gland density relative to control glands, and this was associated with increased genomic instability and normal apoptotic function. Our results indicate that specific activities of c-Myc are differentially affected by T58 and S62 phosphorylation. This model provides a robust platform to interrogate the role that these phosphorylation sites play in c-Myc function during development and tumorigenesis. |
| [Progress of research on Proto-oncogene c-myc, c-myb in platelet diseases]. | The proto-oncogene c-myc and c-myb has been shown to be crucial in the development of the hematopoietic system. The changes in the expression of c-myc are concerned the cell proliferation and differentiation, the expression products of which play an important regulatory role in cell growth, differentiation or malignant transformation. The c-myb involves in transcription and affects cell proliferation, differentiation, apoptosis. More recently, the researches on proto-oncogene c-myc, c-myb in hematopoietic regulation have gradually increased along with development of molecular biology, molecular immunology and cell biology. Scientists point out that the directive differentiation of erythroid and megakaryocytic progenitors, and platelet abnormalities ALL relate to the level of their expressions. The most common thrombocytopathy includes thrombocytopenia, thrombocytosis and so on. The etiology and the mechanism of these diseases are unknown. This article reviews the structure, function and the expression of c-myc and c-myb in platelet diseases and their significance. |
| [Presence of proteins and genes homologous to the c-myc proto-oncogene in Entamoeba]. | We have investigated mixed cultures of "normal" early passage Balb/c embryo cells and Balb/c 3T3 cells transformed by the human T24 H-ras1 oncogene. The presence of an excess of "Normal" cells could suppress the phenotype of transformed cells in vitro. A similar type of suppression by normal cells could be shown in vivo on tumors induced by Balb/c 3T3 transformed cells. The suppressing effect of normal cells on T24 H-ras1 transformed cells could also be demonstrated by DNA synthesis inhibition experiments. It is suggested that normal cells could either carry or induce tumor inhibitory substances. |
| C-myc oncogene product p62 in ovarian mucinous neoplasms. | We have investigated mixed cultures of "normal" early passage Balb/c embryo cells and Balb/c 3T3 cells transformed by the human T24 H-ras1 oncogene. The presence of an excess of "Normal" cells could suppress the phenotype of transformed cells in vitro. A similar type of suppression by normal cells could be shown in vivo on tumors induced by Balb/c 3T3 transformed cells. The suppressing effect of normal cells on T24 H-ras1 transformed cells could also be demonstrated by DNA synthesis inhibition experiments. It is suggested that normal cells could either carry or induce tumor inhibitory substances. |
| [Immunohistological study on ras and myc oncogene products in pancreatic cancer]. | Surgical treatment of the pancreatic cancer is currently unsatisfactory. By using anti-K,H,N-ras monoclonal and anti-myc polyclonal antibodies, paraffin-embedded tissue specimens of the carcinoma in digestive organs were immunohistologically studied. Then, the incidence of expression of these oncogenes and correlative studies of survival rate and disease stage of pancreatic cancer were analyzed. High incidence of expression of ras oncogene in the carcinoma of the pancreas and biliary tract was obtained. Frequency of expression of ras oncogene was correlated to disease stage and T factor for staging the carcinoma of the pancreas. Prognoses of 6 cases of pancreatic cancer without expression of ras oncogene were better than that of pancreatic cancer expressed ras oncogene. |
| Quinolino-benzo-[5, 6]-dihydroisoquindolium compounds derived from berberine: a new class of highly selective ligands for G-quadruplex DNA in c-myc oncogene. | A series of quinolino-benzo-[5, 6]-dihydroisoquindolium compounds (3a, 3f, 3g, and 3j) derived from alkaloid berberine were designed and synthesized as novel G-quadruplex ligands. Subsequent biophysical and biochemical evaluation demonstrated that the addition of pyridine ring and amino group into berberine improved the binding ability and selectivity towards G-quadruplex DNA in comparison with the previously reported 9-N-substituted berberine derivatives. Furthermore, qRT-PCR assay showed compound 3j led the down-regulation of c-myc gene transcription in leukemia cell line HL60, while little effect on normal cell line ECV-304, which was consistent with the behavior of an effective G-quadruplex ligand targeting c-myc oncogene. |
| Cathepsin D assay in primary breast cancer and lymph nodes: relationship with c-myc, c-erb-B-2 and int-2 oncogene amplification and node invasiveness. | In breast cancer, axillary lymph node invasiveness is the major prognostic factor in predicting relapse and metastasis. Nevertheless, since 30% of node-negative tumors also relapse, it is necessary to develop other independent prognostic factors. oncogene amplification and the level of cathepsin D (cath-D), an acidic lysosomal protease produced and secreted in excess by breast cancer cells, have been proposed as additional prognostic factors. We have compared the cytosolic cath-D level and the amplification of three oncogenes: c-myc, neu-erb-B-2 and int-2 in 140 primary breast carcinomas and 64 axillary lymph nodes collected in 1987 and 1988 at the cancer Center of Montpellier (Centre Paul Lamarque). None of the patients had previously received hormonal or chemotherapy. The cath-D concentration was measured with an immunoradiometric assay using monoclonal antibodies. DNA purified from the same samples was analyzed by a standard Southern blotting technique to estimate oncogene amplification. No correlation was found between the level of cath-D in the tumor and node invasiveness. Using a cut-off level of 60 pmol/mg protein, the status of cath-D was not correlated with neu-erb-B-2 and int-2 amplification and only correlated with c-myc amplification (P = 0.011). Both c-myc and cath-D are associated with cell proliferation, induced by estrogens in ER+ breast cancer, and constitutively produced in ER- breast cancer. The level of cath-D was significantly higher in the invaded lymph nodes (P = 0.04) than in the histologically non-invaded ones. Nevertheless, some non-invaded lymph nodes contained a high level of cath-D, as confirmed by immunoperoxidase staining. In conclusion, in breast cancer, a high cytosolic cath-D concentration is more frequent in tumors with c-myc amplification but is dissociated from neu-erb-B-2 or int-2 amplification, suggesting that the determination of these three markers will have an additional prognostic value. |
| Circulating antibodies against c-myc oncogene product in sera of colorectal cancer patients. | We developed a Western blot assay using purified human c-myc protein expressed in E. coli in order to look for circulating anti-c-myc antibodies in human sera. The presence of IgG antibodies against c-myc was observed in 25 out of 44 sera from patients with colorectal cancer diagnosed and treated at the Hopital Curie in Paris, compared to the sera of 46 normal donors of which only 8 samples were positive (p = 0.001). |
| Alterations in nucleolar structure and gene expression programs in prostatic neoplasia are driven by the MYC oncogene. | Increased nucleolar size and number are hallmark features of many cancers. In prostate cancer, nucleolar enlargement and increased numbers are some of the earliest morphological changes associated with development of premalignant prostate intraepithelial neoplasia (PIN) lesions and invasive adenocarcinomas. However, the molecular mechanisms that induce nucleolar alterations in PIN and prostate cancer remain largely unknown. We verify that activation of the MYC oncogene, which is overexpressed in most human PIN and prostatic adenocarcinomas, leads to formation of enlarged nucleoli and increased nucleolar number in prostate luminal epithelial cells in vivo. In prostate cancer cells in vitro, MYC expression is needed for maintenance of nucleolar number, and a nucleolar program of gene expression. To begin to decipher the functional relevance of this transcriptional program in prostate cancer, we examined FBL (encoding fibrillarin), a MYC target gene, and report that fibrillarin is required for proliferation, clonogenic survival, and proper ribosomal RNA accumulation/processing in human prostate cancer cells. Further, fibrillarin is overexpressed in PIN lesions induced by MYC overexpression in the mouse prostate, and in human clinical prostate adenocarcinoma and PIN lesions, where its expression correlates with MYC levels. These studies demonstrate that overexpression of the MYC oncogene increases nucleolar number and size and a nucleolar program of gene expression in prostate epithelial cells, thus providing a molecular mechanism responsible for hallmark nucleolar alterations in prostatic neoplasia. |
| Combinatorial effects of microRNAs to suppress the Myc oncogenic pathway. | Many mammalian transcripts contain target sites for multiple miRNAs, although it is not clear to what extent miRNAs may coordinately regulate single genes. We have mapped the interactions between down-regulated miRNAs and overexpressed target protein-coding genes in murine and human lymphomas. Myc, one of the hallmark oncogenes in these lymphomas, stands out as the up-regulated gene with the highest number of genetic interactions with down-regulated miRNAs in mouse lymphomas. The regulation of Myc by several of these miRNAs is confirmed by cellular and reporter assays. The same approach identifies MYC and multiple Myc targets as a preferential target of down-regulated miRNAs in human Burkitt lymphoma, a pathology characterized by translocated MYC oncogenes. These results indicate that several miRNAs must be coordinately down-regulated to enhance critical oncogenes, such as Myc. Some of these Myc-targeting miRNAs are repressed by Myc, suggesting that these tumors are a consequence of the unbalanced activity of Myc versus miRNAs. |
| [Role of microRNA-223 and its target gene oncogene c-myc in hepatocellular carcinoma pathogenesis]. | To investigate the regulatory role of microRNA-223 (miR-223) on c-myc and its role in hepatocarcinogenesis. miR-223 and c-myc mRNA expressions in normal tissue, paraneoplastic tissue, liver cancer tissue and liver cancer cells were tested with microRNA microarray and quantitative real-time PCR (qRT-PCR). C-myc protein expression was detected by Western blot. MiR-223 mimic was transfected into HepG2 cells and the expression changes of c-myc mRNA and protein were tested with qRT-PCR and Western blot respectively. MiR-223 was down-regulated by 61.53% and 30.77% respectively in hepatocellular carcinoma and adjacent tissues as compared to normal liver tissues and the expression of miR-223 was also decreased in HepG2 cell as compared to fetal liver cells L02, whereas the expressions of c-myc mRNA and protein increased in paraneoplastic and HCC tissues compared with normal liver tissues. It prompts that the expressions of miR-223 and c-myc are negatively correlated. No obvious difference found among c-myc mRNA expressions after miR-223 mimics transfection. The c-myc abnormal high-expression may play a dynamic role in hepatocarcinogenesis due to the miR-223 down-regulation. |
| Posttranscriptional deregulation of MYC via PTEN constitutes a major alternative pathway of MYC activation in T-cell acute lymphoblastic leukemia. | Cumulative evidence indicates that MYC, one of the major downstream effectors of NOTCH1, is a critical component of T-cell acute lymphoblastic leukemia (T-ALL) oncogenesis and a potential candidate for targeted therapy. However, MYC is a complex oncogene, involving both fine protein dosage and cell-context dependency, and detailed understanding of MYC-mediated oncogenesis in T-ALL is still lacking. To better understand how MYC is interspersed in the complex T-ALL oncogenic networks, we performed a thorough molecular and biochemical analysis of MYC activation in a comprehensive collection of primary adult and pediatric patient samples. We find that MYC expression is highly variable, and that high MYC expression levels can be generated in a large number of cases in absence of NOTCH1/FBXW7 mutations, suggesting the occurrence of multiple activation pathways in addition to NOTCH1. Furthermore, we show that posttranscriptional deregulation of MYC constitutes a major alternative pathway of MYC activation in T-ALL, operating partly via the PI3K/AKT axis through down-regulation of PTEN, and that NOTCH1(m) might play a dual transcriptional and posttranscriptional role in this process. Altogether, our data lend further support to the significance of therapeutic targeting of MYC and/or the PTEN/AKT pathways, both in GSI-resistant and identified NOTCH1-independent/MYC-mediated T-ALL patients. |
| Emerging Concepts in the Analysis of Transcriptional Targets of the MYC Oncoprotein: Are the Targets Targetable?. | Activation of the MYC oncoprotein is among the most ubiquitous events in human cancer. MYC functions in part as a sequence-specific regulator of transcription. Although early searches for direct downstream target genes that explain MYC s potent biological activity were met with enthusiasm, the postgenomic decade has brought the realization that MYC regulates the transcription of not just a manageably small handful of target genes but instead up to 15% of ALL active loci. As the dust has begun to settle, two important concepts have emerged that reignite hope that understanding MYC s downstream targets might still prove valuable for defining critical nodes for therapeutic intervention in cancer patients. First, it is now clear that MYC target genes are not a random sampling of the cellular transcriptome but instead fall into specific, critical biochemical pathways such as metabolism, chromatin structure, and protein translation. In retrospect, we should not have been surprised to discover that MYC rewires cell physiology in a manner designed to provide the tumor cell with greater biosynthetic properties. However, the specific details that have emerged from these studies are likely to guide the development of new clinical tools and strategies. This raises the second concept that instills renewed optimism regarding MYC target genes. It is now clear that not ALL MYC target genes are of equal functional relevance. Thus, it may be possible to discern, from among the thousands of potential MYC target genes, those whose inhibition will truly debilitate the tumor cell. In short, targeting the targets may ultimately be a realistic approach after all. |
| Gene expression of neuropeptide Y and neuropeptide-Y1 receptor in relation to proto-oncogene tyrosine kinase A, nerve-growth-factor low-affinity-receptor and the transcription factor N-myc in human neuroblastomas. | The expression of neuropeptide Y (NPY) and NPY-Y1 receptor (NPY-Y1R) in relation to that of tyrosine kinase A (trkA), nerve-growth-factor low-affinity-receptor (LNGFR) and the transcription factor N-myc was studied in 26 neuroblastomas and one ganglioneuroma by quantitative Northern-blot analysis. A correlation of NPY-Y1R with LNGFR (r = 0.85, p < 0.01) and trkA (r = 0.38, p < 0.05), respectively, could be shown, while no correlation between NPY and its receptor NPY-Y1R was observed. Comparison of a high and a low level NPY expressing group revealed that the high NPY expressing group also had high LNGFR and high trkA levels while the low NPY expressing group had low LNGFR and low trkA levels which were significantly different (NPY: p = 0.035, trkA: p = 0.008, LNGFR p = 0.004). Dividing the tumors in a high and a low N-myc expressing group showed that the low N-myc expressing group contained both high and low trkA expressing tumors while the high N-myc expressing group exclusively were low level trkA expressing tumors. The frequency distribution in both groups concerning trkA expression showed a significant difference (p < 0.01). In conclusion the coexpression of NPY-Y1R and LNGFR or trkA may indicate a similar gene regulation during ontogenesis of the peripheral nervous system. |
| Analysis of the activation of the myc family oncogene and of its stability over time in xenografted human lung carcinomas. | In order to validate the use of the nude mouse as a model for studying lung cancers, 21 different lung cancers were xenografted onto nude mice and the tumoral DNA and RNA were analyzed for abnormality in the myc family genes (c-myc, L-myc, and N-myc). Six of 14 small cell lung cancers (SCLC) showed a 4-35-fold amplification for L-myc, 5 of 7 non-SCLC a 3-5-fold amplification for c-myc, and 1 of 14 SCLC an 80-fold amplification for N-myc. Of the 7 SCLC with amplified L- or N-myc oncogenes, 4 were of the small and large histological type, while only 5 of the 21 cases studied were of the small and large type. ALL xenografted tumors with amplification of one of the myc genes showed overexpression of the related mRNA. Overexpression without amplification of the myc genes was observed for 3 SCLC and 2 non-SCLC. These results indicate that the L-myc gene seems to be associated with the small and large phenotype in SCLC, whereas c-myc seems to be implicated in non-SCLC. Of the 21 lung cancers studied 14 were analyzed for myc family gene activation for serial passages into nude mice. No variation of DNA amplification was observed during long-term growth in nude mice for any of the myc oncogenes. Changes in the level of mRNA expression were observed only for c-myc; a beginning of expression in one SCLC and an increase in expression in one non-SCLC were noted in late passages when compared with early ones. The nude mouse is therefore a valuable model for the study of lung cancers "over a 4-year period at least."FAU - Gazzeri, S |
| Effects of linoleic acid and eicosanoid synthesis inhibitors on the growth and c-myc oncogene expression of human breast cancer cells. | We investigated the effects of linoleic acid and eicosanoid synthesis inhibitors on the growth, DNA synthesis, and c-myc oncogene expression of human breast cancer cell lines. The cell growth of ALL cell lines examined was stimulated by linoleic acid, although the optimal concentration of linoleic acid for the growth stimulation differed among the cell lines. The growth stimulation of MCF7 and MDA-MB-435 cells was not dependent on the amount of released prostaglandin E(2) but their growth-concentration curve showed the same pattern as that of released leukotriene B-4. Moreover, linoleic acid stimulated the expression of c-myc mRNA in MCF7 cells without the presense of estrogen. Indomethacin as a cyclooxygenase inhibitor did not inhibit the c-myc expression in MCF7, but a lipoxygenase inhibitor, esculetin, markedly inhibited the c-myc expression in MCF7 affected by linoleic acid. These results suggest that linoleic acid has a direct mitogenic effect on breast cancer cells, and its mechanism is distinct from hormonal stimulation, Moreover, metabolites of lipoxygenase rather than those of cyclooxygenase may play an important role in the c-myc oncogene expression affected by linoleic acid. |
| Co-overexpression of bcl-2 and c-myc in uterine cervix carcinomas and premalignant lesions. | To establish the role of co-overexpression of bcl-2 and c-myc protooncogenes in uterine cervix carcinogenesis, we examined 138 tissue samples of low grade cervical squamous intraepithelial lesions (SIL), high grade SIL, portio vaginalis uteri (PVU) carcinoma in situ and PVU carcinoma invasive, stage IA-IIA (study group) and 36 samples without SIL or malignancy (control group). The expression of bcl-2 and c-myc was detected immunohistochemically using a monoclonal antibody. Fisher’s exact test (P<0.05) was used to assess statistical significance. Overexpression of bcl-2 was found to increase in direct relation to the grade of the cervical lesions. High sensitivity was of great diagnostic significance for the detection of these types of changes in the uterine cervix. On the basis of high predictive values it can be said that in patients with bcl-2 overexpression there is a great possibility that they have premalignant or malignant changes in the uterine cervix. Co-overexpression of bcl-2 and c-myc oncogenes was found only in patients with PVU invasive carcinoma (6/26-23.0%). Statistically significant difference was not found in the frequency of co-overexpression in patients with PVU invasive carcinoma in relation to the control group (Fisher’s test; P=0.064). The method s sensitivity of determining these oncogenes with the aim of detecting PVU invasive carcinoma was 23%, while specificity was 72.2%. On the basis of high predictive values (100%), speaking in statistical terms, it can be concluded that ALL patients with co-overexpression of bcl-2 and c-myc oncogenes will have PVU invasive carcinoma. We confirmed in our research that co-overexpression of bcl-2 and c-myc oncogenes was increased only in PVU invasive carcinoma. However, a more extensive series of samples and additional tests are required to establish the prognostic significance of bcl-2 and c-myc co-overexpression in cervical carcinogenesis. |
| Rflp analysis of the L-myc oncogene in head and neck-cancer - relationship study with susceptibility and disease progression. | The L-myc DNA restriction fragment length polymorphism (RFLF), revealed by EcoRI digestion, has been evaluated in a case-control study including 161 head and neck cancer (HNSCC) patients and 160 normal healthy individuals with similar smoking and alcohol habits. No significant difference in the distribution of L-myc genotypes (LL, LS or SS) was found between the two populations implying thus no predisposition to head and neck tumour by either allele. There was no significant association between L-myc genotypes and the usual clinicopathological features such as T staging, differentiation status and lymph node involvement. Moreover, follow-up data from 154 patients was obtained and correlated with the L-myc pattern. No significant difference was observed in metastasis occurrence, multiple cancer incidence and survival data in the patients classified according to the L-myc genotypes; only a trend to preferentially develop metastasis in lung for patients with S allele was noted. In conclusion, our data shows that the L-myc typing does not contribute to HNSCC risk or prognosis assessment. A review of L-myc RFLP published studies shows contradictory results even on the same type of tumour and emphasizes the lacunae in understanding the biological role of L-myc for valid interpretation of L-myc allelic associations with cancer susceptibility or prognosis. |
| Dissection of the oncogenic MYCN transcriptional network reveals a large set of clinically relevant cell cycle genes as drivers of neuroblastoma tumorigenesis. | Amplification of the oncogenic transcription factor MYCN plays a major role in the pathogenesis of several pediatric cancers, including neuroblastoma, medulloblastoma, and rhabodomyosarcoma. For neuroblastoma, MYCN amplification is the most powerful genetic predictor of poor patient survival, yet the mechanism by which MYCN drives tumorigenesis is only partially understood. To gain an insight into the distribution of MYCN binding and to identify clinically relevant MYCN target genes, we performed an integrated analysis of MYCN ChIP-chip and mRNA expression using the MYCN repressible SHEP-21N neuroblastoma cell line. We hypothesized that genes exclusively MYCN bound in SHEP-21N cells over-expressing MYCN would be enriched for direct targets which contribute to the process of disease progression. Integrated analysis revealed that MYCN drives tumorigenesis predominantly as a positive regulator of target gene transcription. A high proportion of genes (24%) that are MYCN bound and up-regulated in the SHEP-21N model are significantly associated with poor overall patient survival (OS) in a set of 88 tumors. In contrast, the proportion of genes down-regulated when bound by MYCN in the SHEP-21N model and which are significantly associated with poor overall patient survival when under-expressed in primary tumors was significantly lower (5%). Gene ontology analysis determined a highly statistically significant enrichment for cell cycle related genes within the over-expressed MYCN target group which were also associated with poor OS. We conclude that the over-expression of MYCN leads to aberrant binding and over-expression of genes associated with cell cycle regulation which are significantly correlated with poor OS and MYCN amplification. |
| Human breast-carcinoma cells show correlation in expression of C-myc oncogene and the C-myc binding-protein (mbp-1). | The c-myc proto-oncogene is an early response gene which plays an important role in regulation of cell proliferation, differentiation and cell cycle control. Amplification and/or overexpression of this gene occurs in human breast carcinoma eels. The human c-myc promoter binding protein (MBP-1) is a negative regulatory factor for c-myc transcription, which binds to the upstream region of the c-myc P2 promoter. It was cloned and characterized from human cervical carcinoma cells. Normal human tissues and human breast carcinoma cells showed an elevated level of both MBP-1 and c-myc gene expression. In estrogen receptor (ER)-negative cells, the level of MBP-1 expression was higher than that of ER-positive cells. These results suggested a correlation between estrogen receptor status and the MBP-1 mRNA level. |
| B Lymphocyte commitment program is driven by the proto-oncogene c-Myc. | c-Myc, a member of the Myc family of transcription factors, is involved in numerous biological functions including the regulation of cell proliferation, differentiation, and apoptosis in various cell types. Of ALL of its functions, the role of c-Myc in cell differentiation is one of the least understood. We addressed the role of c-Myc in B lymphocyte differentiation. We found that c-Myc is essential from early stages of B lymphocyte differentiation in vivo and regulates this process by providing B cell identity via direct transcriptional regulation of the ebf-1 gene. Our data show that c-Myc influences early B lymphocyte differentiation by promoting activation of B cell identity genes, thus linking this transcription factor to the EBF-1/Pax-5 pathway. |
| Alterations in growth properties of human papilloma virus type 16 immortalised human cervical keratinocyte cell line correlate with amplification and overexpression of c-myc oncogene. | Clinical and epidemiological data support a role for human papilloma virus (HPV) type 16 in the pathogenesis of cervical carcinoma. The W12 cell line contains HPV16 sequences, predominantly as a high copy number episome, and is immortalised in vitro, but non-tumourigenic. A morphologically distinct sub-line of the parental W12 cell line was isolated which displayed increased growth rate, increased capacity for self-renewal and increased resistance to differentiation in comparison with the parental W12 cell line. The structure and expression of the HPV16 sequences was virtually identical in the two cell lines. However, expression of the c-myc proto-oncogene was elevated in the morphologically distinct sub-line, and this was associated with amplification, but not rearrangement, of the c-myc locus. Karyotype analysis demonstrated that amplification of the c-myc locus was a result of duplication of the long arm of chromosome eight. |
| Glucocorticoids regulate expression of the v-mycOK10 oncogene in a murine retroviral vector with chimeric MoMuLV-MMTV LTRs. | A murine retrovirus which expresses the v-mycOK10 oncogene under the control of the dexamethasone-regulatable mouse mammary tumor virus (MMTV) promoter has been constructed. In this vector, denoted pMImyc, the Moloney Murine leukemia virus (MoMuLV) sequences required for virus replication, integration and packaging were kept, while ALL the elements for transcription regulation were derived from the MMTV long terminal repeat (LTR). After transfection of NIH 3T3 fibroblasts with this construct, a cell line was isolated in which the level of v-myc RNAs were increased 60 fold by dexamethasone. Kinetic studies showed that this induction can be maintained for up to 12 hours of hormone treatment. After infection with MoMuLV as a helper virus, and in the presence of dexamethasone, the production of pMImyc RNA, estimated by slot blot analysis, was equivalent to about 10(3) viral particles/ml. |
| Skp2 is necessary for Myc-induced keratinocyte proliferation but dispensable for Myc oncogenic activity in the oral epithelium. | The proto-oncogene c-Myc encodes a transcription factor that is implicated in the regulation of cellular proliferation, differentiation, and apoptosis. Myc accelerates the rate of cell proliferation, at least in part, through its ability to down-regulate the expression of the cell cycle inhibitor p27(Kip1). Moreover, p27(Kip1) protein levels are regulated by ubiquitin-mediated turnover, leading to destruction by the E3 ubiquitin ligase SCF(Skp2). Therefore, we hypothesize that a lack of Skp2 expression should lead to increased p27(Kip1) levels and further inhibition of Myc-mediated proliferation and tumorigenesis. Myc expression in epithelial tissues of transgenic mice (K5-Myc) led to increased keratinocyte proliferation and the development of spontaneous tumors within the oral cavity. We generated K5-Myc-transgenic mice in an Skp2-null background. Consistent with our hypothesis, we found that Myc-mediated keratinocyte hyperproliferation was abolished by the loss of Skp2. However, Skp2 ablation did not affect Myc-driven tumorigenesis because the incidence, latency, and degree of differentiation of oral tumors were identical between K5-Myc/Skp2(+/+) and K5-Myc/Skp2(-/-) mice. Altogether, these findings suggest that Skp2 and p27(Kip1) are critical for Myc-driven keratinocyte proliferation; however, Myc-mediated tumorigenesis in the oral epithelium is independent of the Skp2-p27(Kip1) axis. |
| c-myc oncoprotein in bronchial carcinoma: expression in all major morphological types. | We have studied the prevalence of a 62 kd protein product of the c-myc oncogene in tissue biopsies from 79 primary bronchial carcinomata using the monoclonal antibody Myc 1-9E10 and the avidin-biotin complex (ABC) technique. This oncoprotein was strongly expressed in 43% of 37 squamous lesions, 29% of 14 adenocarcinomata, 42% of 7 non-small cell lesions not further classifiable and 19% of 21 small cell neoplasms, ALL of classical morphology. There was no statistical difference between groups in the prevalence of its expression, nor was it related to survival. This oncoprotein is commonly expressed in non-small cell as well as small cell bronchial carcinomata and, in the latter, is not confined to those variant tumours which possess a "large cell" morphology and carry a poor prognosis. |
| Regulation of the equilibrium between G-quadruplex and duplex DNA in promoter of human c-myc oncogene by a pyrene derivative. | It has been established that the equilibrium between duplex and G-quadruplex of the nuclease hypersensitivity element III1 (NHE III1) in human c-myc promoter is linked with this gene s transcription. Using NMR and ESI-MS, we have found a pyrene derivative, DMAPP, is able to modulate this equilibrium and, thus, might have the potential to regulate this oncogene s transcription. DMAPP has shown as a G-quadruplex binding agent and could induce c-myc G-quadruplex formation out of duplex. These results provide new clue for rational drug design to target transcription control of c-myc. |
| Long-term cultivation of in vitro Apis mellifera cells by gene transfer of human c-myc proto-oncogene. | Establishment of cell lines representative of honeybee character would greatly assist in their analysis. Here, we show that immortalized cell line, designated as MYN9, has been generated from honeybee embryo by the gene transfer of human c-myc proto-oncogene. The morphology of the cell is characteristic of embryonic stem cell, although the cell is stable and does not spontaneously differentiate. Polymerase chain reaction analyses show that the cell is originated from authentic honeybee cell. It is proposed that the integration of human c-myc gene into honeybee precursor populations results in the establishment of stable cell line suitable for cellular and molecular studies. |
| c-MYC oncoprotein dictates transcriptional profiles of ATP-binding cassette transporter genes in chronic myelogenous leukemia CD34+ hematopoietic progenitor cells. | Resistance to chemotherapeutic agents remains one of the major impediments to a successful treatment of chronic myeloid leukemia (CML). Misregulation of the activity of a specific group of ATP-binding cassette transporters (ABC) is responsible for reducing the intracellular concentration of drugs in leukemic cells. Moreover, a consistent body of evidence also suggests that ABC transporters play a role in cancer progression beyond the efflux of cytotoxic drugs. Despite a large number of studies that investigated the function of the ABC transporters, little is known about the transcriptional regulation of the ABC genes. Here, we present data showing that the oncoprotein c-MYC is a direct transcriptional regulator of a large set of ABC transporters in CML. Furthermore, molecular analysis carried out in CD34+ hematopoietic cell precursors of 21 CML patients reveals that the overexpression of ABC transporters driven by c-MYC is a peculiar characteristic of the CD34+ population in CML and was not found either in the population of mononuclear cells from which they had been purified nor in CD34+ cells isolated from healthy donors. Finally, we describe how the methylation state of CpG islands may regulate the access of c-MYC to ABCG2 gene promoter, a well-studied gene associated with multidrug resistance in CML, hence, affecting its expression. Taken together, our findings support a model in which c-MYC-driven transcriptional events, combined with epigenetic mechanisms, direct and regulate the expression of ABC genes with possible implications in tumor malignancy and drug efflux in CML. |
| Proteolytic control of the oncoprotein transcription factor Myc. | The c-Myc oncogene encodes a multifunctional transcription factor that directs the expression of genes required for cell growth and proliferation. Consistent with its potent growth-promoting properties, cells have evolved numerous mechanisms that limit the expression and activity of Myc. One of the most prominent of these mechanisms is proteolysis, which destroys Myc within minutes of its synthesis. The rapid and controlled destruction of Myc keeps its levels low and precisely tied to processes that regulate Myc production. In this review, we discuss how Myc protein stability is regulated and the influence of Myc proteolysis on its function. We describe what is known about how Myc is destroyed by ubiquitin (Ub)-mediated proteolysis, attempt to rationalize the role of different Ub-protein ligases and deubiquitylating enzymes (dUbs) in the regulation of Myc stability, and detail how these processes go awry in cancer. Finally, we discuss how our understanding of Myc regulation by the ubiquitin-proteasome system (UPS) can expose strategies for therapeutic intervention in human malignancies. |
| What real influence does the proto-oncogene c-myc have in OSCC behavior?. | The influence of c-myc in the carcinogenic process has been previously described although in the specific case of oral tumors it has been poorly tested. Myc proteins are a family of proto-oncogenes involved in the cell proliferation regulation, differentiation and apoptosis. The goal of this paper is to describe the functions of c-myc and its role as oncogene, assessing its expression by immunohistochemistry and genetic amplification studies, and studying its relationship with tumoral clinical and pathological variables, and describing genetic and molecular interactions in OSCC. |
| Pten mediates Myc oncogene dependence in a conditional zebrafish model of T cell acute lymphoblastic leukemia. | The MYC oncogenic transcription factor is overexpressed in most human cases of T cell acute lymphoblastic leukemia (T-ALL), often downstream of mutational NOTCH1 activation. Genetic alterations in the PTEN-PI3K-AKT pathway are also common in T-ALL. We generated a conditional zebrafish model of T-ALL in which 4-hydroxytamoxifen (4HT) treatment induces MYC activation and disease, and withdrawal of 4HT results in T-ALL apoptosis and tumor regression. However, we found that loss-of-function mutations in zebrafish pten genes, or expression of a constitutively active Akt2 transgene, rendered tumors independent of the MYC oncogene and promoted disease progression after 4HT withdrawal. Moreover, MYC suppresses pten mRNA levels, suggesting that Akt pathway activation downstream of MYC promotes tumor progression. Our findings indicate that Akt pathway activation is sufficient for tumor maintenance in this model, even after loss of survival signals driven by the MYC oncogene. |
| Co-localization of the oncogenic transcription factor MYCN and the DNA methyl binding protein MeCP2 at genomic sites in neuroblastoma. | BACKGROUND: MYCN is a transcription factor that is expressed during the development of the neural crest and its dysregulation plays a major role in the pathogenesis of pediatric cancers such as neuroblastoma, medulloblastoma and rhabdomyosarcoma. MeCP2 is a CpG methyl binding protein which has been associated with a number of cancers and developmental disorders, particularly Rett syndrome. METHODS AND FINDINGS: Using an integrative global genomics approach involving chromatin immunoprecipitation applied to microarrays, we have determined that MYCN and MeCP2 co-localize to gene promoter regions, as well as inter/intragenic sites, within the neuroblastoma genome (MYCN amplified Kelly cells) at high frequency (70.2% of MYCN sites were also positive for MeCP2). Intriguingly, the frequency of co-localization was significantly less at promoter regions exhibiting substantial hypermethylation (8.7%), as determined by methylated DNA immunoprecipitation (MeDIP) applied to the same microarrays. Co-immunoprecipitation of MYCN using an anti-MeCP2 antibody indicated that a MYCN/MeCP2 interaction occurs at protein level. mRNA expression profiling revealed that the median expression of genes with promoters bound by MYCN was significantly higher than for genes bound by MeCP2, and that genes bound by both proteins had intermediate expression. pathway analysis was carried out for genes bound by MYCN, MeCP2 or MYCN/MeCP2, revealing higher order functions. CONCLUSIONS: Our results indicate that MYCN and MeCP2 protein interact and co-localize to similar genomic sites at very high frequency, and that the patterns of binding of these proteins can be associated with significant differences in transcriptional activity. Although it is not yet known if this interaction contributes to neuroblastoma disease pathogenesis, it is intriguing that the interaction occurs at the promoter regions of several genes important for the development of neuroblastoma, including ALK, AURKA and BDNF. |
| The c-myc proto-oncogene in invasive carcinomas of the uterine cervix: clinical relevance of overexpression in early stages of the cancer. | The biological behavior of early-stage invasive carcinoma of the uterine cervix is not always predictable. Therefore it is important to identify new biological markers which could more accurately predict the evolution of the disease. Amplification and/or overexpression of the c-myc gene were frequently observed in advanced-stage cervical cancers and were shown to be associated with tumor progression. More interesting was the study on 93 patients with early-stage carcinoma showing that c-myc gene overexpression was significantly related to a higher risk of relapse. A combination of c-myc expression and nodal status provided a very accurate indication of the risk of relapse. Indeed, in the subgroup of patients with negative nodes, the 3-year disease-free survival rate was 93% (95% confidence interval CI: 79-98%) when c-myc was expressed at a normal level, whereas this rate was only 51% (95% CI: 26-63%) when c-myc was overexpressed. Moreover the c-myc overexpression was related to a 6.1-times higher risk of distant metastases, suggesting that activation of this proto-oncogene may lead to metastatic ability of tumor cells. These data clearly show that patients with c-myc overexpression are high risk patients who thus might benefit from intensive treatment. |
| Immunohistochemical localization of c-myc oncogene product and EGF receptor in oral squamous cell carcinoma. | Subcellular distribution of c-myc oncogene product and EGF receptor in oral squamous cell carcinomas was examined by using immunohistochemical method. Immunohistochemy for c-myc oncogene showed three staining patterns. Reactive products were demonstrable in the nucleus, in the perinuclear cytoplasm with granular appearance and in the entire cytoplasm. Concomitant stainings of each reactive pattern were observed. Occasionally, the reactive product was strongly deposited on the chromatin under mitotic phase. EGF receptor positive cases were found in only 4 of 28 cases. Though reactive products were usually found in the cytoplasm, the cell surface staining was detected in the only one case. In this case, cells under mitotic phase were strongly stained. The fact that the strong staining both of c-myc and EGF receptor in cells under mitotic phase suggested the close relation between the expression of these genes and the proliferation of carcinoma cells. |
| Real-time monitoring of PCR amplification of proto-oncogene c-MYC using a Ta(2)O(5) electrolyte-insulator-semiconductor sensor. | We present a new approach for real-time monitoring of PCR amplification of a specific sequence from the human c-MYC proto-oncogene using a Ta(2)O(5) electrolyte-insulator-semiconductor (EIS) sensor. The response of the fabricated EIS sensor to cycle DNA amplification was evaluated and compared to standard SYBR-green fluorescence incorporation, showing it was possible to detect DNA concentration variations with 30 mV/muM sensitivity. The sensor s response was then optimized to follow in real-time the PCR amplification of c-MYC sequence from a genomic DNA sample attaining an amplification profile comparable to that of a standard real-time PCR. Owing to the small size, ease of fabrication and low-cost, the developed Ta(2)O(5) sensor may be incorporated onto a microfluidic device and then used for real-time PCR. Our approach may circumvent the practical and economical obstacles posed by current platforms that require an external fluorescence detector difficult to miniaturize and incorporate into a lab-on-chip system. |
| Mechanistic insight into Myc stabilization in breast cancer involving aberrant Axin1 expression. | High expression of the oncoprotein Myc has been linked to poor outcome in human tumors. Although MYC gene amplification and translocations have been observed, this can explain Myc overexpression in only a subset of human tumors. Myc expression is in part controlled by its protein stability, which can be regulated by phosphorylation at threonine 58 (T58) and serine 62 (S62). We now report that Myc protein stability is increased in a number of breast cancer cell lines and this correlates with increased phosphorylation at S62 and decreased phosphorylation at T58. Moreover, we find this same shift in phosphorylation in primary breast cancers. The signaling cascade that controls phosphorylation at T58 and S62 is coordinated by the scaffold protein Axin1. We therefore examined Axin1 in breast cancer and report decreased AXIN1 expression and a shift in the ratio of expression of two naturally occurring AXIN1 splice variants. We demonstrate that this contributes to increased Myc protein stability, altered phosphorylation at S62 and T58, and increased oncogenic activity of Myc in breast cancer. Thus, our results reveal an important mode of Myc activation in human breast cancer and a mechanism contributing to Myc deregulation involving unique insight into inactivation of the Axin1 tumor suppressor in breast cancer. |
| The MYCN oncogene and differentiation in neuroblastoma. | Childhood neuroblastoma exhibits a heterogeneous clinical behavior ranging from low-risk tumors with the ability to spontaneously differentiate and regress, to high-risk tumors causing the highest number of cancer related deaths in infants. Amplification of the MYCN oncogene is one of the few prediction markers for adverse outcome. This gene encodes the MYCN transcriptional regulator predominantly expressed in the developing peripheral neural crest. MYCN is vital for proliferation, migration and stem cell homeostasis while decreased levels are associated with terminal neuronal differentiation. Interestingly, high-risk tumors without MYCN amplification frequently display increased c-MYC expression and/or activation of MYC signaling pathways. On the other hand, downregulation of MYCN leads to decreased proliferation and differentiation, emphasizing the importance of MYC signaling in neuroblastoma biology. Furthermore, expression of the neurotrophin receptor TrkA is associated with good prognosis, the ability to differentiate and spontaneous regression while expression of the related TrkB receptor is correlated with bad prognosis and MYCN amplification. Here we discuss the role of MYCN in neuroblastoma with a special focus on the contribution of elevated MYCN signaling for an aggressive and undifferentiated phenotype as well as the potential of using MYCN as a therapeutic target. |
| Inverse correlation between expression of multidrug resistance gene and N-myc oncogene in human neuroblastomas. | Genomic amplification of N-myc is an important prognostic indicator in neuroblastoma. The tumors with amplified N-myc are initially sensitive to chemotherapy but often acquire resistance to therapy, recur, and ultimately kill the patients. We measured amplification and expression of N-myc and expression of mdr-1 in 35 surgically resected neuroblastomas, before acquisition of drug resistance and in 4 recurrent tumors resistant to chemotherapy. The mdr-1 mRNA expression was found to be inversely correlated with the N-myc expression. The mdr-1 gene expression was at a low level in advanced stage and histologically undifferentiated neuroblastomas, the same group of tumors in which N-myc expression is elevated. A significantly better prognosis was noted in those patients whose tumors had a high level of mdr-1 expression and a low level of N-myc expression. The role, if any, of increased expression of mdr-1 in the acquisition of multidrug resistance in neuroblastoma remains unclear. However, the aggressive clinical behavior associated with N-myc amplification and/or expression appears to be linked to down-regulation of mdr-1 expression. |
| Amplification of the c-myc oncogene during progression of radiation-induced rat skin tumors. | Evaluation of a large panel of radiation-induced rat skin tumors of diverse size and histological type revealed a correlation between c-myc copy number and tumor size. Both the frequency and degree of c-myc gene amplification were increased in large compared to small carcinomas, but none of the sarcomas examined showed c-myc amplification. Serial biopsies of individual tumors exhibited similar trends of increasing c-myc copy number in later biopsies. In one regressing tumor, the c-myc gene copy number paralleled the growth rate of the tumor during growth and regression. The average time required from tumor appearance to significant gene amplification was close to the average period between tumor appearance and the onset of rapid growth. The data suggest that, rather than being a target gene for the direct early effects of ionizing radiation, c-myc functions as a late-stage progression-related oncogene in this model system. |
| Alteration and enhanced expression of the c-myc oncogene in human colorectal carcinomas. | We examined the alteration and expression of c-myc gene in 52 human colorectal carcinomas using Southern blot, Northern blot, Western blot and immunohistochemical techniques. Out of the 52 cases, only one case showed c-myc gene amplification of more than 4-fold. The overexpression of c-myc gene was detected in the tumor tissue of 47 cases (90.4%). In Western blot analysis, the c-myc gene related proteins were detected in the tumor tissues which had the overexpression of c-myc gene. Immunohistochemically, c-myc p62 positive tumor cells were found in 24 cases (46.2%), while the stromal cells around the tumor cells showed c-myc p62 immunoreactivity in ALL cases (100%). The expression of c-myc gene and c-myc P62 protein did not correlate with histological type, depth of tumor invasion and stage grouping. These findings indicate that the high incidence of the overexpression of c-myc mRNA in tumor tissues might account for the c-myc gene expression not only in tumor cells but also in stromal cells including lymphocytes, macrophages and fibroblasts. |
| Immunohistochemical demonstration of altered intracellular localization of the C-Myc oncogene product in human colorectal neoplasms. | The distribution of the c-myc oncogene product p62 was examined by immunohistochemistry using the monoclonal antibody Mycl-9E10 in a series of 50 colorectal resections for carcinoma. The specimens were specially handled to ensure rapid fixation in formalin, and a significant improvement was shown in the quality and localization of staining compared with routinely handled specimens. Non-neoplastic mucosa showed the presence of nuclear staining of epithelial cells in 93 per cent of the samples, whilst ALL carcinomas showed cytoplasmic staining and infrequent nuclear staining. Adenomas showed an intermediate pattern, with significantly more frequent cytoplasmic distribution than non-neoplastic mucosa, but less than carcinomas. The results show that whilst fixation conditions are important in the immunolocalization of the c-myc protein product, there may be a consistent difference between non-neoplastic mucosa and carcinoma in the manner of association of p62 with the nucleus. |
| Myc enforces overexpression of EZH2 in early prostatic neoplasia via transcriptional and post-transcriptional mechanisms. | EZH2 is part of the PRC2 polycomb repressive complex that is overexpressed in multiple cancer types and has been implicated in prostate cancer initiation and progression. Here, we identify EZH2 as a target of the MYC oncogene in prostate cancer and show that MYC coordinately regulates EZH2 through transcriptional and post-transcriptional means. Although prior studies in prostate cancer have revealed a number of possible mechanisms of EZH2 upregulation, these changes cannot account for the overexpression EZH2 in many primary prostate cancers, nor in most cases of high grade PIN. We report that upregulation of Myc in the mouse prostate results in overexpression of EZH2 mRNA and protein which coincides with reductions in miR-26a and miR-26b, known regulators of EZH2 in some non-prostate cell types, albeit not in others. Further, in human prostate cancer cells, Myc negatively regulates miR-26a and miR-26b via direct binding to their parental Pol II gene promoters, and forced overexpression of miR-26a and miR-26b in prostate cancer cells results in decreased EZH2 levels and suppressed proliferation. In human clinical samples, miR-26a and miR-26b are downregulated in most primary prostate cancers. As a separate mechanism of EZH2 mRNA upregulation, we find that Myc binds directly to and activates the transcription of the EZH2 promoter. These results link two major pathways in prostate cancer by providing two additional and complementary Myc-regulated mechanisms by which EZH2 upregulation occurs and is enforced during prostatic carcinogenesis. Further, the results implicate EZH2-driven mechanisms by which Myc may stimulate prostate tumor initiation and disease progression. |
| Overexpression of the c-myc oncogene inhibits nonsense-mediated RNA decay in B lymphocytes. | The Myc transcription factor plays a vital role in both normal cellular physiology and in many human cancers. We have recently demonstrated that nonsense-mediated RNA decay (NMD), a mechanism that rapidly degrades select mRNAs, is inhibited by the stress-induced phosphorylation of translation initiation factor eIF2alpha, and this inhibition stabilizes many transcripts necessary for tumorigenesis. Here, we demonstrate that NMD is inhibited by high Myc expression. We show that the phosphorylation of eIF2alpha, likely due to the ability of Myc to generate reactive oxygen species and augment endoplasmic reticulum stress, is necessary for the inhibition of NMD by Myc. The inhibition of NMD both stabilizes and up-regulates multiple Myc targets, suggesting that the inhibition of NMD may play an important role in the dynamic regulation of genes by Myc. |
| N-myc oncogene and stage IV-S neuroblastoma. Preliminary observations on ten cases. | We studied the clinical significance of genomic amplification of N-myc in Stage IV-S neuroblastoma, with reference to spontaneous regression. Among 103 neuroblastomas in which N-myc was measured, ten were Stage IV-S (eight children were younger than and two were older than 1 year of age). The number of copies of N-myc was 1 to 3 in five patients, four to ten in one patient, and more than ten in four patients, and the survivors of each group were four, one, and one (recurrent), respectively. Of 41 patients younger than 1 year of age, N-myc amplification of more than three copies was found only in Stage IV-S neuroblastoma. Cure with a tendency to regress spontaneously was seen in five of eight patients younger than 1 year of age. However, two patients older than 1 year of age classified as Stage IV-S (one with N-myc amplification) died of progressive disease. In two patients (1 and 3 months of age) with a huge hepatic involvement and in whom the tumor had an amplified N-myc of more than ten copies, tumor regression occurred but there was a relapse to a progressive state later. The overexpression of N-myc mRNA occurred in nine of ten stage IV-S tumors and did not correlate with the prognosis. The vanillylmandelic acid (VMA) to homovanillic acid (HVA) ratio was low in tumors with an increased number of copies of N-myc. Serum lactate dehydrogenase (LDH) levels were increased in Stage IV-S patients with N-myc amplification but not in those with regressing tumors and without N-myc amplification. These data suggest that N-myc amplification may affect the final outcome in the patient classified as Stage IV-S, but tumor regression can occur early after birth and appears to be independent of N-myc amplification. |
| AKT (v-akt murine thymoma viral oncogene homolog 1) and N-Ras (neuroblastoma ras viral oncogene homolog) coactivation in the mouse liver promotes rapid carcinogenesis by way of mTOR (mammalian target of rapamycin complex 1), FOXM1 (forkhead box M1)/SKP2, and c-Myc pathways. | Activation of v-akt murine thymoma viral oncogene homolog (AKT) and Ras pathways is often implicated in carcinogenesis. However, the oncogenic cooperation between these two cascades in relationship to hepatocellular carcinoma (HCC) development remains undetermined. To investigate this issue, we generated a mouse model characterized by combined overexpression of activated forms of AKT and neuroblastoma Ras viral oncogene homolog (N-Ras) protooncogenes in the liver by way of hydrodynamic gene transfer. The molecular mechanisms underlying crosstalk between AKT and N-Ras were assessed in the mouse model and further evaluated in human and murine HCC cell lines. We found that coexpression of AKT and N-Ras resulted in a dramatic acceleration of liver tumor development when compared with mice overexpressing AKT alone, whereas N-Ras alone did not lead to tumor formation. At the cellular level, concomitant up-regulation of AKT and N-Ras resulted in increased proliferation and microvascularization when compared with AKT-injected mice. Mechanistic studies suggested that accelerated hepatocarcinogenesis driven by AKT and N-Ras resulted from a strong activation of mammalian target of rapamycin complex 1 (mTORC1). Furthermore, elevated expression of FOXM1/SKP2 and c-Myc also contributed to rapid tumor growth in AKT/Ras mice, yet by way of mTORC1-independent mechanisms. The biological effects of coactivation of AKT and N-Ras were then recapitulated in vitro using HCC cell lines, which supports the functional significance of mTORC1, FOXM1/SKP2, and c-Myc signaling cascades in mediating AKT and N-Ras-induced liver tumor development. CONCLUSION: Our data demonstrate the in vivo crosstalk between the AKT and Ras pathways in promoting liver tumor development, and the pivotal role of mTORC1-dependent and independent pathways in mediating AKT and Ras induced hepatocarcinogenesis. |
| Comparison of deoxyribonucleic acid ploidy and nuclear expressed p62 c-myc oncogene in the prognosis of colorectal cancer. | A simultaneous flow cytometric assay of the nuclear expressed protein product of the c-myc oncogene p62 and deoxyribonucleic acid (DNA) ploidy in archival paraffin-embedded tumor material was undertaken in 179 patients with colorectal cancer, followed for up to 9 years. DNA ploidy showed a survival advantage for diploid tumors (chi 2(1) = 5.39, p = 0.020) and could be used to further divide patients with Dukes A tumors (chi 2(1) = 4.87, p = 0.027) and Dukes C tumors (chi 2(1) = 5.33, p = 0.021). By dividing patients into 2 levels of tumor expression of p62 c-myc, there was a trend for improved survival in patients with low expression (chi 2(1) = 3.65, p = 0.056). A combination of ploidy status and p62 c-myc expression improved upon survival prediction by ploidy alone in providing 3 groups (chi 2(2) = 7.86, p = 0.0197). While these results do not suggest a replacement for the Dukes staging for prognosis (chi 2(3) = 33.82, p less than 0.00001), they strongly support the concept that enhanced expression of c-myc oncogene is associated with the progression of colorectal cancer. |
| [Amplification of N-myc in neuroblastoma: paradigm for clinical use of an oncogene alteration]. | Increase of the dosage of cellular oncogens by DNA amplifications is a frequent genetic alteration of cancer cells. The presence of amplified cellular oncogenes is usually signalled by conspicuous chromosomal abnormalities, "double minutes" (DMs) or "homogeneously staining regions (HSRs). Some human cancers carry a specific amplified oncogene at high incidence. Particularly in neuroblastomas and in breast cancers the amplification of cellular oncogenes has been found associated with aggressively growing cancers and is an indicator for poor prognosis. Neuroblastoma, a malignant tumor of the sympathetic nervous system of children, frequently carries amplification of the oncogene MYCN. The amplification of MYCN is of predictive value for identifying high risk neuroblastoma patients that require specific therapeutic regimen and is generally viewed as the first oncogene alteration that turned out to be of practical clinical significance. |
| C-myc proto-oncogene amplification detected by polymerase chain reaction in archival human ovarian carcinomas. | Polymerase chain reaction (PCR) technology was used to examine the state of amplification of the proto-oncogene c-myc in archival ovarian carcinomas. Sequences from the c-myc gene and from a control gene were amplified simultaneously by PCR and the ratios of the two products measured. The results provided an accurate measurement of the relative number of copies of the two genes in each tumor genome if the control and test sequences amplified by PCR were of equal lengths. The results were not affected by the number of PCR cycles used. This technique should facilitate gene amplification studies in clinical medicine. Increased c-myc copy number was found in 17% of the 30 cases examined when a control from the same chromosome as c-myc was used, but in 37% of cases if a control from another chromosome was used. This underlines the importance of the genetic location of the selected control genes for such studies. |
| Suppression of Myc oncogenic activity by nucleostemin haploinsufficiency. | Nucleostemin (NS), a nucleolar GTPase, is highly expressed in stem/progenitor cells and in most cancer cells. However, little is known about the regulation of its expression. Here, we identify the NS gene as a novel direct transcriptional target of the c-Myc oncoprotein. We show that Myc overexpression enhances NS transcription in cultured cells and in pre-neoplastic B cells from Emu-myc transgenic mice. Consistent with NS being downstream of Myc, NS expression parallels that of Myc in a large panel of human cancer cell lines. Using chromatin immunoprecipitation we show that c-Myc binds to a well-conserved E-box in the NS promoter. Critically, we show NS haploinsufficiency profoundly delays Myc-induced cancer formation in vivo. NS+/-Emu-myc transgenic mice have much slower rates of B-cell lymphoma development, with life spans twice that of their wild-type littermates. Moreover, we demonstrate that NS is essential for the proliferation of Myc-overexpressing cells in cultured cells and in vivo: impaired lymphoma development was associated with a drastic decrease of c-Myc-induced proliferation of pre-tumoural B cells. Finally, we provide evidence that in cell culture NS controls cell proliferation independently of p53 and that NS haploinsufficiency significantly delays lymphomagenesis in p53-deficient mice. Together these data indicate that NS functions downstream of Myc as a rate-limiting regulator of cell proliferation and transformation, independently from its putative role within the p53 pathway. Targeting NS is therefore expected to compromise early tumour development irrespectively of the p53 status. |
| The human papillomavirus type 16 E7 oncoprotein targets Myc-interacting zinc-finger protein-1. | We demonstrate that HPV-16 E7 forms a complex with Miz-1. UV-induced expression of the CDK-inhibitor p21(Cip1) and subsequent cell cycle arrest depends upon endogenous Miz-1 in HPV-negative C33A cervical cancer cells containing mutated p53. Transient expression of E7 in C33A inhibits UV-induced expression of p21(Cip1) and overcomes Miz-1-induced G1-phase arrest. The C-terminal E7Delta79LEDLL83-mutant with reduced Miz-1-binding capacity was impaired in its capability to repress p21(Cip1) expression; whereas the pRB-binding-deficient E7C24G-mutant inhibited p21(Cip1) expression similar to wild-type E7. Using ChIP, we demonstrate that endogenous E7 is bound to the endogenous p21(Cip1) core-promoter in CaSki cells and RNAi-mediated knock down of Miz-1 abrogates E7-binding to the p21(Cip1) promoter. Co-expression of E7 with Miz-1 inhibited Miz-1-induced p21(Cip1) expression from the minimal-promoter via Miz-1 DNA-binding sites. Co-expression of E7Delta79LEDLL83 did not inhibit Miz-1-induced p21(Cip1) expression. E7C24G retained E7-wild-type capability to inhibit Miz-1-dependent transactivation. These findings suggest that HPV-16 E7 can repress Miz-1-induced p21(Cip1) gene expression. |
| [Effects of DLL4 gene on YY1 and c-Myc protein expression and cell proliferation in leukemia cell line K562]. | This study was aimed to explore the effects of Notch ligand DLL4 on the protein expression of the transcription factor YY1 and proto-oncogene c-Myc, as well as K562 cell proliferation. The experiment was divided into 3 groups: normal control, negative control (pBudCE4.1-transfected) and experimental (pBudCE4.1-DLL4-transfected) groups. At 48 hours after transfection, the expression level of DLL4, YY1 and c-Myc proteins in K562 cells of each group were detected by Western blot and indirect immunocytochemical method; the CCK-8 method was used to detect proliferation of K562 cells; at 48 hours after transfection, cell cycle distribution and apoptosis of K562 cells were detected by flow cytometry. The results showed that the protein expression of DLL4, YY1 and c-Myc in K562 cells of every group were found. The protein expression levels of DLL4, YY1 and c-Myc in the experimental group cells were significantly higher than that in control groups (p < 0.05). The cell number in G(0)/G(1) phase increased in the experimental group and was higher than that in the control groups (p < 0.001), and the number of apoptotic cells were also increased (p < 0.001). It is concluded that DLL4 gene was successfully transfected into K562 cells, which increased the protein expression levels of transcription factor YY1 and proto-oncogene c-Myc, leading to the cell proliferation slower in experiment group, inducing the cell cycle arrested in G(0)/G(1) phase and increasing apoptosis. |
| The c-MYC oncoprotein, the NAMPT enzyme, the SIRT1-inhibitor DBC1, and the SIRT1 deacetylase form a positive feedback loop. | Silent information regulator 1 (SIRT1) represents an NAD(+)-dependent deacetylase that inhibits proapoptotic factors including p53. Here we determined whether SIRT1 is downstream of the prototypic c-MYC oncogene, which is activated in the majority of tumors. Elevated expression of c-MYC in human colorectal cancer correlated with increased SIRT1 protein levels. Activation of a conditional c-MYC allele induced increased levels of SIRT1 protein, NAD(+), and nicotinamide-phosphoribosyltransferase (NAMPT) mRNA in several cell types. This increase in SIRT1 required the induction of the NAMPT gene by c-MYC. NAMPT is the rate-limiting enzyme of the NAD(+) salvage pathway and enhances SIRT1 activity by increasing the amount of NAD(+). c-MYC also contributed to SIRT1 activation by sequestering the SIRT1 inhibitor deleted in breast cancer 1 (DBC1) from the SIRT1 protein. In primary human fibroblasts previously immortalized by introduction of c-MYC, down-regulation of SIRT1 induced senescence and apoptosis. In various cell lines inactivation of SIRT1 by RNA interference, chemical inhibitors, or ectopic DBC1 enhanced c-MYC-induced apoptosis. Furthermore, SIRT1 directly bound to and deacetylated c-MYC. Enforced SIRT1 expression increased and depletion/inhibition of SIRT1 reduced c-MYC stability. Depletion/inhibition of SIRT1 correlated with reduced lysine 63-linked polyubiquitination of c-Myc, which presumably destabilizes c-MYC by supporting degradative lysine 48-linked polyubiquitination. Moreover, SIRT1 enhanced the transcriptional activity of c-MYC. Taken together, these results show that c-MYC activates SIRT1, which in turn promotes c-MYC function. Furthermore, SIRT1 suppressed cellular senescence in cells with deregulated c-MYC expression and also inhibited c-MYC-induced apoptosis. Constitutive activation of this positive feedback loop may contribute to the development and maintenance of tumors in the context of deregulated c-MYC. |
| E2F1: a potential negative regulator of hTERT transcription in normal cells upon activation of oncogenic c-Myc. | Previous studies have revealed that the link between c-Myc and E2F1 pathway plays a pivotal role in regulating cell growth and death. Human telomerase reverse transcriptase (hTERT), activation of which is required for cell immortalization and transformation, has been confirmed to be a direct transcriptional target of c-Myc. It is of note that E2F1, which is also a direct transcriptional target of c-Myc, can bind the hTERT promoter and repress its expression. Thus, although oncogene c-Myc can be activated in normal cells, for the subsequent induction of E2F1, it may still be insufficient to trigger the expression of hTERT. This negative feedback regulation, if it exists, may be another mechanism for normal cells to control the transmission of c-Myc-mediated oncogenic signals. In this article, we reviewed current knowledge about the crosstalk among c-Myc, E2F1 and hTERT, with an emphasis on the hypothesis that E2F1 negatively regulates c-Myc-induced hTERT transcription. Additionally, we postulated that the miR-17-92 cluster-mediated regulation of c-Myc and E2F1 expression may be of particular importance for the repression of hTERT transcription. |
| Regulation of gene transcription by the oncoprotein MYC. | The proteins of the MYC/MAX/MAD network are central regulators of many key processes associated with basic cell physiology. These include the regulation of protein biosynthesis, energy metabolism, proliferation, and apoptosis. Molecularly the MYC/MAX/MAD network achieves these broad activities by controlling the expression of many target genes, which are primarily responsible for the diverse physiological consequences elicited by the network. The MYC proteins of the network possess oncogenic activity and their functional deregulation is associated with the majority of human tumors. Over the last years we have witnessed the accumulation of a considerable number of molecular observations that suggest many different biochemical means and tools by which MYC controls gene expression. We will summarize the more recent findings and discuss how these different building blocks might come together to explain how MYC regulates gene transcription. We note that despite the many molecular details known, we do not have an integrated view of how MYC uses the different tools, neither in a spatial nor in a temporal order. |
| Over-expression of c-Myc oncoprotein in oral squamous cell carcinoma in the South Indian population. | Oral neoplasm constitutes a predominant class of cancer that is encountered in South India. This is in large part due to the elevated risk of oncogenesis as a result of the habit of chewing of quids containing betel leaves, areca nut and smokeless tobacco. An array of molecular events are induced during the transformation of the buccal epithelium, among them the over-expression of oncogene products plays a key role. The c-Myc protein, a regulator of a number of key cellular signalling pathways, plays a pivotal role in a number of malignancies. The present study was undertaken to evaluate expression of the c-Myc protein in tumours of the oral cavity from the South Indian population, predominantly oral squamous cell carcinoma (OSCC). The c-Myc protein was over-expressed in 80% of the cases studied. Taking into account the pivotal role demonstrated for c-Myc in tumourigenesis, our observations suggest a key role for Myc oncoprotein in the genesis of OSCC as well as its potential as a therapeutic target in this population. |
| Targeting mitochondria by alpha-tocopheryl succinate kills neuroblastoma cells irrespective of MycN oncogene expression. | Amplification of the MycN oncogene characterizes a subset of highly aggressive neuroblastomas, the most common extracranial solid tumor of childhood. However, the significance of MycN amplification for tumor cell survival is controversial, since down-regulation of MycN was found to decrease markedly neuroblastoma sensitivity towards conventional anticancer drugs, cisplatin, and doxorubicin. Here, we show that a redox-silent analogue of vitamin E, alpha-tocopheryl succinate (alpha-TOS), which triggers apoptotic cell death via targeting mitochondria, can kill tumor cells irrespective of their MycN expression level. In cells overexpressing MycN, as well as cells in which MycN was switched off, alpha-TOS stimulated rapid entry of Ca(2+) into the cytosol, compromised Ca(2+) buffering capacity of the mitochondria and sensitized them towards mitochondrial permeability transition and subsequent apoptotic cell death. Prevention of mitochondrial Ca(2+) accumulation or chelation of cytosolic Ca(2+) rescued the cells. Thus, targeting mitochondria might be advantageous for the elimination of tumor cells with otherwise dormant apoptotic pathways. |
| Prognostic value of c-myc proto-oncogene overexpression in early invasive carcinoma of the cervix. | The prognostic effect of c-myc oncogene overexpression was assessed in a multivariate analysis of 93 patients with invasive carcinoma of the cervix, stage Ib, IIa, and IIb proximal. The treatment was based on the association of brachytherapy-colpohysterectomy and lymphadenectomy. Analysis of c-myc gene expression was done using Northern and slot blot hybridization techniques. Overexpression of c-myc (ie, levels at least three times the mean observed in normal tissues) was present in 33% of the tumors. The proportion of carcinomas with c-myc overexpression significantly increased with the size of the primary tumor (P = .04). No relationship was found between c-myc overexpression and the other clinical and histologic parameters, including the nodal status. The relative risk of relapse (overall, pelvic failure, distant metastases) was analyzed in a Cox s proportional hazards model. Three factors were significantly related to the risk of overall relapse when the multivariate analysis was performed, namely, the tumor size, the nodal status, and c-myc expression. A combination of c-myc expression and the nodal status provided a very accurate indication of the risk of relapse. Indeed, patients with negative nodes had a 3-year disease-free survival rate of 93% (95% confidence interval [Cl], 79% to 98%) when c-myc was expressed at a normal level, whereas this rate was only 51% (95% Cl, 26% to 63%) when c-myc was overexpressed (log-rank test, P = .02). In addition, in the subgroup of patients with positive nodes, this rate was 44% (95% Cl, 25% to 77%) and 15% (95% Cl, 4% to 49%) when c-myc gene was expressed at normal level, or overexpressed, respectively. Finally, c-myc gene overexpression was, in the multivariate analysis, the first factor selected by the model regarding the risk of distant metastases. |
| Burkitt s lymphoma. | Burkitt s lymphoma is a highly aggressive B-cell non-Hodgkin lymphoma and is the fastest growing human tumour. The disease is associated with Epstein-Barr virus and was one of the first tumours shown to have a chromosomal translocation that activates an oncogene (c-MYC). Burkitt s lymphoma is the most common childhood cancer in areas where malaria is holoendemic. The incidence is very high in immunosuppressed patients in non-endemic areas, especially when associated with HIV infection. Outcome with intensive chemotherapy has improved and is now excellent in children, but the prognosis is poor in elderly adults. The success of intensive treatment relies on good supportive care. The therapy offered in oncology units in low-income countries is not as aggressive as in centres in high-income countries and outcomes are less successful. Adjuvant monoclonal antibody therapy with rituximab shows promise for improved outcomes and reduced toxic effects in the future. |
| A critical role of MYC for transformation of human cells by HPV16 E6E7 and oncogenic HRAS. | Human papillomaviruses (HPVs) are the primary causal agents for development of cervical cancer, and deregulated expression of two viral oncogenes E6 and E7 is considered to contribute to disease initiation. Recently, we have demonstrated that transduction of oncogenic HRAS (HRAS(G12V)) and MYC together with HPV16 E6E7 is sufficient for tumorigenic transformation of normal human cervical keratinocytes (HCKs). Here, we show that transduction of HRAS(G12V) on the background of E6E7 expression causes accumulation of MYC protein and tumorigenic transformation of not only normal HCKs but also other normal primary human cells, including tongue keratinocytes and bronchial epithelial cells as well as hTERT-immortalized foreskin fibroblasts. Subcutaneous transplantation of as few as 200 HCKs expressing E6E7 and HRAS(G12V) resulted in tumor formation within 2 months. Dissecting RAS signaling pathways, constitutively active forms of AKT1 or MEK1 did not result in tumor formation with E6E7, but tumorigenic transformation was induced with addition of MYC. Increased MYC expression endowed resistance to calcium- and serum-induced terminal differentiation and activated the mammalian target of rapamycin (mTOR) pathway. An mTOR inhibitor (Rapamycin) and MYC inhibition a level not affecting proliferation in culture both markedly suppressed tumor formation by HCKs expressing E6E7 and HRAS(G12V). These results suggest that a single mutation of HRAS could be oncogenic in the background of deregulated expression of E6E7 and MYC plays a critical role in cooperation with the RAS signaling pathways in tumorigenesis. Thus inhibition of MYC and/or the downstream mTOR pathway could be a therapeutic strategy not only for the MYC-altered but also RAS-activated cancers. |
| Down-regulation of LFA-1 adhesion receptors by C-myc oncogene in human B lymphoblastoid cells. | The function of the c-myc gene and its role in tumorigenesis are poorly understood. In order to elucidate the role of c-myc oncogene activation in B cell malignancy, the phenotypic changes caused by the expression of c-myc oncogenes in human B lymphoblastoid cells immortalized by Epstein-Barr virus were analyzed. C-myc oncogenes caused the down-regulation of lymphocyte function-associated antigen-1 (LFA-1) adhesion molecules (alpha L/beta 2 integrin) and loss of homotypic B cell adhesion in vitro. Down-regulation of LFA-1 occurred by (i) posttranscriptional modulation of LFA-1 alpha L-chain RNA soon after acute c-myc induction, and (ii) transcriptional modulation in cells that chronically express c-myc oncogenes. Analogous reductions in LFA-1 expression were detectable in Burkitt lymphoma cells carrying activated c-myc oncogenes. Since LFA-1 is involved in B cell adhesion to cytotoxic T cells, natural killer cells, and vascular endothelium, these results imply functions for c-myc in normal B cell development and lymphomagenesis. |
| [The sensitivity to growth factors of NIH 3T3 cells transformed by the v-myc oncogene]. | Transformation of NIH 3T3 cells, induced by v-myc oncogene, activates a proliferative potential of the cells cultivated in the serum-free medium, and reduces the ratio of 3H-Tdr incorporation into the cells grown in the presence of 10% fetal serum in comparison to those grown in the serum-free medium. The v-myc transformed cells (NIH 3T3-v-myc) as well as the untransformed ones are very responsive to insulin. On the other hand, the epidermal growth factor, able to stimulate proliferation of NIH 3T3 cells, exert no effects on the NIH 3T3-v-myc cells. The NIH 3T3-v-myc cells cultivated in the medium, containing 2.5% human plasma enriched with thrombocytes, have the same proliferative characteristics as cells grown in the thrombocyte-free plasma. It is concluded that transformation of NIH 3T3 cells induced by v-myc oncogene may reduce a requirement for thrombocyte-released growth factors and EGF but not for insulin. |
| Expression of the avian gag-myc oncogene in Saccharomyces cerevisiae. | The gag-myc oncogenic sequence of the avian retrovirus MC29 was first inserted in a multicopy expression vector allowing its expression in Saccharomyces cerevisiae. The oncogene transcripts were detected in yeast by Northern blot hybridization and gag-myc proteins were revealed by immunoprecipitation. On solid medium, the average size of gag-myc transformant colonies was smaller than control. In liquid cultures, the gag-myc strains had a doubling time of 4.7 h compared with 3.1 h in the controls. In one of the recipient strains, and after an initial transient period of 5 days, the gag-myc transformants became physiologically indistinguishable from control. In another recipient strain, the slow-growth phenotype is permanent. Plasmid instability is increased in gag-myc transformants. When a single copy of the gag-myc gene was inserted in a yeast chromosome, no phenotype was observed, showing that slow growth is the consequence of plasmid loss. |
| MYC directs transcription of MCL1 and eIF4E genes to control sensitivity of gastric cancer cells toward HDAC inhibitors. | Histone deacetylases (HDACs) control fundamental physiological processes such as proliferation and differentiation. HDAC inhibitors (HDACi) induce cell cycle arrest and apoptosis of tumor cells. Therefore, they represent promising cancer therapeutics that appear particularly useful in combination therapies. Although HDACi are tested in current clinical trials, the molecular mechanisms modulating the cellular responses toward HDACi are incompletely understood. To gain insight into pathways that limit HDACi efficacy in gastric cancer, we treated a panel of gastric cancer cells with the clinically relevant HDACi suberoylanilide hydroxamic acid (SAHA). We report that higher expression levels of the anti-apoptotic BCL2 family members MCL1 and BCL(XL) were detectable in cells with high inhibitory concentration 50 (IC(50)) values for SAHA. Using RNAi, we show that MCL1 and BCL(XL) lower the efficacy of SAHA. To find strategies to interfere with MCL1 and BCL(XL) expression, we investigated molecular regulation of both proteins. We show that specific siRNAs against c-MYC as well as pharmacological inhibition of this cancer-relevant transcription factor reduced MCL1 and BCL(XL) expression. Subsequently, we observed an increase in SAHA efficacy. Our data furthermore demonstrate that two different molecular mechanisms are responsible for the modulation of these factors. Whereas c-MYC controls transcription of MCL1 directly, regulation of BCL(XL) was due to c-MYC s capability to regulate the eIF4E gene, which encodes a rate-limiting factor of eukaryotic translation. Our data reveal a new molecular mechanism for how c-MYC controls cell autonomous apoptosis and provide a rationale for a concerted inhibition of HDACs and c-MYC in gastric cancer. |
| Rapid generation of human B-cell lymphomas via combined expression of Myc and Bcl2 and their use as a preclinical model for biological therapies. | Although numerous mouse models of B-cell malignancy have been developed via the enforced expression of defined oncogenic lesions, the feasibility of generating lineage-defined human B-cell malignancies using mice reconstituted with modified human hematopoietic stem cells (HSCs) remains unclear. In fact, whether human cells can be transformed as readily as murine cells by simple oncogene combinations is a subject of considerable debate. Here, we describe the development of humanized mouse model of MYC/BCL2-driven double-hit lymphoma. By engrafting human HSCs transduced with the oncogene combination into immunodeficient mice, we generate a fatal B malignancy with complete penetrance. This humanized-MYC/BCL2-model (hMB) accurately recapitulates the histopathological and clinical aspects of steroid-, chemotherapy- and rituximab-resistant human double-hit lymphomas that involve the MYC and BCL2 loci. Notably, this model can serve as a platform for the evaluation of antibody-based therapeutics. As a proof of principle, we used this model to show that the anti-CD52 antibody alemtuzumab effectively eliminates lymphoma cells from the spleen, liver and peripheral blood, but not from the brain. The hMB humanized mouse model underscores the synergy of MYC and BCL2 in double-hit lymphomas in human patients. Additionally, our findings highlight the utility of humanized mouse models in interrogating therapeutic approaches, particularly human-specific monoclonal antibodies. |
| Nkx3.1 and Myc crossregulate shared target genes in mouse and human prostate tumorigenesis. | Cooperativity between oncogenic mutations is recognized as a fundamental feature of malignant transformation, and it may be mediated by synergistic regulation of the expression of pro- and antitumorigenic target genes. However, the mechanisms by which oncogenes and tumor suppressors coregulate downstream targets and pathways remain largely unknown. Here, we used ChIP coupled to massively parallel sequencing (ChIP-seq) and gene expression profiling in mouse prostates to identify direct targets of the tumor suppressor Nkx3.1. Further analysis indicated that a substantial fraction of Nkx3.1 target genes are also direct targets of the oncoprotein Myc. We also showed that Nkx3.1 and Myc bound to and crossregulated shared target genes in mouse and human prostate epithelial cells and that Nkx3.1 could oppose the transcriptional activity of Myc. Furthermore, loss of Nkx3.1 cooperated with concurrent overexpression of Myc to promote prostate cancer in transgenic mice. In human prostate cancer patients, dysregulation of shared NKX3.1/MYC target genes was associated with disease relapse. Our results indicate that NKX3.1 and MYC coregulate prostate tumorigenesis by converging on, and crossregulating, a common set of target genes. We propose that coregulation of target gene expression by oncogenic/tumor suppressor transcription factors may represent a general mechanism underlying the cooperativity of oncogenic mutations during tumorigenesis. |
| Oncogenic splicing factor SRSF1 is a critical transcriptional target of MYC. | The SR protein splicing factor SRSF1 is a potent proto-oncogene that is frequently upregulated in cancer. Here, we show that SRSF1 is a direct target of the transcription factor oncoprotein MYC. These two oncogenes are significantly coexpressed in lung carcinomas, and MYC knockdown downregulates SRSF1 expression in lung-cancer cell lines. MYC directly activates transcription of SRSF1 through two noncanonical E-boxes in its promoter. The resulting increase in SRSF1 protein is sufficient to modulate alternative splicing of a subset of transcripts. In particular, MYC induction leads to SRSF1-mediated alternative splicing of the signaling kinase MKNK2 and the transcription factor TEAD1. SRSF1 knockdown reduces MYC s oncogenic activity, decreasing proliferation and anchorage-independent growth. These results suggest a mechanism for SRSF1 upregulation in tumors with elevated MYC and identify SRSF1 as a critical MYC target that contributes to its oncogenic potential by enabling MYC to regulate the expression of specific protein isoforms through alternative splicing. |
| Role of DLC1 tumor suppressor gene and MYC oncogene in pathogenesis of human hepatocellular carcinoma: potential prospects for combined targeted therapeutics (review). | Hepatocellular carcinoma (HCC) is the third leading cause of cancer death, and its incidence is increasing worldwide in an alarming manner. The development of curative therapy for advanced and metastatic HCC is a high clinical priority. The HCC genome is complex and heterogeneous; therefore, the identification of recurrent genomic and related gene alterations is critical for developing clinical applications for diagnosis, prognosis and targeted therapy of the disease. This article focuses on recent research progress and our contribution in identifying and deciphering the role of defined genetic alterations in the pathogenesis of HCC. A significant number of genes that promote or suppress HCC cell growth have been identified at the sites of genomic reorganization. Notwithstanding the accumulation of multiple genetic alterations, highly recurrent changes on a single chromosome can alter the expression of oncogenes and tumor suppressor genes (TSGs) whose deregulation may be sufficient to drive the progression of normal hepatocytes to malignancy. A distinct and highly recurrent pattern of genomic imbalances in HCC includes the loss of DNA copy number (associated with loss of heterozygosity) of TSG-containing chromosome 8p and gain of DNA copy number or regional amplification of protooncogenes on chromosome 8q. Even though 8p is relatively small, it carries an unusually large number of TSGs, while, on the other side, several oncogenes are dispersed along 8q. Compelling evidence demonstrates that DLC1, a potent TSG on 8p, and MYC oncogene on 8q play a critical role in the pathogenesis of human HCC. Direct evidence for their role in the genesis of HCC has been obtained in a mosaic mouse model. Knockdown of DLC1 helps MYC in the induction of hepatoblast transformation in vitro, and in the development of HCC in vivo. Therapeutic interventions, which would simultaneously target signaling pathways governing both DLC1 and MYC functions in hepatocarcinogenesis, could result in progress in the treatment of liver cancer. |
| Reprogramming of proline and glutamine metabolism contributes to the proliferative and metabolic responses regulated by oncogenic transcription factor c-MYC. | In addition to glycolysis, the oncogenic transcription factor c-MYC (MYC) stimulates glutamine catabolism to fuel growth and proliferation of cancer cells through up-regulating glutaminase (GLS). Glutamine is converted to glutamate by GLS, entering the tricarboxylic acid cycle as an important energy source. Less well-recognized, glutamate can also be converted to proline through Delta(1)-pyrroline-5-carboxylate (P5C) and vice versa. This study suggests that some MYC-induced cellular effects are due to MYC regulation of proline metabolism. Proline oxidase, also known as proline dehydrogenase (POX/PRODH), the first enzyme in proline catabolism, is a mitochondrial tumor suppressor that inhibits proliferation and induces apoptosis. MiR-23b* mediates POX/PRODH down-regulation in human kidney tumors. MiR-23b* is processed from the same transcript as miR-23b; the latter inhibits the translation of GLS. Using MYC-inducible human Burkitt lymphoma model P493 and PC3 human prostate cancer cells, we showed that MYC suppressed POX/PRODH expression primarily through up-regulating miR-23b*. The growth inhibition in the absence of MYC was partially reversed by POX/PRODH knockdown, indicating the importance of suppression of POX/PRODH in MYC-mediated cellular effects. Interestingly, MYC not only inhibited POX/PRODH, but also markedly increased the enzymes of proline biosynthesis from glutamine, including P5C synthase and P5C reductase 1. MYC-induced proline biosynthesis from glutamine was directly confirmed using (13)C,(15)N-glutamine as a tracer. The metabolic link between glutamine and proline afforded by MYC emphasizes the complexity of tumor metabolism. Further studies of the relationship between glutamine and proline metabolism should provide a deeper understanding of tumor metabolism while enabling the development of novel therapeutic strategies. |
| Spontaneous DNA lesions modulate DNA structural transitions occurring at nuclease hypersensitive element III(1) of the human c-myc proto-oncogene. | G quadruplex (G4) DNA is a noncanonical four-stranded DNA structure that can form in G repeats by stacking of planar arrays of four hydrogen-bonded guanines called G quartets, in the presence of potassium ions. In addition to a presumed function in the regulation of gene expression, G4 DNA also localizes to regions often characterized by genomic instability. This suggests that formation of this structure may interfere with DNA transactions, including processing of DNA damage at these sites. Here we have studied the effect of two spontaneous DNA lesions, the abasic site and 8-oxoguanine, on the transition from duplex to quadruplex DNA structure occurring at nuclease hypersensitive element III(1) (NHEIII(1)) of the human c-myc promoter. We show by dimethyl sulfate footprinting and RNA polymerase arrest assays that at physiological concentrations of potassium ions NHEIII(1) folds into two coexisting G4 DNA structures, myc-1245 and myc-2345, depending on which G runs are utilized for G quartet formation. We found that a single substitution of G12 of NHEIII(1) with a single abasic site or a single 8-oxoguanine prevented formation of G4 structure myc-2345 in favor of structure myc-1245, where the lesion was accommodated in a DNA loop formed by G11-AP12/(or 8-oxoG12)-G13-G14. Surprisingly, when an additional G to A base substitution was introduced at position 3 of NHEIII(1), we observed formation of myc-2345. The extent of this structural transition was modulated by the location and type of lesion within the G11-G14 repeat. Our data indicate that spontaneous lesions formed in the G4-forming sequence of c-myc NHEIII(1) affect the structural transitions occurring at this regulatory site, potentially altering transcription factor binding and DNA repair of lesions formed in this highly regulated sequence. |
| Oncogenic activation of glypican-3 by c-Myc in human hepatocellular carcinoma. | Glypican-3 (GPC3) is a heparan sulfate proteoglycan that has an important role in cell growth and differentiation, and its function in tumorigenesis is tissue-dependent. In hepatocellular carcinoma (HCC), the overexpression of GPC3 has been demonstrated to be a reliable diagnostic indicator. However, the mechanisms that regulate the expression and function of GPC3 remain unclear. The oncoprotein c-Myc is a transcription factor that plays a significant role in more than 50% of human tumors. We report here that GPC3 is a transcriptional target of c-Myc and that the expression of c-Myc is also regulated by GPC3, thus forming a positive feedback signaling loop. We found that the overexpression of c-Myc could induce GPC3 promoter-dependent luciferase activity in luciferase reporter experiments. Furthermore, mutational analysis identified c-Myc-binding sites within the GPC3 promoter. The exogenous overexpression of c-Myc increased the endogenous messenger RNA (mRNA) and protein levels of GPC3. Chromatin immunoprecipitation experiments revealed the binding of c-Myc to the endogenous GPC3 promoter, indicating that c-Myc can directly transcriptionally activate GPC3. Interestingly, GPC3 can also elevate c-Myc expression. Overexpression of GPC3 increased c-Myc protein levels, whereas the knockdown of GPC3 reduced c-Myc expression levels. Lastly, the elevated levels of c-Myc correlate with the overexpression of GPC3 in human HCC samples. CONCLUSION: These data provide new mechanistic insight into the roles of GPC3 and of c-Myc in the development of HCC. |
| Mouse model of endemic Burkitt translocations reveals the long-range boundaries of Ig-mediated oncogene deregulation. | Human Burkitt lymphomas are divided into two main clinical variants: the endemic form, affecting African children infected with malaria and the Epstein-Barr virus, and the sporadic form, distributed across the rest of the world. However, whereas sporadic translocations decapitate Myc from 5 proximal regulatory elements, most endemic events occur hundreds of kilobases away from Myc. The origin of these rearrangements and how they deregulate oncogenes at such distances remain unclear. We here recapitulate endemic Burkitt lymphoma-like translocations in plasmacytomas from uracil N-glycosylase and activation-induced cytidine deaminase-deficient mice. Mapping of translocation breakpoints using an acetylated histone H3 lysine 9 chromatin immunoprecipitation sequencing approach reveals Igh fusions up to approximately 350 kb upstream of Myc or the related oncogene Mycn. A comprehensive analysis of epigenetic marks, PolII recruitment, and transcription in tumor cells demonstrates that the 3 Igh enhancer (Ealpha) vastly remodels approximately 450 kb of chromatin into translocated sequences, leading to significant polymerase occupancy and constitutive oncogene expression. We show that this long-range epigenetic reprogramming is directly proportional to the physical interaction of Ealpha with translocated sites. Our studies thus uncover the extent of epigenetic remodeling by Ig 3 enhancers and provide a rationale for the long-range deregulation of translocated oncogenes in endemic Burkitt lymphomas. The data also shed light on the origin of endemic-like chromosomal rearrangements. |
| Detection of C-MYC oncogene translocation and copy number change in the normal-dysplasia-carcinoma sequence of the larynx by fluorescence in situ hybridization. | The aim of this study was to determine the translocation and copy number change of the C-MYC gene in patients with laryngeal dysplasia and laryngeal squamous cell carcinoma (LSCC), and to evaluate the prevalence of such expression in relation to the normal-dysplasia-carcinoma sequence. Fluorescent in situ hybridization (FISH) was applied on formalin-fixed paraffin-embedded blocks of 93 laryngeal lesion specimens (14 normal epithelium, 15 mild dysplasia, 18 moderate dysplasia, 16 severe dysplasia, 9 carcinoma in situ, and 21 invasive carcinoma). C-MYC translocation was not observed in ALL laryngeal tissue. The high frequency for C-MYC copy-number increased (100%) in invasive carcinoma: 57.14% amplifications and 42.86% gains, and the positive rate of C-MYC amplification and copy-number change increased with the increasing severity of laryngeal lesions (P < 0.0001). The results suggest that C-MYC may be activated by gain/amplification in LSCC and precancerous lesions. Thus, C-MYC may play an important role in promoting LSCC progression, and early FISH detection of C-MYC may be exploited to set a screening test for laryngeal dysplasia. |
| MYC oncogene in myeloid neoplasias. | MYC is a transcription factor that regulates many critical genes for cell proliferation, differentiation, and biomass accumulation. MYC is one of the most prevalent oncogenes found to be altered in human cancer, being deregulated in about 50 % of tumors. Although MYC deregulation has been more frequently associated to lymphoma and lymphoblastic leukemia than to myeloid malignancies, a body of evidence has been gathered showing that MYC plays a relevant role in malignancies derived from the myeloid compartment. The myeloid leukemogenic activity of MYC has been demonstrated in different murine models. Not surprisingly, MYC has been found to be amplified or/and deregulated in the three major types of myeloid neoplasms: acute myeloid leukemia, myelodysplastic syndromes, and myeloproliferative neoplasms, including chronic myeloid leukemia. Here, we review the recent literature describing the involvement of MYC in myeloid tumors. |
| Oncogene addiction to c-MYC in myeloma cells. | OBJECTIVE: To systematically evaluate the ETS-related gene (ERG) alterations in the multifocal tumor context using whole-mount prostatectomy specimens from African and Caucasian American patients matched for age, pathologic grade and stage. Oncogenic activation of the ERG is the most common early genomic alteration in patients with prostate cancer (CaP) in Western countries. However, ERG alterations have not been systematically examined in African American patients with a known greater risk of CaP incidence and mortality. METHODS: ERG oncoprotein expression was analyzed in 91 Caucasian and 91 African American patients with CaP, who were matched for age, Gleason score, and pathologic stage. A unique aspect of the present study was the evaluation of ERG in whole-mount prostatectomy sections, minimizing sampling bias and allowing the careful assessment of the ERG in the multifocal tumor context of CaP. RESULTS: The frequency of ERG-positive prostate tumors was significantly greater among Caucasian Americans than among African Americans when assessed in ALL tumor foci (41.9% vs 23.9%, P < .0001). A markedly greater frequency of ERG oncoprotein expression was noted between the index tumors of the Caucasian Americans (63.3%) and those of the African Americans (28.6%). Also, in the African American patients, the higher grade index tumors were predominantly ERG negative. CONCLUSION: ERG typing of CaP established a major difference between the index tumors of Caucasian and African American patients. ERG-negative index tumors might indicate a less favorable outcome for African American patients. The results of the present study underscore that typing of CaP for the ERG could enhance our understanding of the biologic differences between the examined ethnic groups. |
| The proto-oncogene MYC is required for selection in the germinal center and cyclic reentry. | After antigenic challenge, B cells enter the dark zone (DZ) of germinal centers (GCs) to proliferate and hypermutate their immunoglobulin genes. Mutants with greater affinity for the antigen are positively selected in the light zone (LZ) to either differentiate into plasma and memory cells or reenter the DZ. The molecular circuits that govern positive selection in the GC are not known. We show here that the GC reaction required biphasic regulation of expression of the cell-cycle regulator c-Myc that involved its transient induction during early GC commitment, its repression by Bcl-6 in DZ B cells and its reinduction in B cells selected for reentry into the DZ. Inhibition of c-Myc in vivo led to GC collapse, which indicated an essential role for c-Myc in GCs. Our results have implications for the mechanism of GC selection and the role of c-Myc in lymphomagenesis. |
| c-myc proto-oncogene expression in peripheral blood mononuclear cells from patients with primary Sjogren s syndrome. | We examined peripheral blood mononuclear cells (PBMC) from 16 patients with Sjogren s syndrome (SS) and 7 normal control subjects for the expression of the c-myc proto-oncogene. Patients with SS were found to have a significantly increased expression of c-myc messenger RNA compared with normal individuals. No abnormal forms of c-myc RNA were detected in the SS patients. DNA analysis did not show deletion, rearrangement, or amplification in the c-myc proto-oncogene. The methylation status of the c-myc gene in patients with SS was found to be comparable with that of the control subjects. Nuclear run-off assays showed increased transcription of the c-myc gene in some patients but normal transcription in others, suggesting that posttranscriptional mechanisms are also involved in the increased c-myc messenger RNA observed in these patients. Two patients with primary SS and B cell lymphomas were found to have normal c-myc expression in their PBMC. These results demonstrate the presence of activated PBMC in patients with primary SS and delineate some of the mechanisms that are involved at the molecular level. We speculate that increased c-myc expression may represent an early permissive event in the progression toward neoplasia in these patients. |
| The 5T mouse multiple myeloma model: absence of c-myc oncogene rearrangement in early transplant generations. | Consistent chromosomal translocations involving the c-myc cellular oncogene and one of the three immunoglobin loci are typical for human Burkitt s lymphoma, induced mouse plasmacytoma (MPC) and spontaneously arising rat immunocytoma (RIC). Another plasma cell malignancy, multiple myeloma (MM), arising spontaneously in the ageing C57BL/KaLwRij mice, was investigated in order to see whether the MM cells contain c-myc abnormalities of the MPC or RIC type. Rearrangement of the c-myc oncogene was found in the bone marrow cells only in 5T2 MM transplantation line in a mouse of the 24th generation and in none of the seven other MM of the 5T series which were of earlier generations. Since the mouse 5T MM resembles the human MM very closely, including the absence of consistent structural c-myc oncogene abnormalities, it can serve as a useful experimental model for studies on the aetiopathogenesis of this disease. |
| A cyclometallated iridium(III) complex as a c-myc G-quadruplex stabilizer and down-regulator of c-myc oncogene expression. | A new cyclometallated iridium(III) complex with the 2,2 -biquinoline N-donor ligand has been synthesized and characterized. The interaction and affinity of the complex towards c-myc G-quadruplex and duplex DNA have been investigated using UV/Vis spectroscopy and gel mobility shift assay. These studies revealed that complex 1 binds to c-myc G-quadruplexes (Pu22 and Pu27) with high affinity but does not interact with duplex DNA either by intercalation or groove binding. The ability of 1 to stabilize c-myc G-quadruplex DNA in vitro has also been examined through a PCR stop assay and a cell-based luciferase reporter assay. Complex 1 displays promising cytotoxic activity against the HeLa cell line with sub-micromolar potency. |
| Structure-based design of flavone derivatives as c-myc oncogene down-regulators. | Based on molecular docking analysis of complexes between flavone and the c-myc G-quadruplex, we designed and screened 30 flavone derivatives containing various side chains that could potentially form interactions with the G-quadruplex grooves. As a proof-of-concept, the highest-scoring flavone derivatives containing cationic pyridinium side chains were synthesized and their interactions with the c-myc G-quadruplex were examined using a PCR-stop assay. The stabilizing effects of the flavone derivatives were found to be selective towards the c-myc G-quadruplex over other biologically relevant G-quadruplex structures, such as the human telomeric sequence (HTS). The interaction between the most potent compound of the series and the c-myc G-quadruplex was examined in depth using UV-Vis titration, molecular modeling and CD spectroscopy. Our results suggest that in addition to stabilizing the c-myc G-quadruplex, the flavone derivatives were capable of inducing the formation of the G-quadruplex structure even in the absence of monovalent cations. The flavone derivatives were found to be potent inhibitors of c-myc promoters within the cellular environment and displayed promising cytotoxic behavior against human cancer cell lines. |
| Tumor-suppressive microRNA-135a inhibits cancer cell proliferation by targeting the c-MYC oncogene in renal cell carcinoma. | Recently, many studies have suggested that microRNAs (miRNAs) are involved in cancer cell development, invasion, and metastasis of various types of human cancers. In a previous study, miRNA expression signatures from renal cell carcinoma (RCC) revealed that expression of microRNA-135a (miR-135a) was significantly reduced in cancerous tissues. The aim of this study was to investigate the functional significance of miR-135a and to identify miR-135a-mediated molecular pathways in RCC cells. Restoration of mature miR-135a significantly inhibited cancer cell proliferation and induced G0 /G1 arrest in the RCC cell lines caki2 and A498, suggesting that miR-135a functioned as a potential tumor suppressor. We then examined miR-135a-mediated molecular pathways using genome-wide gene expression analysis and in silico analysis. A total of 570 downregulated genes were identified in miR-135a transfected RCC cell lines. To investigate the biological significance of potential miR-135a-mediated pathways, we classified putative miR-135a-regulated genes according to the Kyoto Encyclopedia of Genes and Genomics pathway database. From our in silico analysis, 25 pathways, including the cell cycle, pathways in cancer, DNA replication, and focal adhesion, were significantly regulated by miR-135a in RCC cells. Moreover, based on the results of this analysis, we investigated whether miR-135a targeted the c-MYC gene in RCC. Gain-of-function and luciferase reporter assays showed that c-MYC was directly regulated by miR-135a in RCC cells. Furthermore, c-MYC expression was significantly upregulated in RCC clinical specimens. Our data suggest that elucidation of tumor-suppressive miR-135a-mediated molecular pathways could reveal potential therapeutic targets in RCC. |
| STK38 is a critical upstream regulator of MYC s oncogenic activity in human B-cell lymphoma. | The MYC protooncogene is associated with the pathogenesis of most human neoplasia. Conversely, its experimental inactivation elicits oncogene addiction. Besides constituting a formidable therapeutic target, MYC also has an essential function in normal physiology, thus creating the need for context-specific targeting strategies. The analysis of post-translational MYC activity modulation yields novel targets for MYC inactivation. Specifically, following regulatory network analysis in human B-cells, we identify a novel role of the STK38 kinase as a regulator of MYC activity and a candidate target for abrogating tumorigenesis in MYC-addicted lymphoma. We found that STK38 regulates MYC protein stability and turnover in a kinase activity-dependent manner. STK38 kinase inactivation abrogates apoptosis following B-cell receptor activation, whereas its silencing significantly decreases MYC levels and increases apoptosis. Moreover, STK38 knockdown suppresses growth of MYC-addicted tumors in vivo, thus providing a novel viable target for treating these malignancies. |
| Antiproliferative protein Tob directly regulates c-myc proto-oncogene expression through cytoplasmic polyadenylation element-binding protein CPEB. | The regulation of mRNA deadenylation constitutes a pivotal mechanism of the post-transcriptional control of gene expression. Here we show that the antiproliferative protein Tob, a component of the Caf1-Ccr4 deadenylase complex, is involved in regulating the expression of the proto-oncogene c-myc. The c-myc mRNA contains cis elements (CPEs) in its 3 -untranslated region (3 -UTR), which are recognized by the cytoplasmic polyadenylation element-binding protein (CPEB). CPEB recruits Caf1 deadenylase through interaction with Tob to form a ternary complex, CPEB-Tob-Caf1, and negatively regulates the expression of c-myc by accelerating the deadenylation and decay of its mRNA. In quiescent cells, c-myc mRNA is destabilized by the trans-acting complex (CPEB-Tob-Caf1), while in cells stimulated by the serum, both Tob and Caf1 are released from CPEB, and c-Myc expression is induced early after stimulation by the stabilization of its mRNA as an immediate-early gene . Collectively, these results indicate that Tob is a key factor in the regulation of c-myc gene expression, which is essential for cell growth. Thus, Tob appears to function in the control of cell growth at least, in part, by regulating the expression of c-myc. |
| Post-transcriptional control of c-myc proto-oncogene expression by glucocorticoid hormones in human T lymphoblastic leukemic cells. | We have studied the regulation of the human c-myc proto-oncogene by glucocorticoid hormones in T lymphoblastic leukemic cells. A significant decrease (50%) of the steady state levels of c-myc mRNA was observed as early as 3 h after dexamethasone treatment of CEM-1.3 human lymphoma cells, reaching less than 5% values, with respect to untreated cells, 24 h after hormone administration. Nuclear run-on experiments showed no modifications of the transcriptional rate from the first exon. However, a slight decrease (15%) of the transcript elongation from the first exon/first intron boundary was observed in the dexamethasone-treated cells. Using actinomycin D to block gene transcription, we have observed a significant increase in the rate of c-myc RNA specific decay after dexamethasone treatment. Furthermore, cycloheximide was able to overcome completely the dexamethasone-induced down-regulation of the c-myc gene expression. Our data suggest that dexamethasone is able to inhibit human c-myc gene expression primarily at the post-transcriptional level, through the synthesis of hormone-induced regulatory protein(s) controlling c-myc transcript stability. |
| The role of the proto-oncogene c-myc in B lymphocyte differentiation. | Since the discovery of the myc gene, few genes are likely to have such influence on biomedical research. The diversity of the biological functions regulated by this transcription factor and its impact in human health have attracted investigators from many different fields. The development of conditional knockout mouse models has allowed for the characterization of Myc-driven molecular mechanisms in primary cells in physiological and pathological conditions. In this review, we discuss some of the main functions and recent findings regarding c-Myc in in vivo B lymphocyte differentiation from early progenitors to terminally differentiated cells. |
| c-Myc enhances colon cancer cell-mediated angiogenesis through the regulation of HIF-1alpha. | Angiogenesis plays a pivotal role in tumor growth. The hypoxia-inducible factor 1, alpha subunit (HIF-1alpha)/vascular endothelial growth factor pathway is the most important pathway for regulating angiogenesis in the tumor microenvironment. c-Myc is an important oncogene that has many biological functions. In this study, we investigated the role of c-Myc in tumor angiogenesis. We found that the overexpression of c-Myc in colon cancer cells could promote the expression of HIF-1alpha and that of vascular endothelial growth factor. Moreover, we found that c-Myc regulated HIF-1alpha at the post-transcriptional level. The results revealed c-Myc-dependent regulation of HIF-1alpha instead of HIF-1alpha-dependent c-Myc regulation for the first time. They also showed that c-Myc was essential to regulate colon cancer cell-mediated angiogenesis and contributed to tumor growth. This research provides the theoretical basis for clinical trials of new therapeutic targets of c-Myc and HIF-1alpha in colon cancer cells. |
| Characterization of an embryonal rhabdomyosarcoma cell line showing amplification and over-expression of the N-myc oncogene. | A parent rhabdomyosarcoma cell line designated SCMC-RM2 was established from bone-marrow tumor cells taken from an 11-year-old girl with an embryonal rhabdomyosarcoma. Subsequently a cloned SCMC-RM2-1 cell line was isolated from a parent line. These cell lines grew as adherent monolayers in liquid culture with a doubling time of 50 and 52 hr, respectively. In addition, colonies were established in soft agar, which grew in a dose-dependent fashion with a cloning efficiency of 0.7 and 0.8%, respectively. Chromosomal analysis showed these cell lines had neither double minutes nor homogeneously staining regions. Chromosome number ranged from 61 to 93, translocation; t(9;13)(p22;q14) was identified, and no alteration of chromosome 2 was observed. Surface membrane antigen profile of parent and cloned lines by using a panel of 24 monoclonal antibodies (MAbs) excluded the possibility of these being neuroblastoma cell lines. In addition, MAbs to the cytoplasmic protein desmin, myoglobin, muscle actin (alpha and gamma) and alpha-sarcomeric actin reacted with these cell lines, SCMC-RM2 and SCMC-RM2-1 being thus identified as rhabdomyosarcoma. Southern blot analyses revealed 8- and 7-fold amplification of the N-myc gene in SCMC-RM2 and SCMC-RM2-1 as compared with the promyelocytic cell line HL60. Over-expression of the N-myc mRNA was noted over control cell lines. |
| Access to the nucleus and functional association with c-Myc is required for the full oncogenic potential of DeltaEGFR/EGFRvIII. | DeltaEGFR is a potent glioblastoma oncogene which has been studied primarily as a plasma membrane kinase. Using intracranial xenograft studies in mice, we show that blocking DeltaEGFR access to the nucleus attenuates its tumorigenicity and, conversely, that promoting nuclear accumulation enhances this, providing the first in vivo evidence that the nuclear actions of DeltaEGFR contribute strongly to its oncogenic function. Nuclear actions of DeltaEGFR include regulation of gene expression by participation in chromatin-bound complexes, and genome-wide mapping of these sequences by chromatin immunoprecipitation and massively parallel sequencing identified 2294 peaks. Bioinformatic analysis showed enrichment of the E-box motif in the dataset, and c-Myc and DeltaEGFR were corecruited to the promoters of and transcriptionally activated a subset of nuclear DeltaEGFR chromatin targets. Knockdown of c-Myc decreased the expression of these targets and diminished DeltaEGFR-stimulated anchorage-independent colony formation. We conclude that transcriptional regulation of target genes by association with gene regulatory chromatin in cooperation with c-Myc by nuclear DeltaEGFR makes a unique contribution to its oncogenicity and propose that this venue provides new targets for therapeutic intervention. |
| Decitabine represses translocated MYC oncogene in Burkitt lymphoma. | Burkitt lymphoma (BL) is caused by translocation of the MYC gene to an immunoglobulin locus resulting in its constitutive expression depending on the activity of the immunoglobulin (Ig) enhancer elements. Treatment of BL cell lines with epigenetic modifiers is known to repress B-cell-specific genes and to up-regulate B-cell-inappropriate genes including the transcription repressor ID2 expression. We found that the DNA methyltransferase inhibitor decitabine/5-aza-2-deoxycytidine (5-aza-dC) represses the MYC oncogene on RNA and protein levels by inducing ID2. Down-regulation of MYC was associated with repression of transcriptional activity of the Ig locus and with inhibition of proliferation. The induction of ID2 can be in part explained by activation of the transcription factor NF-kappaB. We conclude that up-regulation of ID2 contributes to anti-tumour activity of 5-aza-dC via repression of Ig locus activity and consequently MYC expression. |
| c-myc Oncogene expression in colorectal cancer: its use in prognosis and role in colorectal carcinogenesis. | expression of the c-myc oncogene was studied in 35 cases of colorectal cancer. Elevated expression was found in 46% (16/35) of cases. This elevated c-myc expression was not significantly correlated with tumour stage, tumour size, tumour differentiation or carcinoembryonic antigen gene expression, demonstrating that it is not a useful prognostic indicator in colorectal cancer. The role of c-myc in colorectal carcinogenesis is discussed in the light of these findings and of the recent advances in molecular biology. |
| Characterization of MYC-induced tumorigenesis by in situ lipid profiling. | We apply desorption electrospray ionization mass spectrometry imaging (DESI-MSI) to provide an in situ lipidomic profile of genetically modified tissues from a conditional transgenic mouse model of MYC-induced hepatocellular carcinoma (HCC). This unique, label-free approach of combining DESI-MSI with the ability to turn specific genes on and off has led to the discovery of highly specific lipid molecules associated with MYC-induced tumor onset. We are able to distinguish normal from MYC-induced malignant cells. Our approach provides a strategy to define a precise molecular picture at a resolution of about 200 mum that may be useful in identifying lipid molecules that define how the MYC oncogene initiates and maintains tumorigenesis. |
| ING4 inhibits the translation of proto-oncogene MYC by interacting with AUF1. | The ING4 tumor suppressor plays a significant role in various cancer-related cellular processes. AUF1 affects the stability and/or translation of multiple mRNAs via binding to an AU-rich element in the 3 -untranslated regions. In this study, we identify AUF1 as a novel and direct binding partner of ING4. mRNP immunoprecipitation assays indicated that ING4, AUF1 and MYC mRNA present in the same mRNP complex. ING4 suppressed MYC protein expression without altering MYC mRNA levels, and abolished the cell proliferation induced by AUF1 in K562 cells. These results suggest that ING4 may regulate MYC translation by its association with AUF1. |
| Effect of Neem Leaf Extract (Azadirachta indica) on c-Myc Oncogene Expression in 4T1 Breast Cancer Cells of BALB/c Mice. | OBJECTIVE: Breast cancer is the most common cause of cancer-related deaths in women both worldwide and in Malaysia. Azadirachta indica (A. Juss), commonly known as neem, is one of the most versatile medicinal plants that has gained worldwide prominence due to its medicinal properties. However, the anticancer effect of ethanolic neem leaf extract against breast cancer has not been documented. The purpose of the present study is to investigate the effect of neem leaf extract on c-Myc oncogene expression in 4T1 breast cancer BALB/c mice. MATERIALS AND METHODS: In this experimental study, A total of 48 female BALB/c mice were divided randomly into four groups of 12 mice per group: i.cancer control (CC) treated with 0.5% Tween 20 in PBS, ii. 0.5 microg/mL tamoxifen citrate (CT), iii. 250 mg/kg neem leaf extract (C250), and iv. 500 mg/kg neem leaf extract (C500). in situ reverse transcription polymerase chain reaction (in situ RT-PCR) was applied to evaluate suppression of c-Myc oncogene expression in breast cancer tissue. RESULTS: The C500 group showed significant (p<0.05) suppression of c-Myc oncogene expression compared to the CC group. CONCLUSION: c-Myc was found to be down regulated under the effect of 500 mg/kg ethanolic neem leaf extract. |
| Amplification of N-myc oncogene in human melanoma cells. | Tissue specimens from two melanoma patients and two patients with laryngeal carcinoma were studied for the expression of c-myc, N-myc and v-src oncogenes. Out of three different probes, only the N-myc probe one signalled amplification. While the two patients with laryngeal carcinoma showed only single copy of the N-myc gene in tumor cells, amplification of this gene was found in both two melanoma patients. The patients with 1 extra copy of the N-myc gene and its protein product had an early recurrence but is still alive, while the other melanoma patient with 4 extra copies of the gene, relapsed very early and died of melanoma within 7 months after diagnosis. Thus a higher amplification (4 extra copies) seems to correlate with very poor outcome of the disease. |
| Differential effects on ARF stability by normal versus oncogenic levels of c-Myc expression. | ARF suppresses aberrant cell growth upon c-Myc overexpression by activating p53 responses. Nevertheless, the precise mechanism by which ARF specifically restrains the oncogenic potential of c-Myc without affecting its normal physiological function is not well understood. Here, we show that low levels of c-Myc expression stimulate cell proliferation, whereas high levels inhibit by activating the ARF/p53 response. Although the mRNA levels of ARF are induced in both scenarios, the accumulation of ARF protein occurs only when ULF-mediated degradation of ARF is inhibited by c-Myc overexpression. Moreover, the levels of ARF are reduced through ULF-mediated ubiquitination upon DNA damage. Blocking ARF degradation by c-Myc overexpression dramatically stimulates the apoptotic responses. Our study reveals that ARF stability control is crucial for differentiating normal (low) versus oncogenic (high) levels of c-Myc expression and suggests that differential effects on ULF- mediated ARF ubiquitination by c-Myc levels act as a barrier in oncogene-induced stress responses. |
| c-Myc oncogene expression in selected odontogenic cysts and tumors: An immunohistochemical study. | AIM: To investigate the role of c-Myc oncogene in selected odontogenic cysts and tumors. MATERIALS AND METHODS: Ten cases each of ameloblastoma, adenomatoid odontogenic tumor (AOT), odontogenic keratocyst (OKC), dentigerous cyst, and radicular cyst were selected and primary monoclonal mouse anti-human c-Myc antibody was used in a dilution of 1: 50. Statistical Analysis was performed using Mann Whitney U test. RESULTS: 80% positivity was observed in ameloblastoma, AOT and OKC; 50% positivity in radicular cyst and 20% positivity in dentigerous cyst. Comparison of c-Myc expression between ameloblastoma and AOT did not reveal significant results. Similarly, no statistical significance was observed when results of OKC were compared with ameloblastoma and AOT. In contrast, significant differences were seen on comparison of dentigerous cyst with ameloblastoma and AOT and radicular cyst with AOT. CONCLUSION: From the above data we conclude that (1) Ameloblastoma and AOT have similar proliferative potential and their biologic behavior cannot possibly be attributed to it. (2) OKC has an intrinsic growth potential which is absent in other cysts and reinforces its classification as keratocystic odontogenic tumor. |
| PDK1 signaling toward PLK1-MYC activation confers oncogenic transformation, tumor-initiating cell activation, and resistance to mTOR-targeted therapy. | Although 3-phosphoinositide-dependent protein kinase-1 (PDK1) has been predominately linked to the phosphoinositide 3-kinase (PI3K)-AKT pathway, it may also evoke additional signaling outputs to promote tumorigenesis. Here, we report that PDK1 directly induces phosphorylation of Polo-like kinase 1 (PLK1), which in turn induces MYC phosphorylation and protein accumulation. We show that PDK1-PLK1-MYC signaling is critical for cancer cell growth and survival, and small-molecule inhibition of PDK1/PLK1 provides an effective approach for therapeutic targeting of MYC dependency. Intriguingly, PDK1-PLK1-MYC signaling induces an embryonic stem cell-like gene signature associated with aggressive tumor behaviors and is a robust signaling axis driving cancer stem cell (CSC) self-renewal. Finally, we show that a PLK1 inhibitor synergizes with an mTOR inhibitor to induce synergistic antitumor effects in colorectal cancer by antagonizing compensatory MYC induction. These findings identify a novel pathway in human cancer and CSC activation and provide a therapeutic strategy for targeting MYC-associated tumorigenesis and therapeutic resistance. SIGNIFICANCE: This work identifies PDK1-PLK1-MYC signaling as a new oncogenic pathway driving oncogenic transformation and CSC self-renewal. Targeted inhibition of PDK1/PLK1 is robust in targeting MYC dependency in cancer cells. Thus, our findings provide important insights into cancer and CSC biology and have significant therapeutic implications. |
| A novel PTEN/mutant p53/c-Myc/Bcl-XL axis mediates context-dependent oncogenic effects of PTEN with implications for cancer prognosis and therapy. | Phosphatase and tensin homolog located on chromosome 10 (PTEN) is one of the most frequently mutated tumor suppressors in human cancer including in glioblastoma. Here, we show that PTEN exerts unconventional oncogenic effects in glioblastoma through a novel PTEN/mutant p53/c-Myc/Bcl-XL molecular and functional axis. Using a wide array of molecular, genetic, and functional approaches, we demonstrate that PTEN enhances a transcriptional complex containing gain-of-function mutant p53, CBP, and NFY in human glioblastoma cells and tumor tissues. The mutant p53/CBP/NFY complex transcriptionally activates the oncogenes c-Myc and Bcl-XL, leading to increased cell proliferation, survival, invasion, and clonogenicity. Disruption of the mutant p53/c-Myc/Bcl-XL axis or mutant p53/CBP/NFY complex reverses the transcriptional and oncogenic effects of PTEN and unmasks its tumor-suppressive function. Consistent with these data, we find that PTEN expression is associated with worse patient survival than PTEN loss in tumors harboring mutant p53 and that a small molecule modulator of p53 exerts greater antitumor effects in PTEN-expressing cancer cells. Altogether, our study describes a new signaling pathway that mediates context-dependent oncogenic/tumor-suppressive role of PTEN. The data also indicate that the combined mutational status of PTEN and p53 influences cancer prognosis and anticancer therapies that target PTEN and p53. |
| Synergistic effect of the v-myc oncogene with H-ras on radioresistance. | Resistance of tumors to irradiation or chemotherapeutic agents is thought to be one of the reasons why patients who present with early malignancies may not be cured. Much is now known about the molecular mechanisms that underlie drug resistance, but until recently little was known about genetic contributions to radiation resistance. Some evidence now links oncogenes, particularly the ras family of oncogenes, to radiation resistance but heterogeneity between tumors and cell lines has complicated this analysis. Primary rat embryo cells have been chosen as a model system in which the effects on radiation resistance of the H-ras oncogene could be studied on a uniform genetic background. These cells offer several useful advantages. The cells prior to transformation are diploid, and because they have been in culture only for a few passages prior to transformation with the oncogene it is unlikely that any preexisting mutation affecting radiation response could be present. Additionally, the use of rat embryo cells permitted the study of the effects of a second oncogene on the appearance of the radioresistant phenotype. The results show that the activated H-ras oncogene is associated with radiation resistance in primary rat cells after transformation but that the effect of the oncogene by itself is small. However, the oncogene v-myc, which has no effect on radiation resistance by itself, has a synergistic effect on radiation resistance with H-ras. There appear to be differences in the phenotype of radiation resistance associated with these two forms of transfectants. Thus, radiation resistance seen with H-ras by itself is characterized by a change in the slope of the radiation survival curve at high radiation doses but little or no change within the should region of the radiation survival curve. Radiation resistance seen in H-ras plus v-myc transformants is also characterized by an increase in the slope of the curve at high doses but there is also a large effect within the shoulder region of the radiation survival curve. These studies led to the following conclusions: (a) the radioresistant phenotype is not due to preexisting genetic heterogeneity in the cells prior to transfection; (b) the radiation resistant phenotype of cells transformed by H-ras is seen to a greater degree in cells which also contain the v-myc oncogene; (c) the v-myc oncogene may play an important role in the phenotype of radiation resistance at low doses that is within the range most critical for clinical practice. |
| Reciprocal regulation of microRNA-122 and c-Myc in hepatocellular cancer: role of E2F1 and transcription factor dimerization partner 2. | c-Myc is a well-known oncogene frequently up-regulated in different malignancies, whereas liver-specific microRNA (miR)-122, a bona fide tumor suppressor, is down-regulated in hepatocellular cancer (HCC). Here we explored the underlying mechanism of reciprocal regulation of these two genes. Real-time reverse-transcription polymerase chain reaction (RT-PCR) and northern blot analysis demonstrated reduced expression of the primary, precursor, and mature miR-122 in c-MYC-induced HCCs compared to the benign livers, indicating transcriptional suppression of miR-122 upon MYC overexpression. Indeed, chromatin immunoprecipitation (ChIP) assay showed significantly reduced association of RNA polymerase II and histone H3K9Ac, markers of active chromatin, with the miR-122 promoter in tumors relative to the c-MYC-uninduced livers, indicating transcriptional repression of miR-122 in c-MYC-overexpressing tumors. The ChIP assay also demonstrated a significant increase in c-Myc association with the miR-122 promoter region that harbors a conserved noncanonical c-Myc binding site in tumors compared to the livers. Ectopic expression and knockdown studies showed that c-Myc indeed suppresses expression of primary and mature miR-122 in hepatic cells. Additionally, Hnf-3beta, a liver enriched transcription factor that activates miR-122 gene, was suppressed in c-MYC-induced tumors. Notably, miR-122 also repressed c-Myc transcription by targeting transcriptional activator E2f1 and coactivator Tfdp2, as evident from ectopic expression and knockdown studies and luciferase reporter assays in mouse and human hepatic cells. CONCLUSION: c-Myc represses miR-122 gene expression by associating with its promoter and by down-regulating Hnf-3beta expression, whereas miR-122 indirectly inhibits c-Myc transcription by targeting Tfdp2 and E2f1. In essence, these results suggest a double-negative feedback loop between a tumor suppressor (miR-122) and an oncogene (c-Myc). |
| Metformin targets c-MYC oncogene to prevent prostate cancer. | Prostate cancer (PCa) is the second leading cause of cancer-related death in American men and many PCa patients develop skeletal metastasis. Current treatment modalities for metastatic PCa are mostly palliative with poor prognosis. Epidemiological studies indicated that patients receiving the diabetic drug metformin have lower PCa risk and better prognosis, suggesting that metformin may have antineoplastic effects. The mechanism by which metformin acts as chemopreventive agent to impede PCa initiation and progression is unknown. The amplification of c-MYC oncogene plays a key role in early prostate epithelia cell transformation and PCa growth. The purpose of this study is to investigate the effect of metformin on c-myc expression and PCa progression. Our results demonstrated that (i) in Hi-Myc mice that display murine prostate neoplasia and highly resemble the progression of human prostate tumors, metformin attenuated the development of prostate intraepithelial neoplasia (PIN, the precancerous lesion of prostate) and PCa lesions. (ii) Metformin reduced c-myc protein levels in vivo and in vitro. In Myc-CaP mouse PCa cells, metformin decreased c-myc protein levels by at least 50%. (iii) Metformin selectively inhibited the growth of PCa cells by stimulating cell cycle arrest and apoptosis without affecting the growth of normal prostatic epithelial cells (RWPE-1). (iv) Reduced PIN formation by metformin was associated with reduced levels of androgen receptor and proliferation marker Ki-67 in Hi-Myc mouse prostate glands. Our novel findings suggest that by downregulating c-myc, metformin can act as a chemopreventive agent to restrict prostatic neoplasia initiation and transformation. SUMMARY: Metformin, an old antidiabetes drug, may inhibit prostate intraepithelial neoplasia transforming to cancer lesion via reducing c-MYC, an old overexpressed oncogene. This study explores chemopreventive efficacy of metformin in prostate cancer and its link to cMYC in vitro and in vivo. |
| Acidosis decreases c-Myc oncogene expression in human lymphoma cells: a role for the proton-sensing G protein-coupled receptor TDAG8. | Acidosis is a biochemical hallmark of the tumor microenvironment. Here, we report that acute acidosis decreases c-Myc oncogene expression in U937 human lymphoma cells. The level of c-Myc transcripts, but not mRNA or protein stability, contributes to c-Myc protein reduction under acidosis. The pH-sensing receptor TDAG8 (GPR65) is involved in acidosis-induced c-Myc downregulation. TDAG8 is expressed in U937 lymphoma cells, and the overexpression or knockdown of TDAG8 further decreases or partially rescues c-Myc expression, respectively. Acidic pH alone is insufficient to reduce c-Myc expression, as it does not decrease c-Myc in H1299 lung cancer cells expressing very low levels of pH-sensing G protein-coupled receptors (GPCRs). Instead, c-Myc is slightly increased by acidosis in H1299 cells, but this increase is completely inhibited by ectopic overexpression of TDAG8. Interestingly, TDAG8 expression is decreased by more than 50% in human lymphoma samples in comparison to non-tumorous lymph nodes and spleens, suggesting a potential tumor suppressor function of TDAG8 in lymphoma. Collectively, our results identify a novel mechanism of c-Myc regulation by acidosis in the tumor microenvironment and indicate that modulation of TDAG8 and related pH-sensing receptor pathways may be exploited as a new approach to inhibit Myc expression. |
| Expression of c-myc oncogene during differentiation of human burst-forming unit, erythroid (BFU-E). | We investigated the serial expression of c-myc oncogene during differentiation of normal human burst-forming unit, erythroid (BFU-E), in vitro, together with the replating efficiency and the expression of transferrin receptors. We found that the c-myc oncogene was expressed in the early progeny of BFU-E and that this expression decreased during erythroid differentiation. This change of the c-myc expression was well correlated to changes in the replating efficiency and the expression of transferrin receptors. These observations indicate that the c-myc oncogene probably has a physiological role in normal human hematopoiesis as well as leukemic hematopoiesis. |
| Detection of N-myc oncogene expression in human neuroblastoma by in situ hybridization and blot analysis: relationship to clinical outcome. | We studied N-myc oncogene expression in 13 human neuroectodermal tumors and one teratoma by in situ hybridization. In four of six neuroblastomas, there was increased N-myc expression (15 to 49% of the cells). Many of the primitive neuroblastic cells had an increase of N-myc RNA not observed in the larger, more differentiated cells. Two neuroblastomas matured to ganglioneuromas; no biopsies performed during this progression expressed increased N-myc RNA. Three ganglioneuroblastomas, two tumors presenting as ganglioneuromas, a cerebral neuroectodermal tumor, a neurofibrosarcoma, and the teratoma did not have increased N-myc expression. The data obtained by in situ hybridization correlated well with data obtained by blot analysis. Neuroblastomas/ganglioneuroblastomas with a favorable course did not have appreciable elevation of N-myc expression over 10 to 77 mo of follow-up; thus N-myc may not be involved in the maintenance of the neoplastic state. However, such tumors with a fatal outcome 2 to 14 mo after diagnosis usually had elevated N-myc expression. These findings suggest a relationship between elevated levels of N-myc RNA and poor prognosis. |
| Establishment and characterization of a human plasma cell myeloma culture having a rearranged cellular myc proto-oncogene. | Using a serum-free defined medium, we have established a human cell line, NCI-H929, from a malignant effusion occurring in a patient with IgAk myeloma. The cultured cells have the morphologic, ultrastructural, biochemical, immunologic, and cytochemical features of plasma cells. The cells have rearranged alpha and kappa genes and synthesize and secrete high amounts of IgAk (greater than 80 micrograms/10(6) cells per 24 hours). The cells express surface immunoglobulin (alpha and kappa), the plasma cell antigen PCA-1, the transferrin receptor (T9) and T10 but lack antigens associated with earlier stages of B cell development (HLA-DR, B1, B2, B4, CALLA), as well as other leukocyte-macrophage antigens and Epstein-Barr virus (EBV) nuclear antigen. Although molecular studies confirm that both the tumor and cultured cells are derived from the same clone of malignant B cells, the tumor cells were predominantly near-diploid, whereas the cultured cells are predominantly near-tetraploid with six copies of chromosome 8, four to six of which have an 8q + abnormality. However, both the tumor and the cultured cells have a rearrangement of the cellular c-myc proto-oncogene (located at 8q24) and express c-myc RNA. Although a modest number of human "plasmacytoid" cell lines have been established, most are lymphoblastoid lines lacking plasma cell features, while others appear to be early secretory cells. In contrast, NCI-H929 is a differentiated, highly secretory human plasma cell line. |
| Proto-oncogene c-myc is expressed in cerebellar neurons at different developmental stages. | During post-natal cerebellar development the steady-state levels of c-myc transcripts exhibit characteristic changes. As determined by the S1 nuclease protection assay the level of c-myc transcript, which is very high in the late embryonic cerebellum, decreased to low levels shortly after birth. One week later there is a second period of c-myc mRNA accumulation followed by a marked decline to finally reach the low adult value. The second peak of high c-myc mRNA level correlates well with the proliferation of granule cell precursors, and it is characterized by a marked change in the ratio of the two types of transcripts started at the known c-myc promoters 1 and 2. This indicates a change in the cell population involved in the transcription of the c-myc gene. In situ hybridization shows transiently elevated c-myc mRNA levels in neurons of the cerebellar cortex. At post-natal days 3 and 10 (P3 and P10) c-myc transcripts are detectable in the superficial external granular layer composed primarily of mitotically active (neural precursor) cells. Purkinje cell somata show cytoplasmic label at P10. These large postmitotic neurons undergo rapid differentiation at this developmental stage. In the adult cerebellum the low c-myc mRNA level is apparently due to Purkinje cells with barely detectable amounts of c-myc transcripts. The vast majority of mature cerebellar neurons, the internal granule cells, have no specific hybridization signal for c-myc. We conclude that neurons in vivo can accumulate c-myc messenger during proliferation and/or differentiation, perhaps as a cellular response to an external signal. |
| [Preparation and characterization of specific antisera directed against different polypeptide domains encoded by the c-myc oncogene for studying the expression of this gene introduced into quail or rat cells]. | By using bacterial expression vectors, we have prepared antisera directed against two polypeptidic domains encoded by exons 2 and 3 of the human c-myc oncogene. These antisera which detect specifically the human c-myc proteins allow us to analyse the expression of human c-myc gene activated by retroviral sequences and introduced in quail embryo cells (QEC) or in established rat embryo fibroblastic cell line (208 F). Although human myc mRNA are expressed in the two cell types, the p64/p67 human c-myc proteins are only detected in the QEC. |
| c-myc oncogene alterations in human thyroid carcinomas. | A possible role of the c-myc oncogene in the neoplastic transformation of the human thyroid has been investigated. The structure, the methylation status, and the copy number of this oncogene have been analyzed in normal and in tumor thyroid DNAs by Southern blotting technique and dot blot hybridization. Among six carcinomas, four presented abnormal c-myc DNA structure: Three cases showed a mutation in the 5 flanking region of the gene, originating a new EcoRI site; the other case showed a deletion of 5 kb involving the first exon of the gene. This deletion was also observed in the white blood cells of the same individual. In addition, in three carcinomas a double dose of the oncogene has been demonstrated. In ALL the carcinomas examined, undermethylation of the c-myc oncogene has been observed. These findings suggest that c-myc oncogene alterations might be involved in the malignant transformation of the human thyroids and can be considered as tumor markers. |
| Estrogen induction of N-myc and c-myc proto-oncogene expression in the rat uterus. | The mechanisms involved in the proliferative response of the uterus to estrogen are poorly understood. The c-myc proto-oncogene has recently been shown to be rapidly activated in quiescent cells exposed to various mitogens. We have examined expression of c-myc and a closely related proto-oncogene, N-myc, in the rat uterus after in vivo administration of 17beta-estradiol (E2), 5 micrograms/100 g body weight, to prepubertal ovariectomized rats. Maximal c-myc messenger RNA (mRNA) accumulation, as determined by densitometric analysis of Northern blots of poly (A)+ uterine RNA was observed 3 h after E2 treatment. Maximal expression of c-myc was 8.6 +/- 0.8-fold (mean +/- SEM for 3 separate experiments) compared to basal levels seen in vehicle-treated ovariectomized rats. The maximal level of c-myc mRNA in the E2-stimulated uterus was higher (3- to 6-fold) than that observed in uteri from intact rats in either diestrous or the proestrous-estrous stages of the estrous cycle. There was no significant difference in the level of uterine c-myc mRNA throughout the estrous cycle. Under stringent conditions, the N-myc DNA probe hybridized with a single 3 kilobase (kb) transcript which was virtually undetectable in ovariectomized rat uteri and increased 6-fold within 15 min after E2 treatment. Maximal induction was seen 30-60 min post E2 treatment. At 1 h post E2 the level of N-myc mRNA was 9.3 +/- 0.4-fold (n = 3) compared to vehicle-treated rats. Under conditions of slightly reduced stringency, N-myc DNA also hybridized with a 2.2 kilobase transcript. expression of the N-myc related gene also occurred more rapidly after E2 administration than c-myc mRNA. Our in vivo data are analogous to the in vitro observations that mitogen stimulation of quiescent cells results in a rapid accumulation of myc proto-oncogene mRNAs. In cycling cells in vitro and in the uterus of intact rats throughout the estrous cycle, the level of expression of the myc oncogenes is relatively constant. Since expression of the c-myc and N-myc proto-oncogenes appears to be restricted to different cell and tissue types our data indicate that there is at least one cell type present in the quiescent uterus that is able to respond rapidly to E2. The rapidity of the N-myc response would argue for a direct effect of E2. In contrast the c-myc response is considerably delayed and may be mediated via autocrine, paracrine, or circulating estrogen-dependent growth factors. |
| Allelic imbalance at an 8q24 oncogenic SNP is involved in activating MYC in human colorectal cancer. | BACKGROUND: The rs6983267 at 8q24.21 has been established as a significant cancer-related single nucleotide polymorphism (SNP). The risk allele showed similarity to the binding site of transcription factor TCF4/LEF1 that activates transcription of MYC. However, little is known about the role of this SNP in increasing MYC activity in colorectal cancers (CRCs). METHODS: The genotypes of rs6983267 in peripheral blood and primary cancers, MYC activity and copy number (CN) alteration were examined in 107 CRCs. Next, we plotted the number of cancers cell lines exhibiting specific G/T genotypes in 746 cancer cell lines of the Sanger Institute database. Then we validated the relationship between the 8q24 SNP status and clinicopathologic parameters in 68 CRCs with loss of heterozygosity (LOH). RESULTS: The MYC module activity was activated by either transcription in the risk allele (G) or by amplification in the non-risk allele (T). Then, we confirmed that the CN amplification dominantly occurred in the non-risk allele, whereas CN neutral LOH, which indicated uniparental disomy (UPD) was more frequently observed for the risk allele. Finally, we confirmed that risk allele dominant cases, either by amplification or by UPD, indicated a more malignant clinical phenotype than non-risk allele dominant cases. CONCLUSIONS: The development of CRC requires MYC activation through retention of the risk allele, or amplification of the non-risk allele at the oncogenic SNP in the site of primary tumor. |
| Enhanced expression and state of the c-myc oncogene in chemically and X-ray-transformed C3H/10T1/2 Cl 8 mouse embryo fibroblasts. | We examined expression of the c-myc oncogene in nontransformed, in three chemically transformed, and in two X-ray-transformed C3H/10T1/2 Cl 8 cell lines. In nontransformed C3H/10T1/2 cells, c-myc was expressed when cells were logarithmically growing, and expression decreased as cells reached confluence. In a methylcholanthrene-transformed cell line, MCA Si 24, c-myc expression was similar to that observed in nontransformed cells, while in two chemically transformed cell lines, Bleo Cl 2 and DMBA Cl 2, and in two radiation-transformed cell lines, F17 and F29, steady-state levels of the c-myc transcript were 5-7-fold greater than observed in nontransformed C3H/10T1/2 cells. ALL cell lines, both transformed and nontransformed, produced a 2.3-kilobase c-myc transcript. There was no detectable amplification or rearrangement of c-myc DNA sequences in any of the cell lines examined as determined by DNA dot blot and restriction endonuclease-Southern blotting analyses. In addition, the c-myc gene in nontransformed and transformed cell lines showed similar methylation patterns as determined by HpaII/MpsI digestion analysis, except that F19 and F29 cells lost a 0.95-kilobase HpaII band, suggesting extra region-specific methylation in these two cell lines compared to C3H/10T1/2 cells. Therefore, increased c-myc expression in the four transformed lines did not generally correlate with changes in DNA methylation in the vicinity of the c-myc gene. Our results suggest that expression of the c-myc gene is growth related and that elevated steady-state levels of c-myc RNA in certain chemically and X-ray transformed C3H/10T1/2 cell lines, such as Bleo Cl 2, DMBA Cl 2, F17, and F29, are correlated with and may participate in conversion to or maintenance of cells in the transformed state. |
| High-resolution in situ hybridization technique using biotinylated NMYC oncogene probe reveals periodic structure of HSRs in human neuroblastoma. | Gene amplification in mammalian cells commonly manifests itself as homogeneously staining chromosomal regions (HSRs). These are frequently seen in neuroblastoma and have been shown to be the site of amplification of the NMYC oncogene. We have used a nonisotopic, high-resolution in situ hybridization technique to reveal a hitherto unrecognized periodic microstructure within HSRs of a human neuroblastoma cell line. |
| Expression of the c-myc proto-oncogene in prostatic tissue. | The ETV6-RUNX1 fusion gene, found in 25% of childhood acute lymphoblastic leukemia (ALL) cases, is acquired in utero but requires additional somatic mutations for overt leukemia. We used exome and low-coverage whole-genome sequencing to characterize secondary events associated with leukemic transformation. RAG-mediated deletions emerge as the dominant mutational process, characterized by recombination signal sequence motifs near breakpoints, incorporation of non-templated sequence at junctions, approximately 30-fold enrichment at promoters and enhancers of genes actively transcribed in B cell development and an unexpectedly high ratio of recurrent to non-recurrent structural variants. Single-cell tracking shows that this mechanism is active throughout leukemic evolution, with evidence of localized clustering and reiterated deletions. Integration of data on point mutations and rearrangements identifies ATF7IP and MGA as two new tumor-suppressor genes in ALL. Thus, a remarkably parsimonious mutational process transforms ETV6-RUNX1-positive lymphoblasts, targeting the promoters, enhancers and first exons of genes that normally regulate B cell differentiation. |
| Autocrine interferon and the suppression of the c-myc nuclear oncogene. | 1. oncogenes appear to play an important role in the physiology of transformed as well as of normal cells. 2. The src oncogene is by far the most investigated oncogene in birds and mammals with respect to the biochemical characteristics of its tyrosine kinase activity, although the specific function of this enzymatic activity still remains to be uncovered. 3. Systematic studies on the src related kinase activity in lower animals are lacking. 4. To contribute to a better understanding of the function of the c-src gene, we performed a comparative study on lower chordates. 5. We were able to demonstrate the presence of c-src related sequences in Acrania, Cyclostomata, cartilagenous and bony fish. 6. By performing the pp60src-specific immune complex assay we detected a tyrosine specific kinase activity, that shows the same biochemical properties as the pp60c-src from higher vertebrates. 7. The level of kinase activity is regulated in an organ specific manner. 8. In lymphocystis tumors of flat-fish and in stomatopapilloma of freshwater eels a considerable amount of pp60c-src kinase activity was found, which, however, never exceeded the levels found in the normal brain. |
| Immunologic competence of B cells subjected to constitutive c-myc oncogene expression in immunoglobulin heavy chain enhancer myc transgenic mice. | B cell activation is associated with a marked transient rise in expression of the c-myc proto-onco-gene. A unique opportunity to examine the effects of constitutive c-myc expression upon B cell function is provided by transgenic mice in which the c-myc oncogene is regulated by the enhancer (E mu) from the immunoglobulin locus (E mu-myc mice). We have examined the immunologic competence of B cells from E mu-myc mice both in vitro and in vivo. Upon stimulation, many E mu-myc B cells can proliferate to form clones most of which contain antibody-forming cells. However, the frequency of responsive B cells from E mu-myc donors is only about 30% that of B cells from normal littermates. Thus, enforced myc expression is not sufficient to block the differentiation of ALL B cells, but a much larger fraction of the immunoglobulin-bearing cells from E mu-myc mice are incompetent. Upon immunization, E mu-myc mice mounted specific antibody responses, although some responses were delayed. Isotype switching can occur, since we observed hemolytic plaques of both IgM and IgG type and detected specific antibody of both classes in the serum. Moreover, the serum from nonimmunized E mu-myc mice contained normal levels of both IgM and IgG. Thus constitutive expression of the c-myc gene appears to retard B cell differentiation, but does not grossly impair immunologic function in the intact animal. |
| Arf tumor suppressor disrupts the oncogenic positive feedback loop including c-Myc and DDX5. | tumor suppressor protein p19(ARF) (Arf; p14(ARF) in humans) functions in both p53-dependent and -independent modes to counteract hyper-proliferative signals caused by proto-oncogene activation, but its p53-independent activities remain poorly understood. Using the tandem affinity purification-tag technique, we purified Arf-containing protein complexes and identified p68 DEAD-box protein (DDX5) as a novel interacting protein of Arf. In this study, we found that DDX5 interacts with c-Myc, and harbors essential roles for c-Myc-mediated transcription and its transforming activity. Furthermore, when c-Myc was forcibly expressed, the expression level of DDX5 protein was drastically increased through the acceleration of protein synthesis of DDX5, suggesting the presence of an oncogenic positive feedback loop including c-Myc and DDX5. Strikingly, Arf blocked the physical interaction between DDX5 and c-Myc, and drove away DDX5 from the promoter of c-Myc target genes. These observations most likely indicate the mechanism by which Arf causes p53-independent tumor-suppressive activity. |
| Immunohistochemical detection of c-myc oncogene product in human gastric carcinomas: expression in tumor cells and stromal cells. | c-myc protein p62 in human gastric carcinomas was studied by immunohistochemistry using an antiserum raised against the C-terminal portion of the human c-myc gene protein. No immunoreactivity of c-myc p62 was detected in tumor cells of 27 early carcinomas, while c-myc p62-positive tumor cells were observed in 51 (36.4%) of the 140 advanced carcinomas. Many stromal cells including macrophages and fibroblasts around the tumors showed various degrees of c-myc p62 immunoreactivity. Localization of c-myc p62 was predominant in the cytoplasm of tumor cells and stromal cells. The prognosis of patients with p62-positive stromal cells was significantly better than that of patients with p62-negative stromal cells. |
| Histone demethylase JARID1B promotes cell proliferation but is downregulated by N-Myc oncoprotein. | Myc oncoproteins induce tumor initiation and promote tumor progression by modulating gene transcription. We have previously shown that N-Myc represses gene transcription by recruiting histone deacetylases to Sp1-binding site-enriched regions of target gene promoters. The histone demethylase JARID1B plays a dual role in cancer. In the present study, we examined published microarray gene expression datasets and found that JARID1B was commonly repressed by Myc oncoproteins and histone deacetylases in cancer cell lines of various organ origins. Chromatin immunoprecipitation assays demonstrated that N-Myc repressed JARID1B expression by direct binding to the Sp1-binding site-enriched region of the JARID1B gene promoter, and cell proliferation assays showed that transcriptional repression of JARID1B reduced neuroblastoma cell proliferation. Our findings suggest that Myc-mediated transcriptional repression of JARID1B counterintuitively inhibits Myc-regulated cell proliferation and potentially tumorigenesis. |
| Enforced expression of the c-myc oncogene inhibits cell differentiation by precluding entry into a distinct predifferentiation state in G0/G1. | A broad base of data has implicated a role for the c-myc proto-oncogene in the control of the cell cycle and cell differentiation. To further define the role of myc in these processes, I examined the effect of enforced myc expression on several events that are thought to be important steps leading to the terminally differentiated state: (i) the ability to arrest growth in G0/G1, (ii) the ability to replicate the genome upon initiation of the differentiation program, and (iii) the ability to lose responsiveness to mitogens and withdraw from the cell cycle. 3T3-L1 preadipocyte cell lines expressing various levels of myc mRNA were established by transfection with a recombinant myc gene under the transcriptional control of the Rous sarcoma virus (RSV) promoter. Cells that expressed high constitutive levels of pRSVmyc mRNA arrested in G0/G1 at densities similar to those of normal cells at confluence. Upon initiation of the differentiation program, such cells traversed the cell cycle with kinetics similar to those of normal cells and subsequently arrested in G0/G1. Thus, enforced expression of myc had no effect on the ability of cells to arrest growth in G0/G1 or to replicate the genome upon initiation of the differentiation program. Cells were then tested for their ability to reenter the cell cycle upon exposure to high concentrations of serum and for their capacity to differentiate. In contrast to normal cells, cells expressing high constitutive levels of myc RNA reentered the cell cycle when challenged with 30% serum and failed to terminally differentiate. The block to differentiation could be reversed by high expression of myc antisense RNA, showing that the induced block was specifically due to enforced expression of pRSVmyc. These findings indicate that 3T3-L1 preadipocytes enter a specific state in G0/G1 after treatment with differentiation inducers, into which cells expressing high constitutive levels of myc RNA are precluded from entering. I propose that myc acts as a molecular switch and directs cells to a pathway that can lead to continued proliferation or to terminal differentiation. |
| Hemopoietic lineage switch: v-raf oncogene converts Emu-myc transgenic B cells into macrophages. | Hemopoietic lineage commitment can be breached by concomitant expression of the c-myc and v-raf oncogenes. Switching to the myeloid lineage occurred frequently when B lineage cells, from either lymphomas or preleukemia bone marrow cells of Emu-myc transgenic mice, were infected with a retrovirus bearing v-raf. Cloned pre-B and B cell lines changed into either mature or immature macrophages as assessed by morphology, adherence, phagocytic activity, surface markers, and lysozyme production, but retained clonotypic immunoglobulin gene rearrangements. Although expression of the Emu-myc transgene was reduced or abolished in the more differentiated lines, the lines remained tumorigenic. The converted lines produced the myeloid growth factor GM-CSF, and most had karyotypic alterations. These results suggest that constitutive myc plus raf expression can provoke genetic reprogramming in lymphocytes. |
| The effects of hydrocortisone on c-fos, c-myc and c-ras oncogene expression in IMR-90 fibroblasts. | The effects of hydrocortisone on oncogene expression in human IMR-90 fibroblasts was analyzed by Northern blotting of total RNA. In synchronized fibroblasts stimulated with serum alone, there were two time periods of increased c-fos expression during the G1 phase of the cell cycle. There was no significant difference between cells treated with serum plus hydrocortisone, and cells treated with serum alone with respect to c-fos expression. Quiescent cells showed no change in c-fos expression during the G1 phase of the cell cycle. Three peaks of c-fos expression occur when cells are treated with hydrocortisone alone, but hydrocortisone in the absence of serum is insufficient to initiate DNA synthesis. Hydrocortisone has no effect on c-myc or c-Ha-ras expression in the presence or absence of serum in synchronized fibroblasts. Therefore, the control of mRNA production of the nuclear oncogenes c-fos and c-myc, and the cytoplasmic oncogene c-ras are independent and hydrocortisone may enhance DNA synthesis by increasing c-fos expression. |
| The N-myc Oncogene: Maximizing its Targets, Regulation, and Therapeutic Potential. | N-myc (MYCN), a member of the Myc family of basic-helix-loop-helix-zipper (bHLHZ) transcription factors, is a central regulator of many vital cellular processes. As such, N-myc is well recognized for its classic oncogenic activity and association with human neuroblastoma. Amplification and overexpression of N-myc has been described in other tumor types, particularly those of neural origin and neuroendocrine tumors. This review outlines N-myc s contribution to normal development and oncogenic progression. In addition, it highlights relevant transcriptional targets and mechanisms of regulation. Finally, the clinical implications of N-Myc as a biomarker and potential as a target using novel therapeutic approaches are discussed. |
| Long-range interaction and correlation between MYC enhancer and oncogenic long noncoding RNA CARLo-5. | The mechanism by which the 8q24 MYC enhancer region, including cancer-associated variant rs6983267, increases cancer risk is unknown due to the lack of protein-coding genes at 8q24.21. Here we report the identification of long noncoding RNAs named cancer-associated region long noncoding RNAs (CARLos) in the 8q24 region. The expression of one of the long noncoding RNAs, CARLo-5, is significantly correlated with the rs6983267 allele associated with increased cancer susceptibility. We also found the MYC enhancer region physically interacts with the active regulatory region of the CARLo-5 promoter, suggesting long-range interaction of MYC enhancer with the CARLo-5 promoter regulates CARLo-5 expression. Finally, we demonstrate that CARLo-5 has a function in cell-cycle regulation and tumor development. Overall, our data provide a key of the mystery of the 8q24 gene desert. |
| miR-494 acts as an anti-oncogene in gastric carcinoma by targeting c-myc. | BACKGROUND: We recently showed that miR-494 was downregulated in gastric carcinoma (GC). The objectives of this study were to determine the role of miR-494 in GC malignancy and to identify its target genes. METHODS: Real-time polymerase chain reaction was employed to quantify the expression level of miR-494 and c-myc in gastric cancer tissues. Bioinformatics was used to predict the downstream target genes of miR-494, which were confirmed by luciferase and RNA immunoprecipitation assays. Cell functional analyses and a xenograft mouse model were used to evaluate the role of miR-494 in malignancy. RESULTS: miR-494 was downregulated in human GC tissues and in GC cells and was negatively correlated with c-myc expression. High level of c-myc or low level of miR-494 correlated with poor prognosis. The miR-494-binding site in the c-myc 3 untranslated region was predicted using TargetScan and was confirmed by the luciferase assay. Additionally, c-myc and miR-494 were enriched in coimmunoprecipitates with tagged Argonaute2 proteins in cells overexpressing miR-494. Furthermore, a miR-494 mimic significantly downregulated endogenous c-myc expression, which may contribute to the delayed G1/S transition, decreased synthesis phase bromodeoxyuridine incorporation, and impaired cell growth and colony formation; on the other hand, treatment with a miR-494 inhibitor displayed the opposite effects. Reduced tumor burden and decreased cell proliferation were observed following the delivery of miR-494 into xenograft mice. CONCLUSION: miR-494 is downregulated in human GC and acts as an anti-oncogene by targeting c-myc. miR-494 plays a role in the pathogenesis of gastric cancer in a recessive fashion. |
| N-myc oncogene RNA expression in neuroblastoma. | tumor specimens from 33 patients with neuroblastoma were assayed for amplification of the N-myc oncogene and RNA expression to determine whether N-myc RNA expression levels correlated with N-myc gene amplification and clinical outcome. N-myc gene amplification was detected in one stage II tumor, one stage IV-S tumor, and seven stage III or IV tumors. In each case, N-myc RNA expression roughly paralleled N-myc gene amplification. However, enhanced N-myc RNA expression was not confined to tumors with N-myc gene amplification: ALL of the early (stage I and II) tumors, five stage IV-S tumors, and 12 advanced (stage III and IV) tumors had levels of N-myc RNA that were elevated up to 50-fold. While N-myc gene amplification correlated with prognosis, there was no such correlation with levels of N-myc RNA expression. The precise role of the N-myc gene in the pathogenesis of neuroblastoma remains unclear. |
| Ha-ras and c-myc oncogene expression interferes with morphological and functional differentiation of mammary epithelial cells in single and double transgenic mice. | We studied the effects of the tissue-specific and lactogenic hormone-dependent expression of the recombinant whey acidic protein (Wap)-ras and Wap-myc oncogenes on the differentiation of the mammary epithelium in transgenic mice. The histological appearance of mammary glands in pregnant, lactating, and postlactational animals and their ability to express milk protein genes were analyzed. Activated Ha-ras expression caused a decrease of milk protein synthesis during the lactation period. The formation of glandular epithelium and the postlactational regression of epithelial cells were not affected. c-myc expression impaired the development of the glandular epithelium, and milk protein synthesis was decreased strongly. Epithelial cell proliferation continued during lactation and postlactationally. Coexpression of both oncogenes in double transgenic mice synergistically affected differentiation and resulted in a high number of neoplastic foci. Palpable tumors were observed only after a latency of 3-4 months. tumor cells utilize the Wap promoter hormone independently, express increased levels of Wap-ras and induce adjacent stromal cells to produce tenascin. |
| Analysis of the structure and expression of the c-myc oncogene in cervical tumor and in cervical tumor-derived cell lines. | The structure of the c-myc oncogene in 17 cervical tumors and patient-matched nontumor tissues from Chinese patients residing in Taiwan was analysed. In contrast to recent reports on Mexican patients, none of the samples showed rearrangements and sequence amplification in the c-myc gene. The discrepancy may be explained by different carcinogenesis mechanisms being in operation in different geographic regions. Although no structural alterations in the c-myc gene were found in seven cervical carcinoma cell lines analysed, Northern blot analysis indicated different levels of c-myc gene expression which may be related to the presence of human papillomavirus (HPV) sequence in the cell and suggests a possible c-myc-hpv interaction in some stages of the transformation process. |
| Small-molecule inhibitors of the Myc oncoprotein. | The c-Myc (Myc) oncoprotein is among the most attractive of cancer targets given that it is de-regulated in the majority of tumors and that its inhibition profoundly affects their growth and/or survival. However, its role as a seldom-mutated transcription factor, its lack of enzymatic activity for which suitable pharmaceutical inhibitors could be crafted and its expression by normal cells have largely been responsible for its being viewed as "undruggable". Work over the past several years, however, has begun to reverse this idea by allowing us to view Myc within the larger context of global gene regulatory control. Thus, Myc and its obligate heterodimeric partner, Max, are integral to the coordinated recruitment and post-translational modification of components of the core transcriptional machinery. Moreover, Myc over-expression re-programs numerous critical cellular functions and alters the cell s susceptibility to their inhibition. This new knowledge has therefore served as a framework upon which to develop new pharmaceutical approaches. These include the continuing development of small molecules which act directly to inhibit the critical Myc-Max interaction, those which act indirectly to prevent Myc-directed post-translational modifications necessary to initiate productive transcription and those which inhibit vital pathways upon which the Myc-transformed cell is particularly reliant. This article is part of a Special Issue entitled: Myc proteins in cell biology and pathology. |
| Posttranscriptional regulation of cellular gene expression by the c-myc oncogene. | The c-myc oncogene has been implicated in the development of many different cancers, yet the mechanism by which the c-myc protein alters cellular growth control has proven elusive. We used a cDNA hybridization difference assay to isolate two genes, mr1 and mr2, that were constitutively expressed (i.e., deregulated) in rodent fibroblast cell lines immortalized by transfection of a viral promoter-linked c-myc gene. Both cDNAs were serum inducible in quiescent G0 fibroblasts, suggesting that they are functionally related to cellular proliferative processes. Although there were significant differences in cytoplasmic mRNA levels between myc-immortalized and control cells, the rates of transcription and mRNA turnover of both genes were similar, suggesting that c-myc regulates mr1 and mr2 expression by some nuclear posttranscriptional mechanism. mr1 was also rapidly (within 2 h) and specifically induced by dexamethasone in BALB/c cell lines expressing a mouse mammary tumor virus long terminal repeat-driven myc gene, under conditions where other growth factor-inducible genes were unaffected. A frameshift mutation in the mouse mammary tumor virus myc gene destroyed the dexamethasone stimulation of mr1, indicating that c-myc protein is required for the effect. As in the myc-immortalized cells, the induction of mr1 by c-myc occurred without detectable changes in mr1 transcription or cytoplasmic mRNA stability, implicating regulation, either direct or indirect, through a nuclear posttranscriptional mechanism. These results provide evidence that c-myc can rapidly modulate cellular gene expression and suggest that c-myc may function in gene regulation at the level of RNA export, splicing, or nuclear RNA turnover. |
| Tissue and age specific expression of the myc proto-oncogene family throughout the life span of the C57BL/6J mouse strain. | The expression of the proto-oncogene myc family (c, L and N) in terms of steady-state mRNA levels was determined in seven different normal non-cancerous tissues throughout the life span (seven different ages) of the C57BL/6J male mouse strain. C-myc oncogene expression was highest in prenatal and newborn ages and then decreased to its lowest levels at about 6 months of age. With further increase of age, a progressive pattern of increase in expression of c-myc was found in brain, liver, skin, and small intestine. However, for kidney, spleen and heart, little or no significant change was evident. Significant differential expression of c-myc was found in most tissues in animals of the same age, with highest expression consistently being found in spleen and liver at ALL ages. For the N-myc and L-myc oncogenes, expression was also highest in prenatal and newborn tissue as compared to the 6-month young adult, but little or no further change was found at older ages. However, substantial tissue-dependent differences in expression were also found, and no expression at ALL was detected at any age for N-myc in liver and for L-myc in heart, small intestine and liver. Taken together, these results indicate that the expression of the proto-oncogenes c-, L- and N-myc is dependent not only on tissue and embryonic development, as previously shown by other workers, but also on age past the young adult stage of life span. The age-dependent increase in expression of c-myc oncogene found in normal-appearing non-cancerous tissues is of particular interest as possibly reflecting tissue alterations related to both the aging process and the age-dependent increase in cancer incidence. |
| Transcriptional activation of the c-myc proto-oncogene in murine keratinocytes enhances the response to epidermal growth factor. | To investigate the relationship between activation of the c-myc proto-oncogene and the controls of cellular growth and differentiation of epidermal cells, a transcriptionally activated c-myc gene (DM-myc) was introduced into the established murine keratinocytes, BALB/MK. Exponential growth rates of myc-transfectants were not significantly different from that of parental BALB/MK cells. C-myc RNA transcripts were not detectable in confluent, mitogen-deprived cultures of parental BALB/MK cells, whereas four out of five clones expressed elevated levels of myc mRNA under these conditions. ALL of the cell lines, however, displayed density-dependent growth arrest in the G0/1 phase of the cell cycle. Maximal stimulation of quiescent BALB/MK cells with epidermal growth factor (EGF) caused a 70- to 100-fold increase of [methyl-3H]-thymidine incorporation into DNA. In the four subclones that expressed the myc gene, the peak thymidine incorporation into DNA was significantly higher than in BALB/MK cells, ranging from 340- to 650-fold control levels. This increased sensitivity to EGF was not due to autocrine mitogenic activity or to a change of EGF binding. Type beta transforming growth factor strongly inhibited the EGF-induced DNA synthesis in BALB/MK cultures as well as in each of the five transfectants (IC50 4-40 pM). Furthermore, both BALB/MK cells and the transfected subclones could be induced to form cornified cell envelopes by increasing the extracellular concentration of calcium. Thus, the constitutive expression of c-myc in BALB/MK appears to affect predominantly the reinitiation of DNA synthesis by EGF. |
| Oncogenic protein MTBP interacts with MYC to promote tumorigenesis. | Despite its involvement in most human cancers, MYC continues to pose a challenge as a readily tractable therapeutic target. Here we identify the MYC transcriptional cofactors TIP48 and TIP49 and MYC as novel binding partners of Mdm2-binding protein (MTBP), a functionally undefined protein that we show is oncogenic and overexpressed in many human cancers. MTBP associated with MYC at promoters and increased MYC-mediated transcription, proliferation, neoplastic transformation, and tumor development. In breast cancer specimens, we determined overexpression of both MYC and MTBP was associated with a reduction in 10-year patient survival compared with MYC overexpression alone. MTBP was also frequently co-amplified with MYC in many human cancers. Mechanistic investigations implicated associations with TIP48/TIP49 as well as MYC in MTBP function in cellular transformation and the growth of human breast cancer cells. Taken together, our findings show MTBP functions with MYC to promote malignancy, identifying this protein as a novel general therapeutic target in human cancer. |
| Novel interaction of the Z-DNA binding domain of human ADAR1 with the oncogenic c-Myc promoter G-quadruplex. | Both G-quadruplex and Z-DNA can be formed in G-rich and repetitive sequences on genome, and their formation and biological functions are controlled by specific proteins. Z-DNA binding proteins, such as human ADAR1, have a highly conserved Z-DNA binding domain having selective affinity to Z-DNA. Here, our study identifies the Z-DNA binding domain of human ADAR1 (hZalphaADAR1) as a novel G-quadruplex binding protein that recognizes c-myc promoter G-quadruplex formed in NHEIII1 region and represses the gene expression. An electrophoretic migration shift assay shows the binding of hZalphaADAR1 to the intramolecular c-myc promoter G-quadruplex-forming DNA oligomer. To corroborate the binding of hZalphaADAR1 to the G-quadruplex, we conducted CD and NMR chemical shift perturbation analyses. CD results indicate that hZalphaADAR1 stabilizes the parallel-stranded conformation of the c-myc G-quadruplex. The NMR chemical shift perturbation data reveal that the G-quadruplex binding region in hZalphaADAR1 was almost identical with the Z-DNA binding region. Finally, promoter assay and Western blot analysis show that hZalphaADAR1 suppresses the c-myc expression promoted by NHEIII1 region containing the G-quadruplex-forming sequence. This finding suggests a novel function of Z-DNA binding protein as a regulator of G-quadruplex-mediated gene expression. |
| Amplification and overexpression of c-myc proto-oncogene correlate with the loss of glucocorticoid dependence in rodent cells transformed by human papillomavirus type 16. | Transformation of baby mouse kidney epithelial cells by human papillomavirus (HPV) type 16 is dependent both upon the cooperating oncogene and on the hormonal conditions after transfection. With v-fos as the oncogene, the transformed cells require glucocorticoid hormone, such as dexamethasone, for proliferation. This requirement is lost on continued passage of cell lines, and the cells become dexamethasone independent. Steroid-independent cell lines are also produced by growth of the HPV16/v-fos cells in 17 beta-estradiol following transfection, but cell lines produced in this manner showed no subsequent requirement for estradiol or dexamethasone. expression of the c-myc proto-oncogene was measured in dexamethasone-dependent and independent cell lines. Dexamethasone-dependent cell lines ALL exhibited low level c-myc expression, but this markedly increased in the cell lines that had become dexamethasone independent as a result of continued in vitro growth. The low level of c-myc expression in some early passage dexamethasone-dependent cell lines appears to be associated with rearrangement of the c-myc locus, whereas late passage dexamethasone-independent cell lines contain amplified c-myc sequences. Dexamethasone-independent cell lines derived by growth in 17 beta-estradiol showed higher levels of c-myc expression, together with higher c-myc copy number, than dexamethasone-dependent lines. Taken together, these studies indicate that the steady-state level of c-myc expression affects the continued requirement of HPV16-transformed cells for dexamethasone. |
| [Advances of MYC oncoprotein in tumorigenesis through metabolism pathway]. | PURPOSE: RMFPNAPYL (RMF), a Wilms tumor gene 1 (WT1)-derived CD8 T-cell epitope presented by HLA-A*02:01, is a validated target for T-cell-based immunotherapy. We previously reported ESK1, a high avidity (Kd < 0.2 nmol/L), fully-human monoclonal antibody (mAb) specific for the WT1 RMF peptide/HLA-A*02:01 complex, which selectively bound and killed WT1(+) and HLA-A*02:01(+) leukemia and solid tumor cell lines. EXPERIMENTAL DESIGN: We engineered a second-generation mAb, ESKM, to have enhanced antibody-dependent cell-mediated cytotoxicity (ADCC) function due to altered Fc glycosylation. ESKM was compared with native ESK1 in binding assays, in vitro ADCC assays, and mesothelioma and leukemia therapeutic models and pharmacokinetic studies in mice. ESKM toxicity was assessed in HLA-A*02:01(+) transgenic mice. RESULTS: ESK antibodies mediated ADCC against hematopoietic and solid tumor cells at concentrations below 1 mug/mL, but ESKM was about 5- to 10-fold more potent in vitro against multiple cancer cell lines. ESKM was more potent in vivo against JMN mesothelioma, and effective against SET2 AML and fresh ALL xenografts. ESKM had a shortened half-life (4.9 days vs. 6.5 days), but an identical biodistribution pattern in C57BL/6J mice. At therapeutic doses of ESKM, there was no difference in half-life or biodistribution in HLA-A*02:01(+) transgenic mice compared with the parent strain. Importantly, therapeutic doses of ESKM in these mice caused no depletion of total WBCs or hematopoetic stem cells, or pathologic tissue damage. CONCLUSIONS: The data provide proof of concept that an Fc-enhanced mAb can improve efficacy against a low-density, tumor-specific, peptide/MHC target, and support further development of this mAb against an important intracellular oncogenic protein. |
| Conversion of androgen receptor signaling from a growth suppressor in normal prostate epithelial cells to an oncogene in prostate cancer cells involves a gain of function in c-Myc regulation. | In normal prostate, androgen-dependent androgen receptor (AR) signaling within prostate stromal cells induces their secretion of paracrine factors, termed "andromedins" which stimulate growth of the epithelial cells. The present studies demonstrate that androgen-dependent andromedin-driven growth stimulation is counter-balanced by androgen-induced AR signaling within normal adult prostate epithelial cells resulting in terminal G0 growth arrest coupled with terminal differentiation into DeltaNp63-negative, PSA-expressing secretory luminal cells. This cell autonomous AR-driven terminal differentiation requires DNA-binding of the AR protein, is associated with decreases in c-Myc m-RNA and protein, are coupled with increases in p21, p27, and SKP-2 protein expression, and does not require functional p53. These changes result in down-regulation of Cyclin D1 protein and RB phosphoryation. shRNA knockdown documents that neither RB, p21, p27 alone or in combination are required for such AR-induced G0 growth arrest. Transgenic expression of a constitutive vector to prevent c-Myc down-regulation overrides AR-mediated growth arrest in normal prostate epithelial cells, which documents that AR-induced c-Myc down-regulation is critical in terminal growth arrest of normal prostate epithelial cells. In contrast, in prostate cancer cells, androgen-induced AR signaling paradoxically up-regulates c-Myc expression and stimulates growth as documented by inhibition of both of these responses following exposure to the AR antagonist, bicalutamide. These data document that AR signaling is converted from a growth suppressor in normal prostate epithelial cells to an oncogene in prostate cancer cells during prostatic carcinogenesis and that this conversion involves a gain of function for regulation of c-Myc expression. |
| Mei-P26 mediates tissue-specific responses to the Brat tumor suppressor and the dMyc proto-oncogene in Drosophila. | TRIM-NHL proteins are a family of translational regulators that control cell growth, proliferation, and differentiation during development. Drosophila Brat and Mei-P26 TRIM-NHL proteins serve as tumor suppressors in stem cell lineages and have been proposed to exert this action, in part, via the repression of the protooncogene dMyc. Here we analyze the role of Brat, Mei-P26, and dMyc in regulating growth in Drosophila imaginal discs. As in stem cell lineages, Brat and Mei-P26 repress dMyc in epithelial cells by acting at the post-transcriptional and protein level, respectively. Analysis of cell and organ size unravel that Mei-P26 mediates tissue-specific responses to Brat and dMyc activities. Loss-of-function of brat and overexpression of dMyc induce overgrowth in stem cell lineages and eventually can participate in tumor formation. In contrast, an increase in Mei-P26 levels inhibits growth of epithelial cells in these two conditions. Upon depletion of Brat, Mei-P26 up-regulation prevents an increase in dMyc protein levels and leads to tissue undergrowth. This mechanism appears to be tissue-specific since Mei-P26 is not upregulated in brain tumors resulting from brat loss-of-function. Driving Mei-P26 expression in these tumors -mimicking the situation in epithelial cells- is sufficient to prevent dMyc accumulation, thus rescuing the overgrowth. Finally, we show that Mei-P26 upregulation mediates dMyc-induced apoptosis and limits dMyc growth potential in epithelial cells. These findings shed light on the tumor suppressor roles of TRIM-NHL proteins and underscore a new mechanism that maintains tissue homeostasis upon dMyc deregulation. |
| PIM inhibitors target CD25-positive AML cells through concomitant suppression of STAT5 activation and degradation of MYC oncogene. | Postchemotherapy relapse presents a major unmet medical need in acute myeloid leukemia (AML), where treatment options are limited. CD25 is a leukemic stem cell marker and a conspicuous prognostic marker for overall/relapse-free survival in AML. Rare occurrence of genetic alterations among PIM family members imposes a substantial hurdle in formulating a compelling patient stratification strategy for the clinical development of selective PIM inhibitors in cancer. Here we show that CD25, a bona fide STAT5 regulated gene, is a mechanistically relevant predictive biomarker for sensitivity to PIM kinase inhibitors. Alone or in combination with tyrosine kinase inhibitors, PIM inhibitors can suppress STAT5 activation and significantly shorten the half-life of MYC to achieve substantial growth inhibition of high CD25-expressing AML cells. Our results highlight the importance of STAT5 and MYC in rendering cancer cells sensitive to PIM inhibitors. Because the presence of a CD25-positive subpopulation in leukemic blasts correlates with poor overall or relapse-free survival, our data suggest that a combination of PIM inhibitors with chemotherapy and tyrosine kinase inhibitors could improve long-term therapeutic outcomes in CD25-positive AML. |
| Transactivation of proto-oncogene c-Myc by hepatitis B virus transactivator MHBs. | C-terminally truncated hepatitis B virus (HBV) middle size surface proteins (MHBst) has been shown to be a transcriptional activator and may be relevant to hepatocarcinogenesis by transactivating gene expression. In the present study, a pcDNA3.1(-)-MHBst167 vector coding for MHBst truncated at amino acid 167 (MHBst167) was constructed and transfected into the HepG2 hepatoma cell line. mRNA and protein expression of MHBst167 in the cells was detected by reverse transcription-polymerase chain reaction (RT-PCR) and western blot analysis. A cDNA library of genes transactivated by the truncated protein in HepG2 cells was made in pGEM-T Easy using suppression subtractive hybridization. The cDNAs were sequenced and analyzed with BLAST searching against the sequences in GenBank. The results showed that certain sequences, such as that of human proto-oncogene c-Myc, may be involved in tumor development. An expression vector pCAT3/c-Myc containing the chloramphenicol acetyltransferase (CAT) gene under the control of a c-Myc promoter was generated, and the transcriptional transactivating effect of MHBst167 on the c-Myc promoter was investigated by RT-PCR and western blotting. MHBst167 was found to upregulate the transcriptional activity of the promoter, as well as transcription and translation of c-Myc. MHBst167 was also shown to transactivate SV40 immediate early promoter, and transcriptionally transactivate the expression of human c-Myc. These findings provide new directions for studying the biological functions of MHBst167, and for a better understanding of the tumor development mechanisms of HBV infection. |
| The c-myc oncogene is regulated independently of differentiation in myeloid cell lines. | Human myeloid leukaemia (U-937 and HL-60) cells when incubated at low cell densities with human recombinant gamma-interferon underwent functional maturation without any loss of proliferative potential relative to uninduced cells. In addition, the proportion of cells in S,G2/M and levels of c-myc oncogene (mRNA and protein) were maintained at the same level as those of untreated control cells. However, cells grown under similar conditions but with retinoic acid matured to the same extent but became growth inhibited with concomitant reductions in the proportion of cells in S,G2/M and levels of c-myc mRNA and protein. These studies indicate firstly that c-myc levels are regulated independently from differentiation in myeloid (non lymphoid) cells, secondly that gamma-interferon can induce differentiation without growth arrest under conditions of low cell density and thirdly emphasise the close association of c-myc expression with proliferative capacity. |
| Sequential bcl-2 and c-myc oncogene rearrangements associated with the clinical transformation of non-Hodgkin s lymphoma. | We report a case of untreated non-Hodgkin s lymphoma with histologic progression over 1 yr from a low-grade, small cleaved follicular center cell lymphoma to a high-grade, small noncleaved follicular center cell lymphoma. Both lymphomas had identical immunoglobulin (Ig) heavy-chain joining gene (JH), kappa light-chain joining gene, and bcl-2 gene rearrangements, indicating the clonal identity of the two tumors. The Ig heavy chain locus on one chromosome 14 was involved in an initial t(14; 18) translocation as shown by comigrating JH and bcl-2 rearrangements. However, the oncogene c-myc was in the germline configuration in the initial lymphoma but had one allele rearranged near the 3 end of exon I in the high-grade tumor; DNA sequence analysis was consistent with a chromosomal breakpoint at that site. The presence of the c-myc rearrangement in the high-grade tumor suggest a role for c-myc in the clonal evolution of the low-grade tumor into a more aggressive lymphoma. The coexistence of both bcl-2 gene and c-myc oncogene rearrangements in the same tumor is unusual, with only a few cases reported. Furthermore, this case is unique in the direct demonstration of the histologic and clinical progression of a human lymphoma associated with the sequential rearrangement of the bcl-2 gene and the c-myc oncogene. |
| Induction of c-fos and c-myc proto-oncogene expression by epidermal growth factor and transforming growth factor alpha is calcium-independent. | Intracellular calcium has been proposed to be an important mediator of signal transduction by various growth factors. We have studied the role of intracellular calcium in the mitogenic stimulation of C3H 10T1/2 mouse fibroblasts by epidermal growth factor and transforming growth factor alpha. We have found that both these peptides can cause a marked, transient increase in intracellular calcium levels. This rise occurs only in the presence of extracellular calcium. However, this calcium transient is not involved in the accumulation of c-fos and c-myc mRNAs which are elicited by these growth factors, since mRNA induction is observed to an equivalent degree in the absence or presence of extracellular calcium. These results demonstrate that although these growth factors cause an increase in intracellular calcium, the calcium second messenger system is not responsible for the induction of c-fos and c-myc mRNAs in C3H 10T1/2 fibroblasts. |
| High expression of the c-myc oncogene renders melanoma cells prone to lysis by natural killer cells. | NK cells kill a wide variety of tumor cells, but usually leave normal cells intact. It was earlier reported that low class I HLA expression can be one of the factors that render target cells relatively susceptible to NK lysis. In this contribution, we show that in human melanomas the class I HLA expression is down-modulated by high expression of transfected c-myc oncogenes. The extent of down-modulation depended on the level of c-myc expression in a dose-dependent way. Taken together, these data suggested to us that one of the results of high c-myc expression could be the induction of a NK susceptible phenotype in melanoma cells. Therefore, we analyzed the effect of c-myc on NK susceptibility. We have found that high expression of transfected c-myc genes indeed converts the melanoma cell lines from poor into good targets for NK cells. IFN-gamma was used to restore the class I HLA expression of the c-myc transfectants, and the resulting cells showed a decreased NK susceptibility. These results suggest the possibility that the c-myc-induced NK susceptibility is mediated by the reduction of class I HLA expression. |
| SIRT1 activation by a c-MYC oncogenic network promotes the maintenance and drug resistance of human FLT3-ITD acute myeloid leukemia stem cells. | The FLT3-ITD mutation is frequently observed in acute myeloid leukemia (AML) and is associated with poor prognosis. In such patients, FLT3 tyrosine kinase inhibitors (TKIs) are only partially effective and do not eliminate the leukemia stem cells (LSCs) that are assumed to be the source of treatment failure. Here, we show that the NAD-dependent SIRT1 deacetylase is selectively overexpressed in primary human FLT3-ITD AML LSCs. This SIRT1 overexpression is related to enhanced expression of the USP22 deubiquitinase induced by c-MYC, leading to reduced SIRT1 ubiquitination and enhanced stability. Inhibition of SIRT1 expression or activity reduced the growth of FLT3-ITD AML LSCs and significantly enhanced TKI-mediated killing of the cells. Therefore, these results identify a c-MYC-related network that enhances SIRT1 protein expression in human FLT3-ITD AML LSCs and contributes to their maintenance. Inhibition of this oncogenic network could be an attractive approach for targeting FLT3-ITD AML LSCs to improve treatment outcomes. |
| Aurora kinase A mediates c-Myc s oncogenic effects in hepatocellular carcinoma. | Dysregulation of c-Myc (Myc) has been shown to contribute to progression of hepatocellular carcinoma, however, the detailed molecular mechanism remains poorly understood. Here, we report that Myc binds to the Aurora kinase A (Aurka) promoter and induces expression of Aurka in HCC cells. Increased expression of Aurka correlates with that of Myc in HCC. Nuclear accumulation of Aurka was confirmed by subcellular protein fractionation and immunoblot experiments in HCC cells. Myc inhibition decreases the nuclear accumulation of Aurka in HCC cells. Also Aurka accumulating in the nucleus up-regulates Myc transcription by binding the Myc promoter containing the highly conserved CCCTCCCCA in the NHE region of the CpG islands. Inhibition of Myc or Aurka diminishes the malignant phenotypes of HCC cells by down-regulating some common target genes. Also Aurka and Myc mediates the effects of each other, at least partially, on proliferation, anchorage-independent soft agar growth, and ATP production. Blocking Aurka in an orthotopic model significantly impairs tumor growth in mice. These results identify a Myc-Aurka feedback loop in which Myc and Aurka regulate expression of each other at the transcriptional level and both play an important role in hepatocarcinogenesis. |
| MicroRNA-451 induces epithelial-mesenchymal transition in docetaxel-resistant lung adenocarcinoma cells by targeting proto-oncogene c-Myc. | Epithelial-mesenchymal transition (EMT) has been reported to play a significant role in tumour metastasis as well as chemoresistance. However, the molecular mechanisms involved in chemotherapy-induced EMT are still unclear. MicroRNA (miRNA) expression and functions have been reported to contribute to phenotypic features of tumour cells. To investigate the roles of miRNAs in chemotherapy-induced EMT, we established two docetaxel-resistant lung adenocarcinoma (LAD) cell models (SPC-A1/DTX and H1299/DTX), which display EMT-like properties and gain increased invasion or migration activity. MiR-451 was found to be significantly downregulated in docetaxel-resistant LAD cells, and re-expression of miR-451 could reverse EMT to mesenchymal-epithelial transition (MET) and inhibit invasion and metastasis of docetaxel-resistant LAD cells both in vitro and in vivo. The proto-oncogene c-Myc was identified as a direct and functional target of miR-451, and further researches confirmed that overexpression of c-Myc which induced extracellular-signal-regulated kinase (ERK)-dependent glycogen synthase kinase-3 beta (GSK-3beta) inactivation and subsequent snail activation is essential for acquisition of EMT phenotype induced by loss of miR-451. Furthermore, c-Myc was significantly upregulated in docetaxel-non-responding LAD tissues in comparison with docetaxel-responding tissues, and its expression was inversely correlated with miR-451 expression. This study first reported the involvement of miR-451/c-Myc/ERK/GSK-3beta signalling axis in the acquisition of EMT phenotype in docetaxel-resistant LAD cells, suggesting that re-expression of miR-451 or targeting c-Myc will be a potential strategy for the treatment of chemoresistant LAD patients. |
| Small molecules targeting c-Myc oncogene: promising anti-cancer therapeutics. | The nuclear transcription factor c-Myc is a member of the Myc gene family with multiple functions and located on band q24.1 of chromosome 8. The c-Myc gene is activated by chromosomal translocation, rearrangement, and amplification. Its encoded protein transduces intracellular signals to the nucleus, resulting in the regulation of cell proliferation, differentiation, and apoptosis, and has the ability to transform cells and bind chromosomal DNA. c-Myc also plays a critical role in malignant transformation. The abnormal over-expression of c-Myc is frequently observed in some tumors, including carcinomas of the breast, colon, and cervix, as well as small-cell lung cancer, osteosarcomas, glioblastomas, and myeloid leukemias, therefore making it a possible target for anticancer therapy. In this minireview, we summarize unique characteristics of c-Myc and therapeutic strategies against cancer using small molecules targeting the oncogene, and discuss the prospects in the development of agents targeting c-Myc, in particular G-quadruplexes formed in c-Myc promoter and c-Myc/Max dimerization. Such information will be of importance for the research and development of c-Myc-targeted drugs. |
| An (8;14)(q24;q11) translocation involving the T-cell receptor alpha-chain gene and the MYC oncogene 3 region in a B-cell lymphoma. | We describe a t(8;14)(q24;q11) involving the T-cell receptor alpha-chain gene (TCRA) and the 3 region of the MYC protooncogene in a B-cell lymphoma. The B-cell origin of this tumor was determined by its histological architecture, by immunophenotypic analysis, and by Southern analysis of immunoglobulin gene rearrangements. An identical fragment encompassing the translocation breakpoint junction was detected through Southern analysis using both a TCRAJ and a MYC probe. The other alleles at the TCRAJ and MYC loci were in the germline configuration. Restriction enzyme and nucleotide sequencing analyses revealed that the breakpoint junction on chromosome 8 lies approximately 700 base pairs (bp) downstream of the 3 end of the third MYC exon; on chromosome 14, the break is located 12.6 kilobases (kb) downstream of the 3 end of the C delta fourth exon. A heptamer-like consensus sequence on chromosome 14 adjacent to the translocation breakpoint implies the involvement of recombinase activity. However, no consensus sequences were found on chromosome 8 within 140 bp in either direction from the breakpoint. It is possible that this translocation involving MYC occurred during an attempt at an inappropriate rearrangement of the TCRA locus in a cell of B-cell lineage. |
| Transiently elevated levels of c-fos and c-myc oncogene messenger ribonucleic acids in cultured murine Leydig tumor cells after addition of human chorionic gonadotropin. | The gonadotropic hormones LH and human CG (hCG) normally function to stimulate steroidogenesis in testicular and ovarian cells through receptor-mediated activation of adenylate cyclase. These hormones are also important in regulating the development and growth of responsive cells. Such regulation requires tightly controlled gene expression. Herein we demonstrate that hCG induces increases in mRNAs encoding the competence oncogenes c-fos and c-myc in a murine Leydig cell tumor line (MA-10). When stimulated by hCG (40 ng/ml), the mRNA levels of both genes increase rapidly, peaking at 30 min for c-fos and 1 h for c-myc. Both mRNAs fall to near control levels by 3-6 h. This response to hCG is dose-dependent with half-maximal stimulation of these genes occurring at a concentration of 3 ng/ml, approximating the level required for 50% occupancy of the LH/hCG receptors and the ED50 for steroidogenesis. (Bu)2 cAMP (2 mM) elicits responses similar to those produced by hCG. The observation of oncogene control by the gonadotropin hCG provides further insight regarding the pathways by which such hormones may regulate steroidogenesis, growth, and differentiation of endocrine and neoplastic cells. |
| ETV6/ARG oncoprotein confers autonomous cell growth by enhancing c-Myc expression via signal transducer and activator of transcription 5 activation in the acute promyelocytic leukemia cell line HT93A. | We investigated the role of ETV6/ARG fusion gene by exposing the HT93A cell line to nilotinib. HT93A cells were cultured with or without nilotinib+/-50 ng/mL of granulocyte colony-stimulating factor (G-CSF). Nilotinib treatment inhibited cell growth by increasing the percentage of cells in G0/G1 phase through the decrease of phosphorylated signal transducer and activator of transcription 3 (STAT3) (Y705), STAT5 (Y694) and c-Myc expression. After stimulation with G-CSF, STAT5 but not STAT3 was significantly phosphorylated in both nilotinib-treated and untreated cells. Moreover, combination therapy with nilotinib and G-CSF returned the expression level of c-Myc, cell growth and cell cycle distribution to the control level. These findings suggest that the ETV6/ARG oncoprotein contributes to autonomous cell growth by compensating for the requirement of growth factor through activating STAT5 signaling, which leads to the up-regulation of c-Myc. Our data suggest that ETV6/ARG oncoprotein is a potential target in the treatment of leukemia. |
| The N-myc proto-oncogene and IGF-II growth factor mRNAs are expressed by distinct cells in human fetal kidney and brain. | We studied the expression of the N-myc proto-oncogene and the insulin-like growth factor-II (IGF-II) gene in human fetuses of 16-19 gestational wk. Both genes have specific roles in the growth and differentiation of embryonic tissues, such as the kidney and neural tissue. Since continued expression of N-myc and IGF-II mRNAs is also a characteristic feature of Wilms tumor, a childhood neoplasm of probable fetal kidney origin, we were particularly interested in the possibility that their expression might be linked or coordinately regulated in the developing kidney. expression of N-myc mRNA was observed in the brain and in the kidney by Northern hybridization analysis. In in situ hybridization of the kidney, N-myc autoradiographic grains were primarily located over epithelially differentiating mesenchyme while most of the mesenchymal stromal cells showed only a background signal with the N-myc probe. N-myc mRNA was detectable throughout the developing brain with a slight accentuation in the intermediate zone cells in between the subependymal and cortical layers. Thus, even postmitotic neuroepithelial cells of the fetal cerebrum expressed N-myc mRNA. In Northern hybridization, IGF-II mRNA signal was abundant in the kidney but much weaker, though definite, in the brain. The regional distribution of IGF-II mRNA in the kidney was largely complementary to that of N-myc. IGF-II autoradiographic grains were located predominantly over the stromal and blastemal cells with a relative lack of hybridization over the epithelial structures. In the brain, IGF-II mRNA was about two- to threefold more abundant in the subependymal and intermediate layers than in the cortical plate and ependymal zone, respectively. The fetal expression patterns of the N-myc and IGF-II mRNAs are reflected by the types of tumors known to express the corresponding genes during postnatal life such as Wilms tumor. However, the apparent coexpression of the IGF-II and N-myc genes in immature kidneys occurs largely in distinct cell types. |
| Search for human papillomavirus, herpes simplex virus and c-myc oncogene in human genital tumors. | We tested grade III cervical intra-epithelial neoplasms (CIN III), genital invasive carcinomas and healthy genital tissues for the presence of a number of viral and cellular parameters, considered to be risk factors in genital oncogenesis. The results show that: (I) about 30% of genital tumors had homology to HSV-2 BglII N and/or BamHI E DNA fragments; (2) positivity to HSV-2-specific protein ICP10, encoded by sequences within the HSV-2 BamHI E DNA fragment, was detected in 29/55 neoplastic genital tissues but not in healthy genital tissues or tumors at other sites; (3) HPV-16 DNA was found in about 50% of tumor samples, but none of the positive tissues reacted to HPV capsid protein or to the protein encoded by the HPV-16 E6 ORF; (4) 6/8 tumor samples showing homology to HSV-2 DNA fragments also hybridized to HPV-16 DNA; (5) c-myc amplification was not detected in any of the analyzed samples, but tissues from 4 patients were positive for c-myc expression. None of the considered factors was present in ALL the analyzed samples; nevertheless, some tissues showed the simultaneous involvement of several parameters, suggesting that a number of risk factors may be involved in different steps of human genital oncogenesis. |
| The long non-coding RNA PCAT-1 promotes prostate cancer cell proliferation through cMyc. | Long non-coding RNAs (lncRNAs) represent an emerging layer of cancer biology, contributing to tumor proliferation, invasion, and metastasis. Here, we describe a role for the oncogenic lncRNA PCAT-1 in prostate cancer proliferation through cMyc. We find that PCAT-1-mediated proliferation is dependent on cMyc protein stabilization, and using expression profiling, we observed that cMyc is required for a subset of PCAT-1-induced expression changes. The PCAT-1-cMyc relationship is mediated through the post-transcriptional activity of the MYC 3 untranslated region, and we characterize a role for PCAT-1 in the disruption of MYC-targeting microRNAs. To further elucidate a role for post-transcriptional regulation, we demonstrate that targeting PCAT-1 with miR-3667-3p, which does not target MYC, is able to reverse the stabilization of cMyc by PCAT-1. This work establishes a basis for the oncogenic role of PCAT-1 in cancer cell proliferation and is the first study to implicate lncRNAs in the regulation of cMyc in prostate cancer. |
| Oncogene-induced liver neoplasia in transgenic mice. | Models of hepatocarcinogenesis were generated by directing the expression of SV40 T-antigens, an oncogenic mutant of c-H-ras, or c-myc to the liver of transgenic mice using the albumin enhancer/promoter. The majority of mice carrying the ras transgene (group A) were born with enlarged livers and atypical hepatic architecture, and these ALL died within several days of birth. The remaining ras transgenic mice (group B) had lower levels of hepatic ras expression, exhibited mild hepatic dysplasia but no liver enlargement, and ALL ultimately died from development of lung tumors. In contrast, the livers of mice expressing T-antigens were relatively normal at birth, by one month displayed marked dysplasia, and by three to seven months developed multiple nodular adenomas and carcinomas. Myc expression caused mild to severe hepatic dysplasia in young mice, and focal hepatic adenomas in some mice over fifteen months of age. Lines of mice expressing ras (group B), T-antigen, or myc were established and crossed with each other to generate dual transgenic mice expressing oncogene pairs. Each combination resulted in accelerated tumor development, suggesting that these oncoproteins can cooperate with one another during multistep hepatic transformation. |
| Oncogenic c-Myc and prothymosin-alpha protect hepatocellular carcinoma cells against sorafenib-induced apoptosis. | Prothymosin alpha (PTMA) is overexpressed in various human tumors, including hepatocellular carcinoma (HCC). The significance of PTMA overexpression and its underlying mechanism remain unclear. We show here that silencing PTMA sensitizes HCC cells to the kinase inhibitor sorafenib. In contrast, ectopic expression of PTMA induces cell resistance to the drug. While inhibitors targeting JNK, ERK or PI3K reduce PTMA expression, only ERK activation is suppressed by sorafenib. In addition, inhibition of ERK produces a dramatic decrease in both endogenous PTMA level and promoter activation. Ectopic expression of active MKK1/2 considerably induces PTMA expression. We also identify a sorafenib-responsive segment lying 1000-1500-bp upstream of the PTMA transcription start site and observe that it is controlled by c-Myc and ERK. mutation in the PTMA promoter at the predicted c-Myc binding site and silencing of c-Myc both abrogate sorafenib s effect on PTMA transcription. We also find that silencing PTMA potentiates Bax translocation to mitochondria in response to sorafenib and this is associated with increased cytochrome c release from mitochondria and enhanced caspase-9 activation. These results indicate that PTMA is positively regulated by the oncoprotein c-Myc and protects HCC cells against sorafenib-induced cell death, thus identifying PTMA as a new target for chemotherapy against HCC. |
| Hypomethylation of the c-myc oncogene in liver cirrhosis and chronic hepatitis. | In order to investigate how chronic liver diseases, including liver cirrhosis and chronic hepatitis, are associate with hepatocarcinogenesis in terms of gene alteration, the methylation states of the c-myc and c-Ki-ras genes were examined in 34 liver tissues from patients with chronic liver disease without hepatocellular carcinoma (HCC), 34 non-tumor liver tissues from patients with HCC, 18 HCC tissues and 31 control liver tissues. The methylation states were analyzed by the Southern hybridization method using the restriction endonuclease isoschizomers MspI and HpaII. The CCGG sites at the second exon of the c-myc gene tended to be more extensively hypomethylated both in chronic liver disease and in non-tumor tissues than in control livers. Whereas the CCGG sites of the c-Ki-ras, and the third exon of the c-myc gene tended to be hypomethylated only in HCC tissues in comparison with other tissue groups. These results suggest that chronic liver disease may be situated between normal liver and HCC based on the state of DNA methylation and associated with the development of HCC through hypomethylation of the c-myc and/or c-Ki-ras gene. |
| Oncogene expression in small-cell lung cancer cell lines and a testicular germ-cell tumor: activation of the N-myc gene and decreased RB mRNA. | N-myc and L-myc proto-oncogenes are expressed in many developing embryonic tissues. In contrast to expression of the closely related c-myc gene, N-myc and L-myc expression is very restricted in adult tissues. We show that small amounts of the L-myc RNA can be detected in normal adult testicular tissue. A high level of N-myc expression from a single-copy N-myc gene was found in a malignant tumor of the testis, histopathologically defined as a seminoma. This tumor also showed a decrease of mRNA from the retinoblastoma gene (RB), which is ubiquitously expressed in ALL normal tissues. Strikingly similar results on elevated expression of the L-myc and N-myc genes and a lack of RB mRNA have been reported in small-cell lung cancer cell lines, and are confirmed in our study. |
| Quantification of the c-myc oncoprotein in human glioblastoma cells and tumor tissue. | The identification of a quantifiable oncoprotein marker in glial cells could lead to its use as an aid in the diagnosis, grading, and treatment of tumours of glial origin. In this study, monoclonal antibodies to the c-myc oncoprotein were used in conjunction with immunofluorescence microscopy, flow cytometry, and immunoblot analysis to quantitate and characterize the expression of this oncoprotein in neoplastic and benign cultured glial cells and brain-tumor tissue. Flow cytometric analysis revealed that the c-myc oncoprotein was highly expressed in neoplastic cell lines and in glioblastoma tumor specimens. In contrast, anti-c-myc oncoprotein staining was not present in a non-neoplastic glial cell line or in a benign brain tissue specimen. Immunoblot analysis revealed two distinct c-myc oncoprotein bands, having molecular weights of 64 and 75 kD. Densitometric determinations of the relative levels of the 64-kD protein were in good agreement with the determinations made by flow cytometry. Flow cytometry was also used to relate the quantity of the c-myc oncoprotein present in the cells to their cell cycle phase. In the malignant cultured cells, the protein underwent an approximate twofold increase as the cells progressed from G1/G0 to G2/M in the cell cycle. The present results suggest that the c-myc oncoprotein may prove to be a useful marker for the proliferation status and/or malignancy of glial cells. |
| Involvement of c-myc oncogene in lymphoma cell lines with no detectable chromosome rearrangement of band 8q24. | Two lymphoma cell lines of B-cell type were established from Japanese patients with diffuse small noncleaved cell lymphoma. Cytogenetic analysis revealed a 14q+ marker chromosome in both cell lines, and a t(8;14)(q24.1;q32.3) seemed most likely to have occurred. The chromosome 8 pair, however, had no abnormalities. Molecular analysis demonstrated c-myc amplification lacking gross rearrangement in one cell line and genetic rearrangement of c-myc at the first intron as well as aberrant sizes of c-myc mRNA in the other cell line. In the latter case, it is possible that a t(8;14)(q24.1;q32.3) was buried in an unrecognized complex translocation. A combination of cytogenetic and molecular studies to determine the precise nature of the 14q32 translocation is discussed. |
| Regulation of c-fgr proto-oncogene expression in Burkitt s lymphoma cells: effect of interferon treatment and relationship to EBV status and c-myc mRNA levels. | The proto-oncogene c-fgr is expressed in transformed human B lymphoid cell lines and has been reported to be induced in cells infected with the Epstein-Barr virus (EBV). We have compared the levels of c-fgr mRNA in several B cell lines and have examined the effects of interferon-induced changes in growth rate of Daudi cells on the concentration of this mRNA. High levels were found in exponentially growing EBV-positive Raji and Daudi cells but the amounts in B95-8 and P3HR-1 cells (also EBV-positive) were lower than in the EBV-negative cell line Ramos. Growth inhibition of Daudi cells by interferon-alpha is preceded by a reduction in c-fgr expression, with a 56% decrease observed within 6 h. The differences in the amounts of c-fgr mRNA in the various cell lines and in control versus interferon-treated cells are similar to the differences in the c-myc mRNA contents of these cells. These results indicate that c-fgr expression bears little relationship to the EBV status of B lymphoid cell lines but may play a role, in conjunction with c-myc expression, in growth regulation by interferons. Other conditions which influence Daudi cell proliferation, such as treatment with a phorbol ester or growth to high cell density, also inhibit c-fgr expression but to a lesser extent than interferon treatment. |
| Constitutive expression of c-myc oncogene confers hormone independence and enhanced growth-factor responsiveness on cells transformed by human papilloma virus type 16. | The effect of constitutive expression of the c-myc oncogene on the biological properties of cells transformed or immortalized by human papilloma virus type 16 (HPV16) was studied. Whereas transfection of HPV16 alone into primary baby mouse kidney (BMK) cells failed to generate any immortalized cell lines unless the tumor promoter phorbol 12-myristate 13-acetate was present, cotransfection of HPV16 with a plasmid that constitutively expresses murine c-myc (pSVc-myc-1) generated numerous rapidly growing colonies of cells. Cell lines transformed by HPV16 and pSVc-myc-1 did not require phorbol ester or steroid hormones for growth and were tumorigenic in syngeneic immunocompetent mice. Transfection of pSVc-myc-1 into established cell lines transformed by HPV16 and the v-fos oncogene increased the growth rate and saturation density of these lines severalfold, allowed growth in low-serum medium, and abolished the requirement of these cell lines for glucocorticoids or progestogens. Transfection of the EJ-ras oncogene into these lines did not significantly affect any of these properties. |
| Marek s disease virus-encoded analog of microRNA-155 activates the oncogene c-Myc by targeting LTBP1 and suppressing the TGF-beta signaling pathway. | Marek s disease virus (MDV) is a representative alpha herpes virus able to induce rapid-onset T-cell lymphoma in its natural host and regarded as an ideal model for the study of virus-induced tumorigenesis. Recent studies have shown that the mdv1-miR-M4-5p, a viral analog of cellular miR-155, is critical for MDVs oncogenicity. However, the precise mechanism whereby it was involved in MD lymphomagenesis remained unknown. We have presently identified the host mRNA targets of mdv1-miR-M4-5 and identified the latent TGF-beta binding protein 1 (LTBP1) as a critical target for it. We found that during MDV infection, down-regulation of LTBP1 expression by mdv1-miR-M4-5p led to a significant decrease of the secretion and activation of TGF-beta1, with suppression of TGF-beta signaling and a significant activation of expression of c-Myc, a well-known oncogene which is critical for virus-induced tumorigenesis. Our findings reveal a novel and important mechanism of how mdv1-miR-M4-5p potentially contributes to MDV-induced tumorigenesis. |
| Molecular cytogenetic analyses of hTERC (3q26) and MYC (8q24) genes amplifications in correlation with oncogenic human papillomavirus infection in Czech patients with cervical intraepithelial neoplasia and cervical carcinomas. | It is known that cervical cancer develop from precancerous intraepithelial neoplasia (CIN) which is characterized by series of genetic abnormalities. The progression of CIN to cervical carcinoma has been associated especially with the genomic integration of oncogenic human papilloma virus (HPV) and gain of the human telomerase RNA gene hTERC (3q26) and MYC (8q24). In this study, cytology specimens of cervical intraepithelial neoplasia and cervical carcinoma from 74 Czech women were analyzed using the triple-color Cervical FISH Probe Kit designed for identification of HPV infected cells and copy number aberration of the hTERC and MYC genes. HPV-positivity exhibited 70% of patients with premalignant lesions (CIN I - CIN III, carcinoma in situ), chromosomal changes were found in 53.3% of cases - MYC amplification had 33.3% of women with CIN I - CIN III and 50% with carcinoma in situ. Amplification of hTERC was detected in 16.7% of patient with CIN I, in 50% with CIN II, in 58.3% with CIN III and in 66.7% with carcinoma in situ. Based on HPV-positivity and the occurrence of chromosomal aberrations, patients were divided into high-, intermediate- and low-risk group. Among women with cervical carcinomas, HPV infection was detected in 90.1% of specimens and chromosomal aberrations were found in 87.5% of samples. Amplification of MYC gene was detected in 25% and hTERC gene in 62.5% of patients. According to the histopathological grade of tumors, MYC gene amplification occurred more frequently in specimens of spinocellular carcinoma than adenocarcinoma (p=0.029). We found no association between the frequency of cytogenetic lesions and the incidence of lymphangiogenesis or lymph node metastases in cervical carcinoma patients. Simultaneous hTERC and MYC genes amplification was significantly more frequent in samples of cervical carcinomas than in premalignant lesions (p=0.008).In a cohort of 26 patients with cervical carcinoma we used oligo-based GGH+SNP microarray technique for the high resolution mapping of copy number changes of hTERC and MYC genes. We found that recurrent gain of genetic material in chromosome 3q26 area carrying hTERC gene of size 43.6 Mb between 3q25.1-3qter and duplication of 3q were the most common genomic identifications of amplified gene. In MYC locus array-CGH profiling identified duplication of 8q and trisomy 8 as frequent genomic changes.Our work confirmed that in cervical carcinoma gains of hTERC and MYC genes are specific genomic changes associated with developing of malignant phenotype. We also showed that in premalignant stages HPV-FISH assay can be used as an effective diagnostic procedure to identify patients carrying highly risking HPV infection and chromosomal aberrations associated with this malignancy. KEYWORDS: cervical cancer, cervical dysplasia, HPV infection, hTERC amplification, MYC amplification, FISH, array-CGH. |
| Acetylation of the c-MYC oncoprotein is required for cooperation with the HTLV-1 p30(II) accessory protein and the induction of oncogenic cellular transformation by p30(II)/c-MYC. | The human T-cell leukemia retrovirus type-1 (HTLV-1) p30(II) protein is a multifunctional latency-maintenance factor that negatively regulates viral gene expression and deregulates host signaling pathways involved in aberrant T-cell growth and proliferation. We have previously demonstrated that p30(II) interacts with the c-MYC oncoprotein and enhances c-MYC-dependent transcriptional and oncogenic functions. However, the molecular and biochemical events that mediate the cooperation between p30(II) and c-MYC remain to be completely understood. Herein we demonstrate that p30(II) induces lysine-acetylation of the c-MYC oncoprotein. Acetylation-defective c-MYC Lys-->Arg substitution mutants are impaired for oncogenic transformation with p30(II) in c-myc(-/-) HO15.19 fibroblasts. Using dual-chromatin-immunoprecipitations (dual-ChIPs), we further demonstrate that p30(II) is present in c-MYC-containing nucleoprotein complexes in HTLV-1-transformed HuT-102 T-lymphocytes. Moreover, p30(II) inhibits apoptosis in proliferating cells expressing c-MYC under conditions of genotoxic stress. These findings suggest that c-MYC-acetylation is required for the cooperation between p30(II)/c-MYC which could promote proviral replication and contribute to HTLV-1-induced carcinogenesis. |
| A strategy for combating melanoma with oncogenic c-Myc inhibitors and targeted nanotherapy. | AIMS: The activity of the transcription factor c-Myc is dependent upon heterodimerization with Max to control target gene transcription. Small-molecule inhibitors of c-Myc-Max have exhibited low potency and poor water solubility and are therefore unsuitable for in vivo application. We hypothesized that a nanomedicine approach incorporating a cryptic c-Myc inhibitor prodrug could be delivered and enzymatically released in order to effectively inhibit melanoma. MATERIALS & METHODS: An Sn-2 lipase-labile Myc inhibitor prodrug was synthesized and included in two alphavbeta3-targeted nanoparticle platforms (20 and 200 nm). The inherent antiproliferate potency was compared with the lipid-free compound using human and mouse melanoma cell lines. RESULTS & CONCLUSION: These data demonstrate for the first time a successful nanodelivery of c-Myc inhibitors and their potential use to prevent melanoma. |
| Effects of interferon-beta on Daudi cells and on small cell lung carcinoma cells which over-express the c-myc oncogene. | The effects of human interferon-beta (IFN-beta) on four lung cancer cell lines, two of which over-express the c-myc oncogene, were compared to Daudi cells which also over-express c-myc. The anti-proliferative effect of IFN-beta on Daudi cells was correlated with a decrease in steady state levels of c-myc mRNA. IFN-beta treatment of a classic small cell lung carcinoma cell line and a non-small cell lung carcinoma cell line which express normal levels of c-myc did not decrease the rate of cell proliferation. IFN-beta, however, was found to have dramatic anti-proliferative effects on the two lung cancer cell lines with c-myc over-expression. The growth inhibitory effects of IFN-beta on the two lung cancer cell lines could not, however, be correlated with decreased amounts of c-myc mRNA. Furthermore, Western blot analysis showed that interferon treatment did not detectably affect the c-myc protein levels in these cells. Therefore, the mechanism by which IFN-beta slowed the growth rates of the two lung cancer cell lines did not appear to directly involve down-regulation of the c-myc oncogene, expressed in amplified amounts, in these cells. |
| Occurrence of human papillomavirus type 16 DNA sequences and c-myc oncogene alterations in uterine-cervix carcinoma. | Using genetic engineering and molecular biology techniques, we have examined sixteen human carcinomas in the uterine-cervix tumors (the most frequent tumor in Mexico, representing 34% of malignant tumors in women), for the presence of Human Papillomavirus type 16 (HPV-16) DNA sequences and possible alterations of the cellular myc (c-myc) proto-oncogene. In this study we have analyzed cervical carcinomas from patient with clinical stage II. We detected in 31% of these samples, the presence of HPV-16 sequences (2-100 copies). In addition, an elevated amplification (up to 80-fold in one tumor) and/or rearrangement of the c-myc oncogene was detected in most tumors (more than 90% of the samples). These results suggest that either c-myc oncogene and/or HPV-16 could play an important role in the development of uterine-cervix carcinoma. |
| Quadruplex forming promoter region of c-myc oncogene as a potential target for a telomerase inhibitory plant alkaloid, chelerythrine. | Guanine rich sequences present in the promoter region of oncogenes could fold into G-quadruplexes and modulate transcription. Equilibrium between folding and unfolding of the quadruplexes in these regions play important role in disease processes. We have studied the effect of a putative anticancer agent chelerythrine on G-rich NHE III1 present in the promoter region of c-myc oncogene. We have demonstrated the ability of chelerythrine, a telomerase inhibitor, to block the hybridization of Pu27 with its complementary strand via folding it into a quadruplex structure. Calorimetry shows that the association of Pu27 with chelerythrine is primarily enthalpy driven with high binding affinity ( approximately 10(5) M(-1)). The association does not lead to any major structural perturbation of Pu27. The resulting 2:1 complex has enhanced stability as compared to free Pu27. Another notable feature is that the presence of molecular crowding agent like ficoll 70 does not change the mode of recognition though the binding affinity decreases. We suggest that the anticancer activity of chelerythrine could be ascribed to its ability to stabilize the quadruplex structure in the c-myc promoter region thereby downregulating its transcription. |
| Mucin1 shifts Smad3 signaling from the tumor-suppressive pSmad3C/p21(WAF1) pathway to the oncogenic pSmad3L/c-Myc pathway by activating JNK in human hepatocellular carcinoma cells. | Mucin1 (MUC1) is a transmembrane glycoprotein that acts as an oncogene in human hepatic tumorigenesis. Hepatocellular carcinoma (HCC) cells often gain advantage by reducing the tumor-suppressive activity of transforming growth factor beta (TGF-beta) together with stimulation of its oncogenic activity as in MUC1 expressing HCC cells; however, molecular mechanisms remain largely unknown. Type I TGF-beta receptor (TbetaRI) and c-Jun NH2-terminal kinase (JNK) differentially phosphorylate Smad3 mediator to create 2 phosphorylated forms: COOH-terminally phosphorylated Smad3 (pSmad3C) and linker-phosphorylated Smad3 (pSmad3L). Here, we report that MUC1 overexpression in HCC cell lines suppresses TbetaRI-mediated pSmad3C signaling which involves growth inhibition by up-regulating p21(WAF1). Instead, MUC1 directly activates JNK to stimulate oncogenic pSmad3L signaling, which fosters cell proliferation by up-regulating c-Myc. Conversely, MUC1 gene silencing in MUC1 expressing HCC cells results in preserved tumor-suppressive function via pSmad3C, while eliminating pSmad3L-mediated oncogenic activity both in vitro and in vivo. In addition, high correlation between MUC1 and pSmad3L/c-Myc but not pSmad3C/p21(WAF1) expression was observed in HCC tissues from patients. Collectively, these results indicate that MUC1 shifts Smad3 signaling from a tumor-suppressive pSmad3C/p21(WAF1) to an oncogenic pSmad3L/c-Myc pathway by directly activating JNK in HCC cells, suggesting that MUC1 is an important target for HCC therapy. |
| Immunohistochemical studies on oncogene products (c-erbB-2, EGFR, c-myc) and estrogen receptor in benign and malignant breast lesions. With special reference to their prognostic significance in carcinoma. | It is a matter of debate whether the amplification of c-erbB-2 oncogene or production of the oncoprotein in breast cancers correlate with the presence of lymph node metastasis and with a poor prognosis. This study was aimed at elucidating the immunohistochemical localization of oncogene products which are related to cell growth, c-erbB-2 product, epidermal growth factor receptor (EGFR), c-myc protein and estrogen receptor (ER), in benign and malignant lesions of the breast. Fresh frozen sections of 25 breast cancers and 11 fibroadenomas from Japanese women were studied by indirect immunoperoxidase method with proper fixation. C-erbB-2 product and EGFR were localized on the cell membrane whereas c-myc protein and ER were observed in the nuclei. Immunohistochemical expression of oncogene products and ER were not only observed in the mammary carcinomas but also in the fibroadenomas. However immunoreactivities of EGFR and ER were more frequently seen in the fibroadenomas (p less than 0.05). In breast cancers, the incidence of immunoreactivity for c-erbB-2 was higher in the cases with lymph node metastasis than cases without nodal metastasis (p less than 0.05) and there was reciprocal correlation between the expressions of EGFR and ER (p less than 0.05). Regarding the size of the primary tumour, there was no statistically significant correlation with the expressions of c-erbB-2, EGFR, c-myc or ER. Histological grade correlated only with the expression of ER (p less than 0.05). |
| Restriction fragment length polymorphism as a genetic marker of the c-myc oncogene in rats. | It is a matter of debate whether the amplification of c-erbB-2 oncogene or production of the oncoprotein in breast cancers correlate with the presence of lymph node metastasis and with a poor prognosis. This study was aimed at elucidating the immunohistochemical localization of oncogene products which are related to cell growth, c-erbB-2 product, epidermal growth factor receptor (EGFR), c-myc protein and estrogen receptor (ER), in benign and malignant lesions of the breast. Fresh frozen sections of 25 breast cancers and 11 fibroadenomas from Japanese women were studied by indirect immunoperoxidase method with proper fixation. C-erbB-2 product and EGFR were localized on the cell membrane whereas c-myc protein and ER were observed in the nuclei. Immunohistochemical expression of oncogene products and ER were not only observed in the mammary carcinomas but also in the fibroadenomas. However immunoreactivities of EGFR and ER were more frequently seen in the fibroadenomas (p less than 0.05). In breast cancers, the incidence of immunoreactivity for c-erbB-2 was higher in the cases with lymph node metastasis than cases without nodal metastasis (p less than 0.05) and there was reciprocal correlation between the expressions of EGFR and ER (p less than 0.05). Regarding the size of the primary tumour, there was no statistically significant correlation with the expressions of c-erbB-2, EGFR, c-myc or ER. Histological grade correlated only with the expression of ER (p less than 0.05). |
| Distribution of the c-myc oncoprotein in normal and neoplastic tissues of the rat colon. | A rat model of 5-azoxymethane induced colon cancer was studied in order to correlate histopathological changes and the differential distribution of the c-myc protein. Weanling Fisher 344 rats were injected with three, one week apart, subcutaneous injections of 5-azoxymethane (AOM) (15 mg kg-1) and the animals were divided into low and high fat diet groups. Nine colon tumors, of varying degrees of malignancy, that developed in the AOM-treated rats, and sections of normal colonic mucosa were examined. A rabbit polyclonal anti-c-myc antibody produced nuclear staining at 1:100 dilution in cryostat frozen sections of the normal rat colonic mucosa and the colon tumors when prepared with a Cryostat Frozen Sectioning Aid (CFSA). The tissue localization of the c-myc antibody staining revealed: (1) in normal mucosa, nuclei of the basal portion of the mucosa; (2) in adenomatous polyps, nuclei at ALL levels of the mucosa; and (3) in a carcinoma in situ, intense staining of glandular epithelial cell nuclei at ALL levels within the tumor. This procedure may provide a sensitive method for detecting abnormal cells in the colonic epithelium that have an altered proliferative capacity. |
| Amplification and expression of a cellular oncogene (c-myc) in human gastric adenocarcinoma cells. | Three of 16 human gastric adenocarcinoma samples, maintained as solid tumors in nude mice, were found to carry amplified c-myc genes. In two samples with a high degree of c-myc DNA amplification (15- to 30-fold), double minute chromosomes were observed in karyotype analysis. The level of c-myc RNA was markedly elevated in a rapidly growing and poorly differentiated tumor, whereas it was only slightly elevated in a slowly growing and more differentiated tumor. |
| Clinical value of N-myc oncogene amplification in 52 patients with neuroblastoma included in recent therapeutic protocols. | Southern blot analysis of neuroblastoma (NB) cell DNA from 52 patients (58 samples) allowed the detection of an N-myc amplification on three of the 13 BM samples and three of 13 tumor samples at diagnosis, on two of 17 tumor samples taken after induction therapy, on three of seven BM samples and two of the five local tumor samples taken after relapse. N-myc was amplified in two of the 15 patients with stage I to III NB and in 10 of the 36 patients with stage IV neuroblastoma over 1 year of age. Conclusions from the analysis are as follows: first tumor samples obtained on previously treated patients are histologically modified and detection of N-myc amplification is not accurate; consequently N-myc amplification must be defined at diagnosis. Surgical biopsies of the primary tumors can, however, be delayed and malignant cells obtained by ultrasound-guided punctures or analyzed on bone marrow samples if they represent more than 50% of the total population. Second, any attempt to define the prognostic value must be performed on a group of patients treated with a new aggressive protocol of chemotherapy; it will require a multiparametric analysis including, in particular, results of an extensive clinical staging at diagnosis and histological criteria. |
| MYC oncogene overexpression drives renal cell carcinoma in a mouse model through glutamine metabolism. | The MYC oncogene is frequently mutated and overexpressed in human renal cell carcinoma (RCC). However, there have been no studies on the causative role of MYC or any other oncogene in the initiation or maintenance of kidney tumorigenesis. Here, we show through a conditional transgenic mouse model that the MYC oncogene, but not the RAS oncogene, initiates and maintains RCC. Desorption electrospray ionization-mass-spectrometric imaging was used to obtain chemical maps of metabolites and lipids in the mouse RCC samples. Gene expression analysis revealed that the mouse tumors mimicked human RCC. The data suggested that MYC-induced RCC up-regulated the glutaminolytic pathway instead of the glycolytic pathway. The pharmacologic inhibition of glutamine metabolism with bis-2-(5-phenylacetamido-1,2,4-thiadiazol-2-yl)ethyl sulfide impeded MYC-mediated RCC tumor progression. Our studies demonstrate that MYC overexpression causes RCC and points to the inhibition of glutamine metabolism as a potential therapeutic approach for the treatment of this disease. |
| BCR/ABL1 and BCR are under the transcriptional control of the MYC oncogene. | BACKGROUND: Chronic Myeloid Leukaemia (CML) is caused by the BCR/ABL1 fusion gene. Both the presence and the levels of BCR/ABL1 expression seem to be critical for CML progression from chronic phase (CP) to blast crisis (BC). After the oncogenic translocation, the BCR/ABL1 gene is under the transcriptional control of BCR promoter but the molecular mechanisms involved in the regulation of oncogene expression are mostly unknown. METHODS: A region of 1443bp of the functional BCR promoter was studied for transcription factor binding sites through in-silico analysis and Chromatin Immunoprecipitation experiments. BCR and BCR/ABL1 expression levels were analysed in CML cell lines after over-expression or silencing of MYC transcription factor. A luciferase reporter assay was used to confirm its activity on BCR promoter. RESULTS: In the present study we demonstrate that MYC and its partner MAX bind to the BCR promoter, leading to up-regulation of BCR and BCR/ABL1 at both transcriptional and protein levels. Accordingly, silencing of MYC expression in various BCR/ABL1 positive cell lines causes significant downregulation of BCR and BCR/ABL1, which consequently leads to decreased proliferation and induction of cell death. CONCLUSIONS: Here we describe a regulatory pathway modulating BCR and BCR/ABL1 expression, showing that the BCR promoter is under the transcriptional control of the MYC/MAX heterodimer. Since MYC is frequently over-expressed in BC, this phenomenon could play a critical role in BCR/ABL1 up-regulation and blast aggressiveness acquired during CML evolution. |
| MicroRNA Replacing Oncogenic Klf4 and c-Myc for Generating iPS Cells via Cationized Pleurotus eryngii Polysaccharide-based Nanotransfection. | Induced pluripotent stem cells (iPSCs), resulting from the forced expression of cocktails out of transcription factors, such as Oct4, Sox2, Klf4, and c-Myc (OSKM), has shown tremendous potential in regenerative medicine. Although rapid progress has been made recently in the generation of iPSCs, the safety and efficiency remain key issues for further application. In this work, microRNA 302-367 was employed to substitute the oncogenic Klf4 and c-Myc in the OSKM combination as a safer strategy for successful iPSCs generation. The negatively charged plasmid mixture (encoding Oct4, Sox2, miR302-367) and the positively charged cationized Pleurotus eryngii polysaccharide (CPEPS) self-assembled into nanosized particles, named as CPEPS-OS-miR nanoparticles, which were applied to human umbilical cord mesenchymal stem cells for iPSCs generation after characterization of the physicochemical properties. The CPEPS-OS-miR nanoparticles possessed spherical shape, ultrasmall particle size, and positive surface charge. Importantly, the combination of plasmids Oct4, Sox2, and miR302-367 could not only minimize genetic modification but also show a more than 50 times higher reprogramming efficiency (0.044%) than any other single or possible double combinations of these factors (Oct4, Sox2, miR302-367). Altogether, the current study offers a simple, safe, and effective self-assembly approach for generating clinically applicable iPSCs. |
| A quantitative, surface plasmon resonance-based approach to evaluating DNA binding by the c-Myc oncoprotein and its disruption by small molecule inhibitors. | The use of small molecules to interfere with protein-protein interactions has tremendous therapeutic appeal and is an area of intense interest. Numerous techniques exist to assess these interactions and their disruption. Many, however, require large amounts of protein, do not allow interactions to be followed in real time, are technically demanding or require large capital expenditures and high levels of expertise. Surface plasmon resonance (SPR) represents a convenient alternative to these techniques with virtually none of their disadvantages. We have devised an SPR-based method that allows the heterodimeric association between the c-Myc (Myc) oncoprotein and its obligate partner Max to be quantified in a manner that agrees well with values obtained by other methods. We have adapted it to examine the ability of previously validated small molecules to interfere with Myc-Max heterodimerization and DNA binding. These inhibitors comprised two distinct classes of molecules that inhibit DNA binding by preventing Myc-Max interaction or distorting pre-formed heterodimers and rendering them incapable of DNA binding. Our studies also point out several potential artifacts and pitfalls to be considered when attempting to employ similar SPR-based methods. This technique should be readily adaptable to the study of other protein-protein interactions and their disruption by small molecules. |
| [CCCTC-binding protein: a new nuclear protein factor which interaction with 5 -flanking sequence of chicken c-myc oncogene correlates with repression of the gene]. | A biologically active provirus of the ts 143 E26 mutant that is temperature-sensitive (ts) for myeloblast transformation was molecularly cloned. The predicted amino-acid sequence of the v-myb-encoded domain of the mutant P135gag-myb-ets protein displayed two single amino-acid changes, one of which was non-conservative when compared to the wild-type E26 v-myb sequence. This mutation, which substitutes a threonine residue (wild-type) for an arginine residue (mutant), is located within the amino-terminal part of v-myb in the DNA-binding domain at a position which is conserved between the c-myb genes of chicken, humans, mice and Drosophila. Introduction of this mutation into the genome of a wild-type E26 virus was sufficient to induce a ts phenotype similar to that obtained with the original ts 143 E26 virus. |
| SIRT3 inhibits prostate cancer by destabilizing oncoprotein c-MYC through regulation of the PI3K/Akt pathway. | SIRT3 is involved in aging-related diseases including cancer, but its role in prostate cancer and detailed regulatory function are not known. We found that SIRT3 was moderately down-regulated in prostate carcinomas. Overexpression of SIRT3 by lentiviral transfection inhibited prostate cancer growth both in vitro and in vivo, whereas knockdown of SIRT3 increased prostate tumor growth. Mechanistically, the tumor suppression effect of SIRT3 was achieved via its inhibition of the PI3K/Akt pathway. Notably, upregulation of SIRT3 suppressed the phosphorylation of Akt, leading to the ubiquitination and degradation of oncoprotein c-MYC; this could be attenuated by constitutive activation of PI3K/Akt signaling. Collectively, our results unveiled SIRT3 s tumor suppressive function and the underlying mechanism in prostate cancer, which might provide therapeutic implications for the disease. |
| Exploration of the selective recognition of the G-quadruplex in the N-myc oncogene by electrospray ionization mass spectrometry. | RATIONALE: The N-myc gene is a member of the MYC family and its amplification is highly correlated with the pathophysiology of cancers. The G-rich sequence, d(AG3CG3AG3AG3A), in the first intron of N-myc can form a G-quadruplex structure. Small molecules binding to it with high affinity and selectivity may provide a potential approach to modulate the expression of the N-myc gene. METHODS: Electrospray ionization (ESI) mass spectrometry was used to analyze the G-quadruplex formation of the d(AG3CG3AG3AG3A) sequence, and to evaluate the binding affinities and selectivities of natural small molecules with the N-myc G-quadruplex. RESULTS: Enniatin B was found to have the highest binding affinity with this G-quadruplex within the 12 small molecules. Moreover, it also showed a biased selectivity toward the N-myc G-quadruplex compared with the other five G-quadruplexes derived from C-myc, Bcl2, Chl1, c-kit promoters and telomere G-rich sequences. CONCLUSIONS: In this study, we found a natural small molecule, enniatin B, which could bind to the G-quadruplex of the d(AG3CG3AG3AG3A) sequence from the first intron of the N-myc gene with high affinity and selectivity, which may lead to a potential modulation of the N-myc gene. |
| A search for bcl1, bcl2, and c-myc oncogene rearrangements in chronic lymphocytic leukemia. | Three cellular or putative oncogenes: c-myc, bcl1, and bcl2 were previously found to be rearranged in some B cell malignancies due to chromosomal translocations. Data concerning the role of such genetic rearrangements in B-CLL are very scanty and limited to few cases in which bcl1 rearrangements were found. We studied DNA samples from 38 cases of B-CLL by Southern blot technique in order to find out the existence and frequency of such events. No bcl1 or bcl2 rearrangements were found in any of the studied cases; thus, involvement of these genes in CLL must be rare. In one patient who had an aggressive and resistant disease, c-myc rearrangement was found. |
| Metabolic targeting of oncogene MYC by selective activation of the proton-coupled monocarboxylate family of transporters. | Deregulation of the MYC oncogene produces Myc protein that regulates multiple aspects of cancer cell metabolism, contributing to the acquisition of building blocks essential for cancer cell growth and proliferation. Therefore, disabling Myc function represents an attractive therapeutic option for cancer treatment. However, pharmacological strategies capable of directly targeting Myc remain elusive. Here, we identified that 3-bromopyruvate (3-BrPA), a drug candidate that primarily inhibits glycolysis, preferentially induced massive cell death in human cancer cells overexpressing the MYC oncogene, in vitro and in vivo, without appreciable effects on those exhibiting low MYC levels. Importantly, pharmacological inhibition of glutamine metabolism synergistically potentiated the synthetic lethal targeting of MYC by 3-BrPA due in part to the metabolic disturbance caused by this combination. Mechanistically, we identified that the proton-coupled monocarboxylate transporter 1 (MCT1) and MCT2, which enable efficient 3-BrPA uptake by cancer cells, were selectively activated by Myc. Two regulatory mechanisms were involved: first, Myc directly activated MCT1 and MCT2 transcription by binding to specific recognition sites of both genes; second, Myc transcriptionally repressed miR29a and miR29c, resulting in enhanced expression of their target protein MCT1. Of note, expressions of MCT1 and MCT2 were each significantly elevated in MYCN-amplified neuroblastomas and C-MYC-overexpressing lymphomas than in tumors without MYC overexpression, correlating with poor prognosis and unfavorable patient survival. These results identify a novel mechanism by which Myc sensitizes cells to metabolic inhibitors and validate 3-BrPA as potential Myc-selective cancer therapeutics.Oncogene advance online publication, 5 October 2015; doi:10.1038/onc.2015.360. |
| Expression of c-myc proto-oncogene in normal human intestinal epithelium. | We studied the expression of the human c-myc proto-oncogene in normal human colon epithelium by both in situ hybridization and immunohistochemistry. c-myc was found to be expressed uniformly throughout the entire thickness of the colon epithelium. The present findings do not support the contention that the c-myc proto-oncogene is primarily expressed in proliferating intestinal epithelial cell compartments. |
| The Metastasis Suppressor, N-MYC Downstream-regulated Gene-1 (NDRG1), Down-regulates the ErbB Family of Receptors to Inhibit Downstream Oncogenic Signaling Pathways. | N-MYC downstream-regulated gene-1 (NDRG1) is a potent growth and metastasis suppressor that acts through its inhibitory effects on a wide variety of cellular signaling pathways, including the TGF-beta pathway, protein kinase B (AKT)/PI3K pathway, RAS, etc. To investigate the hypothesis that its multiple effects could be regulated by a common upstream effector, the role of NDRG1 on the epidermal growth factor receptor (EGFR) and other members of the ErbB family, namely human epidermal growth factor receptor 2 (HER2) and human epidermal growth factor receptor 3 (HER3), was examined. We demonstrate that NDRG1 markedly decreased the expression and activation of EGFR, HER2, and HER3 in response to the epidermal growth factor (EGF) ligand, while also inhibiting formation of the EGFR/HER2 and HER2/HER3 heterodimers. In addition, NDRG1 also decreased activation of the downstream MAPKK in response to EGF. Moreover, novel anti-tumor agents of the di-2-pyridylketone class of thiosemicarbazones, namely di-2-pyridylketone 4,4-dimethyl-3-thiosemicarbazone and di-2-pyridylketone 4-cyclohexyl-4-methyl-3-thiosemicarbazone, which markedly up-regulate NDRG1, were found to inhibit EGFR, HER2, and HER3 expression and phosphorylation in cancer cells. However, the mechanism involved appeared dependent on NDRG1 for di-2-pyridylketone 4,4-dimethyl-3-thiosemicarbazone, but was independent of this metastasis suppressor for di-2-pyridylketone 4-cyclohexyl-4-methyl-3-thiosemicarbazone. This observation demonstrates that small structural changes in thiosemicarbazones result in marked alterations in molecular targeting. Collectively, these results reveal a mechanism for the extensive downstream effects on cellular signaling attributed to NDRG1. Furthermore, this study identifies a novel approach for the treatment of tumors resistant to traditional EGFR inhibitors. |
| Continued withdrawal from the cell cycle and regulation of cellular genes in mouse erythroleukemia cells blocked in differentiation by the c-myc oncogene. | Constitutive expression of the c-myc oncogene blocks dimethyl sulfoxide (DMSO)-induced differentiation of mouse erythroleukemia (MEL) cells. During the first 12 h of treatment with DMSO, MEL cells undergo a temporary decrease in the level of c-myc mRNA, followed by a temporary withdrawal from the cell cycle. We found the same shutoff of DNA synthesis during the first 12 to 30 h after DMSO induction in normal MEL cells (which differentiate) and in c-myc-transfected MEL cells (which do not differentiate). We also examined whether deregulated c-myc expression grossly interfered with the regulation of gene expression during MEL cell differentiation. We used run-on transcription assays to monitor the rate of transcription of four oncogenes (c-myc, c-myb, c-fos, and c-K-ras); ALL except c-K-ras showed a rapid but temporary decrease in transcription after induction in both c-myc-transfected and control cells. Finally, we found the same regulation of cytoplasmic mRNA expression in both types of cells for four oncogenes and three housekeeping genes associated with growth. We conclude that in the MEL cell system, the effects of deregulated c-myc expression do not occur through a disruption of cell cycle control early in induction, nor do they occur through gross deregulation of gene expression. |
| Glucocorticoid effect on oncogene/growth gene expression in human T lymphoblastic leukemic cell line CCRF-CEM. Specific c-myc mRNA suppression by dexamethasone. | Glucocorticoids induce growth inhibition and eventually cause cell lysis in certain sensitive leukemic cells. To investigate how glucocorticoids interact with cell growth pathways, we studied the expression of 14 growth-related genes in dexamethasone-treated CEM-C7A cells, a steroid-sensitive clone of the CCRF-CEM cell line, and in several closely related clones. The 14 genes studied were chosen to represent four different levels of mitogenic signal transduction. Detectable mRNA levels were found for 8 of the 14 genes, but among these only c-myc expression was obviously suppressed by dexamethasone. The c-myc mRNA levels declined abruptly during the first 12 h after addition of 1 microM dexamethasone, and maximal suppression occurred by 18 h. This change was not seen in the C7A controls, in the glucocorticoid-resistant, receptor-deficient clone ICR-27, or in the glucocorticoid-resistant, receptor-positive clone C1. H.10, a hybrid clone between C1 and ICR-27, showed restoration of the sensitive phenotype, and in H.10 cells the c-myc mRNA was also suppressed by dexamethasone. Our results suggest that: 1) functional glucocorticoid receptor is required for inducing c-myc suppression. 2) In dexamethasone-resistant cells with functional receptors c-myc is not suppressed. 3) The growth arrest induced by glucocorticoids correlates with, and may be regulated via, suppression of c-myc expression. |
| Chimaeras of myc oncoprotein and steroid receptors cause hormone-dependent transformation of cells. | The human proto-oncogene myc encodes a nuclear phosphoprotein whose primary biochemical function is still unknown. To facilitate further study of that function, we have created conditional alleles of myc by fusing the hormone-binding domain of the human oestrogen receptor gene to the 5 or the 3 end of human myc. The two chimaeric genes, designated mycer and ermyc, encode proteins that bind oestrogen with high affinity. expression of one of the genes, mycer, transforms a rat fibroblast cell line in a tightly oestrogen-dependent manner. Transformation is dependent on the presence of a functional myc gene in the chimaera and is reversible upon removal of the hormone. The chimaeric genes will be useful tools to study the mechanisms by which Myc affects cellular phenotype. Recently, chimaeras between the adenovirus E1A protein and the hormone binding domain of the rat glucocorticoid receptor were shown to activate transcription in a manner characteristic for E1A, but in a hormone regulated manner. We therefore asked whether the same strategy could be applied to the product of myc. |
| Limitations in the measurement of c-myc oncoprotein and other nuclear antigens by flow cytometry. | Recent developments in cell fixation, quantitative immunocytochemistry, and flow cytometry allow for the quantification of a variety of oncoproteins and other proliferation-associated antigens in both fresh and archival pathology material. These studies provide evidence that the standard tissue deparaffinization/dissociation technique significantly reduces the amount of c-myc oncoprotein remaining for analysis. To examine the factor(s) responsible for this observation, individual variables of the deparaffinization/dissociation technique including type of fixative, pepsin concentration, pepsinization times, pH, and exposure to organic solvents were examined in HeLa-S3 cells. The cells were stained with monoclonal antibodies either to the c-myc oncoprotein or to p105, a prolifera-tion-associated nuclear antigen. Protein-levels were measured on the basis of anti-c-myc or anti-p105 immunofluorescence by flow cytometry and were found not be affected significantly by type of fixative, exposure to organic solvents, acid pH solution, or mechanical disruption. Levels of c-myc oncoprotein were reduced by over 50%, however, when cells were exposed to 0.5% pepsin, whereas p105 was more resilient with only an approximately 7% reduction following the same treatment. Thus, careful examination of aspects of the deparaffinization/dissociation technique appears to be a necessary prerequisite for quantification of specific nuclear proteins from dissociated tissue specimens. |
| Analysis of polyadenylation site usage of the c-myc oncogene. | The c-myc gene contains 2 well conserved polyadenylation (pA) sites. In ALL human and rat cell lines from various differentiation stages and tissue types the amount of mRNA terminating at the second pA site is 6-fold higher than the amount ending at the upstream site. This is not due to a difference in stability of the two mRNA types and therefore must be due to preferential usage of the downstream site. The usage of the pA sites is not altered during growth factor induction of quiescent cells. We have not been able to detect differences in behavior between mRNAs ending at either pA site. Both types of mRNA are induced upon treatment of cells with cycloheximide. Furthermore, we have shown that the poly(A) tail of c-myc mRNA is lost during degradation of the messenger, as was described previously for c-myc mRNA in an in vitro system. The time required for the loss of the poly(A) tail is similar to the half-life of c-myc mRNA. |
| Flow cytometric correlation of the c-myc oncoprotein and cell cycle kinetics of HL60 leukaemia during induced maturation with cytosine arabinoside and dimethylsulphoxide. | The c-myc oncogene codes for a DNA binding protein that functions in a cell cycle-related manner. A useful model for studying the relationship of c-myc expression with cell cycle kinetics is the HL60 cell line. HL60 cells constitutively express high levels of c-myc mRNA; however, the level can be down-regulated as the cells are induced to differentiate. We have developed a flow cytometric assay for correlating c-myc oncoprotein levels with DNA content. C-myc oncoprotein levels were additionally correlated with c-myc mRNA levels as determined by slot blot hybridization. Dimethylsulphoxide (DMSO) and cytosine arabinoside were used to induce granulocytic and monocytic maturation respectively. Treatment of HL60 cells with DMSO leads to an increase in the per cent of cells in G1/G0 and a decrease in mean c-myc mRNA and oncoprotein levels. The cells with G1 DNA content show the greatest decrease in c-myc protein. ARA-c treatment of HL60 cells leads to a slowing and an accumulation of cells in S phase with a moderate decrease in mean mRNA and only a slight decrease in mean c-myc protein levels. These data support the hypothesis that c-myc is involved in the switch from G1 to G0. |
| [Immunohistochemical study of c-myc oncogene product in human brain tumors]. | C-myc oncogene is widely distributed in eukaryotic cells and is supposed to play an important role in the cellular proliferation and differentiation. Enhanced expression of this oncogene is reported in many kind of tumors, which is often associated with increased malignancy. It seems, therefore, important to study the expression of this oncogene in analyzing the cell biologic features of brain tumors. In the present paper we investigated the distribution of this oncogene product in paraffin-embedded tissue of various kind of brain tumors with a monoclonal antibody to synthetic c-myc peptide. The results demonstrated that c-myc product was detectable in most of the astrocytoma lineage. The immunoreaction within the cell nuclei was more intense in grade 3 and grade 4 astrocytomas than in grade 2 tumors. The expression in grade 4 tumors was, however, rather weaker that in grade 3 tumors. In benign, non-glial tumors like meningiomas and neurinomas, the nuclear immunoreaction was usually absent or only weak, although it was enhanced in a case of acoustic and spinal neurinomas associated with von Recklinghausen s disease. |
| c-myc oncogene product expression and prognosis in operable breast cancer. | The 62 kDa protein product of the c-myc oncogene (p62 c-myc) is thought to be involved in the control of normal cellular proliferation and differentiation. We have measured oncoprotein levels using a flow cytometric assay in 141 operable breast cancers and have correlated levels with prognostic variables, patient survival and disease free intervals. High levels of p62 c-myc were associated with well differentiated tumours. There was no correlation with tumour DNA index, lymph node or oestrogen receptor status. C-myc oncoprotein levels were not predictive of patient survival or disease free interval. This relationship of oncoprotein levels with tumour histological grade is in keeping with the suggestion that the c-myc oncogene is important in the control of cellular differentiation. The other findings imply that measurement of c-myc oncoprotein levels does not yield useful prognostic information. |
| [Expression of c-myc oncogene product and its relation to cell cycle in human gastric cancers]. | N-Nitrosocimetidine (NCM) is a derivative of the drug cimetidine, a methylguanidine derivative used in the treatment of peptic ulcer, and is known to be inactive as a complete mouse skin carcinogen, even when given in repeated high doses for a long period. In the current experiment, NCM was tested for its ability to initiate skin tumors on Sencar mice. It was applied at doses of 1 or 0.3 mg, 5 times/week for 6 weeks, followed by the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA), 1 microgram, 2 times/week for 50 weeks. Controls received acetone. The higher NCM dose had significant effects on TPA-promotable tumors, resulting in shortened time to first tumor, increased incidence of ALL tumors (2-fold) and of malignant tumors (4-fold), and greater tumor growth rate (2-fold), compared with the acetone/TPA-treated mice. The mice given the lower NCM dose did not exhibit increased tumor incidence, but their tumors had a significantly higher growth rate (3-fold) than those of the TPA controls. NCM without TPA treatment caused no tumors. Thus, NCM is a definitive, though weak initiator of TPA-promotable tumors. Nine tumors from the NCM-treatment groups were analyzed for activated oncogenes by the NIH 3T3 cell transfection assay. Five were positive and four of these were found by selective oligonucleotide hybridization analysis to have an A to T transversion in the second position of codon 61 of the H-ras oncogene. One of two tumors from the acetone/TPA group also contained transforming DNA and demonstrated this mutation. None of the tumors had a G----A transition mutation at the second position of codon 12 of this oncogene. tumor initiation by NCM may then be associated with the same oncogene mutation reported for mouse skin tumors initiated by other types of carcinogens, although occurrence of the mutated oncogene in TPA controls precludes a definitive conclusion. |
| Normal expression of a rearranged and mutated c-myc oncogene after transfection into fibroblasts. | expression of the c-myc oncogene is deregulated in a variety of malignancies. Rearrangement and mutation of the c-myc locus is a characteristic feature of human Burkitt s lymphoma. Whether deregulation is solely a result of mutation of c-myc or whether it is influenced by the transformed B cell context has not been determined. A translocated and mutated allele of c-myc was stably transfected into fibroblasts. The rearranged allele was expressed indistinguishably from a normal c-myc gene: it had serum-regulated expression, was transcribed with normal promoter preference, and was strongly attenuated. Thus mutations by themselves are insufficient to deregulate c-myc transcription. |
| Proliferation of the human colon carcinoma cell line HT29: autocrine growth and deregulated expression of the c-myc oncogene. | Human colon adenocarcinoma cell (line HT29) are able to proliferate in a defined (serum-free) medium containing no added growth factors; in such conditions, their doubling time is 3 to 4 days (on serum-coated dishes) or 2 to 3 days (on an autologous extracellular matrix) compared with 1 day in the presence of fetal calf serum. In the presence of suramin, a polyanion disrupting the binding of growth factors to their receptors, the incorporation of [3H]thymidine in serum-free cultures is reduced (27.0 +/- 2.9% of control after 3 days of culture), suggesting involvement of autocrine growth factors in the autonomous proliferation of the cells. The expression of the proliferation-related oncogene c-myc was examined during various stages of growth and differentiation of the HT29 cells. The cellular contents of c-myc mRNA were similar in ALL experimental conditions studied: exponential phase; stationary phase; nondifferentiated as well as differentiated cells (by glucose deprivation); and also in serum-free medium containing or not suramin. An approximately 2-fold increase in the level of c-myc mRNA was observed in cells cultured for 3 days in suramin-containing medium and then incubated during 3 h in the absence of suramin (with or without 10% fetal calf serum). Southern blot analysis of the genomic DNA of HT29 cells did not reveal any rearrangement within the region containing the c-myc gene and the flanking sequences (approximately five kilobases upstream and approximately three kilobases downstream). The c-myc locus was weakly amplified (four to six copies per cell). These results indicate that the c-myc gene expression in HT29 cells is deregulated and does not require growth factor stimulation. The deregulation of the c-myc gene may be related to the reduced growth factor requirement of the HT29 cell line. |
| Elevated expression of the c-myc oncoprotein correlates with poor prognosis in head and neck squamous cell carcinoma. | We quantitated c-myc oncoprotein in 44 squamous cell carcinomas of the head and neck using an enzyme-linked immunosorbence assay. The clinicopathological parameters of these patients were followed up for between 3 and 60 months and analysed for any correlations with observed levels of c-myc protein using the Kruskal-Wallis one-way analysis of variance method. Although no statistical correlation was found between different clinicopathological parameters (patient age, sex, TNM staging, number of lymph nodes invaded, extracapsular rupture of the tumour, its histopathological differentiation, or its site), the survival periods of patients with tumours possessing elevated levels of c-myc protein were found to be statistically shorter than those with lower levels of c-myc expression, (P less than 0.02). This indicates that c-myc expression may be an effective prognostic indicator in head and neck cancer. |
| Enhanced transcription of c-myc proto-oncogene in spleen lymphocytes from lupus-prone mice during the growing process. | The expression of c-myc proto-oncogene in spleen lymphocytes has been studied in lupus-prone mice (MRL/Mp-lpr/lpr), an animal model for the human autoimmune disease systemic lupus erythematosus, during the growing process, in comparison to control mice (MRL/Mp-+/+). By Northern blot assay and nuclear run on transcription assay, we demonstrated the enhancement of c-myc proto-oncogene expression in spleen lymphocytes from lupus-prone mice in comparison to control mice and the level of expression of c-myc proto-oncogene increased during the growing process and deterioration of lupus symptoms, such as production of autoantibodies and lymphoproliferation, in this study. |
| Immunocytochemical study of ras and myc proto-oncogene polypeptide expression in the human menstrual cycle. | The human endometrium is a unique and dynamic tissue model system characterized by cyclic processes of cellular proliferation, differentiation, and menstrual desquamation. Both the glandular epithelial and stromal mesenchymal components work in synchronous response to the mitogenetic effect of estradiol and the antimitogenetic effect of progesterone. Mechanisms whereby estradiol and progesterone exert their effects are not completely understood. This study was undertaken to evaluate the expression and localization of the polypeptide products of the ras and myc proto-oncogenes sequentially during the menstrual cycle. Sixteen endometrial biopsy specimens were evaluated. Immunocytochemical quantitation of ras and myc expression was done by use of color image analysis (CoreScan). There was no cyclic variation in the ras polypeptide product, but the expression of myc polypeptide was low in the secretory phase and high in the proliferative phase. |
| N-myc gene expression and oncoprotein characterisation in medulloblastoma. | Although medulloblastoma and neuroblastoma share many common biological, histological and immunological features, the frequency of N-myc amplification differs markedly between the two tumours. In this study, Southern blot analysis revealed that the N-myc gene was not amplified in any of the nine medulloblastoma samples analysed. In contrast, over-expression of the gene was found in six of 11 samples as determined by immunocytochemistry and/or Western blot analysis, using an antiserum raised against a synthetic peptide representing a sequence unique to the N-myc gene product. The specificity of this reagent was demonstrated by studies on a variety of cell lines expressing N-myc and/or c-myc oncoproteins. Of the 12 medulloblastoma samples collected over a two-year period and analysed in the course of this project, a trend towards longer disease-free survival was noted in the patients having low levels of the N-myc protein in their tumour. |
| Amplification of N-myc oncogene in various childhood cancers. | Although medulloblastoma and neuroblastoma share many common biological, histological and immunological features, the frequency of N-myc amplification differs markedly between the two tumours. In this study, Southern blot analysis revealed that the N-myc gene was not amplified in any of the nine medulloblastoma samples analysed. In contrast, over-expression of the gene was found in six of 11 samples as determined by immunocytochemistry and/or Western blot analysis, using an antiserum raised against a synthetic peptide representing a sequence unique to the N-myc gene product. The specificity of this reagent was demonstrated by studies on a variety of cell lines expressing N-myc and/or c-myc oncoproteins. Of the 12 medulloblastoma samples collected over a two-year period and analysed in the course of this project, a trend towards longer disease-free survival was noted in the patients having low levels of the N-myc protein in their tumour. |
| Expression of c-myc oncogene in colorectal polyps as a biological marker for monitoring malignant potential. | The expression of oncogenes (c-myc, c-fos, c-Ki-ras, c-Ha-ras, and p53) was examined by Northern blot analysis using freshly isolated human colorectal and gastric cancers and noncancerous portions as the controls. Remarkably high levels of c-myc expression were found in colorectal cancers (eight of 11), but not in gastric cancers. High levels of c-myc expression were also detected in colorectal polyps and in metastatic liver tumors. In colorectal polyps, the transcript levels significantly correlated with the histologic malignancy and the size. In contrast, neither c-fos nor c-Ki-ras was overexpressed in colorectal and gastric cancers, and transcripts of c-Ha-ras and p53 were not evident in any tissue examined. In light of these observations the c-myc expression may be specifically associated with the evolution of colorectal cancer as well as progression and maintenance stages, hence may prove to be a useful marker to evaluate the malignant potential of colorectal polyps. |
| Hypomethylation of c-myc proto-oncogene of N-nitrosomorpholine--induced rat liver nodules and of H4IIE cells. | The Philadelphia chromosome (t9:22;q34:q11) is found in more than 90% of patients with chronic myelogenous leukemia, in 10 to 20% of patients with acute lymphocytic leukemia, and in 1 to 2% of patients with acute myelogenous leukemia. Alternative chimeric oncogenes are formed by splicing different sets of BCR gene exons on chromosome 22 across the translocation breakpoint to a common set of ABL oncogene sequences on chromosome 9. This results in an 8.7-kilobase mRNA that encodes the P210 BCR-ABL gene product commonly found in patients with chronic myelogenous leukemia or a 7.0-kilobase mRNA that produces the P185 BCR-ABL gene product found in most Philadelphia chromosome-positive patients with acute lymphocytic leukemia. To compare the efficiency of growth stimulation by these two proteins, we derived cDNA clones for each with identical 5 and 3 untranslated regions and expressed them from retrovirus vectors. Matched stocks were compared for potency to transform immature B-lymphoid lineage precursors. The growth-stimulating effects of P185 for this cell type were found to be significantly greater than those of P210. Structural changes in BCR may regulate the effectiveness of the ABL tyrosine kinase function, as monitored by lymphocyte growth response. Changes in mitogenic potency may help to explain the more acute leukemic presentation usually associated with expression of the P185 BCR-ABL oncogene. |
| Establishment of a human malignant meningioma cell line with amplified c-myc oncogene. | A new cell line (KT21-MG1) has been established from a human malignant meningioma transplanted into nude mice. The cultured cells showed epithelial cell-like morphology and were positive immunohistochemically for vimentin as the original tumor. They have been grown continuously in vitro for more than 2 years. The population doubling time was about 24 hours at the 30th passage. The cells are capable of proliferating in soft agar medium and produced tumors in nude mice, the histologies of which were similar to the original patient-derived tumor. Analysis of cellular oncogenes showed that myc and fps were amplified approximately tenfold and threefold, respectively, in this cell line, whereas N-myc, L-myc, N-ras, K-ras, H-ras, abl, erbB2, Blym, src, raf-1, myb, and sis were not changed significantly. The amplification of myc was accompanied by an enhanced expression. Chromosome studies of cultured cells showed the monosomy of chromosome 22 that has been reported to be a specific abnormality in meningiomas. |
| In vivo and in vitro stimulation by antitumor drugs of the topoisomerase II-induced cleavage sites in c-myc proto-oncogene. | Stimulation of topoisomerase II cleavage activity by antitumor drugs with or without DNA intercalative ability has been tested in vivo on the c-myc proto-oncogene. Two human tumor cell lines (N417 and HL60 cells) were treated with mAMSA, OH-9-ellipticine, VM26, and BD-40 (an aza-ellipticine analog), and DNA breaks were mapped in the gene locus by Southern blot hybridization with c-myc probes. Most of the major cleavage sites induced in vivo by drugs in the 5 end of c-myc were also observed in vitro using purified topoisomerase II and a c-myc gene DNA insert. Moreover, they closely mapped to some DNAse I hypersensitive sites, the presence of which reflects gene activity. DNA from drug treated cells probed with a human beta 1 globin pseudogene, and the c-mos proto-oncogene did not reveal topoisomerase II cleavage bands, suggesting that topoisomerase II-mediated drug activity may correlate with gene activity. |
| The role of the oncogene c-myc in sporadic large bowel cancer and familial polyposis coli. | The human myc gene is homologous to the v-myc gene, which was discovered in the avian oncogenic retrovirus MC29. Abnormally high expression of the cellular oncogenes is suspected to be involved in nonviral carcinogenesis. This article reviews the evidence that elevated expression of the human myc gene is involved in sporadic colon carcinoma and familial polyposis coli. The abundance of myc RNA and protein is frequently higher in colorectal cancer than in normal mucosa. The mechanism of this altered expression is obscure because the structure and quantity of myc DNA are very rarely disturbed. The COLO320 cell line is discussed as one unusual example of myc DNA rearrangement and amplification. There is a correlation between tumor-specific elevated myc RNA level and location in the bowel; tumors distal to the transverse colon are more likely to have elevated myc expression. The site distribution of unselected colorectal malignancies with an elevated myc RNA level is similar to the site distribution of familial polyposis coli tumors. With this observation it is suggested that elevated myc RNA may be a marker of a distinct type of colorectal cancer that involves the same genetic events as precede familial polyposis coli cancer. |
| Heart tumors specifically induced in young avian embryos by the v-myc oncogene. | To determine if expression of the v-myc oncogene had any effect during ontogeny, we injected avian myelocytomatosis virus strain MC29 into avian embryos at various stages of development. The injection of MC29 at embryonic day 2 (E2) or 3 (E3) caused, about 10 days later, rhabdomyosarcomas of the heart and, in some cases, skin muscle hypertrophy. When the injection was performed at E4 or E5, the number of heart tumors declined, whereas the number of skin muscle tumors increased significantly. The p110gag-myc protein was found in ALL tumors analyzed. When the virus was injected intravenously into E10 embryos, no tumors appeared during embryonic life, in striking contrast to the results obtained from injections at earlier stages. The monoclonal antibody 13F4, which is specific for the myogenic lineage, bound strongly to tumoral heart tissue, whereas it bound weakly to normal cardiac cells. Comparison of the peaks of tumor incidence in relationship to the timing of injection suggests that the v-myc product could interfere in vivo with an early step of the muscle lineage differentiation program. In addition, we show that the p58c-myc protein, which is supposed to play an important role in the control of cell proliferation, is only faintly detected in the heart of normal E3 embryos, in contrast to limb and tail buds, which readily express detectable levels of p58c-myc. |
| The myc oncogene in avian and mammalian carcinogenesis. | The myc oncogene has been the subject of intense research of late because of its involvement in viral and non-viral carcinogenesis in the avian, murine, feline and human systems. From data obtained in each system it appears that myc, which has been highly conserved through evolution, has a key role in the control of cell proliferation. However, the precise function of this gene remains obscure. This review attempts to summarize data obtained in the various systems in order to compare sometimes conflicting results. |
| Abnormal distribution of c-myc oncogene product in familial adenomatous polyposis. | Monoclonal antibodies raised by synthetic peptide immunisation were used to determine the distribution of the protein product of the c-myc gene by immunocytochemical staining of archival wax embedded material from patients with familial adenomatous polyposis. Polyps from 18 cases of familial adenomatous polyposis, 10 of whom had developed malignant change, and 30 normal control colonic biopsy specimens were examined. A consistent staining pattern was observed in normal mucosa; nuclear staining in the basal proliferative zone; mixed nuclear and cytoplasmic staining in the maturation zone; and cytoplasmic localisation in the surface mature zone. In contrast, the polyps and carcinomata showed a mixed pattern of cytoplasmic and nuclear localisation in the basal proliferative zone with nuclear persistence throughout the crypts to the surface mature zone. This abnormal distribution of the c-myc oncogene product may have a role in the evolution of polyps and their subsequent malignant transformation into familial adenomatous polyposis. |
| Mechanism of activation and biological role of the c-myc oncogene in B-cell lymphomagenesis. | expression of proto-oncogene fos is induced in response to a variety of growth factors and differentiation-specific agents. However, the induction of fos gene expression is not influenced by inhibition of protein synthesis. We, therefore, entertained the notion that expression of the fos gene may be governed by posttranslational modification of cellular transcriptional factors. We report here that transcription of the human c-fos gene is modulated by negatively and positively acting cellular factors. The nuclear protein products of the resident oncogene of the FBJ-murine osteosarcoma virus (v-fos) and its corresponding cellular proto-oncogene (c-fos) are stoichiometrically phosphorylated on serine and threonine residues. The c-fos protein is more highly phosphorylated than the v-fos protein due to the phosphorylation of unique sites tentatively localized to the c-terminal 20 amino acid residues. The protein kinase C agonist, TPA, stimulates phosphorylation of the c-fos, but not the v-fos protein. |
| N-myc oncogene expression in histopathologically unrelated bilateral pediatric renal tumors. | Renal tumors of childhood occasionally exhibit histopathologic and clinical features that preclude accurate diagnosis. Molecular and cell culture techniques may be helpful in better characterizing these cases. This approach was used to examine unusual bilateral renal tumors from a young boy. The left kidney tumor was an undifferentiated neoplasm with light microscopic features suggestive of both Wilms tumor and neuroblastoma, and the right kidney tumor was identified as multilocular cystic nephroma (MLCN). In vitro tissue culture of tumor cells and hybridization experiments with an N-myc oncogene DNA probe contributed to a revised diagnosis of intrarenal neuroblastoma of the left kidney. A cell line established from the left tumor exhibited neurite outgrowth and was positive for neuron-specific enolase and synaptophysin. N-myc was greater than ten-fold amplified in chromosomal DNA from the left kidney tumor. Measurement of N-myc RNA expression enabled distinction between benign and malignant tumor tissue. The detection of N-myc gene amplification predicted a poor prognosis which was confirmed by the patient s subsequent clinical course. |
| Sequence analysis of the MYC oncogene involved in the t(8;14)(q24;q11) chromosome translocation in a human leukemia T-cell line indicates that putative regulatory regions are not altered. | We have cloned the translocation-associated and homologous normal MYC alleles from SKW-3, a leukemia T-cell line with the t(8;14)(q24;q11) translocation, and determined the sequence of the MYC oncogene first exon and flanking 5 putative regulatory regions. S1 nuclease protection experiments utilizing a MYC first exon probe demonstrated transcriptional deregulation of the MYC gene associated with the T-cell receptor alpha locus on the 8q+ chromosome of SKW-3 cells. Nucleotide sequence analysis of the translocation-associated (8q+) MYC allele identified a single base substitution within the upstream flanking region; the homologous nontranslocated allele contained an additional substitution and a two-base deletion. None of the deletions or substitutions localized to putative 5 regulatory regions. The MYC first exon sequence was germ line in both alleles. These results demonstrate that alterations within the putative 5 MYC regulatory regions are not necessarily involved in MYC deregulation in T-cell leukemias, and they show that juxtaposition of the T-cell receptor alpha locus to a germ-line MYC oncogene results in MYC deregulation. |
| Transgenic rabbits with lymphocytic leukemia induced by the c-myc oncogene fused with the immunoglobulin heavy chain enhancer. | Transgenic rabbits with the rabbit c-myc oncogene fused with the rabbit immunoglobulin heavy chain enhancer region (E mu) DNA were developed by microinjecting pronuclei of single cell zygotes with the gene construct and implanting the microinjected eggs into pseudopregnant females. At age 17-20 days, 3 of 21 offspring born to seven females were found to have peripheral blood leukocyte counts of greater than 100,000 per mm3. Histology analyses showed extensive lymphocytic infiltration in the liver and kidney, indicating that these rabbits had a malignant lymphocytic leukemia. Genomic DNA analyses of thymus and peripheral blood lymphocytes revealed that the leukemic rabbits were transgenic and that both immunoglobulin heavy and kappa light chain genes were rearranged in the leukemic cells; thus, the leukemic cells are of B-cell lineage. One to four heavy and light chain gene rearrangements were observed, suggesting that the B-cell tumors were oligoclonal. Stable tissue culture cell lines from the bone marrow and peripheral blood of one of the transgenic rabbits have been developed. The development of B-cell leukemias in rabbits with the E mu-myc transgene contrasts with the development of B-cell lymphomas in mice carrying a similar transgene. The lymphomas in mice develop in adults and are monoclonal in origin. The leukemias in rabbits develop in juveniles, less than 3 weeks after birth, and appear oligoclonal in origin. The leukemias seem to develop in rabbit at a specific stage of development, and we suggest that a normal developmental signal may be involved in the oncogenesis. |
| Expression of c-myc proto-oncogene during the early development of Xenopus laevis. | c-myc proto-oncogene expression in Xenopus laevis oocytes and developing embryos has been investigated. Stage VI oocytes as well as unfertilized eggs contain a high level of Xenopus c-myc mRNA (1-2.5 x 10(7) copies). However, this high level of maternal c-myc mRNA declines gradually during the time of rapid and synchronous cell cleavage and becomes almost undetectable after the mid-blastula transition. The zygotic genes then become activated for the first time, whereupon the amount of newly synthesized c-myc mRNA starts to increase again. The level of c-myc mRNA in the 1 day old embryo (stage 22) is comparable to that of oocyte or unfertilized egg. The finding suggest that c-myc gene products may play an important role during early embryogenesis, especially during the rapid synchronous cell cleavage period and onset of the mid-blastula transition. |
| Novel combination of c-myc, N-myc and N-ras oncogene alteration in brain tumors. | We have examined forty human brain tumors (neoplasias presenting an important incidence in Mexico), for cellular myc (c-myc), N-myc and N-ras proto-oncogene alterations. An elevated amplification and/or rearrangement of the oncogenes was detected in most samples (60% presenting alteration for c-myc, 54% for N-myc, 6% for N-ras and 60% for ras-related genes). The tumors were of different histological types and for some of them we detected either amplification and/or rearrangement of the oncogenes. We describe, for the first time, the alterations of two related genes (c-myc and N-myc) in the same tumor samples; in 64% of the analyzed samples, oncogene alterations were accompanied by enhanced expression of N-myc and ras-related genes. These results suggest an important role for c-myc, N-myc and N-ras oncogenes, in the development and progression of brain tumors. |
| Cooperation between the polyomavirus middle-T-antigen gene and the human c-myc oncogene in a rat thyroid epithelial differentiated cell line: model of in vitro progression. | Two rat thyroid epithelial differentiated cell lines, PC Cl 3 and PC myc, were infected with the polyoma murine leukemia virus (PyMLV) carrying the Middle-T-antigen gene of polyomavirus. After infection, both cell lines acquired the typical markers of neoplastic transformation; however, the PC myc cells showed a greater malignant phenotype. Furthermore, the thyroid differentiated functions were completely suppressed in PC myc cells transformed by PyMLV, whereas they were, at least partially, retained in PC Cl 3 cells transformed by PyMLV, and in particular, thyroglobulin synthesis and secretion were not affected at all. Since no differences in the expression of the middle-T-antigen gene were observed in the two PyMLV-transformed cell lines, the different properties shown by these two infected cell lines must be ascribed to the expression of the c-myc oncogene. |
| Expression of the N-myc oncogene in Wilms tumour and related tissues. | Tissue samples and cell cultures from Wilms tumour matched histologically normal kidney samples and EBV transformed B cells from the same patients, were analysed to detect changes in the structure and expression of the N-myc oncogene. The levels of expression of HLA class I and hypoxanthine guanine phosphoribosyl transferase were also measured in the various RNA preparations. Related tissue samples, from sources including congenital mesoblastic nephroma, paediatric neuroblastoma and a number of foetal tissues were also tested. Northern blot analysis indicated that the levels of N-myc were higher in Wilms tumour tissues (with no parallel increase in gene copy number) compared to ALL other sources of material including foetal kidney. Particularly high levels of expression were observed in a number of the Wilms tumours, several of which produced metastases. In situ hybridization, using [35S]-labelled RNA probes, confirmed that the high levels of N-myc RNA were present in the blastemal elements in the Wilms tumour. ALL the tissue cultures, and tissue samples from other sources, except foetal brain and neuroblastoma, contained uniformly low levels of N-myc RNA. |
| [Viral myc oncogene in the genome of transgenic mice and their progeny]. | The fused gag-v-myc oncogene was microinjected into fertilized mouse eggs, which were then implanted into foster mothers. Approximately 26% of the offsprings from injected eggs carried v-myc sequences. 26 of 32 progeny animals were found to be transgenic and some progeny containing the amplified oncogene (about 40 copies per genome). In one F0 and one F1 mice 1.5-2 months after birth the development of tumors was observed: rhabdomyosarcoma and sebaceous carcinoma. In both the cases the tumors were highly differentiated. Because spontaneous tumors of these types are seldom observed in common lines of mice it seems probable that the tumors observed in this study may be associated with the presence of oncogene v-myc. |
| Different biological effects of c-myc and H-ras oncogene expression in EBV-infected human lymphoblasts. | The v-fms oncogene is capable of producing tumors in vivo and transforming cells in culture; in contrast, the c-fms proto-oncogene is nontransforming. In this report we present the complete nucleotide sequence of a feline c-fms cDNA, the progenitor of the v-fms oncogene. Comparison of this sequence with that of v-fms shows that the proteins encoded by these two genes differ by nine amino acid substitutions and the replacement of 50 C-terminal amino acids present in c-fms by 11 unrelated residues in v-fms. Using chimeric fms genes and site-directed mutagenesis, we have determined that the C-terminal modification present in v-fms is sufficient to generate a partially transforming phenotype, but that mutations at amino acid positions 301 and 374 are required (in addition to the C-terminal modification) to generate a fully transforming fms gene. |
| Control of c-fos and c-myc proto-oncogene induction in rat thyroid cells in culture. | Removal of TSH, insulin, and cortisol from the medium, and decreasing the serum content to 0.2%, abolishes both the proliferate and differentiated state of FRTL-5 rat thyroid cells in culture. In these basal conditions, the individual addition of TSH, insulin, insulin-like growth factor-I (IGF-I), phorbol 12-myristate 13-acetate (TPA), alpha 1-adrenergic agents, or A23187, increase c-myc and/or c-fos proto-oncogene expression. Under the same conditions, only the addition of TSH increased cAMP levels; 8-bromo-cAMP can increase c-myc or c-fos mRNA levels. Pretreatment of cells with phorbol 12,13-dibutyrate, an agent which down regulates the C-kinase, completely inhibits the effect of TPA on proto-oncogene expression but has no affect on the A23187 induced-increase. The sum of these results indicate that at least four separate signal systems independently increase c-myc or c-fos gene expression in FRTL-5 cells cAMP (TSH), C-kinase (TPA), Ca++/phosphoinositide (A23187), and that influenced by insulin/IGF-I. None of the ligands, when individually returned to cells in basal medium (no TSH, insulin, or cortisol and only 0.2% serum), increases cell number; norepinephrine, and A23187 do not increase [3H]thymidine incorporation into DNA under these conditions; and combinations of the ligands can be more than additive in effecting [3H]thymidine incorporation into DNA but are only additive in effecting proto-oncogene expression. Insulin/IGF-I plus TSH or insulin/IGF-I plus norepinephrine can increase both proto-oncogene expression and [3H]thymidine incorporation into DNA to the same extent; however, the former combination can increase cell number whereas the latter cannot. There is therefore no simple correlation between the ability of the above ligands to increase proto-oncogene expression and their ability to increase cell number or induce DNA synthesis. Under conditions where insulin and IGF-I increase proto-oncogene expression but not cell number, they can increase thyroglobulin gene expression. In the presence of TSH, insulin and IGF-I are not additive with each other in their ability to increase thyroglobulin or proto-oncogene gene expression but are additive in their ability to increase cell number. proto-oncogene expression in FRTL-5 rat thyroid cells, as in other cell systems, may thus be related to functional as well as proliferative responses. |
| Amplification of the c-myc oncogene in human plasma-cell leukemia. | We have examined primary leukemia cells from multiple myeloma and plasma-cell leukemia patients for rearrangement, amplification and expression of c-myc oncogene. No rearrangement or detectable amplification of the c-myc could be found in 21 cases of multiple myeloma. In contrast, 2/3 cases of plasma-cell leukemia showed amplification of the oncogene with concomitant higher level of expression. |
| Proteins expressed by the c-myc oncogene in lymphomas of human and avian origin. | We have prepared antisera against synthetic peptides corresponding to the C-terminal region of the avian and human myc oncogene coding sequences. Immunoprecipitates from avian and human cells show two major proteins which, by the criteria of hybrid-selected translation, transfection, and peptide-blocking assays, are the c-myc protein products. These proteins are phosphorylated nuclear proteins which are tightly bound to the nuclear matrix-lamin and which have a short half-life. Analysis of avian and human lymphoma cell lines containing rearranged c-myc alleles show significant changes in the ratio of the two proteins although only the avian lymphomas have increased quantities of c-myc protein. |
| N-myc oncogene amplification in rhabdomyosarcoma at release. | The neu oncogene, which is frequently activated in neuro- and glioblastomas of BDIX rats, was originally identified in the NIH 3T3 focus-forming assay. cDNA clones of the normal and transforming alleles of neu have been isolated. When these clones are inserted into the expression vector pSV2, they direct the synthesis of p185, the neu gene product. The transforming cDNA clone yields foci when transfected onto a NIH 3T3 monolayer, but the normal cDNA does not. The construction of in vitro recombinants between the normal and transforming cDNAs has allowed the determination of the mutation responsible for the activation of the neu proto-oncogene. A single point mutation changes a valine in the transmembrane domain of the predicted protein product insert to a glutamic acid. The DNAs from four independent cell lines containing activated neu oncogenes contain the identical mutation at this position. |
| N-myc oncogene amplification and catecholamine metabolism in children with neuroblastoma. | The MCF-7 human breast cancer cell line responds to estrogen stimulation in vitro by increased secretion of growth factors and proliferation and in vivo by tumor formation in the nude mouse. To test a possible role of growth factor secretion in expression of the tumorigenic phenotype, we stably transfected MCF-7 cells with the v-Ha-ras oncogene to produce the MCF-7ras cell line. The MCF-7ras cell line was tumorigenic in the absence of estrogens and secreted 3- to 5-fold elevated levels of a high molecular weight form of a type alpha transforming growth factor-like growth factor, type beta transforming growth factor, and insulin-like growth factor I. MCF-7ras cells, in contrast to MCF-7, were less sensitive to further growth stimulation by estrogen, type alpha transforming growth factor, and insulin-like growth factor I and showed little change in receptor levels for these hormones. Conditioned medium from MCF-7ras cells as well as two of its component growth factors (insulin-like growth factor I and type alpha transforming growth factor) replaced estrogen in stimulating MCF-7 colony formation in vitro. A coordinate increase in growth factor secretion by human breast cancer may contribute to its escape from estrogen dependence. |
| C-myc proto-oncogene expression and prognosis in early carcinoma of the uterine cervix. | expression of the c-myc gene was studied by northern blot and slot blot hybridisation in 72 specimens of stage I or II squamous cell carcinoma of the uterine cervix. In 25 of the 72 tumours c-myc proto-oncogene was overexpressed (ie, at levels 4-20 times higher than in normal tissues). Patients whose tumours showed c-myc overexpression had an eight-fold greater incidence of early relapse than the other patients (p = 0.001). The 18-month relapse-free survival rates were, respectively, 49% and 90% for these two groups of patients. |
| 1,25-Dihydroxyvitamin D3, the c-myc oncogene, and cell regulation. | A wide variety of human tumors contain an amplified or overexpressed erbB-2 gene, which encodes a growth factor receptor-like protein. When erbB-2 complementary DNA was expressed in NIH/3T3 cells under the control of the SV40 promoter, the gene lacked transforming activity despite expression of detectable levels of the erbB-2 protein. A further five- to tenfold increase in its expression under influence of the long terminal repeat of Moloney murine leukemia virus was associated with activation of erbB-2 as a potent oncogene. The high levels of the erbB-2 product associated with malignant transformation of NIH/3T3 cells were observed in human mammary tumor cells that overexpressed this gene. These findings demonstrate a new mechanism for acquisition of oncogenic properties by genes encoding growth factor receptor-like proteins and provide a functional basis for the role of their overexpression in the development of human malignancies. |
| N-myc oncogene amplification and catecholamine metabolism in patients with neuroblastoma. | A wide variety of human tumors contain an amplified or overexpressed erbB-2 gene, which encodes a growth factor receptor-like protein. When erbB-2 complementary DNA was expressed in NIH/3T3 cells under the control of the SV40 promoter, the gene lacked transforming activity despite expression of detectable levels of the erbB-2 protein. A further five- to tenfold increase in its expression under influence of the long terminal repeat of Moloney murine leukemia virus was associated with activation of erbB-2 as a potent oncogene. The high levels of the erbB-2 product associated with malignant transformation of NIH/3T3 cells were observed in human mammary tumor cells that overexpressed this gene. These findings demonstrate a new mechanism for acquisition of oncogenic properties by genes encoding growth factor receptor-like proteins and provide a functional basis for the role of their overexpression in the development of human malignancies. |
| Amplified allele of the human N-myc oncogene in neuroblastomas. | The N-myc amplification unit was investigated using two restriction fragment length polymorphisms for SphI and PvuII which we previously found to occur in the 2nd intron and in the 3 region of the human N-myc oncogene, respectively. ALL the three haplotypes which are dominant in the Japanese population were observed in the amplified DNA after analyses of a total of 22 DNA samples of fresh neuroblastomas with N-myc amplification. We conclude that only one of the alleles was amplified and that either allele could be amplified with respect to both the SphI and PvuII polymorphisms. |
| Characterization of lymphoid tumors induced by a recombinant murine retrovirus carrying the avian v-myc oncogene. Identification of novel (B-lymphoid) tumors in the thymus. | Lymphoid tumors induced by a recombinant murine retrovirus carrying the v-myc oncogene of avian MC29 virus were characterized. The Moloney murine leukemia virus myc oncogene (M-MuLV (myc], carried by an amphotropic MuLV helper, induced tumors in NIH Swiss and NFS/N mice after a relatively long latency (8 to 24 wk). tumor masses appeared in the thymus, spleen, and lymph nodes. Flow cytometry of the tumor cells indicated that approximately 50% were positive for Thy 1.2. Most of these tumors also expressed one or more other cell surface markers of thymocytes and mature T cells (CD4, CD8). Southern blot hybridization revealed genomic rearrangements for the TCR beta genes. The TCR beta analysis suggested that the M-MuLV(myc)-induced Thy 1.2+ tumors were derived from somewhat less mature cells than tumors induced by M-MuLV, which is a classical non-acute retrovirus lacking an oncogene. The remainder of the M-MuLV(myc)-induced tumors were Thy 1.2-, but they were positive for Ly-5 (B220) and also for MAC-2. The Thy 1.2- tumors were characteristically located in the thymus. However, they were negative for TCR beta gene rearrangements. Some, but not all, of the Thy 1.2- tumors contained rearrangements for Ig genes. Additionally, they typically expressed mRNA specific for B but not for T cells. Thus, these thymic tumors had characteristics of the B cell lineage. tumor transplantation experiments demonstrated that the Thy 1.2- tumor cells could reestablish in the thymus and spleen of irradiated hosts, and low level expression of the Thy 1 molecule was observed in the thymus but not the spleen on the first passage. After serial passage, one Thy 1- tumor altered its cell surface phenotype to Thy 1low B220-. |
| C-myc oncogene product P62c-myc in ovarian mucinous neoplasms: immunohistochemical study correlated with malignancy. | The monoclonal antibody Myc 1-6E10 was used to determine the cellular distribution of the c-myc oncogene product p62c-myc in 60 mucinous ovarian tumours. Three patterns of immunostaining were apparent: (i) nuclear staining alone; (ii) staining of the nucleus and basal cytoplasm; and (iii) staining of the entire cell. Of the 21 cases of mucinous cystadenoma, 11 showed nuclear staining alone, and a further case showed additional weak staining of the basal cytoplasm. Nuclear staining alone was not present in any of the 17 borderline mucinous tumours examined. Strong staining of the nucleus and basal cytoplasm was seen in 16 of these borderline cases, six of which also showed focal staining of the apical cytoplasm. ALL 22 cases of mucinous cystadenocarcinoma showed staining of the cell nucleus and entire cell cytoplasm. Focal staining of the apical cytoplasm in six of 17 borderline mucinous tumours produced a pattern of c-myc immunostaining similar to that of cystadenocarcinoma. Retrospective analysis of the clinical data showed that no significant differences between patients with borderline tumours of these two categories could be defined. Although immunostaining with Myc 1-6E10 can be used in the categorisation of mucinous ovarian tumours, it is concluded that standard histological criteria are more accurate indicators of tumour behaviour than is an assessment of c-myc expression. |
| Colocalization of the myc oncogene protein and small nuclear ribonucleoprotein particles. | The mos oncogene present in Moloney murine sarcoma virus is one of the oldest known oncogenes, yet the identification of its biochemical function both in transformation and as a cellular proto-oncogene has been elusive. Only recently have low levels of c-mos transcripts been detected in a specific group of mouse tissues. The c-mos gene is implicated in tumorigenicity by its activation by the insertion of the intracisternal A particle genome in a mouse plasmacytoma. The murine c-mos gene is capable of oncogenic transformation when placed under the regulatory control of a long terminal repeat. The acquisition of the v-mos gene generated the transformation-competent Moloney murine sarcoma virus and several related strains. Myeloproliferative sarcoma virus is unique among the v-mos containing viruses in its ability to induce splenic foci and myeloproliferation in vivo in addition to the transformation of fibroblasts. The v-mos gene product, termed p37mos, is a cytoplasmic protein recently shown to possess serine kinase activity in immune complexes. Autophosphorylation of the mos gene product is not necessary for its biological activity as exemplified by the protein HT1-MSV which lacks phosphoserine residues. A transcriptional regulatory property has been attributed to the v-mos gene product during infection, which may play an essential role in subsequent transformation. |
| A hemodynamic load in vivo induces cardiac expression of the cellular oncogene, c-myc. | To establish whether a hemodynamic load that causes cardiac hypertrophy in the intact animal might interact with cellular pathways that are thought to transduce growth signals in model systems, we have analyzed expression of the cellular oncogene, c-myc, after a systolic pressure load. Aortic constriction increased c-myc mRNA abundance in both the atria and left ventricle of 28-day rats, but did not activate a second "competence" gene, r-fos, whose expression by cardiac cells ceases upon termination of mitotic growth. In 80-day rats, c-myc was induced in the atria alone. Induction of c-myc by aortic constriction in vivo may correlate with the respective capacity of atrial and ventricular myocytes to replicate DNA during cardiac hypertrophy. Activation of c-myc was not sufficient to account for inhibition of muscle creatine kinase (mck) mRNA, which was decreased only in 28-day rats. |
| The v- and c-myc oncogene proteins colocalize in situ with small nuclear ribonucleoprotein particles. | The intranuclear distribution of the v-myc and c-myc oncogene proteins were studied by immunofluorescence and immunoelectron microscopy. The nuclear distribution pattern of these proteins is shown to be identical to the distribution of small nuclear ribonucleoprotein particles (snRNPs). Colocalization was observed in cells expressing either the v- or c-myc proteins or in cells microinjected with the recombinant human c-myc protein. Immunolocalization studies revealed the v-myc protein and snRNPs to be concentrated within a nuclear network which excludes the nucleolus, nuclear pore-lamina complex, and portions of the nucleoplasm which contain the bulk of DNA. These results identify a nuclear region enriched in the myc-oncogene protein and snRNPs and raise the possibility that these nuclear constituents may function in related processes. |
| [Nucleic acid hybridization analysis of the regulatory effect of the cytoplasmic factor on the malignancy of myeloma cells. II. Expression of the myc oncogene in homo- and hetero-cellular hybridization]. | The intranuclear distribution of the v-myc and c-myc oncogene proteins were studied by immunofluorescence and immunoelectron microscopy. The nuclear distribution pattern of these proteins is shown to be identical to the distribution of small nuclear ribonucleoprotein particles (snRNPs). Colocalization was observed in cells expressing either the v- or c-myc proteins or in cells microinjected with the recombinant human c-myc protein. Immunolocalization studies revealed the v-myc protein and snRNPs to be concentrated within a nuclear network which excludes the nucleolus, nuclear pore-lamina complex, and portions of the nucleoplasm which contain the bulk of DNA. These results identify a nuclear region enriched in the myc-oncogene protein and snRNPs and raise the possibility that these nuclear constituents may function in related processes. |
| [Activation of cellular N-myc oncogene in neuroblastoma]. | A human CSF-1 receptor containing an "activating" mutation in its extracellular domain (serine for leucine 301) induced morphologic transformation, anchorage-independent growth, and tumorigenicity in mouse NIH 3T3 cells. A second regulatory mutation within the receptor s intracytoplasmic carboxy-terminal tail (phenylalanine for tyrosine 969) augmented transforming efficiency but was itself insufficient to induce transformation. Like the v-fms oncogene product, receptors bearing the activating mutation retained high-affinity binding sites for CSF-1 but were retarded in transport to the cell surface and were phosphorylated on tyrosine in the absence of ligand. Although the activating mutation does not affect the CSF-1 binding site in the receptor extracellular domain, it must induce a conformational change that mimics the effect of ligand binding, resulting in CSF-1-independent signals for cell growth. |
| Expression of c-myc proto-oncogene in hearts and cultured smooth muscle cells of spontaneously hypertensive rats. | We studied the expression of c-myc proto-oncogene in hearts and cultured aortic smooth muscle cells of spontaneously hypertensive rats (SHR) and Wistar-Kyoto rats (WKY), in order to investigate the association of the c-myc gene with cardiac hypertrophy and atherosclerosis in SHR. Transcription of the c-myc gene in hearts of SHR was higher than that of WKY at 10 weeks of age, when cardiac hypertrophy had developed in SHR. The c-myc gene expression in cultured aortic smooth muscle cells of SHR, after the addition of serum to the serum-deprived cultures, was higher than that of WKY. These results suggest that the enhanced expression of the c-myc gene in the hearts and cultured aortic smooth muscle cells of SHR may be associated with the growth control of these cells, and may play a role in the development of cardiac hypertrophy and atherosclerotic lesions in SHR. |
| Transposition of the immunoglobulin heavy chain enhancer to the myc oncogene in a murine plasmacytoma. | A novel mechanism of oncogene activation by transposition of a tissue-specific cellular enhancer is described. A rearranged c-myc oncogene was cloned from murine plasmacytoma ABPC17 in the expectation that it would reflect the t(6;15) chromosome translocation carried by this tumor. The rearrangement instead reflects an insertion 361 bp 5 to the c-myc gene on chromosome 15. The insert conveys a 2.3 kb segment of the immunoglobulin heavy (H) chain locus from chromosome 12. Since the insertion introduces the lymphoid-specific enhancer from the JH-Smu region and also disrupts a region implicated in normal c-myc control, it may account for the c-myc transcription observed in ABPC17. The structure of the transposed segment and a corresponding deletion in the JH-Smu region suggests that the transposition reflects a complex recombination between chromosomes 15 and 12. Since the t(6;15) breakpoint is not near c-myc, chromosome 15 must have undergone an independent exchange with chromosome 6. |
| "Retroposon" insertion into the cellular oncogene c-myc in canine transmissible venereal tumor. | We examined by Southern blotting the state of the cellular oncogene c-myc in the dog transmissible venereal tumor. The tumor DNA contains a 16.8-kilobase pair (kbp) rearranged c-myc fragment in addition to the normal 15-kbp and 7.5-kbp fragments. We compared the structure of the cloned rearranged c-myc (re-myc) with that of a cloned normal c-myc and found that the rearrangement was due to the insertion of a 1.8-kbp DNA upstream to the first exon of c-myc. The inserted DNA is flanked by 10-base-pair direct repeats and contains a dA-rich tail, suggesting its origin from mRNA. Partial sequence of the inserted element showed 62% homology with the primate interdispersed Kpn I repetitive element. These results provide an example for the behavior of repetitive DNA sequences like the Kpn I family, as movable elements that can transpose nearby to oncogenes or other structural genes and perhaps affect their activity. |
| Amplification of the c-myc oncogene in a subpopulation of human small cell lung cancer. | We have examined a panel of human lung cancer cell lines for amplification and expression of the c-myc, N-myc, and c-myb oncogenes. The cell lines analyzed represent various histopathological types of lung cancer: small cell carcinoma with neuroendocrine properties; squamous cell carcinoma with epithelial markers; and large cell carcinoma with a mixed neuroendocrine-epithelial phenotype. Two of six cell lines, both of which were small cell carcinomas, showed about a 20-fold amplification of the c-myc oncogene. In both cell lines, the amplification is accompanied by an enhanced expression of c-myc. The N-myc or c-myb genes were not amplified in any of the cell lines, nor were they expressed in detectable amounts. The results confirm and extend earlier findings on c-myc amplification in small cell lung cancer. |
| Molecular cloning of proviral DNA and structural analysis of the transduced myc oncogene of avian oncovirus CMII. | Molecularly cloned proviral DNA of avian oncogenic retrovirus CMII was isolated by screening a genomic library of a CMII-transformed quail cell line with a myc-specific probe. On a 10.4-kilobase EcoRI fragment, the cloned DNA contained 4.4 kilobases of CMII proviral sequences extending from the 5 long terminal repeat to the EcoRI site within the partial (delta) complement of the env gene. The gene order of CMII proviral DNA is 5 -delta gag-v-myc-delta pol-delta env-3 . ALL three structural genes are partially deleted: the gag gene at the 3 end, the env gene at the 5 end, and the pol gene at both ends. The delta gag (0.83 kilobases)-v-myc (1.50 kilobases) sequences encode the p90gag-myc transforming protein of CMII. In comparison with the p110gag-myc protein of acute leukemia virus MC29, p90gag-myc lacks amino acids corresponding to additional 516 bases of gag sequences and 12 bases of 5 v-myc sequences present in the MC29 genome. Nucleotide sequence analysis of CMII proviral DNA at the delta gag-v-myc and the v-myc-delta pol junctions revealed significant homologies between avian retroviral structural genes and the cellular oncogene c-myc precisely at the positions corresponding to the gene junctions in CMII. Furthermore, the delta gag-v-myc junction in CMII corresponds to sequence elements in gag and C-myc that are possible splicing signals. The data suggest that transduction of cellular oncogenes may involve RNA splicing and recombination with homologous sequences on retroviral vectors. Different sequence elements of both the retroviral vectors and the c-myc gene recombined during genesis of highly oncogenic retroviruses CMII, MC29, or MH2. |
| Activation of the c-myc oncogene by the immunoglobulin heavy-chain gene enhancer after multiple switch region-mediated chromosome rearrangements in a murine plasmacytoma. | Presented is a detailed molecular analysis of the rearranged c-myc oncogene from ABPC45, an unusual plasmacytoma that was originally classified as translocation-negative. Previous data obtained by high-resolution chromosome banding suggested that this tumor was a member of a small group distinguished by the absence of rcpt (12;15) or (6;15) and further characterized by a band deletion near the c-myc locus on chromosome 15. However, genomic Southern blotting and analysis of the cloned oncogene in the present study reveal that (i) chromosome 12 sequences lie 365 base pairs 5 of the rearranged c-myc; (ii) this DNA consists of immunoglobulin alpha switch region and 5 immunoglobulin mu switch region sequences that are rearranged in an aberrant fashion; and (iii) the immunoglobulin heavy-chain gene enhancer element now resides approximately 2.5 kilobase pairs 5 of c-myc. We infer from these and other data that the rearrangement of c-myc in ABPC45 occurred via a multistep switch region-mediated process and that a reciprocal translocation has indeed taken place. Unlike many other plasmacytomas, this event did not interrupt the normal c-myc transcription unit. Rather, disruption of gene regulation is manifested in part by a change in relative usage of the two promoters normally used by the unrearranged gene. In contrast to several of its counterparts in Burkitt lymphomas, DNA sequence analysis of the translocated c-myc gene of ABPC45 reveals that it has not acquired point mutations in the noncoding first exon. These results strongly imply that a cis-acting regulatory element normally located 5 of exon 1 is lost and that heavy-chain constant region or enhancer sequences exert similar cis effects on translocated c-myc loci. |
| Chromatin structure of the human c-myc oncogene: definition of regulatory regions and changes in Burkitt s lymphomas. | The feline c-fes proto-oncogene, different parts of which were captured in feline leukemia virus (FeLV) to generate the transforming genes (v-fes) of the Gardner-Arnstein (GA) strain of feline sarcoma virus (FeSV) and the Snyder-Theilen strain (ST) of FeSV, was cloned and its genetic organization determined. Southern blot analysis revealed that the c-fes genetic sequences were distributed discontinuously and colinearly with the v-fes transforming gene over a DNA region of around 12.0 kb. Using cloned c-fes sequences, complementation of GA-FeSV transforming activity was studied. Upon replacement of the 3 half of v-fesGA with homologous feline c-fes sequences and transfection of the chimeric gene, morphological transformation was observed. Immunoprecipitation analysis of these transformed cells revealed expression of high Mr fusion proteins. Phosphorylation of these proteins was observed in an in vitro protein kinase assay, and tyrosine residues appeared to be involved as acceptor amino acid. |
| Sequences in human cytomegalovirus which hybridize with the avian retrovirus oncogene v-myc are G + C rich and do not hybridize with the human c-myc gene. | The degree of relatedness between previously identified cross-hybridizing regions within human cytomegalovirus strain AD169 and the avian retrovirus oncogene v-myc were investigated by nucleotide sequence comparison. We found that the homologous regions between the human cytomegalovirus genome and v-myc are limited to short G + C-rich regions in each genome and that the human cytomegalovirus genome shares little or no homology with the human c-myc gene. |
| [Rearrangement of the proto-oncogene c-myc in fresh cells from Burkitt s leukemia (L3)]. | The presence of a rearrangement of the proto-oncogene c-myc was investigated in the DNA of fresh cells isolated from the blood of two patients with Burkitt s leukemia (L3), and from the node biopsy of a patient with Burkitt s lymphoma. Both samples from the L3 leukemia patients had the characteristic t(8;14) translocation, while the lymphoma specimen presented no abnormality of chromosome 8. Only one of the leukemic DNA s presented a rearranged c-myc pattern, with the breakpoint region located between the first and the second exon. The c-myc pattern of the two other patients appeared normal. The finding of a rearranged c-myc oncogene in fresh cells from a Burkitt s leukemia is direct evidence for the implication of c-myc in the disease whereas most of the rearrangements previously described have been found in cell lines established in culture. |
| TSH and cAMP enhance expression of the myc proto-oncogene in cultured thyroid cells. | The effect of TSH stimulation on cellular (c)-myc mRNA content in cultured thyroid cells was examined by Northern blot analysis. Polyadenylated mRNA was prepared from quiescent FRTL-5 rat thyroid cells and from cells stimulated by TSH for 8 h. A major 2.1 kilobase (kb) transcript was enhanced 5.5-fold by TSH. (Bu)2cAMP and forskolin each enhanced c-myc expression 2.7-fold. These data indicate that TSH, via cAMP as a second messenger, can regulate expression of a cellular oncogene in a non-neoplastic, specific target cell. |
| Amplification and altered expression of the c-myc oncogene in A-MuLV-transformed fibroblasts. | Chromosomal rearrangements involving the c-myc oncogene are a prevalent feature of plasmacytomas that arise after inoculating BALB/c mice with pristane and Abelson murine leukaemia virus (A-MuLV). With this observation in mind, we decided to determine if any genetic alterations of the c-myc locus could be observed in cells of a different type, when transformed in vitro by A-MuLV. Here we have analysed three independent A-MuLV-transformed NIH 3T3 lines (ANN-I, 54c12 and N25), and found that the c-myc locus is amplified 8-19-fold in each transformant. Quantitative S1 nuclease mapping performed on ANN-I and 54c12 RNAs demonstrated that: (1) c-myc messenger RNAs accumulated to double the levels found in NIH 3T3 cells; and (2) a shift in the use of the two normal c-myc transcription initiation sites (P1 and P2) occurred in favour of the 3 site, P2. Analysis of c-myc chromatin by DNase I treatment of 54c12 nuclei revealed that most, if not all, of the c-myc gene copies were transcriptionally competent. We present alternative ideas to explain why amplification of the c-myc gene occurs repeatedly in A-MuLV-transformed fibroblasts. Finally, we discuss our results in relation to the hypothesis linking the phenomenon of tumour progression with the amplification of oncogenes. |
| Vitamin D hormone regulates myc-oncogene expression in tissue culture. | Chromosomal rearrangements involving the c-myc oncogene are a prevalent feature of plasmacytomas that arise after inoculating BALB/c mice with pristane and Abelson murine leukaemia virus (A-MuLV). With this observation in mind, we decided to determine if any genetic alterations of the c-myc locus could be observed in cells of a different type, when transformed in vitro by A-MuLV. Here we have analysed three independent A-MuLV-transformed NIH 3T3 lines (ANN-I, 54c12 and N25), and found that the c-myc locus is amplified 8-19-fold in each transformant. Quantitative S1 nuclease mapping performed on ANN-I and 54c12 RNAs demonstrated that: (1) c-myc messenger RNAs accumulated to double the levels found in NIH 3T3 cells; and (2) a shift in the use of the two normal c-myc transcription initiation sites (P1 and P2) occurred in favour of the 3 site, P2. Analysis of c-myc chromatin by DNase I treatment of 54c12 nuclei revealed that most, if not all, of the c-myc gene copies were transcriptionally competent. We present alternative ideas to explain why amplification of the c-myc gene occurs repeatedly in A-MuLV-transformed fibroblasts. Finally, we discuss our results in relation to the hypothesis linking the phenomenon of tumour progression with the amplification of oncogenes. |
| Identification of a c-myc oncogene lacking the exon 1 in the normal cells of a patient carrying a thyroid carcinoma. | In this paper we describe an alteration of the c-myc oncogene present in the white blood cells and normal as well as neoplastic thyroid cells of a subject carrying a thyroid carcinoma. Restriction enzyme mapping and hybridization to human c-myc probes specific for different regions of this gene demonstrate that this subject carries, in addition to the normal one, a c-myc oncogene lacking the first exon and part of the first intron. The levels of the c-myc mRNA in thyroid cells of this subject do not show differences with respect to thyroid cells from other subjects. Taken together, these findings indicate that the deletion of the first exon of the c-myc oncogene, in itself, does not produce overtranscription of this oncogene nor hematopoietic malignancies. |
| Identification and characterization of the protein encoded by the human N-myc oncogene. | The human N-myc gene is related to the c-myc proto-oncogene, and has been shown to have transforming potential in vitro. Many studies have reported amplification of N-myc in human neuroblastoma and retinoblastoma cell lines. In primary tumors, amplification of the gene was found to correlate directly with behavior of the tumor. Specific restriction fragments of a partial complementary DNA clone of N-myc from LA-N-5 human neuroblastoma cells were placed into a bacterial expression vector for the purpose of producing antigens representative of the N-myc protein. Rabbits immunized with these antigens produced antisera that recognized a protein of 62-64 kilodaltons in neuroblastoma cells. By several criteria, this protein appears to be part of the same proto-oncogene family as the c-myc protein. Moreover, the antisera to fragments of this protein were capable of histochemically identifying malignant cells in clinical specimens. |
| Changes in the phenotype of human small cell lung cancer cell lines after transfection and expression of the c-myc proto-oncogene. | Small cell lung cancer growing in cell culture possesses biologic properties that allow classification into two categories: classic and variant. Compared with classic small cell lung cancer cell lines, variant lines have altered large cell morphology, shorter doubling times, higher cloning efficiencies in soft agarose, and very low levels of L dopa decarboxylase production and bombesin-like immunoreactivity. C-myc is amplified and expressed in some small cell lung cancer cell lines and ALL c-myc amplified lines studied to date display the variant phenotype. To investigate if c-myc amplification and expression is responsible for the variant phenotype, a normal human c-myc gene was transfected into a cloned classic small cell lung cancer cell line not amplified for or expressing detectable c-myc messenger RNA (mRNA). Clones were isolated with one to six copies of c-myc stably integrated into DNA that expressed c-myc mRNA. In addition, one clone with an integrated neo gene but a deleted c-myc gene was isolated and in this case c-myc was not expressed. C-myc expression in transfected clones was associated with altered large cell morphology, a shorter doubling time, and increased cloning efficiency, but no difference in L dopa decarboxylase levels and bombesin-like immunoreactivity. We conclude increased c-myc expression observed here in transfected clones correlates with some of the phenotypic properties distinguishing c-myc amplified variants from unamplified classic small cell lung cancer lines. |
| Temperature-sensitive mutants of MH2 avian leukemia virus that map in the v-mil and the v-myc oncogene respectively. | MH2 is an avian retrovirus that contains the v-mil and v-myc oncogenes. In vitro it transforms chick macrophages that are capable of proliferation in the absence of growth factor. Earlier work showed that v-myc induces macrophage transformation and that v-mil induces the production of chicken myelomonocytic growth factor (cMGF), thus generating an autocrine system. We describe the isolation of temperature-sensitive (ts) mutants of MH2 virus. As suggested by marker rescue experiments, one mutant bears a ts lesion in v-mil, whereas the other carries a mutation in v-myc. Ts v-mil MH2-transformed macrophages become factor-dependent at the non-permissive temperature (42 degrees C), while ts-v-myc MH2-transformed macrophages cease growing and acquire a more normal macrophage phenotype at 42 degrees C irrespective of the presence of cMGF. Both phenotypes can be reversed by backshift to the permissive temperature. These results suggest that the gene products of v-mil and v-myc function independently of each other and that v-mil is necessary for the maintenance of autocrine growth, whereas v-myc is required to maintain the transformed phenotype. |
| Generation and characterization of a recombinant Moloney murine leukemia virus containing the v-myc oncogene of avian MC29 virus: in vitro transformation and in vivo pathogenesis. | A new retrovirus consisting of the v-myc oncogene sequences of avian MC29 virus inserted into the genome of Moloney murine leukemia virus (M-MuLV) was generated. This was accomplished by constructing a recombinant DNA clone containing the desired organization, introducing the recombinant DNA into mouse NIH 3T3 cells, and superinfecting the cells with replication-competent M-MuLV. The construction was designed so that an M-MuLV gag-myc fusion protein would be produced. The resulting virus, M-MuLV(myc), morphologically transformed uninfected NIH 3T3 cells. Stocks of M-MuLV(myc)-M-MuLV were infected into secondary mouse embryo cultures. M-MuLV(myc) induced striking growth and proliferation of hematopoietic cells. These cells were of the myeloid lineage by morphology, phagocytic properties, and surface staining with Mac-1 and Mac-2 monoclonal antibodies. They resembled mature macrophages, although they displayed minor properties of immaturity. The myeloid cells were transformed in comparison with uninfected myeloid cells since they were less adherent and had unlimited proliferative capacity and reduced growth factor requirements. The transformed myeloid cells with proliferative potential were actually myeloid progenitors which apparently underwent terminal differentiation to macrophages. It was possible to derive a permanent line of factor-independent macrophages from M-MuLV(myc)-transformed myeloid cells. M-MuLV(myc) also immortalized and morphologically transformed mouse embryo fibroblasts. These in vitro properties closely resembled the biological activity of MC29 virus in avian cells and suggested that the nature of the v-myc oncogene was an important determinant in transformation specificity. Neonatal NIH Swiss mice inoculated intraperitoneally with M-MuLV(myc)-M-MuLV only developed lymphoblastic lymphoma characteristic of the M-MuLV helper alone, and no acute fibrosarcomas or myeloid tumors resulted. In light of the strong myeloid transformation observed in vitro, the absence of acute in vivo myeloid disease was noteworthy. Interestingly, when a derivative of M-MuLV(myc) carried by a nonpathogenic amphotropic MuLV helper was inoculated, T lymphomas developed with long latency. Molecular hybridization confirmed that these tumors contained M-MuLV(myc). |
| Somatic rearrangement of the c-myc oncogene in primary human diffuse large-cell lymphoma. | Chromosome translocations involving 8q24, the band to which c-myc has been mapped (Dalla-Favera et al., 1982), are a uniform finding in Burkitt s lymphoma (Bernheim et al., 1981). However, in only a minority of the tumors is the rearrangement of the c-myc locus sufficiently close to the gene to be detected with currently available probes (Dalla-Favera et al., 1983). Approximately 25% of diffuse large-cell lymphomas have also been reported to have translocations involving 8q24 (Mitelman, 1985), but there have been no reports of c-myc rearrangements in this form of non-Hodgkin s lymphoma. We have examined the structure of the c-myc locus in primary tumor tissue of 10 cases of diffuse large-cell lymphoma. In one patient, Southern blot analysis revealed additional c-myc fragments in the tumor DNA but not in the germ-line DNA. Southern blot analysis using probes from both the heavy- and light-chain immunoglobin loci showed that the myc rearrangement was unlikely to involve the immunoglobulin loci in this patient. |
| Amplification of the N-myc oncogene in an adenocarcinoma of the lung. | c-myc oncogene is the most extensively studied member of the myc gene family, which now consists of three characterized members, namely the c-myc, N-myc, and L-myc genes. Deregulation owing to amplification and/or rearrangements of the c-myc gene have been described in a variety of human malignancies. Several neuroblastomas have amplifications of the N-myc genes. The c-myc, N-myc, or L-myc oncogenes are also found amplified in different cell lines from small cell carcinomas of the lung. In this study, we have examined the c-myc, N-myc, and c-erbB oncogenes in 34 clinical and autopsy tumor specimens representing various histopathological types of human lung cancer, including nine small cell lung cancers. A 30-fold amplification of the N-myc gene was found in a tumor histopathologically and histochemically verified as a typical adenocarcinoma. No amplifications of the c-myc or c-erbB oncogenes were seen in any of the tumors. In the DNA of one small cell carcinoma, an extra c-myc and N-myc cross-hybridizing restriction fragment was observed, possibly owing to an amplification of a yet uncharacterized myc-related gene. |
| Partial transformation of mouse fibroblastic and epithelial cell lines with the v-myc oncogene. | To investigate the role of the myc gene in mammalian cell transformation, plasmid constructs containing the v-myc oncogene and a co-selectable G418 resistance marker were introduced into both mouse fibroblasts (NIH-3T3) and bladder epithelial cells (BBN3 and BBN7). After transfection or microinjection of DNA, no transformed foci could be detected on confluent monolayers but, when the cells were cultured under conditions in which individual cells were allowed to grow and form colonies, morphological transformation was observed. Unlike ras-transformed NIH-3T3 cells, v-myc-transformed cells were unable to grow in serum-free medium and therefore still required exogenous growth factors. v-myc-transformed NIH-3T3 cells were poor at forming foci when co-cultivated with untransformed cells; however, the efficiencies could be increased by addition of EGF to the medium. Both v-myc-transformed fibroblasts and epithelial cells acquired the ability to grow in soft agar, though at efficiencies lower than the corresponding ras transformants. Subcutaneous inoculation of v-myc-transformed NIH-3T3 cells into nude mice resulted in no tumours within 6 weeks. After protracted periods (2-3 months) a few tumours were detected, but at a frequency barely above that for spontaneous tumour formation. Epithelial cells transformed by v-myc were either non-tumorigenic or gave a very low incidence of tumours. We conclude that the v-myc oncogene induces morphological changes and anchorage independence in immortal mouse fibroblasts and epithelial cell lines but further events are required for the cells to become tumorigenic. |
| [Expression of human c-myc oncogene in prokaryotic and eukaryotic cells]. | The McDonough strain of feline sarcoma virus (SM-FeSV) transforms fibroblast cell lines in culture and produces fibrosarcomas in domestic cats. SM-FeSV does not induce haematopoietic malignancies in spite of the fact that its viral oncogene, v-fms, codes for a glycoprotein related to the receptor for the mononuclear phagocyte colony stimulating factor, CSF-1. The v-fms-coded polypeptide includes the complete extracellular domain of the c-fms proto-oncogene product and retains the ability to bind CSF-1 specifically. The two molecules have very similar sequences except at their extreme carboxyl terminal ends where 40 amino acids of the c-fms-coded glycoprotein are replaced by 11 unrelated residues in the v-fms product. Autophosphorylation of the c-fms gene product on tyrosine is enhanced by CSF-1 addition, whereas phosphorylation of the v-fms-coded glycoprotein appears to be constitutive. We now show that introduction of the v-fms gene into simian virus-40 (SV40)-immortalized, CSF-1 dependent macrophages renders them independent of CSF-1 for growth and tumourigenic in nude mice. These factor-independent cell lines express unaltered levels of the c-fms product which is down-modulated in response to either CSF-1 or the tumour promoter 12-O-tetradecanoyl-phorbol-13-acetate (TPA). The induction of factor independence by a non-autocrine mechanism suggests that the v-fms product is an unregulated kinase that provides growth stimulatory signals in the absence of ligand. |
| Characterization of the topoisomerase II-induced cleavage sites in the c-myc proto-oncogene. In vitro stimulation by the antitumoral intercalating drug mAMSA. | In an attempt to get an insight into the activity of mAMSA (a DNA topoisomerase II-mediated drug) on the human proto-oncogene c-myc, an in vitro system consisting of purified calf thymus DNA topoisomerase II and a c-myc DNA inserted in lambda phage was utilized. The occurrence of discrete bands, detected by hybridization of Southern blots with appropriate c-myc probes, indicated the presence of cleavage sites in the sole presence of DNA topoisomerase II. The band intensity increased in the presence of mAMSA, while no significant difference occurred in the cleavage pattern. The location of the cleavage sites along the c-myc locus revealed a striking correspondence with that of some DNase hypersensitive sites. These results indicate that DNA topoisomerase II is most certainly implicated in the mAMSA activity and that the drug stimulates the topoisomerase II cleaving activity at specific sites, which may be involved in the biological activity of the drug. |
| Chromosome 8 breakpoint far 3 of the c-myc oncogene in a Burkitt s lymphoma 2;8 variant translocation is equivalent to the murine pvt-1 locus. | The 2;8 variant translocation of human Burkitt s lymphomas is closely related cytogenetically to the t(6;15) of murine plasmacytomas; both involve a reciprocal exchange between the Ig kappa locus and a band region indistinguishable from that bearing the c-myc oncogene. To define their molecular relationship, we have compared cloned chromosome 8 DNA from the t(2;8) breakpoint in the human Burkitt s lymphoma JBL2 with cloned DNA from the murine pvt-1 locus, the major chromosome 15 breakpoint region in murine t(6;15). DNA sequencing and Southern blot analysis shows that these two regions are homologous. Thus the t(2;8) in JBL2 is the molecular equivalent of many murine t(6;15). The murine pvt-1 locus lies an unknown distance 3 of c-myc; analysis of DNA from several tumours with c-myc amplification reveals that pvt-1 is co-amplified in at least one case, placing pvt-1 approximately 100-500 kb 3 of c-myc. The significance of these results with respect to the role of pvt-1 in tumorigenesis is discussed. |
| Deregulation of the c-myc oncogene in virus-induced thymic lymphomas of AKR/J mice. | A high frequency (greater than or equal to 65%) of thymomas induced by mink cell focus-forming virus 69L1 in AKR/J mice contain proviral integrations which are clustered 0.7-kilobase upstream of the c-myc oncogene predominantly in the opposite transcriptional orientation. Blot hybridization experiments showed that on the average there was only a twofold elevation of steady-state c-myc RNA in the thymomas as compared with levels in normal AKR/J thymocytes. Such an increase would not appear to be sufficient as a mechanism of oncogene activation in this system. In contrast, S1 nuclease analysis of transcripts initiated from the two known c-myc promoters indicated a strong shift in promoter usage in virtually ALL thymomas tested. In normal thymus the ratio of transcripts initiated from the proximal promoter P1 to the distal promoter P2 was 0.2 to 0.3. In contrast, most of the thymomas tested (18 of 23) showed an average P1/P2 ratio of 1.2 regardless of whether or not proviral integrations could be detected within a 21-kilobase EcoRI fragment containing the three c-myc exons. We conclude that alterations in P1/P2 ratios are good indicators of c-myc deregulation in thymic lymphomas. |
| Association between the expression of the c-myc oncogene mRNA and the expression of the receptor protein for 1,25-dihydroxyvitamin D3. | Studies in lymphocytes have indicated similarities in the state of activation, the time kinetics, and the pathologic states associated with the expression of the c-myc oncogene, and the expression of the 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] receptor protein. Here, we have sought evidence for an association between c-myc and the 1,25-(OH)2D3 receptor protein in mammalian cells other than lymphocytes. Comparing two rat osteogenic sarcoma cell lines, one that produces constitutively relatively high levels of the 1,25-(OH)2D3 receptor protein (ROS 17/2.8) and one in which the 1,25-(OH)2D3 receptor protein is practically undetectable (ROS 2/3), we found that the 1,25-(OH)2D3 receptor-expressing cell line also expressed c-myc mRNA. In contrast, the cell line in which the 1,25-(OH)2D3 receptor was undetectable did not express c-myc mRNA. Furthermore, we transfected mouse skin fibroblasts (NIH 3T3) with a recombinant plasmid carrying the human c-myc oncogene. We found a dramatic increase in the 1,25-(OH)2D3 receptor concentration in five separate clonal lines of NIH 3T3 cells transfected with the c-myc-carrying plasmid compared to their nontransfected counterparts or to NIH 3T3 fibroblasts transfected with the vector plasmid alone. The receptor protein of the transfected cells exhibited biochemical characteristics indistinguishable from those of classical receptors for 1,25-(OH)2D3. The increased expression in the transfected cells appeared specific for the receptor for 1,25-(OH)2D3; receptors for sex steroids were not detected in the nontransfected NIH 3T3 cells and remained undetectable after transfection with c-myc. Moreover, the level of the glucocorticoid receptor protein, which was expressed in the nontransfected cells, did not change upon transfection with c-myc. |
| The myc oncogene: its role in transformation and differentiation. | Antibodies were prepared against bacterially expressed polypeptides corresponding to various portions of the v-ets-encoded domain of P135gag-myb-ets, the transforming protein of avian leukemia virus E26. Immunoprecipitation analyses show that ca. 80 v-ets-encoded amino-acids located immediately after the v-myb/v-ets junction are not found in P54/56c-ets, the translation product of the c-ets proto-oncogene, nor in a set of cellular proteins of 64, 62, and 60 kDa related to but distinct from P54/56c-ets. In addition, Northern blot analyses show that these 5 v-ets sequences neither derive from the nontranslated region of the known cellular transcripts hybridizing to a v-ets probe nor from the c-myb transcript or the helper virus genetic information. Tryptic peptide analyses furthermore indicate that, except for these sequences and the last 16 carboxy terminal amino acids of P135gag-myb-ets, the amino acids encoded by v-ets are essentially colinear with those of P54c-ets. |
| [Amplification of c-myc proto-oncogene in primary tumors, metastases and blood leukocytes of patients with ovarian cancer]. | The structure of DNA sequences homologous to the viral myc oncogene from ovarian tumours, intact tissues and the same patients peripheral blood leukocytes has been studied. The Southern blot analysis of malignant tumour DNA reveals amplification of c-myc protooncogene of 3 from 11 patients. Metastases DNAs of two from those patients also contain multiple copies of c-myc. No myc gene amplification has been detected in 6 examined benign ovarian tumours. The presence of extra copies of myc-related sequences has been shown in two from three DNA samples from peripheral blood leukocytes of patients with ovarian cancer. |
| The first exon of the c-myc proto-oncogene contains a novel positive control element. | We have identified a positive modulator within the c-myc first exon downstream of the gene s transcription initiation sites, P1 and P2. We introduced myc-CAT (chloramphenicol acetyltransferase) hybrid genes into three cell lines (BJAB, COS and HeLa) and measured their expression by either CAT enzymatic activity, S1 nuclease protection or by a nuclear run-on transcription assay. Removal of 46 bp from the 3 end of the first exon results in a decrease of myc-CAT expression and P2 activity. A 438-bp exon 1 segment, lacking the normal myc promoters, efficiently drives the expression of SV40 early promoters. We find that this first exon segment efficiently functions as a positive modulator only in its sense orientation, 3 of a nearby promoter. The positive effects of the myc first exon and the SV40 enhancer are complementary. |
| Pathogenesis of Burkitt lymphoma: expression of an activated c-myc oncogene causes the tumorigenic conversion of EBV-infected human B lymphoblasts. | To study the pathogenesis of Burkitt lymphoma, we introduced activated c-myc genes into human EBV-infected lymphoblastoid cells derived from in vitro infection of normal cord blood or directly from infected peripheral blood from AIDS patients. In both cell types the constitutive expression of exogenous c-myc caused negative regulation of endogenous c-myc expression, changes in growth properties typical of transformed cells, and acquisition of tumorigenicity in immunodeficient mice. In ALL myc-transfected populations the degree of malignancy directly correlated with the level of c-myc mRNA. EBV infection and c-myc activation are thus sufficient for the tumorigenic conversion of human B cells in vitro, strongly supporting the hypothesis that these same two pathogenetic steps may be involved in the in vivo development of Burkitt lymphoma. |
| MYC oncogene involved in a t(8;22) chromosome translocation is not altered in its putative regulatory regions. | We have cloned the translocation-associated MYC gene from the Burkitt lymphoma cell line (BL2) with a t(8;22) chromosomal translocation and have determined the nucleotide sequence of the first exon and of the 3 and 5 flanking regions, where sequences with putative regulatory functions have been identified. The nucleotide sequence of the 5 flanking region, which contains regions of DNase hypersensitivity and binding sites for putative regulatory proteins, is the same as that of the normal MYC. Accordingly, mutations in these regulatory regions are not required for the transcriptional deregulation of MYC in the BL2 cell line. The nucleotide sequence of the first exon is similar to that of the normal MYC [Gazin, C., Dupont de Direchin, S., Hampe, A., Masson, J. M., Martin, P., Stehelin, D. & Galibert, F. (1984) EMBO J. 3, 383-387] and has the coding capacity for a 188-residue polypeptide. However, six nucleotide changes that occur in the middle of this reading frame could result in amino acid substitutions. We also have cloned and sequenced the t(8;22) chromosomal breakpoint that is located 10 kilobases 3 of the MYC exon 3 and near the C lambda 3 gene on chromosome 22. Sequences with homology to immunoglobulin joining signals occur close to the breakpoint both on chromosome 8 and 22, providing further evidence that the immunoglobulin joining enzymes may be involved in the recombinations associated with a variety of chromosomal translocations in B and T cells. |
| Expression of the c-myc oncogene under control of an immunoglobulin enhancer in E mu-myc transgenic mice. | Transgenic mice bearing a cellular myc oncogene coupled to the immunoglobulin heavy-chain enhancer (E mu) exhibit perturbed B-lymphocyte development and succumb to B lymphoid tumors. To investigate how the enhancer has affected myc expression, we analyzed the structure and abundance of myc transcripts in tissues of prelymphomatous mice and in the lymphomas. expression of the E mu-myc transgene appeared to be confined largely to B lymphoid cells, being dominant in bone marrow, spleen, and lymph nodes, with no detectable expression in T cells or other hematopoietic lineages examined. The myc transcripts initiated very predominantly at the normal myc promoters, although use of the more upstream myc promoter was accentuated and an enhancer-associated promoter may be used infrequently. The level of E mu-myc transcripts in the preneoplastic lymphoid tissues and in the E mu-myc tumors was not markedly higher than myc RNA levels in proliferating normal lymphocytes. Thus, enforced expression of structurally normal myc transcripts at only a modestly elevated level has profound biological consequences. The absence of detectable endogenous c-myc RNA in any tumor, or in preneoplastic bone marrow, supports a negative feedback model for normal c-myc regulation. |
| Site-specific hypomethylation of the c-myc oncogene in human hepatocellular carcinoma. | In order to examine the effect of alteration in methylation of the c-myc gene on hepatocarcinogenesis, the extent of methylation of the c-myc gene was examined in 24 tissues of hepatocellular carcinoma (HCC), 24 adjacent non-tumor liver tissues from the same patients and 16 control liver tissues by the use of restriction endonucleases. The following results were obtained. (1) The c-myc gene from HCC tissue tended to be hypomethylated in comparison with that in non-tumor liver tissue from the same patient. (2) The c-myc gene from non-tumor liver tissue was hypomethylated to various degrees in comparison with that in control liver tissues. (3) The CCGG site in the third exon of the c-myc gene tended to be more extensively hypomethylated in HCC tissues than in non-tumor and control liver tissues. These results suggest that hypomethylation of the c-myc gene may occur to various degrees before the appearance of HCC, and may be associated with hepatocarcinogenesis. Moreover, the hypomethylation in the third exon of the c-myc gene is probably important for the development of HCC. |
| Transcriptional regulation of c-myc oncogene expression by estrogen in hormone-responsive human breast cancer cells. | Enhanced c-myc oncogene expression associated with peptide mitogen-stimulated cell growth is primarily a result of a post-transcriptional event involving increased mRNA stability. We have recently shown that estradiol stimulates c-myc expression in estrogen receptor-positive human breast cancer cells. In this report, we show that in estrogen-responsive MCF-7 cells, estradiol stimulated the c-myc gene exclusively at the transcriptional level, increasing c-myc mRNA transcription more than 10-fold within 20 min, while having no effect on the c-myc mRNA half-life of 18 min. In addition, pretreatment of the cells with cycloheximide did not prevent induction of the c-myc oncogene, indicating a primary effect of estrogen. Furthermore, the elevated level of c-myc mRNA in estrogen-independent MDA-MB-231 cells was due primarily to a more stable c-myc mRNA with a half-life of 49 min, in the absence of enhanced transcription. These results indicate that different mechanisms of regulation of c-myc oncogene expression exist in hormone-dependent and -independent human breast cancer cells. |
| N-myc proto-oncogene expression during organogenesis in the developing mouse as revealed by in situ hybridization. | The N-myc proto-oncogene is expressed during embryogenesis, suggesting that it plays a role in normal development. Since the myc-family oncogenes have been implicated in the control of cell growth, the embryonic expression may reflect rapid proliferation known to occur in development. Alternatively, N-myc expression may be involved in specific differentiation stages. In many embryonic tissues, early and late differentiation events occur in different locations. By in situ hybridization of tissue sections, we now demonstrate a restricted expression of N-myc mRNA to a few tissues and to areas where the first differentiation stages occur. N-myc expression was most strongly expressed in the developing kidney, hair follicles, and in various parts of the central nervous system. In these tissues, expression was restricted to a few cell lineages. In ALL lineages, expression was confined to early differentiation stages, and, at onset of overt differentiation, the level of expression decreased dramatically. Several rapidly proliferating tissues showed very little, if any, N-myc expression. In the brain, post-mitotic but not yet differentiated cells expressed high levels of N-myc mRNA. Therefore, N-myc expression is not a simple marker for proliferation in the embryo. Rather, N-myc expression seems to be a feature of early differentiation stages of some cell lineages in kidney, brain, and hair follicles, regardless of the proliferative status of the cell. The results raise the possibility that N-myc may participate in the control of these early differentiation events. |
| Expression of c-myc oncogene product and ras family oncogene products in various human malignant lymphomas defined by immunohistochemical techniques. | The authors studied the expression of c-myc and ras family oncogene products in 43 cases of malignant lymphoma (ML) using the immunoperoxidase method. Unfixed frozen sections of lymph nodes from four patients with Hodgkin s disease and 39 with non-Hodgkin s lymphoma, together with normal lymph nodes, were studied by the avidin-biotin-peroxidase complex (ABC) technique. Two monoclonal antibodies, MYC-2 raised against recombinant human c-myc protein (reacting specifically with the c-myc products P62 and P67) and RASK-4 (raised against recombinant P21 and reacting specifically with ras-family product P21) were used. The c-myc product was detected in nuclei of ML cells and some normal, mainly germinal center, lymphocytes. When the staining intensity shown by normal germinal-center lymphocytes was graded as positive (+) or weakly positive (+/-), a very intensely positive reaction ( to ++) was observed in 37 cases (86%) of ML, a positive reaction (+) in four cases (9.3%), and a weakly positive reaction (+/-) in two cases (4.7%). The ras family oncogene product reaction was intensely positive (++) in two cases (4.7%), positive (+) in 16 cases (37.2%), weakly positive (+/-) in 13 cases (30.2%), and negative in 12 cases (27.9%). Western blot analysis confirmed an elevated level of c-myc products in two cases, which showed intense MYC-2 staining, and of ras family products in one case, which demonstrated intense RASK-4 staining. The enhanced expression of these gene products may play an important role in lymphomagenesis of such cases. |
| Proto-oncogene expression and nuclear factor specifically bound to c-myc gene in peripheral blood mononuclear cells from progressive systemic sclerosis patients as the indicator of clinical activity. | In the present study, we examined the expression of various protooncogenes and the specific binding of nuclear factor to c-myc gene in peripheral blood mononuclear cells (PBMC) from progressive systemic sclerosis (PSS) patients. We demonstrated first amplified expression of c-myc and c-myb gene and the existence of a nuclear protein specifically bound to 5 -non-coding fragment of c-myc gene. We then found a positive correlation between the degree of expression and/or affinity for the c-myc gene fragment of the nuclear protein and clinical disease activity. The amount of the factor was significantly reduced along with or prior to the amelioration of clinical symptoms and laboratory abnormalities with treatment. The significance of c-myc and c-myb proto-oncogene expression and nuclear factor specifically bound to c-myc gene is discussed. |
| c-myc oncoprotein levels in bladder cancer. | The protein coded by the oncogene c-myc, p62c-myc, was measured using monoclonal antibodies and flow cytometry in nuclei derived from paraffin-wax sections of transitional cell carcinomas of the human bladder. Superficial disease (stages pTa and pT1) which did not recur within 5 years of diagnosis had significantly higher oncoprotein levels than those which did recur or were muscle-invasive (stage pT2 or greater) at presentation (P less than 0.01). These preliminary findings indicate that oncoprotein levels might have prognostic significance for bladder cancer. |
| Autoantibody to human c-myc oncogene product in autoimmune patients sera. | Sera from autoimmune diseases including systemic lupus erythematosus, dermatomyositis, progressive systemic sclerosis and Sjogren s disease, were examined for reactivity against human c-myc oncogene product. We first found the presence of the autoantibody to human c-myc oncogene product in sera from autoimmune diseases. No significant correlation between the presence of the anti-c-myc product antibody and disease activity, clinical disease types and other autoantibodies such as antinuclear factor, anti-DNA antibody, anti-RNP antibody and anti-Sm antibody were shown in this study. |
| Expression of the c-myc oncoprotein in human metaplastic epithelial cells of fibrocystic disease. | Sections derived from fibrocystic disease in human breast tissue were examined for the presence of the c-myc oncoprotein by using the c-myc specific monoclonal antibody 9E10 (1). The results obtained revealed that the c-myc gene was not expressed in normal epithelial cells either of ducts or lobules. It was expressed mainly in mucous metaplastic cells and very rarely in apocrine cells. The c-myc protein was observed at a higher level in mucous metaplastic cells of epitheliosis and multiple papillomas. The number and intensity of positive mucous metaplastic cells was significantly increased after pretreating the sections with neuraminidase. We suggest that elevated expression of the c-myc nuclear oncoprotein in human breast metaplastic epithelial cells play a role in the early stages of malignant cell transformation. |
| Potential multiple functions of the v-myc oncogene within a single cell clone of OK10 retrovirus-transformed quail fibroblasts. | Propagation of in vitro transformed OK10 QDP 9c cells, cloned in soft agar, results in selective amplification of the OK10 pro-viral genome to yield a 12-fold increase in v-myc oncogene expression. In addition, increased v-myc oncogene dosage correlates with an increase of the proliferative potential of already transformed cells and relieves dependence on high serum concentrations for optimal cell growth. The increased rate of cell proliferation is reflected by a much more rapid progression through ALL parts of the cell cycle. These results suggest that the attainment of transformed status on one hand and progressive increase in growth factor independence for optimal cell proliferation on the other hand, may be initiated by different myc oncogene dosages within the OK10 QDP 9c cell clone. |
| Elevated expression of c-myc proto-oncogene in scleroderma fibroblasts. | Scleroderma is a connective tissue disease characterized by the overproduction of extracellular matrix components. The mechanisms of fibrosis may involve increased fibroblast proliferation in the scleroderma lesion due to the presence of cells with abnormal growth properties, in addition to the well-known over-production of several matrix components. The c-myc proto-oncogene has been implicated in dysregulation of cell growth in neoplastic cells and as an essential element of the response to growth factors in normal cells. Therefore, to investigate the molecular basis of growth in scleroderma, we compared expression of c-myc gene in scleroderma and control cells. In this report, we show that under low serum conditions (1% serum), scleroderma fibroblasts express 2.5-3 higher level of c-myc message. Moreover, stimulation of c-myc after addition of fresh 10% serum is blunted in scleroderma compared to control cells. Observed c-myc expression in scleroderma is similar to c-myc expression in transformed cells. In addition, there is also increased proliferation of scleroderma cells in 1% serum as measured directly by a nuclear label assay. These data suggest the presence of fibroblasts with abnormal growth properties in the scleroderma lesion. |
| Possible involvement of protein kinase C and calcium ion in growth factor-induced expression of c-myc oncogene in Swiss 3T3 fibroblasts. | The addition of platelet-derived growth factor and fibroblast growth factor to quiescent cultures of Swiss 3T3 fibroblasts rapidly induced protein kinase C activation and Ca2+ mobilization and afterwards markedly increased c-myc mRNA levels. 1-Oleoyl-2-acetylglycerol, a membrane-permeable synthetic diacylglycerol, and 12-O-tetradecanoylphorbol 13-acetate, a tumor-promoting phorbol ester, stimulated protein kinase C activation without Ca2+ mobilization. Inversely, Ca2+ ionophores, A23187 and ionomycin, elicited Ca2+ mobilization without protein kinase C activation. Both protein kinase C-activating and Ca2+-mobilizing agents were able to increase c-myc mRNA levels in an additive manner. Prolonged treatment of the cells with phorbol 12,13-dibutyrate, another protein kinase C-activating phorbol ester, led to the down-regulation and complete disappearance of protein kinase C. In these cells, 1-oleoyl-2-acetylglycerol and 12-O-tetradecanoylphorbol 13-acetate did not increase c-myc mRNA levels, but platelet-derived growth factor, fibroblast growth factor, and the Ca2+ ionophores, ALL of which still induced Ca2+ mobilization, stimulated the increase of c-myc mRNA levels. These results strongly suggest that both protein kinase C and Ca2+ may be involved in platelet-derived growth factor- as well as fibroblast growth factor-induced expression of the c-myc oncogene in Swiss 3T3 cells. |
| Immunoglobulin genes and the c-myc oncogene in plasmacytomagenesis. | Insulin receptors resemble receptors for certain growth factors (epidermal growth factor, platelet-derived growth factor, and insulin-like growth factor I) in that ALL possess tyrosine-specific protein kinase activity. These cell surface receptors resemble protein kinases encoded by viral oncogenes in that both groups of enzymes phosphorylate proteins on tyrosine. Recently, we reported that there is immunological similarity between the insulin receptor and pp60src [the protein encoded by the src oncogene of Rous sarcoma virus (RSV)]. This is supported by the observation that anti-pp60src antiserum (TBR serum) immunoprecipitated radiolabeled insulin receptors derived from cultured human cells (IM-9 lymphoblasts and U-937 monocytes) and rabbit liver. Moreover, highly purified preparations of src protein inhibit the immunoprecipitation of insulin receptors by TBR serum, and the inhibition is correlated with the src kinase activity present in the preparation used. However, two observations suggested that there were immunological differences between pp60src and mammalian insulin receptors. 1) Even at a relatively high concentration (dilution, 1:10), TBR serum immunoprecipitated a relatively small percentage (approximately 20%) of the labeled insulin receptors. 2) Some lots of TBR serum with a high titer against pp60src failed to immunoprecipitate the insulin receptor. Viral oncogenes are thought to have been derived from proto-oncogenes in the host cell. Therefore, because the chicken is the natural host for RSV, we inquired whether there might be closer homology between pp60src and avian insulin receptors. Surprisingly, under conditions where TBR serum immunoprecipitates human insulin receptors, we could not detect immunoprecipitation of avian insulin receptors from chicken liver, chicken embryo fibroblasts, or turkey erythrocytes. The immunoprecipitation of human insulin receptor is not dependent on the method used for labeling the cells ([125I]insulin cross-linking), inasmuch as the receptor labeled by autophosphorylation with [gamma-32P]ATP could also be immunoprecipitated by TBR serum. These observations suggest that there is structural homology between pp60src and the insulin receptor (most likely the beta-subunit). Nevertheless, it seems unlikely that the insulin receptor gene is the proto-oncogene for the src gene of RSV. |
| How reliable is amino acid sequence homology in predicting similarity of structure and function of c-myc and Ad12 E1A oncogenic proteins?. | Adenovirus E1A and c-myc genes are known to be capable of transforming primary rat cells when they occur in combination with either polyoma middle-T or T24 Harvey-ras1 genes. There was a low level of amino acid sequence homology between the nuclear adenovirus-12 (Ad12)E1A protein product (289 amino acids) and the c-myc protein based on optimal alignment and percentage identity. In contrast to others [Ralston R, Bishop JM (1983) Nature 306:803-806], we concluded that this low level of amino acid sequence homology was not significant, since rabies glycoprotein (RGP), which has no transforming function and localizes to the cell surface, had a similar low level of amino acid sequence homology to the c-myc protein. Furthermore, dot-matrix analysis, when used to test the overall level of amino acid sequence homology, showed no significant homology between c-myc and Ad12E1A, E1B, or RGP. Thus, low levels of amino acid sequence homology between two proteins may not be sufficient to predict structural and functional similarities between them reliably, even if the two proteins appear to share a common function. |
| The c-myc oncogene perturbs B lymphocyte development in E-mu-myc transgenic mice. | Transgenic mice bearing a c-myc oncogene subjugated to the lymphoid-specific immunoglobulin heavy chain enhancer (E mu) develop clonal B lymphoid malignancies, but most young E mu-myc mice lack malignant clones. Their prelymphomatous state has allowed us to examine how constitutive c-myc expression influences B cell development. We find that early stages are overrepresented, even before birth. Pre-B cells of polyclonal origin increase greatly, while B cells develop in reduced number. Both the pre-B and the B cells appear to be in an active state, since they are larger than normal and a greater fraction are in the cell cycle. Enforced myc expression has thus favored proliferation over maturation. Hence, a normal function of c-myc may be to regulate differentiation as well as to promote cell cycling. |
| Rearrangement of the c-myc oncogene with heavy-chain immunoglobulin enhancer in tumor DNA from an acute lymphoblastic leukemia patient. | The DNA obtained from the leukemia cells of an acute lymphoblastic leukemia (ALL, L3 type) with a pre-B-phenotype and a typical t(8;14) chromosomal translocation showed a rearrangement juxtaposing the c-myc gene and the immunoglobulin (Ig) heavy-chain gene enhancer. This abnormality was only present in the leukemia cells of the patient and correlated with the clinical course of the disease. The breakpoint on chromosome 8 occurred within c-myc intron 1, between 790 and 638 base pairs upstream of c-myc exon 2. This breakpoint position was the nearest to the c-myc exon 2 so far described in Burkitt s type lymphoma-leukemias, and it mapped very near to the location of a major cryptic promoter used by truncated c-myc genes. In spite of what was detected in a human lymphoma cell line (Manca) carrying a similar rearrangement, in this case the amount of c-myc transcript was not increased compared to an Epstein-Barr virus-transformed normal lymphoblastoid cell line obtained from the same patient. This may in part be due to the breakpoint position and to the fact that the efficiency of the major cryptic promoter present within the first intron could have been affected by the translocation event. Finally, as previously suggested by others, the phenotype expressed by the leukemia cells supported the notion that this particular type of rearrangement (linking together the c-myc gene and the Ig heavy-chain gene enhancer element) may be associated with a subgroup of B-ALLs showing an immunologic phenotype relatively more immature than that of classical B-ALL. |
| Differential control of proto-oncogene c-myc and c-fos expression in lymphocytes and fibroblasts. | In lymphocytes stimulated with the mitogen phytohaemagglutinin, an inhibitor of the enzyme ADP-ribosyltransferase (ADPRT) completely blocks the proliferative response and the increase in expression of the proto-oncogene c-myc without affecting c-fos significantly. Conversely, in fibroblasts the serum-induced growth is not affected by the ADPRT inhibitor, and both oncogenes are dramatically super-induced. Hence there are differences between lymphocyte and fibroblast early responses to mitogenic stimulation and also between regulation of c-fos and c-myc gene expression. |
| Regulation of c-myc and c-fos proto-oncogene expression by animal cell growth factors. | Animal cell growth factors stimulate expression of the proto-oncogenes c-myc and c-fos. The products of these genes seem to act as intracellular mediators of the mitogenic response to growth factors. Phosphatidyl inositol breakdown products function as cytoplasmic second messengers to induce transcription of c-myc and c-fos although they may not play an exclusive role in this regard. Post-transcriptional events may contribute to the modulation of c-myc gene expression. Following induction, the c-myc and c-fos mRNAs are selectively degraded within the cell. |
| Immortalization of mouse neural precursor cells by the c-myc oncogene. | Immortalized cell lines have been generated from embryonic mouse neuroepithelium by infection with a retrovirus containing the c-myc oncogene. The morphology and the antigenic phenotype of the cloned cell lines are characteristic of normal neuroepithelium. Although the cell lines are stable and do not spontaneously differentiate, morphological changes can be induced with both acidic and basic fibroblast growth factor. Fibroblast growth factor at 5 ng/ml stimulates differentiation of the neuroepithelial cells, and it has been shown that the cloned cell line 2.3D can differentiate into astrocytes, containing glial fibrillary acidic protein, and neurons, expressing the A2B5 marker and neurofilaments. This indicates that some cells in the neuroepithelium at embryonic day 10 are multipotent and are not restricted to either the glial or neuronal cell lineage. The cell lines also can be induced with interferon gamma to express class I and class II histocompatibility antigens. The response of the c-myc-immortalized cell lines to these two factors is similar to that observed with freshly isolated neuroepithelium and suggests that such immortalized precursor populations are representative of the cells found in the developing neuroepithelium. |
| Coronary flow as a determinant of c-myc and c-fos proto-oncogene expression in an isolated adult rat heart. | Chronic cardiac overload induces quantitative and qualitative changes of the phenotype which finally adapt the myocardium to its new functional requirements (Swynghedauw, 1986). It has been proposed that both stretch and enhanced isometric tension could trigger these modifications (Peterson and Lesch, 1972), but until now no real messenger has been found. In a search for signals which may account for these changes, we decided to investigate the expression of two proto-oncogenes, c-fos and c-myc, coding for nuclear proteins (review in Adamson, 1987) because several of their properties are consistent with their possessing a role in the transduction of extracellular growth signals to the cell interior. We report here that, in adult rat heart, expression of the c-fos and c-myc proto-oncogene was both sequentially and transitorily increased when, in a beating heart but not in an arrested heart, the coronary flow (and/or pressure) was augmented. This was studied in an isolated, coronary perfused heart preparation, a model in which the initial conditions of a cardiac overload may be mimicked in such a way that protein synthesis is stimulated by increasing the coronary perfusion pressure (Kira et al., 1984). |
| Modulation of c-myc oncogene expression by phorbol ester and interferon-gamma: appraisal by flow cytometry. | A flow cytometric assay was developed to examine the expression of the cellular myc oncogene in relation to cell cycle in individual cells. C-myc-oncoprotein was detected by indirect immunofluorescence using a purified sheep polyclonal antibody, anti-human-myc. Specific binding of anti-human-myc was measured by flow cytometry. C-myc oncoprotein was detected in 90% of HL-60 and 75% of Daudi cells; human hematopoietic cell lines known to express high levels of c-myc oncogene. However, c-myc protein could not be detected in the REH cell line, normal human peripheral lymphocytes or thymocytes. Nuclear DNA content was measured simultaneously using propidium iodide staining. There was an equal level of c-myc protein in G0/G1, S and G2/M phases. The extent and kinetics of c-myc oncoprotein induction have been determined following phorbol ester, 12-O tetradecanoylphorbol 13 acetate (TPA) and interferon-gamma (IFN-gamma) exposure of both HL-60 and Daudi cells. TPA produced a gradual reduction in the level of c-myc protein and arrested the cells in G0/G1 phase in HL-60 cells. However, TPA failed to reduce c-myc protein or to change cell cycle distribution in Daudi cells. Interestingly, c-myc protein levels were stimulated by exposure of both HL-60 and Daudi cells to IFN-gamma. The results indicate that flow cytometric assay of oncogene expression is feasible, fast and requires relatively few cells. It also allows for the direct correlation of modulation of oncogene expression with cell kinetics. |
| [Prognostic value of the N-myc oncogene in neuroblastoma]. | Activation of cellular proto-oncogenes can be detected in several human cancers. In neuroblastoma, amplification and overexpression of N-myc oncogene have been shown to be associated with advanced stages of disease and rapid tumor progression. These results suggest the clinical importance of the N-myc oncogene. Other oncogenes might also be activated in this cancer. |
| Amplification of the c-myc proto-oncogene in cervical carcinoma. | Amplification without structural rearrangements of the c-myc proto-oncogene was found in 14 of 44 primary cervical neoplasms. There was no apparent correlation with stage of disease or degree of cellular differentiation. The prognostic significance of c-myc amplification cannot be determined from this study. |
| Multifactorial regulation of the human c-myc oncogene. | The v-myb, ets-containing avian leukemia virus E26 is unique in its capacity to transform both erythroblasts and myeloblasts. Previous studies showing that v-myb is sufficient for the transformation of myeloid cells failed to definitively establish the role of the v-ets gene. We have now isolated a mutant of E26, ts1.1, that is temperature-sensitive for erythroid cell transformation and that we found to contain a single mutation in the v-ets gene. Surprisingly, myeloid cells transformed by this mutant showed an altered phenotype relative to wild-type-transformed cells, in that they resemble promyelocytes. In addition, infection of mature macrophages with ts1.1 led to their transformation and conversion into promyelocyte-like cells. We conclude that the v-ets domain of the p135gag-myb-ets protein of E26 has an effect on both erythroid and myeloid cell differentiation, suggesting a possible role for the c-ets/c-myb genes in the commitment of hematopoietic cells towards specific lineages. |
| Tumorigenic transformation of rat FR3T3 fibroblasts carrying an activated myc oncogene requires subsequent mutational events. | Early passage FR3T3 rat cells were co-transfected with a neo resistance gene and pSVc-myc-1, an SV40-driven expression vector carrying an activated murine myc oncogene. Selection in G418 medium produced clones expressing the exogenous myc gene at various levels, with a concomitant loss of expression of the normal c-myc allele. These clones were phenotypically normal, but, in fluctuation tests performed according to Luria and Delbruck (1943) on subcultures independently derived from the same clone, transformed foci appeared as stochastic events with a wide range of fluctuation. These results indicate that expression of the oncogene was not sufficient to induce the appearance of transformed growth properties, and that secondary genetic changes are required, most likely mutations in cellular proto-oncogenes. Within a single clone, independent transformants exhibited different tumorigenic potentials, spanning from high efficiency to no detectable tumor induction, without any clear correlation with their degree of in vitro transformation. tumors and cell lines established from independent tumors, while maintaining the exogenous myc gene without gross rearrangement of its structure, no longer expressed the oncogene and resumed the expression of the normal allele. |
| The effect of a transfected c-myc proto-oncogene on cellular differentiation. | The human MOS proto-oncogene has been mapped previously to two different sites on chromosome 8 (8q22 and 8q11). Here we report in situ hybridization data from two different laboratories which confirm the localization of MOS to the proximal region of the long arm of chromosome 8, at 8q11-q12. |
| Nucleotide sequence 3 to the human c-myc oncogene; presence of a long inverted repeat. | A transformant having ret-II was obtained by transfection of NIH3T3 cells with DNA from a human sigmoid colon cancer. Comparison of the restriction map of ret-II with that of proto-ret revealed that the ret-II has rearrangements both 5 and 3 to the sequence coding for the kinase domain. However, only the upstream rearrangement was consistently observed in ALL transformants, suggesting that the upstream rearrangement resulted in the activation of proto-ret. The recombination point and replaced sequence of ret-II were different from those previously reported for ret (Takahashi et al., 1985). In addition, ret-II does not retain region coding for transmembrane of proto-ret. This rearrangement, however, was not detected in the original tumor DNA by Southern blot analysis. |
| Steroid-induced cell proliferation in vivo is associated with increased c-myc proto-oncogene transcript abundance. | Enhanced c-myc transcript abundance has been observed in a variety of human malignancies, in normal liver tissue induced to proliferate in vivo by partial hepatectomy and in cells in culture induced to proliferate with the addition of protein hormones and growth factors. Little is known, however, about the expression of cellular proto-oncogenes in cells induced to proliferate in vivo by steroid hormones. Experiments reported here indicate that when cells of the immature chicken oviduct are induced to undergo rapid in vivo proliferation by application of the estrogen hormone 17 beta-estradiol, the onset of this proliferation is associated with a rapid, large, and transient increase in c-myc transcript abundance. When estrogen is administered to chickens in which the oviduct has already differentiated, neither massive cell proliferation nor large increases in c-myc transcript abundance are induced. We conclude that the abundance of c-myc transcripts in vivo correlates well with the degree of cell proliferation induced by steroid hormone. |
| Establishment of a peripheral T-cell lymphoma cell line showing amplification of the c-myc oncogene. | A new T-cell lymphoma cell line, designated T34, was established from freshly isolated lymph node tumor cells of a patient with non-Hodgkin s diffuse large cell lymphoma. The T34 cells, as well as the parental lymphoma cells, showed mature helper/inducer immunophenotypes in that they formed spontaneous sheep erythrocyte rosettes and reacted with OKT-3 and OKT-4 monoclonal antibodies. They were negative for OKT-6, OKT-8, terminal deoxynucleotidyl transferase, WT-1, and HLA-DR antigens. Molecular analysis revealed that the T34 cells contained 8- to 16-fold amplified c-myc DNA. The same genetic change was observed in parental lymphoma cells, indicating that the c-myc amplification had occurred in vivo. There was no gross rearrangement of the c-myc DNA. The c-myc gene of the T34 cell line was actively transcribed into normal-sized c-myc mRNA. Cytogenetic analysis showed that both the T34 and the parental lymphoma cells had a near-triploid karyotype with multiple structural chromosome changes. The terminal end of the long arm of chromosome No. 8, the chromosomal locus of single-copy c-myc, was elongated (8q+ chromosome), perhaps reflecting the site of c-myc amplification. These data suggested that amplification of the c-myc oncogene played some role in progression and proliferation of this peripheral T-cell neoplasm. |
| Alteration and abnormal expression of the c-myc oncogene in human multiple myeloma. | Structural alterations of the c-myc oncogene in human Burkitt s lymphoma and mouse plasmacytoma suggest that this oncogene is involved in several B cell neoplasms. The possibility of c-myc alterations in human myeloma has not been explored, probably because the low proliferative activity characteristic of this tumor impairs the propagation of representative cell lines for the performance of adequate cytogenetic studies. This report describes alterations in the c-myc locus with concomitant elevated expression of mRNA in the tumor cells of two of 37 patients with multiple myeloma. In one case, somatic cell hybrid studies revealed that the cloned rearranged DNA was entirely derived from chromosome 8, thus indicating a novel mechanism of c-myc activation different from that in Burkitt s lymphoma. Seven other patients exhibited five- to 12-fold overexpression of c-myc RNA when compared with normal marrow cells. Elevated mRNA expression in about one fourth of our patients suggests that the c-myc oncogene has a pathogenetic role in the evolution of multiple myeloma. |
| [Immunohistochemical studies on epidermal growth factor receptor and the myc oncogene product in squamous cell carcinoma of the uterine cervix]. | Recent studies have demonstrated that the amount of epidermal growth factor receptor (EGF-R) is increased in squamous cell carcinoma cells and that the amino acid sequence of EGF-R shows great homology with the v-erb B transforming protein. In this study, we examined the tissue localization of EGF-R and myc oncogene product in normal squamous epithelium, dysplasia, carcinoma in situ, invasive squamous cell carcinoma of the uterine cervix and in metastatic lymph nodes by means of the avidin/biotin immunoperoxidase technique. Normal squamous epithelium was negative for EGF-R and myc product. The lesions of dysplasia and carcinoma in situ had a positive staining for EGF-R, but were still negative for myc product. There were differences in the staining intensity of EGF-R and myc product among the types of invasive carcinoma. Staining for EGF-R and myc product was negative in small cell non-keratinizing carcinoma, whereas strong staining for both EGF-R and myc product was observed in large cell non-keratinizing and keratinizing carcinoma. The intensity of positive staining for EGF-R and myc product declined in the lesions of cancer pearl. Metastatic lymph nodes were remarkably stained for EGF-R and myc product, while non-metastatic lymph nodes were negative for EGF-R and myc product. Our observations suggest that the amplified expression of EGF-R and myc product may accompany the malignant transformation of squamous epithelium of the uterine cervix, together with the metastasis. |
| N-myc proto-oncogene expression can induce DNA replication in Balb/c 3T3 fibroblasts. | N-myc and c-myc are structurally and functionally related proto-oncogenes. C-myc expression plays an essential role towards the induction of DNA replication following mitogen stimulation of quiescent cells. We have examined whether N-myc expression can stimulate cellular DNA synthesis. When growth factor-deprived quiescent Balb/c 3T3 fibroblasts harboring a glucocorticoid-inducible N-myc gene were stimulated with dexamethasone, the resultant N-myc expression induced S-phase DNA synthesis. Hence, functional homology between N-myc and c-myc extends to their joint ability to stimulate DNA replication. |
| Transcription of the c-myc oncogene is altered in spontaneously immortalized rodent fibroblasts. | Cellular immortalization seems generally to be a necessary, but not sufficient step in tumourigenesis. We have analysed the role of the cellular oncogene, c-myc in the process of in vitro cellular ageing and spontaneous cellular immortalization using rodent fibroblasts. The steady-state level of c-myc of mouse and rat fibroblasts does not change significantly during cellular ageing in vitro. By contrast, the steady state level of c-myc mRNA increases 3- to 20-fold upon spontaneous establishment of these rodent fibroblasts. The increase in the steady-state level of this mRNA is essentially due to an increase in the transcriptional rate. Not all oncogenes respond in this way; the mRNA levels of both c-fos and c-K-ras do not show the same alteration. The changes in the steady-state level of c-myc mRNA are not due to gene amplification nor to gross gene rearrangements or translocations. However, the response of the myc gene to growth factor stimulation is present apparently equally in both mortal and immortal cells; a difference is seen in an increased maintenance of high c-myc mRNA levels after growth stimulation in established cell lines. Both young and senescent mortal cells, as well as immortal cells, respond to mitogen stimulation with a sharp increase in c-myc mRNA levels. Thus, senescent cells are able to see mitogen signals, but do not go on to initiate DNA synthesis. We also demonstrated that the c-myc mRNA levels do not respond to serum concentration above a minimum level, nor do they respond to factors in the conditioned medium of immortal cell cultures. |
| Alteration of morphogenesis by the v-myc oncogene in transplants of mammary gland. | To see if individual oncogenes can alter three-dimensional growth in vivo, we have inserted the v-myc oncogene into transplants of mouse mammary gland. Primary cultures of mammary epithelial cells were infected with helper-free retrovirus to insert v-myc oncogenes, and transplanted into cleared mammary fat pads (mammary glands from which the natural epithelium had been removed) of host mice. Uninfected transplants, and transplants infected with retrovirus constructs that carry no oncogene, grew to form an epithelial tree resembling normal mammary gland, as expected. Transplants infected with retroviruses carrying v-myc oncogenes grew to form a characteristic, abnormal (hyperplastic) pattern in which the ducts were more densely packed than normal. Integration of the retrovirus in the transplants was demonstrated. The effect of the oncogene was local, not systemic, as some transplants showed adjacent areas of normal and hyperplastic growth. Thus v-myc can alter morphogenesis without growth becoming disorganized. |
| Activation of the c-myc oncogene in a precursor-B-cell blast crisis of follicular lymphoma, presenting as composite lymphoma. | Tetra benzamidine derivatives were found to inhibit proteinase activity, cell proliferation and accumulation of the Ha-ras-1 mRNA in the FHO6T1-1 Chinese Hamster cell line, transformed with the activated human T24-Ha-ras-1 oncogene. Di- and Tri-benzamidine derivatives were also found to be potent inhibitors of proliferation of FHO6T1-1 cells. These latter compounds could be proposed as useful substrates in the synthesis of drug-conjugated monoclonal antibodies or growth factors. |
| Estrogen-induced post-transcriptional modulation of c-myc proto-oncogene expression in human breast cancer cells. | The effects of estradiol (E2) on c-myc proto-oncogene expression were studied in the estrogen receptor (ER)-positive human breast cancer cell line, MCF-7. A biphasic modulation in c-myc mRNA levels occurs during the first 24 h of E2 (1 nM) exposure and in the absence of changes in MCF-7 culture growth, with transcript levels rising 4-6-fold within 1 h, returning to near base-line level after 3-6 h, and increasing again after 24 h of exposure. In contrast, the growth-inhibiting antiestrogen, tamoxifen (1 microM), reduces c-myc to 20% of the pretreatment level within 3-6 h of exposure, and this early decline is followed by a gradual return toward base-line level after continuous 72-h treatment. In ER-negative cells there is no change in c-myc expression following E2 exposure. MCF-7 nuclear runon assays show that c-myc transcription rates remain unchanged from base line for 24 h after E2 administration; as well, cycloheximide inhibition of protein synthesis superinduces c-myc expression and prevents E2 modulation of transcript levels. These results indicate that post-transcriptional modulation of c-myc by E2 is mediated by a labile degradative protein or otherwise dependent on active protein synthesis. We also developed MCF/nm and MCF/dm sublines by transfecting normal cells with human c-myc exons 2-3, transcriptionally driven by a retroviral long terminal repeat. expression of the transfected c-myc genes in these sublines remains constant and elevated 10-fold, while transcript levels from the endogenous proto-oncogene continue to be modulated by E2. These findings suggest that in ER-positive breast cancer cells, E2 can modulate c-myc mRNA levels by a post-transcriptional mechanism that depends on gene sequences upstream from c-myc exon 2. |
| Optimal conditions for hybridization with oligonucleotides: a study with myc-oncogene DNA probes. | We present a study on the refinement of filter-hybridization conditions for a series of synthetic oligonucleotides in the range from 17 to 50 base residues in length. Experimental conditions for hybridization and the subsequent washing steps of the filter were optimized for different lengths of the synthetic oligonucleotides by varying the formamide concentration and washing conditions (temperature and monovalent cation concentration). Target DNA was immobilized to the nitrocellulose filter with the slot blot technique. The sequences of the synthetic oligonucleotides are derived from the third exon of the human oncogene c-myc and the corresponding viral gene v-myc and the G + C content was between 43 and 47%. Optimal conditions for hybridization with a 82% homologous 30-mer and 100% homologous 17-, 20-, 25-, 30-, and 50-mers were found to be a concentration of formamide of 15, 15, 30, 30, 40, and 50%, respectively. Optimal conditions for washing were 0.5X standard sodium citrate (SSC) at 42 degrees C for 2 X 15 min. The melting temperature for these optimal hybridization and washing conditions was calculated to be up to 11 degrees C below the hybridization temperature actually used. This confirms that the duplexes are more stable than expected. The melting points for 17-, 20-, and 30-mers were measured in the presence of 5X SSC and found to be 43, 58, and 60 degrees C, respectively. Competition between double- and single-stranded DNA probes to the target DNA was investigated. The single-stranded DNA probes were about 30- to 40-fold more sensitive than the double-stranded DNA probes. |
| High correlation between molecular alterations of the c-myc oncogene and carcinoma of the uterine cervix. | We have examined 35 human tumors of the uterine cervix (carcinoma presenting the highest incidence in Mexico; about 34% of women s malignant tumors) for alterations of the cellular myc (c-myc) protooncogene. Elevated amplification and/or rearrangement of the c-myc oncogene were detected in most (approximately 90%) samples (48% showed amplification and 43% presented both alterations). Most tumors were stage II cervical carcinomas and for some of them we detected up to 60-fold amplification of c-myc. These results suggest an important role for c-myc oncogene in the development of tumors of the uterine cervix. |
| Oncogene expression in ovarian cancer: a pilot study of c-myc oncoprotein in serous papillary ovarian cancer. | The nuclear-associated protein product of the c-myc gene, p62c-myc, was assayed simultaneously with total DNA using flow cytometry in nuclei extracted from archival biopsies of serous papillary carcinoma of the ovary. The oncoprotein was probed with a synthetic peptide-induced mouse monoclonal antibody which was subsequently labeled with a fluorescent rabbit anti-mouse immunoglobulin and DNA was assayed using the nucleic acid fluorochrome propidium iodide. Serous papillary ovarian carcinoma expressed significantly higher p62c-myc levels compared with normal ovary (P less than 0.00003 Mann-Whitney U test). Biopsies classified as "borderline" low-potential malignancy exhibited levels between normal ovary and carcinoma. The difference between normal and "borderline" was significant at P less than 0.003, but no difference between "borderline" and frankly invasive biopsies was observed, P = 0.149. There was no difference among the histological grades of carcinomas. ALL normal ovaries had diploid DNA content as did 5/6 cases of "borderline" malignancy. The majority of cases of carcinoma, 28/36, were aneuploid. There was a statistically significant difference in the distribution of aneuploidy, P less than 0.005, between invasive carcinomas and those classified as "borderline" low-potential malignancy. |
| N-myc oncogene amplification and prognostic factors of neuroblastoma in children. | The N-myc oncogene of 28 neuroblastic tumors obtained from 16 untreated and 12 pretreated children was clinically evaluated and compared with known prognostic factors. Significant amplification of the N-myc (more than ten copies) was observed in 0 of 2 tumors in stage I, 1 of 5 in stage II, 2 of 6 in stage III, 6 of 9 in stage IV, and 2 of 6 in stage IVS. In stages II, III, IV, and IVS, ALL 15 patients with low N-myc amplification (under ten copies) are alive without disease, while among 11 patients with the amplification, seven died with progressive disease and two have a recurrence (P less than .01). ALL tumors with N-myc amplification originated from the suprarenal region and the amplification appeared in 55% of those from that origin. The amplification also correlated with the age factor. These results suggest that the genomic amplification of N-myc seems to be correlated with known prognostic factors of neuroblastoma, and may be a reliable factor even in the case of preoperatively treated tumors. |
| Serum levels of c-myc and c-ras oncogene products in normal subjects and in patients with neoplastic and non neoplastic conditions. | A new, simple and sensitive low pH ELISA system has been developed and used to measure serum levels of c-myc and c-ras oncogene products in healthy blood donors and patients with neoplastic and non neoplastic conditions. Blood donors had significantly lower serum levels of oncogene products than patients with cancer or other pathologies (p-value less than 0.01). There was, however, no difference between patients with neoplastic and non-neoplastic conditions. Although c-myc and c-ras oncogene products in the serum appear to discriminate between healthy state and pathological conditions they do not discriminate between neoplastic and non-neoplastic conditions. |
| A critical appraisal of the immunohistochemical detection of the c-myc oncogene product in colorectal cancer. | expression of c-myc was studied immunohistochemically in 100 colorectal carcinomas, using a monoclonal antibody, Myc 1-6E10, which is purported to recognize the oncoprotein (p62c-myc) in paraffin-embedded material. In normal epithelium, maturing crypt cells and terminally differentiated surface cells were positive, and proliferating basal crypt cells negative. ALL carcinomas stained positively, but intensity was independent of histological differentiation, Dukes stage, DNA ploidy and survival. Staining was predominantly cytoplasmic despite the suspected nuclear location of p62c-myc and there was considerable staining of fibroblasts. When staining was compared in frozen and paraffin-embedded sections fixed in different ways, different patterns were observed. Acetone-fixed frozen sections exhibited weak nuclear and cytoplasmic staining or were negative. In formol-saline fixed frozen sections, there was stronger predominantly nuclear staining. In paraffin-embedded sections staining was predominantly cytoplasmic. This study suggests that c-myc expression is enhanced in the majority of colorectal carcinomas and although independent of clinical behaviour, may be a common event in malignant transformation. However, since staining is affected by fixation and processing, data obtained using Myc 1-6E10 on routinely processed specimens should be interpreted with caution. |
| A novel tumour marker related to the c-myc oncogene product. | We have studied the utility of the c-myc oncogene product as tumour marker using a set of monoclonal antibodies raised against synthetic peptides constructed from sequence data of the human c-myc oncoprotein. One antibody, Myc1-9E10, raised against the C-terminal 32 amino acids, has been shown to detect specifically the 62 kDa c-myc gene product in tumour cells. Immunoblotting of sera and urine with this antibody consistently revealed a single 40 kDa band (p40). Quantitative analysis using dilution dot immunoblotting demonstrated a considerable increase in the titre of p40 in the sera of 51 patients with a wide range of advanced solid tumours when compared with 17 healthy controls and 50 patients with non-malignant diseases. Serial measurement of the p40 titre in 12 patients with resected colorectal carcinoma shows a gradual return to normal with a half-life of 7 days. Our data suggests that p40 may be a useful new marker for monitoring tumour activity. |
| Flow cytometric quantitation of the c-myc oncoprotein in archival neoplastic biopsies of the colon. | The c-myc oncogene encoded protein product, p62c-myc, was assayed simultaneously with DNA in populations of individual nuclei extracted from archival biopsies of colonic neoplasia. Both the protein and DNA were assayed fluorimetrically using flow cytometry with a synthetic peptide induced monoclonal antibody (MYC 1-6E10) for the protein and propidium iodide for DNA. The nuclear p62c-myc levels increased progressively from normal mucosa through polyps to carcinomas. However, there was a trend for the more poorly differentiated carcinomas to exhibit lower levels than moderately and well-differentiated tumours, p = 0.085. These results agree with those published previously with the same antibody using Western blotting for protein extracted from fresh frozen tissue and immunocytochemical assessment. Furthermore, flow cytometry is able to effect discriminations between subsets in heterogeneous populations using DNA as a second parameter which Western blot bulk studies cannot. |
| Proteins encoded by the c-myc oncogene: analysis of c-myc protein degradation. | We have examined one of the most striking characteristics of the c-myc oncogene protein product: its extremely short half-life relative to ALL but a few normal cellular proteins. Our studies indicate that the rapid degradation of c-myc proteins is not confined to human and avian cells, where it was first observed, but is found in cells derived from as evolutionarily widely separated species as murine and amphibian as well as in both normal and transformed cells. In addition the rate of degradation appears to be essentially the same throughout the G1, S, and G2 phases of the cell cycle as determined by "pulse-chase" analysis of cell cycle subpopulations separated by centrifugal elutriation. Kinetic analysis of c-myc protein turnover utilizing immunoprecipitation from labelled cells or immunoblotting of total nuclei indicate that there is not likely to be a significantly large pool of the protein which is protected from degradation and that no major degradation products can be detected. Evidence that the nucleus plays a role in degradation comes from preliminary experiments which indicate that in enucleated cells the c-myc proteins are stable. We also discuss evidence suggesting that myc proteins are stable in mitotic cells. Finally, using a series of chemical agents we have found conditions which inhibit in vivo degradation. These experiments indicate the involvement of both ATP and metal ions in degradation of c-myc proteins. |
| Noncorrelation of the expression of the c-myc oncogene in colorectal carcinoma with recurrence of disease or patient survival. | Our previous work has shown that 26 of 38 cases (68.4%) of primary adenocarcinoma of the colon exhibited significantly elevated levels of c-myc RNA compared to normal colonic mucosa (M. D. Erisman, P. G. Rothberg, R. E. Diehl, C. C. Morse, J. M. Spandorfer, and S. M. Astrin. Mol. Cell. Biol., 5: 1969-1976, 1985; P. G. Rothberg, J. M. Spandorfer, M. D. Erisman, R. N. Staroscik, H. F. Sears, R. O. Petersen, and S. M. Astrin. Br. J. cancer, 52: 629-632, 1985). In this study, we have compared those levels of expression to the clinical profiles of the affected individuals in an effort to define useful correlates, especially with regard to recurrence of disease and patient survival. Log-rank comparisons of recurrence curves for the entire patient population, for those patients with low levels of c-myc RNA in resected tumor tissue, and for those patients with significantly elevated levels of RNA show no statistically significant differences. Similarly, no statistically significant difference was observed between the high- and low-myc RNA groups with respect to their survival during the postoperative period of observation (median, 25 months). Consequently, the levels of c-myc gene expression observed in primary tumor tissue did not help to define those individuals at higher or lower risk for recurrence of disease and did not point to the likelihood of increased or decreased survival in individuals undergoing surgery for adenocarcinoma of the colon. |
| An atypical t(12;15) translocation of chromosomes found in murine plasmacytomas and activation of the c-myc oncogene. | Cells from murine plasmacytomas (MPC) consistently exhibit either the 12;15 or the 6;15 translocation. Recently, we found that cells from 2 MPC (ABPC 45 and ABPC 26) did not exhibit any known translocation. However, these MPC contained one chromosome 15 (15q-) that was shorter than its normal homologue and one 12 (12q+) that was longer than its normal 12 counterpart. Chromosome 15q- contained only one thin D band, corresponding in size to either D1 or D3 band. A minor light band D2 was apparently deleted. Chromosome 12q+ contained a light F1 band that was longer than the normal 12F1. In ABPC 45, the c-myc gene was assigned by in situ hybridization to the F1 region of 12q+ as well as to its original site of 15D2. Moreover, the in situ hybridization experiment assigned the S alpha gene to the F1 regions of both chromosomes 12 and 12q+. These findings indicate that a minor light band D2 of chromosome 15 carrying the c-myc gene was translocated into the major light band F1 of 12, resulting in a longer chromosome 12q+ and a correspondingly shorter chromosome 15q-. This type of chromosomal translocation suggests that ABPC 45 developed through a cytogenetic mechanism different from that of MPC with the typical t(12;15) translocation. |
| Phorbol ester-induced terminal differentiation is inhibited in human U-937 monoblastic cells expressing a v-myc oncogene. | Induction of differentiation of the human monoblastic cell line U-937 in vitro by several physiologic and nonphysiologic inducers is accompanied by a rapid decrease in expression of MYC, the endogenous human myc protooncogene. To investigate whether this reduction is a prerequisite for terminal differentiation, we introduced a constitutively expressed v-myc gene into U-937 cells. The results show that constitutive expression of an avian v-myc oncogene does not interfere with phorbol 12-myristate 13-acetate-induced differentiation of U-937 cells early after stimulation. However, after 24 hr the differentiation process is reversed, as judged by a full recovery of the proliferative capacity and reexpression of the immature phenotype, within the next 2-4 days. We conclude that the terminal stage of macrophage differentiation is inhibited in U-937 cells constitutively expressing a v-myc oncogene. |
| In vivo amplification and rearrangement of c-myc oncogene in human breast tumors. | We have studied the genomic organization of cellular myc (c-myc) proto-oncogene in 48 human primary breast tumors. Two types of alterations (amplification and rearrangement) were observed in 27 (56%) of the tumors studied. The c-myc proto-oncogene appeared to be amplified 2- to 15-fold in the DNA of 20 tumors (41%). Non-germ line c-myc-related fragments (rearrangements) of variable size were detected in 7 primary breast tumors (6 malignant, 1 benign); 4 of these tumors presented both rearrangement and amplification, and the other 3 presented rearrangement only. The majority of the tumors analyzed were invasive ductal adenocarcinomas; 58% of these showed c-myc locus genetic alterations. Although the c-myc alterations described here do not appear to correlate with the aggressive behavior of primary breast tumors, they seem to be associated with development of breast carcinoma. |
| Surgical aspects of N-myc oncogene amplification of neuroblastoma. | The surgical aspects of N-myc oncogene amplification of neuroblastic tumors were studied in 42 patients with ganglioneuroblastoma or neuroblastoma. The cumulative survival rate of patients with fewer than 10 copies of N-myc (L group) was 73.7% 48 months after initiation of therapy, whereas the rate for those with more than 10 copies of N-myc (H group) was 0% by 20 months (P less than 0.000001). Clinical prognostic factors of neuroblastic tumors such as age, stage, histologic findings, and primary site correlated with the amplification of N-myc. N-myc amplification of more than 10 copies was evident in one of 16 (6.3%) patients less than 1 year of age and in 13 of 26 (50%) patients over 1 year of age and was detected in one of six tumors in stage II, four of 10 in stage III, seven of 16 in stage IV, and two of six in stage IV-S. The amplification occurred more frequently in patients with neuroblastoma than in those with ganglioneuroblastoma and was observed only in tumors of a suprarenal region. Preoperative chemotherapy was prescribed for 19 of the 26 patients with stage III or IV tumors and was similarly effective in both L and H groups. Ipsilateral nephrectomy or combined resection of a part of liver had to be performed in nine of 11 (82%) patients with stage III or IV tumors in the H group but in only one of 15 (6.7%) in the L group, thereby suggesting that the tumor with an amplified N-myc is more invasive. In patients in the advanced stage, total or nontotal resection of the tumor did not affect the survival in the L group, but the survival interval was prolonged significantly by the total removal of the tumor in patients in the H group. These data should aid in the surgical treatment of patients with poor-prognostic neuroblastoma and an amplified N-myc oncogene. |
| Single copies of the N-myc oncogene in neuroblastomas from children presenting with the syndrome of opsoclonus-myoclonus. | Patients with neuroblastoma who present with the syndrome of opsoclonus and myoclonus enjoy a remarkably good prognosis independent of their stage of disease or their age at diagnosis. The presence of N-myc amplification also has been found to be an independent prognostic factor in neuroblastoma. Patients with multicopy N-myc tumors have rapid tumor progression whereas those with single-copy tumors have a significantly better progression-free survival. The authors examined four primary, untreated neuroblastomas for the N-myc copy number from patients who presented with opsoclonus and myoclonus. ALL four tumors had single copies of N-myc, and ALL four patients are alive with no evidence of recurrent disease with 6+ to 54+ months follow-up. This appears to be the only report of N-myc analysis in this group of children. It would be interesting to analyze more neuroblastomas from patients who present with opsoclonus and myoclonus to determine how many of these patients have single N-myc copy tumors. |
| Rearrangement and enhanced expression of c-myc oncogene in fresh tumor cells obtained from a patient with acute lymphoblastic leukemia. | Both enhanced and altered expressions of cellular oncogenes have recently been implicated in specific forms of human malignancy (for review: [2, 8]). The fact that certain human tumors have characteristic chromosomal translocations has led to the hypothesis that specific cellular oncogenes may be activated in these genetic recombinations. In a number of human undifferentiated B-cell lymphoma (UBL) cell lines carrying the t(8:14) translocation it has been shown that the human c-myc gene is located on the region of chromosome 8 (8q24), which is translocated to the immunoglobulin heavy-chain (IHC) locus on chromosome 14 [7, 24]. We report here the molecular cloning of the recombination site between c-myc and IHC in fresh uncultured cells obtained from a patient with rapidly progressive and fatal acute lymphoblastic leukemia. The translocation was associated with an enhanced c-myc expression in the tumor cells of this patient. |
| A transfected c-myc oncogene inhibits mouse erythroleukemic differentiation. | The cellular abl oncogene and those derived by viral transduction and chromosomal translocation events encode a family of closely related proteins with intrinsic tyrosine kinase activity. The known in vitro and in vivo manifestations of these tyrosine specific kinase activities are, in general, very similar to those of other members of the src gene family. The expression of the normal c-abl messages and gene products is not remarkably different among most tissues, including the haemolymphoid system. However, the broad haemopoietic transformation spectrum of the murine v-abl protein and the association of the abl oncogene with human chronic myelogenous leukaemia suggest that some special structure-function relationship for the abl protein might hold for the growth regulation of blood forming cells. This article concentrates on recent data that have pointed the way toward several testable models for the intracellular behaviour of the c-abl proteins and their altered counterparts which function in cellular transformation and other altered growth states. More detailed review articles which cover the historical development of the field (Baltimore et al, 1979; Rosenberg and Baltimore, 1980), biological properties of the Abelson murine leukaemia virus (Risser, 1982; Whitlock and Witte, 1985) and the structure of the abl gene and its products (Witte, 1983; Konopka and Witte, 1985a) are available. |
| Amplification of the c-myc oncogene is associated with an abnormally banded region on chromosome 8 or double minute chromosomes in two HL-60 human leukemia sublines. | Two sublines of HL-60 human promyelocytic leukemia cells were examined cytogenetically with banding techniques. The karyotype of one subline was 44,X,-X,-5,-9,-10,-15,-17,+18,8q+,14q-,16q+,16q+,+mar1,+mar2 ,+mar3. The defective chromosome #8 contained an expanded chromosomal segment at the end of the long arm at band q24. The segment appeared to be a homogeneously staining region on the basis of quinacrine fluorescence banding. Using G-banding technique, this segment showed some evidence of indistinct aberrant bands and, thus, was designated an abnormally banded region (ABR). Double minute chromosomes (DM) were not seen in these cells. The second subline showed a similar karyotype; however, these cells lacked the 8q+ marker and contained one to 37 DM in approximately 90% of the cells examined. Because HL-60 cells are known to contain multiple copies of the c-myc oncogene, in situ chromosomal hybridization of a c-myc probe to HL-60 metaphase cells was performed to localize the amplified genes. The hybridization studies revealed localization to the ABR, as well as to DM, which is consistent with amplification of c-myc within these novel interchangeable chromosomal aberrations. |
| Multiple monoclonal B cell expansions and c-myc oncogene rearrangements in acquired immune deficiency syndrome-related lymphoproliferative disorders. Implications for lymphomagenesis. | AIDS (acquired immune deficiency syndrome) and ARC (AIDS-related complex) are associated with a spectrum of lymphoproliferative disorders ranging from lymphadenopathy syndrome (LAS), an apparently benign polyclonal lymphoid hyperplasia, to B cell non-Hodgkin s lymphoma (B-NHL), i.e., malignant, presumably monoclonal B cell proliferations. To gain insight into the process of lymphomagenesis in AIDS and to investigate a possible pathogenetic relationship between LAS and NHL, we investigated the clonality of the B or T lymphoid populations by Ig or T beta gene rearrangement analysis, the presence of rearrangements involving the c-myc oncogene locus, and the presence of human immunodeficiency virus (HIV) sequences in both LAS and B-NHL biopsies. Our data indicate that multiple clonal B cell expansions are present in a significant percentage of LAS (approximately 20%) and B-NHL (60%) biopsies. c-myc rearrangements/translocations are detectable in 9 of our 10 NHLs, but not in any of the LAS cases. However, only one of the B cell clones, identified by Ig gene rearrangements carries a c-myc gene rearrangement, suggesting that only one clone carries the genetic abnormality associated with malignant B cell lymphoma. Furthermore, the frequency of detection of c-myc rearrangements in AIDS-associated NHLs of both Burkitt and non-Burkitt type suggest that the biological alterations present in AIDS favor the development of lymphomas carrying activated c-myc oncogenes. Finally, our data show that HIV DNA sequences are not detectable in LAS nor in NHL B cell clones, suggesting that HIV does not play a direct role in NHL development. Taken together, these observations suggest a model of multistep lymphomagenesis in AIDS in which LAS would represent a predisposing condition to NHL. Immunosuppression and EBV infection present in LAS can favor the expansion of B cell clones, which in turn may increase the probability of occurrence of c-myc rearrangements leading to malignant transformation. |
| Interleukin-1 stimulates thyroid cell growth and increases the concentration of the c-myc proto-oncogene mRNA in thyroid follicular cells in culture. | In the course of studies of cell-mediated immunity in Graves disease, we noted that normal peripheral blood monocytes, when stimulated by bacterial lipopolysaccharide, conditioned their media with a factor that had the physicochemical properties of the lymphokine interleukin-1 (IL-1) and that enhanced DNA synthesis and replication in quiescent FRTL5 cells, a line of nontransformed rat thyroid follicular cells. This finding led to the present studies, in which the effect of IL-1 (recombinant IL-1-p) on DNA synthesis in FRTL5 was explored. In the absence of serum, IL-1 induced a small, but significant, increase in [3H]thymidine incorporation into DNA. Calf serum (0.5%) alone also stimulated DNA synthesis slightly, but it greatly enhanced, in a synergistic manner, the stimulatory response to IL-1, decreasing the minimally effective concentration of IL-1 and amplifying the response to higher concentrations. A similar synergism was noted when quiescent FRTL5 were cultured with a combination of IL-1 and a low concentration of insulin-like growth factor-I (IGF-I), which itself stimulated DNA synthesis modestly. IL-1 also increased levels of the mRNA of the proto-oncogene c-myc in quiescent FRTL5, as TSH does, an effect thought to reflect commitment of the cell to increased growth. The findings indicate that IL-1 is an independent stimulator of thyroid cell growth, and that its effects are greatly enhanced by serum, probably in large measure by the IGF-I contained therein. They raise the possibility that IL-1 generated locally by intrathyroid macrophages may act directly by a short-loop mechanism to increase goiter formation in autoimmune thyroid disease. |
| Suppression of the EGF-dependent induction of c-myc proto-oncogene expression by transforming growth factor beta in a human breast carcinoma cell line. | Alterations in c-myc proto-oncogene expression after treatment of human mammary carcinoma MDA-468 cells with epidermal growth factor (EGF) and/or transforming growth factor beta (TGF beta) have been investigated. A stimulation of c-myc messenger RNA was detected within 60 min after treatment with EGF. This induction persisted for at least 24 hr, albeit to a lower extent. The early and late increase in c-myc mRNA levels induced by EGF were inhibited by the presence of TGF beta. TGF beta alone induced little change in c-myc mRNA levels. The effect of TGF beta represents a novel action of this hormone at the level of gene expression. |
| Expression of c-myc proto-oncogene in normal human lymphocytes. Regulation by transcriptional and posttranscriptional mechanisms. | Aberrant expression of the c-myc gene results from nonrandom chromosomal translocations involving the transcriptionally active antigen receptor gene loci, in particular lymphocytic leukemias and lymphomas, and is believed to contribute to the etiology of these neoplasms. In addition to its expression in abnormal lymphocytes, increased accumulation of c-myc mRNA occurs rapidly in normal B- and T-lymphocytes after stimulation with appropriate mitogens. The mechanisms that mediate these mitogen-induced elevations in c-myc mRNA levels, however, have not been determined for normal B and T cells. By using enriched populations of B- and T-lymphocytes obtained from freshly isolated human tonsils and stimulated with Staphylococcus-A or with phytohemagglutinin, respectively, we observed marked elevations (20-40-fold) in the steady state levels of accumulated c-myc messenger RNA (mRNA) within 1 h of exposure of cells to mitogens; modest increases (three- to fivefold) in the relative rate of transcription of the c-myc gene through protein synthesis-independent (cycloheximide-insensitive) mechanisms; and rapid rates of degradation of mature c-myc mRNAs through protein synthesis-dependent (cycloheximide-sensitive) mechanisms. These findings corroborate previous studies in other cell types and provide evidence for both transcriptional and posttranscriptional control of c-myc proto-oncogene expression in normal human lymphocytes. |
| Expression of the c-myc proto-oncogene in growth stimulated porcine thyroid follicle cells. | In the present investigation the expression of c-myc in porcine thyroid follicle cells following the incubation with TSH or EGF was studied. EGF did not only have a mitotic effect on thyroid follicles but also increased c-myc mRNA. The increase in c-myc RNA is an early event in EGF stimulated thyroid cells. TSH had no effect on c-myc RNA levels of porcine thyroid cells. EGF-binding and sensitization to the mitotic activity of EGF, however, is increased by TSH. While TSH stimulates cAMP production and functional activity but not growth or c-myc expression of porcine thyroid cells, EGF produces cell division accompanied with c-myc expression. |
| The myc oncogene and lymphoid neoplasia: from translocations to transgenic mice. | The expression of Ha-ras oncogene product in rat gastrointestinal carcinomas induced by N-methyl-N -nitro-N-nitrosoguanidine (MNNG) or 1, 2-dimethylhydrazine (DMH) was studied by Western blotting and immunohistochemistry using anti-Ha-ras p 21 oncoprotein antibody. In Western blotting, high levels of c-Ha-ras p 21 were found in serially transplantable rat duodenal carcinomas induced by MNNG and rat colon carcinomas induced by DMH. Immunohistochemically, c-Ha-ras p 21 immunoreactivity was detected in 3 (16.7%) of 17 MNNG-induced stomach carcinomas and in 21 (63.6%) of 33 DMH-induced colon carcinomas, respectively. In the colon carcinomas, c-Ha-ras p 21 immunoreactivity in deeply invasive tumors was stronger than that in superficially invasive tumors and was expressed in ALL subserosal tumors. Moreover, ALL of the metastatic colon carcinomas had c-Ha-ras p 21 immunoreactive tumor cells. These findings suggest that c-Ha-ras p 21 expression plays an important role in tumor proliferation, invasion and metastasis of DMH-induced colon carcinoma. |
| Detection of the c-myc oncogene product in colonic polyps and carcinomas. | The c-myc oncogene has been implicated in the processes of normal cell proliferation and differentiation. Elevated levels of c-myc mRNA and its gene product (p62c-myc), have been detected in a variety of solid tumours and cultured cel lines. Its precise role in normal cell function and in neoplastic transformation and progression has yet to be elucidated. We have used a monoclonal antibody, raised by peptide immunisation, to determine the distribution by immunoperoxidase staining of the c-myc oncogene product in archival specimens of colonic polyps and carcinomas. Samples from 42 patients with colon carcinoma, 24 with benign polyps and 15 normal colon biopsies were examined. Normal colon revealed maximum staining in the mid-zone of the crypts, corresponding to the zone of differentiation and maturation. The staining was predominantly cytoplasmic. Adenomatous polyps revealed the most intense pattern of staining in areas of dysplastic change. Colonic tumours showed a wide range of staining. Well differentiated tumours contained more cytoplasmic p62c-myc than poorly differentiated tumours. These findings suggest that the c-myc oncogene product may play an important role in the evolution of colonic neoplasia. |
| Kinetics of cellular oncogene expression in mouse lymphocytes. I. Expression of c-myc and c-ras-Ha in T lymphocytes induced by various mitogens. | Murine splenic T lymphocytes display maximal cellular myc gene (c-myc) expression already 3 h after concanavalin A stimulation and subsequent down-regulation before the onset of DNA synthesis. Stimulation by leucoagglutinin in the presence or absence of interleukin 2 leads to only low initial levels of c-myc-specific RNA which, however, increase later on. A similar pattern of c-myc expression is shown by the Lyt-2+ T cell subpopulation stimulated with either concanavalin A or leucoagglutinin in the presence of interleukin 2. Although [3H]thymidine incorporation was identical, the leucoagglutinin-stimulated Lyt-2+ T cells were void of any demonstrable c-myc-specific RNA at 3 h post-stimulation. Thus, the kinetics of c-myc expression in mouse T lymphocytes are not at ALL uniform, but depend on the mitogen and the subpopulation. In contrast, levels of c-ras-Ha-specific RNA were always low at early times, always increased towards the onset of DNA synthesis and down-regulation was not observed. |
| A translocated human c-myc oncogene is altered in a conserved coding sequence. | We have cloned and characterized a c-myc (now designated MYC) oncogene that had been translocated into the mu switch region of the immunoglobulin heavy chain locus in a Burkitt lymphoma cell line. The breakpoint of the translocation occurs within the first intron of the c-myc gene, thereby separating the untranslocated first exon from the two coding exons. Transcription from the translocated gene arises from a cryptic promoter within the first intron, which produces a 438-nucleotide untranslated 5 region. The amino acid sequence of the protein encoded by the c-myc gene has been substantially altered. In particular, a compensating set of frameshift mutations alters a string of 24 amino acids in a region of the protein tightly conserved in human, mouse, and chicken c-myc genes as well as in the human N-myc and L-myc oncogenes. Despite this, the mutated gene retains a reduced transforming ability in a rat embryo fibroblast focus-formation assay. |
| The distribution of the c-myc oncogene product in malignant lymphomas and various normal tissues as demonstrated by immunocytochemistry. | The expression of c-myc was studied in 51 malignant lymphomas and in a variety of normal tissues by immunocytochemistry using monoclonal antibodies raised to different synthetic peptides and reacting monospecifically with the c-myc product (p62c-myc). The c-myc product was detected in only a minority of malignant lymphomas principally those containing cells with immunoblastic characteristics, and was predominantly localised to the cytoplasm. In normal lymphoid tissues only plasma cells and histiocytes were found to have immunoreactivity. In non-lymphoid normal tissues, however, the c-myc product was distributed widely. Marked differences in its intracellular distribution were apparent in different tissues. These findings suggest that the relationship of p62c-myc expression to cell division may be more complex than previously suggested by in vitro studies, and raise the possibility that it may have other functions within the cell. |
| Expression of a transfected human c-myc oncogene inhibits differentiation of a mouse erythroleukaemia cell line. | The Friend-virus-derived mouse erythroleukaemia (MEL) cell lines represent transformed early erythroid precursors that can be induced to differentiate into more mature erythroid cells by a variety of agents including dimethyl sulphoxide (DMSO). There is a latent period of 12 hours after inducer is added, when 80-90% of the cells become irreversibly committed to the differentiation programme, undergoing several rounds of cell division before permanently ceasing to replicate. After DMSO induction, a biphasic decline in steady-state levels of c-myc and c-myb messenger RNAs occurs. Following the initial decrease in c-myc mRNA expression, the subsequent increase occurs in, and is restricted to, the G1 phase of the cell cycle. We sought to determine whether the down-regulation is a necessary step in chemically induced differentiation. Experiments reported here indicate that expression in MEL cells of a transfected human c-myc gene inhibits the terminal differentiation process. |
| Expression of the c-myc proto-oncogene during development of Xenopus laevis. | We isolated and characterized Xenopus laevis c-myc cDNAs from an oocyte-specific library. These cDNA clones encompass 2.35 kilobases of the X. laevis c-myc RNA and contain the entire coding domain of 1,257 nucleotides of the 419-amino acid-long X. laevis c-myc protein. The 2.7-kilobase X. laevis c-myc mRNA is expressed in the oocyte, maintained in the egg, and is present throughout the early cleavage stages of embryogenesis. At the time of transcriptional activation in the embryo the c-myc RNA levels show a significant decline and then reaccumulate continuously throughout the remainder of premorphogenic development. At the early neurula stage of embryogenesis the pattern of c-myc RNA expression is elevated in the mesoderm with respect to the endoderm and ectoderm. In the adult X. laevis the c-myc mRNA is expressed in some (e.g., skin, muscle) but not ALL differentiated tissues. The X. laevis c-myc protein migrates as a doublet of 61,000- and 64,000-dalton species. Both species are phosphorylated in oocytes and somatic cells, exhibit extremely short half-lives of less than 30 min, and are localized to the nuclear fraction of somatic cells. By contrast, the oocyte protein shows both cytoplasmic and germinal vesicle distribution and appears to be stable. |
| Immunohistochemical localization of epidermal growth factor receptor and myc oncogene product in human placenta: implication for trophoblast proliferation and differentiation. | Cytologic localization of epidermal growth factor receptor and myc oncogene protein product in developing human placenta was analyzed by avidin/biotin immunoperoxidase techniques with a monoclonal antibody to epidermal growth factor receptor and an affinity purified polyclonal antibody to myc protein product. Epidermal growth factor receptor was found to be almost exclusively localized to syncytiotrophoblast, paralleling the immunohistochemical localization of human chorionic gonadotropin. Since epidermal growth factor has been shown to stimulate human chorionic gonadotropin and human placental lactogen production by cultured early placental tissue, the present finding that epidermal growth factor receptor was localized to mitotically inactive syncytiotrophoblast suggests a role for epidermal growth factor receptor in the induction of differentiated function of trophoblast rather than trophoblast proliferation. By contrast, myc protein product was found to be predominantly localized to cytotrophoblastic cells, paralleling the autoradiographic distribution of replicating cytotrophoblast identified by tritiated thymidine labeling of placental explant. A close similarity between the cytologic localization of myc protein product and tritiated thymidine labeling of placental explant suggests that myc protein expression is linked to trophoblast proliferation. Furthermore, immunohistochemical cellular levels of both epidermal growth factor receptor and myc protein product were most pronounced in early placenta and declined in term placenta. Thus myc protein product and epidermal growth factor receptor seem to play a crucial role in the induction of trophoblast proliferation and differentiation, respectively, during the development of human placenta. |
| Expression of c-myc oncogene in coeliac disease. | A monoclonal antibody, produced by peptide immunisation was used to detect the distribution of p62c/myc by immunohistology in normal and coeliac small intestinal mucosa. The effect of gluten in four treated coeliac patients was investigated by taking serial jejunal biopsy specimens for six hours after a 10 g oral gluten challenge. There was a progressive increase in p62c/myc staining intensity in the villus enterocytes extending to the crypts, which accompanied the classical morphological changes occurring in the mucosa. |
| Regulation of expression of the c-myc proto-oncogene. | A monoclonal antibody, produced by peptide immunisation was used to detect the distribution of p62c/myc by immunohistology in normal and coeliac small intestinal mucosa. The effect of gluten in four treated coeliac patients was investigated by taking serial jejunal biopsy specimens for six hours after a 10 g oral gluten challenge. There was a progressive increase in p62c/myc staining intensity in the villus enterocytes extending to the crypts, which accompanied the classical morphological changes occurring in the mucosa. |
| Flow cytometric quantitation of DNA and c-myc oncoprotein in archival biopsies of uterine cervix neoplasia. | The c-myc nuclear associated oncoprotein has been quantitated simultaneously with DNA in nuclei extracted from archival biopsies of uterine cervix neoplasia. The oncoprotein and DNA were measured fluorimetrically in a flow cytometer using a mouse monoclonal antibody (MYC 1-6E10) and propidium iodide. Normal biopsies exhibited higher oncoprotein levels than carcinomas (P less than 0.00001). Furthermore, the maximum fluorescence signal in the normal tissue occurred at a lower antibody concentration compared with tumour tissue. There was no correlation between oncoprotein levels and histological grade, stage of disease, age of the patients or prognosis in the carcinomas. Aneuploidy, defined as a distinct second peak separate from the diploid distribution, was not a significant feature. The c-myc oncoprotein nuclear content does not appear to be a prognostic indicator in carcinoma of the cervix from the results of these studies but there is clearly diagnostic potential, particularly for automated analysis of cervical screening. |
| Kinetics of cellular oncogene expression in mouse lymphocytes. II. Regulation of c-fos and c-myc gene expression. | Newly isolated lymphocytes from mouse spleens express the c-fos oncogene even in the absence of mitogen with maximal mRNA levels 60 min post preparation of single cell suspension, whereas c-myc mRNA levels increase only after mitogenic stimulation with maximal mRNA levels 6 h post stimulation. The half-lives of c-fos mRNA are generally very short; they increase from 14 min (after 30 min of culture) to 70 min (after 2 h of culture). The half-lives of c-myc mRNA decrease from 50 min (at 2 and 6 h post stimulation with concanavalin A) to 12 min (at 48 h post stimulation). The c-fos gene transcription is already turned on in time-0 lymphocytes 10 min after disruption of the organ structure of the spleens and is down-regulated after 2 h and later. In nuclear run-on experiments with nonstimulated lymphocytes there is already significant transcription of the first exon of c-myc, but almost no elongation of the transcript to exon 2 and 3. In concanavalin A-treated lymphocytes elongation is stimulated about 5-fold within 6 h and returns to background levels at 48 h post stimulation. The nuclear run-on analyses of nonactivated lymphocytes showed a signal for RNA complementary to c-myc mRNA detected with a probe specific for the exon 1/intron 1 boundary of c-myc, which disappeared with increasing time of concanavalin A stimulation. This anti-sense transcription may play a role in regulating the elongation of c-myc transcripts. |
| Evolution of tumor cytogenetic aberrations and N-myc oncogene amplification in a case of disseminated neuroblastoma. | Chromosome analyses including in situ hybridization with the protooncogene N-myc were carried out at diagnosis and several times at relapse in the bone marrow cells of a girl with disseminated neuroblastoma (stage IV) at ages 9, 23, 24, and 26 months, respectively. The tumor karyotype was pseudodiploid exhibiting partial monosomy for the short arm of chromosome #1, an aberration of the short arm of chromosome #2, and double minutes at diagnosis. Further structural aberrations of chromosomes #4, #6, and #17, and homogeneously staining regions could be demonstrated at relapse. In particular, the following structural aberrations were encountered: t(1;?)(p22;?),t(2;?)(p24;?), t(4;6)(q31;q25), and a der(17q). ALL tumor metaphases without homogeneously staining regions contained double minutes. N-myc, normally positioned within bands 2p23-24, was found to be amplified in a homogeneously staining region on the short arm of chromosome #15 by in situ hybridization. It is speculated that the translocation t(2;?)(p24;?) might be related to N-myc oncogene activation and subsequent amplification. |
| Amplification of N-myc oncogene in stage II and IVS neuroblastomas may be a prognostic indicator. | The amplification of N-myc oncogene is frequently observed in tumors of patients with advanced, poor prognostic stages of neuroblastoma (unfavorable stage group). However, there has been little documentation of the N-myc amplification in tumors of patients with stages II and IVS neuroblastoma (favorable stage group). In this communication, we present data on one patient in stage II and two in stage IVS. In these children, the primary tumors had an amplified N-myc and the clinical course was poor. In addition, from an analysis of the N-myc oncogene of 26 neuroblastomas, genomic amplification of more than three copies was observed in 4 of 11 (36%) in the favorable stage group, and in 9 of 15 (60%) in the unfavorable stage group. Death occurred only in those with an amplified N-myc, in both groups. The smaller copy number of N-myc amplification of stage IVS tumors as compared with those of stages III and IV, appeared to be characteristic. These findings suggest that N-myc amplification may be a reliable prognostic indicator even in the favorable stage group of neuroblastomas, and may be clinically useful as a guide for treating those with a poor prognosis in stages II and IVS. |
| N-myc oncogene amplification in a patient with IV-S neuroblastoma. | Neuroblastoma (NB) is a tumor usually arising in children and young adults showing different degrees of malignancy. Recently, the presence of N-myc amplification in neuroblasts has been associated with a poor outcome in the late stages of disease (Evans s Stage IV). Until now no amplification of N-myc gene has been observed in Stage IV-S, usually considered to have a favorable prognosis. In this paper we report a case of a child affected by NB Stage IV-S showing mild N-myc gene amplification. The finding of N-myc amplification in our patient shows that such alteration of the N-myc oncogene is not necessarily correlated with a poor prognosis; in this light the role of N-myc amplification in the neoplastic process should be reconsidered. |
| [Expression of myc oncogene in estrogen promoted rat hepatic tumor--comparison with anti-estrogen treated liver]. | Neuroblastoma (NB) is a tumor usually arising in children and young adults showing different degrees of malignancy. Recently, the presence of N-myc amplification in neuroblasts has been associated with a poor outcome in the late stages of disease (Evans s Stage IV). Until now no amplification of N-myc gene has been observed in Stage IV-S, usually considered to have a favorable prognosis. In this paper we report a case of a child affected by NB Stage IV-S showing mild N-myc gene amplification. The finding of N-myc amplification in our patient shows that such alteration of the N-myc oncogene is not necessarily correlated with a poor prognosis; in this light the role of N-myc amplification in the neoplastic process should be reconsidered. |
| Rodent fibroblast tumours expressing human myc and ras genes: growth, metastasis and endogenous oncogene expression. | The effects of expression of human c-myc and both mutated (T24) and normal forms of human Ha-ras-1 were studied in an aneuploid rat fibroblast line (208F). Mutated T24 Ha-ras was also studied in a near-diploid cell derived from early passage Chinese hamster lung fibroblasts (CHL). In contrast to the parental fibroblasts, cells expressing any of the human oncogenes engendered rapidly growing tumours in immune-suppressed animals. Blood- and lymph-borne metastases were observed from both ras- and myc-expressing cells. In general ras-expressing cells were more aggressive than those expressing myc. In the 208F background, expression of c-myc was associated with an incidence of mitosis similar to that in tumours expressing T24 Ha-ras, but incidence of single cell death by apoptosis was higher. Quantitatively, expression of human oncogene mRNA was constant during growth in vivo, and similar to that sometimes observed in human neoplasms. Of 9 endogenous proto-oncogenes, 7 showed no change in expression from the parental fibroblasts, but c-abl and c-fos were strongly expressed in ALL cells expressing human ras or myc. Thus these tumorigenic cells, although transfected with single human oncogenes, ALL expressed oncogenes with both nuclear- and membrane-associated products. |
| Stimulation of c-myc oncogene expression associated with estrogen-induced proliferation of human breast cancer cells. | Regulation of c-myc expression is known to be sensitive to a variety of mitogenic stimuli in various cell types. Since estrogen is a well documented mitogen of estrogen-responsive human breast cancer (HBC) cells, we studied the influence of estradiol and its antagonist tamoxifen on the expression of c-myc in HBC cell lines. Using Northern hybridization analysis, we monitored the accumulation of c-myc mRNA in a number of HBC cell lines. The cell lines studied included the estrogen-responsive, estrogen receptor positive (ER+) MCF-7, T-47D, the nonresponsive, estrogen receptor negative (ER-) MDA-MB-231, BT-20, and a nontumorous breast cell line, HBL-100. The effects of endogenous estrogen were minimized by culturing the cells in medium containing 10% (v/v) charcoal-treated fetal bovine serum and tamoxifen (10(-6) M) for 48 h prior to estradiol (10(-7) M) treatment. In the ER+ cell lines the addition of estradiol resulted in a noticeable increase in c-myc expression after 15 min with a maximal (greater than 10-fold) induction in 1-2 h. In the ER- cell lines the level of c-myc mRNA was high and was unaffected by estrogen or tamoxifen; in the ER- cancer cell lines, neither amplification nor rearrangement of the c-myc gene was observed. In contrast, the expression of another oncogene, c-H-ras, remained constant in both ER+ and ER- cell lines and was insensitive to estrogen and antiestrogen. These results suggest that regulation of c-myc expression may be an important step in estrogen-induced proliferation of HBC cells. |
| Expression of c-Myc, c-Myb, c-Erb-B and c-H-Ras oncogene mRNAs in fibroblasts cultured from psoriatic patients. | The abnormally high rate of proliferation described in cultured psoriatic fibroblasts could result from inappropriate expression of cellular oncogenes (c-onc) associated to the control of cell division. Four c-onc (c-Myc, c-Myb, c-Erb-B, c-H-Ras) were studied in cultured fibroblasts from lesional and nonlesional psoriatic skin (n = 6) and compared with normal subjects (n = 3). RNA was analyzed by hybridization with nick-translated cloned human DNA probes after extraction by the guanidinium thiocyanate/LiCl procedure, electrophoresis and transfer on nitrocellulose. No difference in the level of c-Myc and c-Myb mRNA could be detected in psoriatic skin compared with controls. N-Ras did not give a detectable signal and c-Erb-B exhibited individual variations which were not linked to the disease. These results do not rule out subtle qualitative changes of these genes; moreover, an abnormal mRNA expression of other c-onc remains possible in psoriasis. |
| Genomic rearrangements of the c-myc proto-oncogene in human malignant lymphomas. | The met proto-oncogene was mapped in the mouse and cat genomes with the use of mouse X hamster and cat X rodent somatic cell hybrid DNA panels. Based on these analyses we assigned the met gene to mouse chromosome 6 and to cat chromosome A2. We also assigned the cat raf-1 proto-oncogene to the A2 chromosome; met and raf-1 are the first cloned DNAs mapped to this linkage group. Using an interspecies backcross we further localized met on mouse chromosome 6 to a position proximal to the beta chain of the T-cell receptor. This places met near the obese locus in a region of mouse chromosome 6 that appears to be homologous with the long arm of human chromosome 7. The close linkage of met to the gene responsible for cystic fibrosis in humans suggests that further genetic analysis of mouse chromosome 6 may be useful in developing a mouse model for the disease. |
| Characterization of a MH2 mutant lacking the v-myc oncogene. | We have previously reported that a virus, MH2-PA200, lacking the ability to transform quail embryo cells, could be isolated from wild type (wt) MH2 stocks passaged on chicken neuroretina cells. We report here the molecular cloning and extensive characterization of this MH2-PA200 provirus. Molecularly cloned MH2-PA200 DNA was found to stimulate the growth of neuroretina cells by transfection assays and our results indicate that this recombinant virus was derived from the RAV-1 helper virus, in which v-mil and a small part of v-myc of MH2 were acquired at the expense of helper (delta gag-pol-delta env) sequences. In order to assess the precise boundary between the myc and env genes we determined the nucleotide sequence of the junction fragment and showed that 11 of 13 nucleotides of the env gene were identical to the myc sequence at the recombination point. The nucleotide sequence of the myc-env junction fragment of another similar and independently generated MH2 mutant showed similarly 9 nucleotides of homology between the env and myc sequences at the recombination point that took place at another site, suggesting that a homologous recombination occurred between MH2 and RAV-1 viruses to generate MH2-PA200 and similar mutants. |
| Activation of the c-myc oncogene. | Activated forms of the c-myc oncogene have been linked to cell transformation in a variety of mammalian and avian tumors. Several mechanisms of gene activation have been described, but each mechanism gives rise to constitutive levels of expression, usually no higher than that found in proliferating normal cells. Thus, activation of the c-myc oncogene appears to require high levels of the c-myc protein, in particular at stages of cell growth and differentiation during which the gene is supposed to be inactive. |
| Regulation of oncogene expression in cultured aortic smooth muscle cells. Post-transcriptional control of c-myc mRNA. | Proliferation of normally quiescent vascular smooth muscle cells plays a major role in the development of an atherosclerotic lesion. Since cellular homologues of oncogenes have been implicated in the control of normal cell proliferation, we have analyzed the regulation of expression of two proto-oncogenes (c-fos and c-myc) in primary cultures of calf aortic smooth muscle cells during the transition from quiescence to proliferation. Quiescent (serum-deprived) smooth muscle cells were stimulated to proliferative by serum addition. DNA synthesis began 12 h post-serum addition and peaked between 16 and 20 h. Following addition of serum, c-fos mRNA levels increased rapidly from an undetectable amount to the maximal level at 30 min after serum addition and then rapidly returned to the levels found in quiescent cells. Changes in the rate of c-fos gene transcription, as measured by nuclear "runoff" assays, paralleled the alterations in mRNA levels, indicating that regulation of c-fos was at the level of mRNA synthesis. The mRNA for the c-myc oncogene was expressed at a detectable level in quiescent cells, peaked in abundance at approximately 2 h after stimulation, and then returned to the level found in quiescent cells. No significant change in the rate of c-myc gene transcription was detectable over the time course. The rate of decay of c-myc mRNA following the inhibition of transcription by actinomycin D was measured at the 1- and 4-h time points and in exponentially growing cells. There was a transient stabilization of the normally labile c-myc mRNA at 1 h after serum stimulation. Thus c-myc gene expression was regulated at the level of mRNA turnover. |
| Expression of c-myc oncogene in rat liver by a dietary manipulation. | After rats deprived of protein for several days are fed a meal containing protein, hepatic DNA replication is induced. When nuclear DNA synthesis is stimulated in the normally quiescent rat liver by a dietary manipulation, we examined the changes of the steady-state levels of messenger RNA for c-myc. Levels of c-myc mRNA are gradually elevated approximately 4 to 5-fold above normal in the livers of rats that are fed for several days a diet that lacks protein. After a nutritional shift from a protein-free diet to a diet containing 50% casein, the levels of c-myc mRNA decrease rapidly by 2 h and returned to approximately basal levels after 8 h. Our results suggest that c-myc expression during the prereplicative stage of liver is likely to reflect events associated with entry and progression of hepatocytes into the cell cycle. |
| [Amplification of the N-myc cellular oncogene in neuroblastoma. Relation to other tumor markers]. | N-myc oncogene is amplified in several human neuroblastoma cell lines and fresh neoplastic tissues; amplification would be highly correlated with advanced stages of neoplasia and associated with poor outcome of the disease. According to these data, N-myc amplification should be a new prognostic marker in addition to classical clinical and laboratory findings commonly monitored in neuroblastoma; some of them are levels of urinary Vanillylmandelic Acid (VMA) and Homovanillic Acid (HVA), serum Lactic Dehydrogenase (LDH) and serum Ferritin (sFe). We studied 4 patients in stage III and IV; N-myc amplification was detected in 2 cases in stage IV in primary tumor cells and in one case this finding was associated with high levels of serum Ferritin and LDH, while no correlation between other laboratory parameters and N-myc amplification has been found. We propose that N-myc amplification has to be evaluated with other prognostic factors to obtain useful information about the disease and the survival of the patient. |
| Human proto-oncogene N-myc encodes nuclear proteins that bind DNA. | N-myc is a gene whose amplification has been implicated in the genesis of several malignant human tumors. We have identified two proteins with molecular weights of 65,000 and 67,000 encoded by N-myc. The abundance of these proteins in tumor cells was consonant with the extent of amplification of N-myc. The two proteins apparently arose from the same mRNA, were phosphorylated, were exceptionally unstable, were located in the nucleus of cells, and bound to both single- and double-stranded DNA. These properties suggest that the products of N-myc and of the related proto-oncogene c-myc may have similar biochemical functions and that N-myc may be a regulatory gene. Our findings sustain the view that inordinate expression of N-myc may contribute to the genesis of several different human tumors. |
| Localisation of lung cancer by a radiolabelled monoclonal antibody against the c-myc oncogene product. | A set of mouse nonoclonal antibodies against the c-myc oncogene product, a 62,000 dalton nuclear binding protein involved in cell cycle control, has been constructed by immunisation with synthetic peptide fragments. One such antibody, CT14, was radiolabelled with 131I and administered to 20 patients with different malignant diseases. Good tumour localisation was observed in 12 out of 14 patients with primary bronchial carcinoma but not in patients with pulmonary metastases from primary tumours elsewhere. Successfully localised tumours were ALL 3 cm or more in diameter. Monoclonal antibodies against oncogene products may provide novel selective tools for the diagnosis and therapy of cancer. |
| The v-myc oncogene is sufficient to induce growth transformation of chick neuroretina cells. | A number of studies have shown that full transformation of non-established rodent fibroblasts can be efficiently achieved in vitro by the concerted action of two oncogenes belonging to different complementation groups. Extension of the two-genes carcinogenesis model to other differentiated cell types, presumably endowed with different controls of growth, is desirable for a better understanding of questions such as the host cell selectivity of oncogene action. A recent report claimed that cooperation between two oncogenes, v-myc and v-mil, is required to achieve transformation of chicken embryo neuroretina cells, which are characterized by a limited growth capacity in monolayer culture. Here we present evidence that the v-myc oncogene alone is sufficient to induce growth transformation of glial and neuronal precursor cell types from chick neuroretina. We also report that induction of transformation by v-myc is accompanied by faithful preservation of some of the differentiated functions of the chick cells. |
| [Genetic transformation of somatic cells. X. Morphological transformation and changes in the growth characteristics of NIH 3T3 cells administered the oncogene v-myc]. | Transfection of the plasmid containing the cloned gag-myc part of retrovirus MC 29 into mouse NIH 3T3 cells induces focuses of morphological transformation. Isolated morphological transformants have a decreased dependence on serum growth factors, a higher saturation density in monolayer, and an increased cloning efficiency on the glass and in agar. Induced traits are stably inherited, and may constitute the direct consequence of stable maintenance and expression of transfected oncogens. |
| Suppression of the normal mouse c-myc oncogene in human lymphoma cells. | In Burkitt s lymphoma, which carries the t(8;14) chromosome translocation, the c-myc oncogene normally located on band q24 of human chromosome 8 (refs 1-3) translocates to the heavy-chain locus on chromosome 14 (refs 1, 4, 5); this results in transcriptional deregulation of the translocated c-myc oncogene, which is transcribed constitutively at elevated levels, while the normal c-myc oncogene on the uninvolved chromosome 8 is either silent or expressed at very low levels (A.ar-R. and C.M.C., unpublished results). We have now introduced the active c-myc oncogene of proliferating mouse spleen cells into human lymphoma cells carrying the t(8;14) chromosome translocation by hydridization, and have examined the hybrids for expression of the human and murine c-myc oncogene. The results of this analysis, reported here, indicate that the active mouse myc gene is shut off at the transcriptional level in the human lymphoma cells, implying that human B cells at the stage of differentiation of lymphoma cells used in this study are nonpermissive for normal c-myc transcription. |
| The translocated c-myc oncogene of Raji Burkitt lymphoma cells is not expressed in human lymphoblastoid cells. | We hybridized Raji Burkitt lymphoma cells, which carry a t(8;14) chromosome translocation, with human lymphoblastoid cells to study the expression of the translocated cellular myc oncogene (c-myc) in the hybrid cells. In Raji cells the c-myc oncogene is translocated to a switch region of the gamma heavy chain locus (S gamma). Because of sequence alterations in the 5 exon of the translocated c-myc oncogene in this cell line, it is possible to distinguish the transcripts of the translocated c-myc gene and of the normal c-myc gene. S1 nuclease protection experiments with a c-myc first exon probe indicate that Raji cells express predominantly the translocated c-myc gene, while the level of expression of the normal c-myc gene is less than 2% of that of the translocated c-myc gene. Somatic cell hybrids between Raji and human lymphoblastoid cells retain the lymphoblastoid phenotype and express only the normal c-myc oncogene. This result indicates that the activation of a c-myc oncogene translocated to a S region depends on the stage of B-cell differentiation of the cells harboring the translocated c-myc gene and not on alterations in the structure of the translocated c-myc oncogene. |
| Transformation of mouse bone marrow cells by transfection with a human oncogene related to c-myc is associated with the endogenous production of macrophage colony stimulating factor 1. | We recently derived a series of transformed cell lines by transfecting mouse bone marrow cells highly enriched for macrophage progenitors with a newly described human gene, R-myc, which has homology to the c-myc oncogene. In this report, we show that these lines share some features characteristic of cells of the mononuclear phagocyte lineage. Specifically, ALL cell lines had macrophage- or monocytelike morphology, contained nonspecific esterase, were phagocytic for latex beads, secreted lysozyme, bore the Mac-1 antigen, and contained a minority of cells with Fc receptors. However, only a single monocytelike clone had appreciable numbers of cells which bore complement receptor 1, and none were phagocytic for antibody or complement-coated particles, or constitutively secreted Interleukin-1. ALL these cell lines secreted a growth factor capable of supporting the in vitro proliferation of bone marrow macrophages. Radioimmunoassay and receptor binding studies indicate that this factor is colony stimulating factor 1. |
| c-myc oncogene protein synthesis is independent of the cell cycle in human and avian cells. | Several lines of evidence suggest a role for the myc oncogene in cell proliferation. Most recently, mitogenic stimulation of quiescent lymphoid, fibroblast and epithelial cells has been demonstrated to lead to a sharp increase in c-myc RNA levels. To determine how c-myc expression is linked to the cell proliferative cycle, we have used centrifugal elutriation to enrich for populations of avian and human cells at different stages of the cell cycle. Centrifugal elutriation is a counterflow centrifugation method that separates cells on the basis of volume, a parameter correlating well with progression through the cell cycle. Using myc-specific anti-peptide antibodies, we show here that the synthesis, half-life and modification of c-myc proteins are constant throughout the cell cycle of normal and transformed cells. |
| Amplification and enhanced expression of the c-myc oncogene in mouse SEWA tumour cells. | SEWA tumour cells are derived from an osteosarcoma induced in an A.SW mouse by infection with polyoma virus. Cytogenetic analyses have revealed three different characteristic chromosomal abnormalities diagnostic for the presence of amplified genes: double minutes (DMs), homogeneously staining chromosomal regions (HSRs) and C-bandless chromosomes (CMs; for review see ref. 2). DMs may undergo fluctuation in number depending on the conditions in which the cells grow. Their number usually increases after injection of cells into a mouse and often is reduced to undetectable levels when the cells are explanted back into tissue culture; when the cells are re-introduced into the mouse, they again acquire multiple DMs. We show here that cells of SEWA lines carrying DMs, HSRs or CMs contain amplified copies of the proto-oncogene c-myc and enhanced levels of c-myc messenger RNA and c-myc protein. DMs or CMs are the sites of c-myc amplification in two different SEWA lines. |
| A simultaneous flow cytometric assay for c-myc oncoprotein and DNA in nuclei from paraffin embedded material. | A simultaneous flow cytometric assay for the c-myc oncoprotein and DNA in nuclei extracted from archival paraffin wax embedded clinical biopsies is presented. The nuclei were extracted by pepsin digestion after dewaxing 20 micron sections. The c-myc oncoprotein was probed with a mouse monoclonal antibody. This was raised against a synthetic peptide corresponding to a hydrophilic region of the protein predicted from the amino acid sequence. The technique is illustrated with biopsies from patients with testicular cancer and with benign and malignant neoplasms of the colon. |
| The c-myc oncogene driven by immunoglobulin enhancers induces lymphoid malignancy in transgenic mice. | Transgenic mice bearing the cellular myc oncogene coupled to the immunoglobulin mu or kappa enhancer frequently develop a fatal lymphoma within a few months of birth. Since the tumours represent represent both immature and mature B lymphocytes, constitutive c-myc expression appears to be highly leukaemogenic at several stages of B-cell maturation. These myc mice should aid study of lymphoma development, B-cell ontogeny and immunoglobulin regulation. |
| Isolation of monoclonal antibodies specific for human c-myc proto-oncogene product. | Six monoclonal antibodies have been isolated from mice immunized with synthetic peptide immunogens whose sequences are derived from that of the human c-myc gene product. Five of these antibodies precipitate p62c-myc from human cells, and three of these five also recognize the mouse c-myc gene product. None of the antibodies sees the chicken p110gag-myc protein. ALL six antibodies recognize immunoblotted p62c-myc. These reagents also provide the basis for an immunoblotting assay by which to quantitate p62c-myc in cells. |
| NIH conference. Molecular genetic analysis of human lymphoid neoplasms. Immunoglobulin genes and the c-myc oncogene. | Immunoglobulin genes responsible for individual antibodies are organized as discontinuous DNA segments in their germline form. As an uncommitted stem cell develops into an antibody-synthesizing plasma cell, rearrangements of these immunoglobulin gene segments serve to activate the genes and to generate the virtually unlimited capacity to synthesize antibodies that recognize potential antigens. The analysis of immunoglobulin gene structure and arrangement has been of immense value in the study of human lymphoid neoplasms. Recombinant DNA technology involving analysis of immunoglobulin gene arrangement has been used to classify neoplasms of previously uncertain lineage, aid in the diagnosis of neoplasms of the B-cell series, and define the state of differentiation of neoplastic B-cell precursors. Furthermore, the demonstration of translocation of a particular transforming gene, the c-myc oncogene, into the immunoglobulin gene locus in Burkitt s lymphoma has provided a major insight into the cause of malignant transformation of these lymphoid cells. |
| [Rearrangement of the c-myc proto-oncogene locus in a cell line of T-lymphoblastic origin]. | A molecular rearrangement of the proto-oncogene c-myc located downstream of the exon III 3 end has been found in a cell line derived from KE37 cell line established from an acute T-lymphoblastic leukemia. This rearrangement resulted from a chromosomal translocation t(8; 14)(q24; q11). Since the 14q11 chromosomal band has been found to be involved in several T-cell leukemias and lymphomas, the importance of the rearrangement of c-myc discovered in the KE37 cell line lies in the possibility of analyzing chromosome 14 DNA near the breakpoint involved in the translocation. |
| Cloning and sequencing of a c-myc oncogene in a Burkitt s lymphoma cell line that is translocated to a germ line alpha switch region. | We have cloned and sequenced the translocated c-myc gene from the Burkitt s lymphoma CA46 cell line that carries a reciprocal translocation between chromosomes 8 and 14. The breakpoint lies within the first intron of c-myc, so that the first noncoding exon of the gene remains on the 8q- chromosome. The second and third coding exons are translocated to the 14q+ chromosome into the switch region of C-alpha 1. The orientation of the c-myc gene with relationship to alpha 1 is 5 to 5 , with directions of transcription in opposite orientation. DNA sequencing studies predict five changes in the amino acid sequence of the myc protein, two of which occur in a region within the second exon which is highly conserved in evolution. Southern blotting data indicate that the first exon of c-myc is rearranged 3 to 3 with the pseudo-epsilon gene. Because CA46 cells contain two rearranged mu genes, the translocation must have occurred after immunoglobulin rearrangement. The position of the breakpoint in CA46 occurs within a 20-base-pair region of the first intron of c-myc to which breakpoints have been mapped for two additional B-cell lymphomas with the t(8;14) translocation, ST486 and the Manca cell line. The region of the heavy chain locus to which c-myc has translocated is different in each case. Comparisons have been made of the levels of transcripts of the translocated c-myc gene in ST486 and CA46, where the gene is not associated with the heavy chain enhancer, with its expression in the Manca cell, in which it is. The c-myc gene is transcribed at similar levels in ALL three cases. |
| The c-myc oncogene is translocated to the involved chromosome 12 in mouse plasmacytoma. | Although it is known that the c-myc oncogene is rearranged in a head-to-head fashion with the immunoglobulin heavy chain locus in mouse plasmacytomas, it has not been clear whether the c-myc oncogene is translocated to the heavy chain locus on mouse chromosome 12 or whether the heavy chain locus is translocated to the c-myc locus on mouse chromosome 15. To determine which of these two possibilities is correct, we hybridized Chinese hamster fibroblasts with J558 mouse plasmacytoma cells that carry a reciprocal chromosome translocation between chromosomes 12 and 15, and we examined the segregating hybrids for the presence of the normal and rearranged mouse c-myc genes, for the presence of different regions of the mouse heavy chain locus, and for the presence of genes located on mouse chromosomes 12 and 15. The results of this analysis indicate that, as in human Burkitt lymphomas with the 8;14 chromosome translocation, the c-myc gene is translocated to the heavy chain locus in mouse plasmacytomas. Thus the orientation of the heavy chain locus on mouse chromosome 12 and of the c-myc gene on mouse chromosome 15 is the same as the orientation of the homologous loci in man. |
| Variant (6;15) translocations in murine plasmacytomas involve a chromosome 15 locus at least 72 kb from the c-myc oncogene. | The variant (6;15) translocations in murine plasmacytomas join the myc oncogene-bearing band of chromosome 15 and the immunoglobulin kappa band of chromosome 6. We recently cloned a region from chromosome 15 linked to C kappa and have now used probes from that region to define the major locus of plasmacytoma variant translocations, which we denote pvt-1. In five of nine plasmacytomas we analysed, the 6;15 translocation resulted from reciprocal recombination between the C kappa locus and a 4.5-kb region of pvt-1. Moreover, nearby we located the region shown by others to have undergone a complex (15;12;6) translocation in plasmacytoma PC7183. ALL the chromosome 6 breakpoints fell between 1 and 3 kb 5 to C kappa but only two were near J kappa genes. Thus the J kappa -C kappa region appears to be a recombination hot spot in lymphocytes, but the breaks are unlikely to be mediated via V/J recombination enzymes. Comparison of a cloned 108-kb region across pvt-1 and another of 52 kb across c-myc established that the pvt-1 breakpoints lie at least 72 kb from the c-myc promoters. Since c-myc is expressed at a substantial level, the 6;15 translocation apparently activates c-myc. Activation may occur directly, at a remarkable distance along the chromosome, or indirectly, via a putative pvt-1 gene product. |
| Involvement of Ca2+ in platelet-derived growth factor-induced expression of c-myc oncogene in Swiss 3T3 fibroblasts. | Addition of platelet-derived growth factor (PDGF) to quiescent cultures of Swiss 3T3 fibroblasts rapidly increased the cytoplasmic free Ca2+ concentrations and afterwards the c-myc mRNA levels. The concentrations of PDGF needed for both reactions were roughly the same. Moreover, the Ca2+ ionophores, A23187 and ionomycin, mimicked the actions of PDGF and increased the c-myc mRNA levels. These results suggest that Ca2+ may be involved in the regulation of PDGF-induced expression of the c-myc gene. |
| [Amplification of the expression of the c-myc oncogene in bronchial epidermoid carcinoma in man]. | Squamous cell lung carcinomas from 10 untreated patients were examined for the state of the oncogene c-myc. Blot hybridization experiments have demonstrated the amplification of the oncogene of about six fold in only one tumor. The oncogene amplification was not detected in normal tissues of patients. The analysis of RNA by Northern blot revealed the presence in the seven tumors examined of a 2.4 kb c-myc RNA band. The level of c-myc expression evaluated by dot blot analysis was 5 to 14 fold greater in tumors than that of histologically normal lung of the same patients. |
| [Analysis of the expression of the oncogene c-myc in human breast adenocarcinoma]. | The c-myc oncogene was characterized and its expression analyzed in 32 mammary adenocarcinomas and in 2 benign breast tumors from 34 untreated patients. Southern blot hybridization experiments have demonstrated the amplification of the oncogene (3 to 30 fold) in 3 carcinomas. The analysis of total RNA by Northern blot revealed the presence of a 2.4 kb c-myc RNA band. In 7 out of 10 carcinomas from patients with 3 or more than 3 lymph node metastases the level of c-myc expression evaluated by dot blot analysis was 4 to 14 fold greater than that of normal human tissues. In only 5 out of 22 carcinomas from patients without lymph node metastases or less than 3 invaded nodes the level of c-myc expression was also higher (4 to 10 fold). The level of c-myc expression was not significantly enhanced in the 2 benign tumors. It is suggested that the c-myc gene activation could be associated to a higher degree of malignancy of mammary carcinomas. |
| Expression of c-myc oncogene in human fibroblasts during in vitro senescence. | expression of the c-myc oncogene was determined in pre-confluent early and late passage human (IMR-90) fibroblast by dot blot analysis of cellular mRNA. Significant decreases in c-myc levels were found in late passage when compared to levels found in early passage cells. Cells restimulated with serum after serum restriction also showed reduced levels of c-myc in late passage. Confluent cells expressed levels of c-myc similar to that of pre-confluent cells, when serum stimulation was the same in both cases. Southern blots of Eco R1 digested DNA showed 2 fragments of similar size hybridizing to c-myc sequences in both early and late passage cells. |
| The clinical significance of flow cytometric c-myc oncoprotein quantitation in testicular cancer. | A sensitive flow cytometric assay has been developed using a monoclonal antibody, Myc 1-6E10, to quantitate c-myc oncoprotein levels in nuclei isolated from wax embedded testicular tumours. The oncoprotein (p62c-myc) level increased significantly with increasing teratoma differentiation. Patients with intermediate and undifferentiated tumours who developed recurrence had lower p62c-myc levels than those who were disease free since their initial treatment. Such quantitative biochemical methods may provide new prognostic indices for cancer patients. |
| Partial sequence homology of human myc oncogene protein to beta and gamma crystallins. | The human cellular myc gene is one of about 20 cellular oncogenes which code for a variety of proteins including protein kinases and growth factors. The human gene is related to the avian myelocytomatosis leukaemia virus MC29 and produces a binding protein which may be involved in regulation of gene expression and cellular differentiation and proliferation. The crystallins are proteins in the eye lens synthesised at different stages of cell differentiation and proliferation, and whose short range order is necessary for lens transparency. Computer-based sequence comparisons show that beta Bp and gamma II crystallins, which show partial sequence homology and conservation of Greek Key motives are also partially homologous to two regions on the human myc protein, though this protein probably does not conserve the Greek Key structural motives. |
| Levels of c-myc oncogene mRNA are invariant throughout the cell cycle. | The steady-state messenger RNA levels of several genes increase when cells are stimulated to proliferate. The transcripts from one such gene, the proto-oncogene c-myc, increase approximately 20-fold shortly after cells are stimulated to proliferate and then decline before the onset of DNA synthesis. It has been inferred from these data that expression of c-myc may be specific to the G1 portion of the cell cycle. Alternatively, this transient increase in c-myc mRNA following the stimulation of quiescent cells could be the result of an activational event that renders the cells competent to enter the cell cycle. To distinguish between these possibilities, we performed experiments to determine whether the amount of c-myc mRNA fluctuates during the cell cycle in cells that are under constant stimulation to proliferate. Although c-myc mRNA does undergo a transient increase within 2 h of serum stimulation of quiescent serum-deprived cells, our results show that the level of c-myc mRNA is constant throughout the cell cycle and does not diminish in density-arrested cells maintained in the presence of serum growth factors. In contrast to c-myc, the mRNA levels of two other genes whose expression has been associated with cellular proliferation do show consistent variations within the cell cycle. Both thymidine kinase (TK) and histone 2b (H2b) mRNA levels increase during S phase in continuously growing cells and decrease when cell replication ceases in density-arrested cultures. Therefore, the transient increase in c-myc transcription following the activation of quiescent cells is not due to the type of cell cycle-dependent regulation characteristic of the TK and H2b genes. |
| Evolution of karyotypic abnormalities and C-MYC oncogene amplification in human colonic carcinoma cell lines. | Cell lines (COLO 320 DM and COLO 320 HSR), established from a human neuroendocrine tumor, contain an amplified cellular oncogene (c-myc). We have previously shown that the homogeneously staining regions (HSRs) of a marker chromosome in the COLO 320 HSR cells that evolved in culture from COLO 320 DM cells contain amplified c-myc. Molecular hybridization in situ has now been used to demonstrate that the HSRs are on both arms of what was once an X chromosome. We also show that amplified c-myc copies are present in the isolated double minute chromosomes (DMs) of the COLO 320 DM cells that were characteristic of the tumor cells initially established from the patient. The results suggest that the amplified c-myc appeared first as DMs and was subsequently transposed to engender HSRs on an X chromosome. The initial COLO 320 tumor cell may have acquired two "early replicating" (i.e., active) X chromosomes and lost the "late replicating" (i.e., inactive) X. |
| Detection of the c-myc oncogene product in testicular cancer. | A set of monoclonal antibodies was constructed by immunising mice with peptide fragments of the c-myc oncogene product. One such antibody, Myc 1-6E10 was shown to bind to a 62,000 dalton protein identifiable with the c-myc product (p62c-myc). The antigen recognised was not destroyed by paraffin wax embedding. Myc 1-6E10 was used to characterise the distribution of p62c-myc in archival testicular tumour material. Normal testes expressed only small amounts of p62c-myc. Seminomas showed increased nuclear and cytoplasmic staining. Undifferentiated teratoma showed little activity, whereas p62c-myc was abundant in the nuclei of differentiating epithelial structures, yolk sacs and embryoid bodies. Only small amounts of p62c-myc were seen in the tumours of 5 patients who subsequently died from their disease. |
| Increased level of amplification of the c-myc oncogene in tumors induced in nude mice by a human breast carcinoma cell line. | Cell line SW 613-S, derived from a human breast carcinoma, contained double minute chromosomes (DMs) but lost them progressively upon in vitro cultivation. These cells were tumorigenic in nude mice. Cell lines were derived from the tumors and were found to have a high DM content. In three such cell lines, DMs were stably maintained upon in vitro cultivation, whereas in another they were progressively lost. We found that the c-myc oncogene is amplified 5- to 10-fold in SW 613-S and 20- to 90-fold in the different cell lines derived from the tumors. At least part of the additional c-myc copies were found associated with a purified DM fraction. In cell lines which lost the DMs during in vitro passages, the level of amplification was maintained. In situ hybridization experiments indicated that this loss was compensated by the acquisition of copies of the c-myc gene integrated into a chromosome. No major rearrangement of the amplified c-myc gene was detected. The amount of c-myc messenger RNAs is roughly proportional to the level of amplification. Our results indicate that growth of SW 613-S cells as tumors in nude mice selected cells with an increased level of amplification and expression of the c-myc oncogene. |
| [Amplification of nucleotide sequences homologous to the viral myc oncogene in DNA of colonic mucosa in a patient with cancer of the same location]. | Genomic DNA of intact colonic mucosa obtained from a female patient suffering colonic cancer revealed amplified nucleotide sequences (multiple copies) related to viral myc oncogene. The study failed to detect amplification in tumor. Causation and pathways of the event are discussed. |
| Confidence limits for homology in protein or gene sequences. The c-myc oncogene and adenovirus E1a protein. | We describe new tests, of general application, for deciding whether two proteins or DNA sequences are significantly homologous, in cases where the relationship is neither evidently true nor evidently false. Ralston and Bishop s comparison of the c-myc oncogene with the adenovirus E1a protein is discussed as an example. When the comparison matrix test is used to establish a homology between two sequences it is necessary that the number of high scores exceeds the expected mean level for random sequences by a statistically significant margin. The mean level itself is found from the double matching probability distribution. In examples where the number of high scores is larger than expected, but the highest score is not in itself exceptional, the variance of the numbers of scores expected for unrelated sequences is an important factor. We have analysed these variances by several methods. A simple binomial distribution gives only a rather inaccurate and low first estimate, but we derive a more rigorous and accurate statistical treatment, to take account of the correlations between scores in different parts of the comparison matrix. The theory is exact for random DNA or protein sequences with fluctuating compositions, selected by random draws from an infinite pool. In the more realistic situation, where sequences of fixed composition are formed by random permutations of the original sets, the deviations are smaller, and have been analysed by computer simulation. We find that although the relationship proposed by Ralston & Bishop, between the c-myc oncogene and adenovirus E1a proteins, appears to be significant in the binomial approximation, it is not supported by the full analysis. We conclude that, in general, great care is needed to establish any weak homology on the basis of comparisons that include no truly exceptional high scores, but merely have an enhanced number of scores at the upper end of the expected distribution. |
| Association of multiple copies of the N-myc oncogene with rapid progression of neuroblastomas. | Eighty-nine patients with untreated primary neuroblastomas were studied to determine the relation between the number of copies of the N-myc oncogene and survival without disease progression. Genomic amplification (3 to 300 copies) of N-myc was detected in 2 of 16 tumors in Stage II, 13 of 20 in Stage III, and 19 of 40 in Stage IV; in contrast, 8 Stage I and 5 Stage IV-S tumors ALL had 1 copy of the gene (P less than 0.01). Analysis of progression-free survival in ALL patients revealed that amplification of N-myc was associated with the worst prognosis (P less than 0.0001); the estimated progression-free survival at 18 months was 70 per cent, 30 per cent, and 5 per cent for patients whose tumors had 1, 3 to 10, or more than 10 N-myc copies, respectively. Of 16 Stage II tumors, 2 with amplification metastasized, whereas only 1 of 14 without amplification did so (P = 0.03). Stage IV tumors with amplification progressed most rapidly: nine months after diagnosis the estimated progression-free survival was 61 per cent, 47 per cent, and 0 per cent in patients whose tumors had 1, 3 to 10, or more than 10 copies, respectively (P less than 0.0001). These results suggest that genomic amplification of N-myc may have a key role in determining the aggressiveness of neuroblastomas. |
| Sequence curiosity in v-myc oncogene. | Transfection of the v-Ki-ras oncogene into rat-1 fibroblasts resulted in the establishment of cell lines that were transformed, tumorigenic, and sensitive to lysis by natural killer (NK) cells. Characterization of effectors indicated that the killing was not related to Lyt-1+ or Lyt-2+ cells (T cells) but was associated with cells bearing NK markers (asialo GM1, NK-1.2+, and NK-2.1+). Transfected targets were also killed by cloned NK lines. The transformation determinants on rat-1 transfectants cross-competed with YAC 1.2 lymphoma cells, suggesting a common target structure on these two diverse cell types. The results indicate that the NK surveillance system can recognize and kill cells newly transformed by a member of the ras oncogene family. |
| Hypomethylation of DNA in human cancer cells: a site-specific change in the c-myc oncogene. | Site-specific methylation of the human c-myc oncogene was investigated in a set of cultured human tumor cell lines and normal human fibroblast strains. As previously reported, ALL of the tumor cell lines in contrast to normal cells were hypomethylated to various degrees in their total genomic DNA. The presence of methylation in specific regions of the c-myc gene was analyzed by use of the restriction endonuclease isoschizomers MspI and HpaII, which recognize the sequence 5 -CCGG-3 (CCGG = DNA sequence of 2 cytosine bases followed by 2 guanine bases) but differ in their abilities to cleave at the internal cytosine residue when it is methylated. The first exon, first intervening sequence, and the second exon were hypomethylated in ALL cell types, regardless of whether the cells were normal or oncogenically transformed and regardless of the degree of total genomic methylation of the cell. However, the solitary CCGG site in the third exon was fully methylated in normal cell strains. In contrast, in 3 of 5 tumor cell lines measured, this site was hypomethylated. This is the first demonstration of a site-specific DNA methylation defect in a cellular oncogene. Some possible implications relating disruption of DNA methylation to oncogene control and oncogenesis are discussed. |
| Increased transcription of the c-myc oncogene in two methylcholanthrene-induced quail fibroblastic cell lines. | The expression of three c-onc genes (c-erb, c-myc, c-myb) was investigated in five cell lines established from fibrosarcomas induced with 20-methylcholanthrene (MCA) of Japanese quails. These cell lines showed low levels of the three c-onc genes, with the exception of two cell lines that accumulated moderate (MCAQ 1-4) and large amounts (MCAQ3-5) of c-myc RNA. Molecular cloning and restriction endonuclease analyses indicated that expression of c-myc in these two cell lines were not associated with detectable rearrangements in the c-myc locus, that the size of the c-myc transcript (2.7 kb) in MCAQ 3-5 was similar to that of the normal c-myc messenger RNAs (mRNA) and that the transcriptional activation observed in MCAQ 3-5 was not mediated by the LTR (long terminal repeat) of a proximate ALV (avian leukosis virus) provirus. Finally, when analysed with the restriction enzymes Msp I and Hpa II, the c-myc locus of MCAQ 3-5 and MCAQ 1-4 was found hypomethylated as compared with that of the other cell lines tested that show low levels of c-myc transcripts. Our results suggest that one of the ways methylcholantrene could mediate transformation is by inducing an abnormal regulation of the c-myc gene. |
| Structure of the polymorphic feline c-myc oncogene locus. | Two feline c-myc DNA clones (CM-2 and CM-3), isolated from a cat DNA library, are structurally very similar. However, they differ at a SmaI site in exon III which is present only in CM-2. In the outbred feline population, cats heterozygous for this site or homozygous for the CM-3-type gene have been observed. The results provide a physical map of the feline c-myc locus, and define hitherto unidentified alleles of this gene. |
| Genomic alterations involving the c-myc proto-oncogene locus during the evolution of a case of chronic granulocytic leukaemia. | In a patient with Ph-positive chronic granulocytic leukaemia who had 3 separate episodes of promyelocytic transformation associated with new cytogenetic and genetic changes DNA from the peripheral-blood leucocytes obtained during the second episode of transformation showed an 8-fold to 16-fold amplification of cellular myc proto-oncogene (c-myc) sequences, and rearrangement of these sequences. There was no amplification or rearrangement of c-myc sequences in DNA from leucocytes collected during the chronic phase, nor were these sequences amplified in DNA from leucocytes collected during the third episode of transformation. These observations show that new clones of cells that proliferate during the evolution of a myeloid leukaemia can carry genetic changes in addition to any recognisable karyotypic changes. Such genetic changes might underlie the progression of the disease. |
| Transcriptionally active c-myc oncogene is contained within NIARD, a DNA sequence associated with chromosome translocations in B-cell neoplasia. | NIARD (non-immunoglobulin-associated rearranging DNA) is located on mouse chromosome 15 at the break point of a commonly observed translocation event involving chromosomes 15 and 12 in murine plasmacytomas. The human cellular analogue of the v-myc oncogene of avian myelocytomatosis virus, strain MC-29, is known to reside on the distal end of human chromosome 8 and has been observed to translocate to chromosome 14 in Burkitt lymphomas. Using a cDNA clone specific for the transcript of the human c-myc gene (H c-myc), we show that the mouse c-myc (M c-myc) gene is contained within NIARD. NIARD-associated chromosome translocations occurred 1.3-2 kilobases (kb) 5 of the mouse c-myc gene where NIARD recombines with the switch region of the C(alpha) immunoglobulin gene in various murine plasmacytomas. The mouse c-myc encoding region within NIARD spanned <2.4 kb of DNA and expressed a low level of a 2.3-kb polyadenylylated RNA in BALB/c spleen. Increased (10- to 20-fold) levels of rearranged mouse c-myc transcripts (i.e., approximately 1.8-2.1 kb) were observed in plasmacytomas that have NIARD-associated chromosome translocations. Human c-myc and NIARD probes detected DNA rearrangements of human c-myc in four of seven Burkitt lymphomas. DNA sequences adjacent to the human c-myc gene recombined with the C(mu) immunoglobulin gene locus on chromosome 14 in several Burkitt lymphomas. The activation of the c-myc oncogene by chromosome translocation implicates its involvement in B-cell oncogenesis. |
| Specific regulation of c-myc oncogene expression in a murine B-cell lymphoma. | The c-myc oncogene has been implicated in a wide spectrum of B-cell neoplasias. In normal cells, the level of expression of the c-myc gene correlates with growth status. In the present study, we examined the effect of receptor-mediated inhibition of growth on c-myc expression in a B-cell lymphoma. The murine lymphoma line WEHI 231 has been characterized as an early B cell; it bears surface-bound IgM and has unrearranged c-myc genes. Following treatment of a WEHI 231 culture with anti-mouse Ig antiserum, the cells undergo one round of division and further proliferation is inhibited. We observed that this treatment specifically affected cytoplasmic levels of c-myc mRNA. An initial early increase is followed by a precipitous drop such that by 4 hr (after exposure) the amount of c-myc mRNA is below control values by a factor of approximately equal to 10. The drop in c-myc precedes cessation of DNA synthesis. During the 2- to 4-hr period, c-myc mRNA had a maximal half-life of between 20 and 30 min. In contrast, even 24 hr after anti-Ig exposure, the amounts of most major mRNAs, including mu heavy chain and actin, were not significantly altered. These results indicate that expression of an unrearranged c-myc gene can be selectively responsive to receptor-mediated regulatory events. |
| Isolation and characterization of c-myc, a cellular homolog of the oncogene (v-myc) of avian myelocytomatosis virus strain 29. | The chicken genome contains nucleotide sequences homologous to transforming genes (oncogenes) of a number of avian retroviruses. We have isolated chicken DNA (c-myc) that is homologous to the oncogene (v-myc) of the avian myelocytomatosis virus MC29 and have compared the structures of the cellular and viral genes. Results from restriction endonuclease mapping of c-myc and from analysis of heteroduplexes between the DNAs of the cellular and viral genes show that c-myc is homologous to 1,500 nucleotides in v-myc DNA. This homologous region is interrupted in c-myc by an intron-like sequence of 1,100 nucleotides which is absent from v-myc. Nuclear RNA from normal chicken cells contains at least five species of transcripts from c-myc ranging from 2.5 to 6.5 kilobases in length. By contrast, cytoplasm contains only the 2.5-kilobase c-myc RNA. These features of the c-myc gene and its nuclear transcripts are characteristic of normal cellular genes and suggest that the myc gene is of cellular rather than viral origin. The exons in c-myc may define two functional domains in the gene and may therefore facilitate the dissection of the different oncogenic potentials of the MC29 virus. |
| Orientation and position of avian leukosis virus DNA relative to the cellular oncogene c-myc in B-lymphoma tumors of highly susceptible 15I5 X 7(2) chickens. | We previously reported our characterizations of the B-lymphoma tumors induced in a highly susceptible line of chickens (15I5 X 7(2)) by the avian leukosis virus RAV-1 (Proc. Natl. Acad. Sci. 78:3418-3422, 1981). We demonstrated that in greater than 90% of the tumors, the RAV-1 provirus is integrated near a cellular oncogene, c-myc. In the present study, we devised a simple approach, relying on SalI digestion, for further defining the locations and orientations of the proviruses with respect to the c-myc gene. We report here that in the great majority of cases the provirus is situated upstream from and in the same transcriptional direction as the c-myc gene--a configuration compatible with the promoter-insertion model proposed by Hayward et al. (Nature [London] 290:475-480, 1981). |
| Nucleotide sequence to the v-myc oncogene of avian retrovirus MC29. | Avian myelocytomatosis viruses are retroviruses whose oncogene (v-myc) induces an unusually wide variety of tumors, including carcinomas, endotheliomas, sarcomas, and myelocytomatoses. The viral gene v-myc arose by transduction of an undetermined portion of a cellular gene known as c-myc. In order to facilitate further studies of the functions of v-myc and c-myc and to permit detailed comparisons between the two genes, we have determined the nucleotide sequence of v-myc in the genome of the MC29 strain of myelocytomatosis virus. The v-myc domain in MC29 virus encodes a hydrophilic polypeptide with a molecular weight of 47,000, fused to a portion of the polyprotein encoded by the viral structural gene gag. The carboxyl-terminal half of the v-myc polypeptide is rich in basic amino acid residues. This feature may account for the DNA-binding properties of the hybrid gag-myc-encoded protein which would have a molecular weight of approximately 100,000, in accord with results from previous studies of the protein encoded by v-myc. The junctions between v-myc and the genome of the transducing virus are apparent but reveal no clues to the mechanism by which transduction might occur. |
| Identification and nucleotide sequence of a human locus homologous to the v-myc oncogene of avian myelocytomatosis virus MC29. | Avian myelocytomatosis virus MC29 is a replication-defective acute leukaemia virus which induces a variety of tumours in chickens including sarcomas, renal and hepatic carcinomas, and myelocytomatosis. The oncogenic potential of the virus is mediated by the gene v-myc, acquired from sequences (c-myc) present in normal uninfected chicken DNA. Sequences closely related to chicken c-myc have been highly conserved throughout evolution, from Drosophila to vertebrates. The hypothesis that c-myc may be involved in neoplastic transformation has been strengthened by the finding that B-cell lymphomas induced in chickens by avian leukosis virus (ALV) are often associated with increased expression of c-myc resulting from integration of the ALV provirus adjacent to the c-myc gene. More recently, it has been demonstrated that the malignant human cell line HL-60, derived from the peripheral blood leukocytes of a patient with acute promyelocytic leukaemia, expresses elevated levels of myc-related mRNA associated with an amplification of the c-myc gene. To explore the relationship of the human cellular myc gene with the corresponding viral oncogene from MC29, and to provide a framework for the analysis of the mechanism and significance of c-myc amplification in human tumours, we have isolated and determined the nucleotide sequence of a genomic clone prepared from a normal human library which contains ALL domains sharing homology with v-myc. |
| Homogeneously staining chromosomal regions contain amplified copies of an abundantly expressed cellular oncogene (c-myc) in malignant neuroendocrine cells from a human colon carcinoma. | Two human neuroendocrine tumor cell lines derived from a colon carcinoma contain either numerous double minute chromosomes (COLO 320 DM) or a homogeneously staining marker chromosome (COLO 320 HSR). We found amplification and enhanced expression of the cellular oncogene c-myc in both COLO 320 DM and HSR cells, and we were able to show that the homogeneously staining regions of the COLO 320 HSR marker chromosome contain amplified c-myc. From previous and present karyotypes, it appears that the homogeneously staining regions reside on a distorted X chromosome. Therefore, amplification of c-myc has been accompanied by translocation of the gene from its normal position on chromosome 8 (8q24). Because double minute chromosomes were features of primary cultures from the original tumor, it seems reasonable to suspect that amplification of c-myc may have contributed to tumorigenesis. |
| Increased expression of myc-related oncogene mRNA characterizes most BALB/c plasmacytomas induced by pristane or Abelson murine leukemia virus. | RNA blots of poly(A)-containing RNA from normal livers and spleens and from a number of transplantable hematopoietic and lymphoid BALB/c tumors, including early and late generation plasmacytomas, were hybridized with probes for four onc genes. abl RNA was abundant only in those tumors producing Abelson virus, bas RNA was found in approximately equal amounts in normal tissues and plasmacytomas, and myb RNA was absent in normal liver and plasmacytomas. Normal liver and spleen RNA showed faint traces of myc hybridization, but myc RNA was increased in most plasmacytomas. In one plasmacytoma, TEPC 1165, a particularly abundant amount of myc RNA was found, principally as a 3.5-kilobase band. In the other plasmacytomas, bands of 2.4- or 1.8-kilobase myc RNA were found. Southern blots of DNA from tumors that contained 2.4-kilobase or larger myc RNA showed myc hybridization to an EcoRI fragment of about 21 kilobase pairs, similar to the myc band in normal DNA. EcoRI digests of DNA from two tumors that expressed myc RNA of 1.8 kilobases showed an additional smaller myc band, suggesting that the myc gene is rearranged in these plasmacytomas. The basis for increased myc gene transcription in plasmacytomas is not understood, but the evidence suggests that different mechanisms may be operating in different plasmacytomas. Apparently, neither myc gene amplification nor myc gene rearrangement is required for increased myc transcription. |
| Translocation, breakage and truncated transcripts of c-myc oncogene in murine plasmacytomas. | Comparative nucleotide sequence analysis of a rearranged c-myc gene in a murine plasmacytoma and c-myc cDNA from normal spleen reveals that chromosomal translocation in the plasmacytoma breaks the c-myc gene within the first exon or intron. In the plasmacytoma truncated c-myc RNAs initiate from newly exposed promoter sites. Nevertheless, the myc polypeptide produced in the plasmacytoma is probably the same as that from the intact c-myc gene because the exon lost by breakage and translocation is non-coding. The second and third exons of the mouse c-myc gene are substantially conserved in the v-myc gene of the avian retrovirus, MC29. |
| Nucleotide sequence of cloned cDNA of human c-myc oncogene. | Like other transforming genes of retroviruses, the v-myc gene of the avian virus, MC29, has a homologue in the genome of normal eukaryotic cells. The human cellular homologue, c-myc, located on human chromosome 8, region q24 leads to qter (refs 1, 2), is translocated into the immunoglobulin heavy-chain locus on human chromosome 14 (ref. 3) in Burkitt s lymphoma, suggesting that c-myc has a primary role in transformation of some human haematopoietic cells. In addition, c-myc is amplified in the human promyelocytic leukaemia cell line, HL60 (refs 6, 7) which also contains high levels of c-myc mRNA. Recently, Colby et al. reported the nucleotide sequence of the human c-myc DNA isolated from a genomic recombinant DNA library derived from human fetal liver. This 4,053-base pair (bp) sequence includes two exons and one intron of the myc gene, and the authors have suggested the existence of a human c-myc mRNA of 2,291 nucleotides that has a coding capacity for a protein of molecular weight (Mr) 48,812. We have approached the problem of accurately defining the characteristics of the human c-myc mRNA and c-myc protein by determining the sequence of the c-myc cDNA isolated from a cDNA library prepared from mRNA of a clone of the K562 human leukaemic cell line. K562 cells are known to contain c-myc mRNA which is similar in size to the c-myc mRNA of other human cell types. We report here the sequence of 2,121 nucleotides of a human c-myc mRNA and demonstrate that its 5 noncoding sequence does not correspond to the sequence of the reported genomic human sequence. However, our data confirm that the intact human c-myc mRNA can encode a 48,812-Mr protein with a sequence identical to that reported by Colby et al. |
| Translocation joins c-myc and immunoglobulin gamma 1 genes in a Burkitt lymphoma revealing a third exon in the c-myc oncogene. | Recombinant DNA clones have been used to directly demonstrate that the Burkitt lymphoma cell line Raji, t(8;14) (q24;q32), has a rearranged copy of the c-myc gene adjacent to the gamma 1 constant region gene of the human immunoglobulin heavy-chain locus; the genes are arranged in the opposite direction for transcription. At least one further 5 exon has been detected in the normal c-myc gene by analysis of RNA transcripts, and the occurrence of high levels of two c-myc mRNA size classes, both apparently initiating in this exon, is described. |
| Human cytomegalovirus (strain AD169) contains sequences related to the avian retrovirus oncogene v-myc. | We have detected nucleotide sequences related to the transforming gene (v-myc) of avian myelocytomatosis virus MC-29 in the DNA genome of human cytomegalovirus (HCMV) strain AD169. Cloned DNA representing the entire 1.5-kilobase-pair oncogene v-myc and subfragments of this gene were hybridized to EcoRI-cleaved HCMV virion DNA and cloned subgenomic HCMV DNA fragments. Only a 0.5-kilobase-pair Pst I-Sal I subfragment representing the 5 end of the coding sequence of the v-myc oncogene hybridized to the HCMV DNA. We have localized these v-myc-related sequences to five regions in the long unique segment of the HCMV genome corresponding to EcoRI fragments C, I, P, R, and b and to regions within the EcoRI junction fragments F and H at or near the repeats bounding the short unique segment. There was no hybridization of these HCMV sequences to other retroviral oncogenes tested including v-src, v-myb, v-erb, v-ST-fes, v-fos, v-ras (Harvey), v-mos, and v-abl. |
| DNA sequences near the site of reciprocal recombination between a c-myc oncogene and an immunoglobulin switch region. | The chromosomal translocations found in many B-cell tumors result in the joining of a c-myc oncogene with an immunoglobulin heavy chain switch region. This finding is striking because the natural function of switch regions is to mediate DNA rearrangements important to the maturation of immune responses. These normal switch rearrangements are probably mediated by specific enzymes. In this paper we report the isolation of the two reciprocal products of a recombination between a c-myc gene on murine chromosome 15 and an immunoglobulin switch region (S mu S gamma 2b) on chromosome 12. We have determined the sequences of these DNA molecules near the recombination sites and show that the recombination is nearly perfectly reciprocal, with a seven-nucleotide deletion. An examination of the sequences reported in this paper, and of sequences published by other authors, shows a correlation between the points of recombination for c-myc-S segment rearrangements and for normal heavy chain switches. We suggest that this correlation implies a role for switch recombination enzymes in creating substrates for the c-myc recombination. The c-myc gene also seems to share some limited homology to sequences thought to be important in heavy chain switching. Finally, we discuss a working model that accounts for some characteristics of c-myc-S segment recombinations. The model also suggests a mechanism for increased transcriptional activity of the rearranged c-myc oncogene in B-cell tumors. |
| Proviral deletions and oncogene base-substitutions in insertionally mutagenized c-myc alleles may contribute to the progression of avian bursal tumors. | Bursal lymphomas induced in chickens by avian leukosis viruses (ALVs) harbor proviral insertions that augment expression of an adjacent cellular oncogene, c-myc. To analyze such insertionally mutagenized c-myc genes in greater detail, we isolated molecular clones from two independent tumors. Precise proviral integration has occurred within the transcribed region of the c-myc gene in both mutant alleles. The proviruses bear different internal deletions that preclude the expression of the gag, pol, and env genes. The c-myc gene from bursal lymphoma LL4 contains a single copy of an ALV long terminal repeat (LTR), presumably the product of homologous recombination between LTRs at the ends of a normal provirus; the "solo" LTR is positioned in the correct orientation to act as a promoter for the c-myc gene. Bursal lymphoma LL3 contains an ALV provirus positioned upstream in the opposite transcriptional orientation to the coding exons of c-myc and deleted from a site within the leader region into the gag gene. In addition, the nucleotide sequence of the c-myc gene from tumor LL3 differs from the published sequence of the normal c-myc coding region at 3 positions of 180 determined. One of these changes, a silent nucleotide transition, is documented as a somatic mutation by restriction endonuclease mapping. It is flanked by two other candidate tumor-specific point mutations, one of which predicts an amino acid replacement, Pro----Thr at position 63. Thus, additional lesions that may affect the expression of viral genes and the quantity and nature of the putative c-myc gene product occur in provirally mutated c-myc alleles and may contribute to tumor progression. |
| Murine T lymphomas in which the cellular myc oncogene has been activated by retroviral insertion. | The myc oncogene is implicated here in T lymphocyte neoplasia. Cloning revealed a retroviral insert 0.7-1.3 kb 5 to c-myc in two T lymphomas induced by Soule murine leukemia virus and in a spontaneous T lymphoma ( Tikaut ) of an AKR mouse, a strain in which leukemogenesis involves recombinant retroviruses (MCF viruses). The tumor c-myc mRNAs appear normal but their level is approximately 5-fold higher than in most T lymphomas lacking c-myc rearrangement. Since each insert would be transcribed away from c-myc, its activation cannot involve the promoter of the long terminal repeat (LTR) but could reflect an enhancer, like that demonstrated within the Soule LTR. The Tikaut provirus has an MCF-like recombinant env gene and LTR sequence. MCF-like inserts were found near c-myc in seven of 31 other AKR T lymphomas; two lie 3 to c-myc and the five upstream are oriented away from c-myc. We conclude that a quarter of retrovirus-induced T lymphomas involve activation of c-myc, probably via the LTR enhancer. |
| Transcriptional activation of the translocated c-myc oncogene in mouse plasmacytomas: similar RNA levels in tumor and proliferating normal cells. | We examine the influence of the immunoglobulin locus on the expression of the translocated c-myc oncogene in mouse plasmacytomas. The level of c-myc RNA was 30- 35-fold greater in tumor cells than in normal, quiescent B cells. Mitogen stimulation of the lymphocytes with lipopolysaccharide induced a 15-fold increase in c-myc expression per cell to a level that was similar to that in the transcription of the translocated c-myc gene involved initiation from sequences in the first c-myc intron. Abundant RNA transcripts were also found from the noncoding strand of the c-myc intron in most tumor lines. S1 nuclease mapping was used to locate the intronic sequences that are used to initiate the tumor-specific c-myc RNAs. Six different initiation sites within the intron were mapped, none of which have the TATA sequence usually associated with eucaryotic RNA polymerase II promoters. The noncoding strand transcripts were also found to initiate in the c-myc intron. Transcription of the c-myc coding strand was independent of the position of the translocation breakpoint, even when the heavy chain switch and constant regions were deleted. |
| Translocated c-myc oncogene of Burkitt lymphoma is transcribed in plasma cells and repressed in lymphoblastoid cells. | We examined somatic cell hybrids between Burkitt lymphoma cells and either human lymphoblastoid cells or mouse plasmacytoma cells for the expression of the translocated c-myc oncogene. The results of this study indicate that the translocated c-myc oncogene is transcribed in plasma cells but is repressed in lymphoblastoid cells. Thus, the factors necessary for translocated c-myc transcription are present in plasma cells and Burkitt lymphoma cells but are absent or inactive in lymphoblastoid cells. Since the distance between the rearranged immunoglobulin loci and the c-myc oncogene can even exceed 30-50 kilobases, we speculate that the translocated c-myc oncogene is under the transcriptional control of enhancer-like elements capable of acting over long distances. The activity of this long-range enhancer may depend on the interaction with transacting factors that are active in plasma cells and in Burkitt lymphoma cells but are not active in lymphoblastoid cells. We also examined the transcription of the first exon of the c-myc oncogene, which becomes separated from the second and third exon because of the chromosomal break involving the first intron. This exon is transcribed at high levels in ST486 Burkitt lymphoma cells with the t(8;14) chromosome translocation. Hybrids between lymphoblastoid and ST486 cells expressed high levels of transcripts of the first exon, whereas hybrids between plasma cells and ST486 cells did not. Thus, transcription of the separated first exon can be enhanced in lymphoblastoid and Burkitt lymphoma cells because of its close proximity to the heavy chain enhancer that is normally located between the joining and the switch region of the C mu gene. Such enhancement, however, does not occur in plasma cells, possibly because these cells are able to suppress completely the c-myc oncogene, unless it has been placed in the proximity of a rearranged immunoglobulin constant region gene. |
| Structure and expression of the oncogene c-myc in fresh tumor material from patients with hematopoietic malignancies. | c-myc is the cellular gene homologous to the transforming sequence of MC29, an acute avian retrovirus. The human c-myc gene was cloned and used to study the structure and expression of c-myc in a variety of human hematopoietic malignancies. In a careful study of 106 patients, c-myc RNA was found to be expressed at elevated levels in tumor cells of 17 leukemia patients and five lymphoma patients. The c-myc gene was found to be rearranged in two lymphomas, an African Burkitt s lymphoma and a non-Hodgkins lymphoma in leukemic phase. The Burkitt s rearrangement involved the insertion of new DNA sequences upstream from the c-myc 5 coding region, presumably replacing the normal c-myc transcriptional promoter. None of the other 104 patients, including 20 with elevated myc expression, exhibited any evidence of a genetic rearrangement involving the c-myc gene. Our results show that there is a subset of hematopoietic malignancies characterized by elevated expression of c-myc. This elevated expression in most cases is not due to obvious genetic changes (rearrangement, amplification) at the c-myc locus nor to chromosomal translocations in the vicinity of this gene. |
| Immune regulation of the c-myc oncogene in a murine B lymphoma. | c-myc is the cellular gene homologous to the transforming sequence of MC29, an acute avian retrovirus. The human c-myc gene was cloned and used to study the structure and expression of c-myc in a variety of human hematopoietic malignancies. In a careful study of 106 patients, c-myc RNA was found to be expressed at elevated levels in tumor cells of 17 leukemia patients and five lymphoma patients. The c-myc gene was found to be rearranged in two lymphomas, an African Burkitt s lymphoma and a non-Hodgkins lymphoma in leukemic phase. The Burkitt s rearrangement involved the insertion of new DNA sequences upstream from the c-myc 5 coding region, presumably replacing the normal c-myc transcriptional promoter. None of the other 104 patients, including 20 with elevated myc expression, exhibited any evidence of a genetic rearrangement involving the c-myc gene. Our results show that there is a subset of hematopoietic malignancies characterized by elevated expression of c-myc. This elevated expression in most cases is not due to obvious genetic changes (rearrangement, amplification) at the c-myc locus nor to chromosomal translocations in the vicinity of this gene. |
| Activation of the c-myc oncogene in B and T lymphoid tumors. | c-myc is the cellular gene homologous to the transforming sequence of MC29, an acute avian retrovirus. The human c-myc gene was cloned and used to study the structure and expression of c-myc in a variety of human hematopoietic malignancies. In a careful study of 106 patients, c-myc RNA was found to be expressed at elevated levels in tumor cells of 17 leukemia patients and five lymphoma patients. The c-myc gene was found to be rearranged in two lymphomas, an African Burkitt s lymphoma and a non-Hodgkins lymphoma in leukemic phase. The Burkitt s rearrangement involved the insertion of new DNA sequences upstream from the c-myc 5 coding region, presumably replacing the normal c-myc transcriptional promoter. None of the other 104 patients, including 20 with elevated myc expression, exhibited any evidence of a genetic rearrangement involving the c-myc gene. Our results show that there is a subset of hematopoietic malignancies characterized by elevated expression of c-myc. This elevated expression in most cases is not due to obvious genetic changes (rearrangement, amplification) at the c-myc locus nor to chromosomal translocations in the vicinity of this gene. |
| The protein encoded by the human proto-oncogene c-myc. | The proto-oncogene c-myc may play a role in controlling the growth and division of normal cells, and abnormalities of the gene have been implicated in the genesis of a substantial variety of human tumors. To facilitate further study of these issues, we developed antisera that permit the identification and isolation of the protein encoded by the human and other mammalian versions of c-myc. We found that c-myc(human) gives rise to at least two phosphoproteins with apparent molecular weights of 62,000 [pp62c-myc(human), the major product] and 66,000 [pp66c-myc(human), produced in smaller quantities and possibly a modified version of the Mr 62,000 protein]. Both proteins have relatively short half-lives of approximately equal to 30 min. Mouse c-myc encodes similar proteins with molecular weights of 64,000 and 66,000. The use of cells transformed by DNA-mediated gene transfer sustained previous deductions that the entire coding domain of c-myc(human) is contained in the second and third exons of the gene and resolved previous ambiguities by showing that analogous exons specify the entire protein product of c-myc(chicken). tumor cells containing amplification of c-myc(human) produce relatively large amounts of pp62/pp66c-myc(human). By contrast, translocations of c-myc found in cells derived from Burkitt lymphoma appear merely to sustain expression of c-myc(human) at levels found also in nontumorigenic lymphoblastoid cells, rather than to increase expression of the gene to manifestly abnormal levels. |
| Translocation and rearrangements of the c-myc oncogene locus in human undifferentiated B-cell lymphomas. | The locus for the cellular myc (c-myc) oncogene in humans is located on the region of chromosome 8 that is translocated to chromosome 14 in cells from most undifferentiated B-cell lymphomas. It is shown in this study that the c-myc locus is rearranged in 5 out of 15 cell lines from patients with undifferentiated B-cell lymphomas, and that the rearrangement involves a region at the 5 side of an apparently intact c-myc gene. In at least three patients, this rearranged region appears to contain immunoglobulin heavy chain mu sequences that are located on chromosome 14. The data indicate that this region contains the crossover point between chromosomes 8 and 14. The break point can occur at different positions on both chromosomes among individual cell lines. |
| Transcriptional activation of the translocated c-myc oncogene in burkitt lymphoma. | We have previously demonstrated that translocations of V(H) genes from chromosome 14 to chromosome 8 and of the c-myc oncogene from chromosome 8 to chromosome 14 occur in Burkitt lymphomas with the t(8;14) chromosome translocation. An association of the c-myc gene with the C(mu) immunoglobulin gene has been observed in some but not ALL Burkitt lymphomas studied previously. In the present study, we have investigated the organization of the human heavy chain locus and of the c-myc gene in the P3HR-1 Burkitt lymphoma cell line. Becuase mouse/P3HR-1 somatic cell hybrids that retain only the 14q+ chromosome and no other human chromosome contain the human C(mu) and C(gamma) genes but not V(H) genes, we have concluded that the breakpoint on chromosome 14 in P3HR-1 cells is distal to C(mu) and between C(mu) and V(H). Thus, the breakpoint of human chromosome 14 differs in different Burkitt lymphoma cell lines. We also found that the human c-myc oncogene translocated to chromosome 14 in the P3HR-1 cell line is not recombined with the C(mu) gene. The breakpoint on human chromosome 8 may therefore also differ in different Burkitt lymphoma cell lines, because we have observed DNA rearrangement of the c-myc gene with the C(mu) gene in only some of the Burkitt lymphoma cell lines studied elsewhere. Interestingly, high levels of transcripts of the c-myc oncogene were observed in Burkitt lymphomas with translocated c-myc oncogenes both rearranged and unrearranged. Therefore, the translocation of a c-myc oncogene to the heavy chain locus on human chromosome 14 is apparently sufficient for its transcriptional activation and may be an essential step in the pathway leading to neoplasia. |
| Transcriptional activation of immunoglobulin alpha heavy-chain genes by translocation of the c-myc oncogene. | Our previous studies with the mouse myeloma MOPC 315 (IgA, lambda 2) cell line, using myeloma mutants that had deleted the productive alpha heavy (H)-chain gene, had shown that the excluded alpha constant-region (C alpha) allele in these cells is transcriptionally active. Recent reports from several laboratories have demonstrated that in many BALB/c mouse myelomas, including MOPC 315, the DNA segment encoding the c-myc oncogene is translocated to a C alpha allele. The mRNA coding strand of DNA for the c-myc gene is on the opposite strand from the immunoglobulin gene in this locus. We have now investigated the relationship between the c-myc translocation and transcriptional activity of excluded C alpha alleles in IgA- and IgG-producing mouse myeloma lines. We report here that c-myc-C alpha recombination events correlate with demethylation and transcription of C alpha genes. Several novel C alpha RNA species are produced, which are transcribed from the immunoglobulin-gene sense strand. The larger C alpha RNAs appear to contain c-myc sequences. Thus the anti-sense strand of the c-myc gene provides a promoter for transcription of the C alpha gene. This result suggests that in other transformed cells with a c-myc-immunoglobulin gene translocation, including many Burkitt s lymphomas, activation of the adjacent immunoglobulin gene would occur. |
| Differential expression of the translocated and the untranslocated c-myc oncogene in Burkitt lymphoma. | Burkitt lymphoma cells carrying either a rearranged or unrearranged c-myc oncogene were examined with the use of probes from the 5 exon and for the second and third exon of the oncogene. The results indicate that the normal c-myc gene on chromosome 8 and the 5 noncoding and 3 coding segments of the c-myc oncogene separated by the chromosomal translocation are under different transcriptional control in the lymphoma cells. Burkitt lymphoma cells carrying a translocated but unrearranged c-myc oncogene express normal c-myc transcripts. In contrast, lymphoma cells carrying a c-myc gene rearranged head to head with the immunoglobulin constant mu region gene express c-myc transcripts lacking the normal untranslated leader. |
| The human c-myc oncogene: structural consequences of translocation into the IgH locus in Burkitt lymphoma. | We have determined the sequence of the normal human c-myc gene and compared it to portions of a c-myc gene that has been translocated into the immunoglobulin heavy chain locus in a Burkitt lymphoma cell. The normal c-myc gene is encoded in three discrete exons divided by two large intervening sequences. Its mRNA is transcribed from two active promoters located about 150 nucleotides from one another. Each promoter initiates transcription of a long (approximately 550 bp) untranslatable leader sequence encoding the entire first exon. This exon and additional 5 flanking sequences are tightly conserved between mouse and man. In the Burkitt cell BL22, the rearranged c-myc gene retains both promoters and is unchanged in its amino acid coding domains. Translocation of this gene joins it to the immunoglobulin heavy chain switch region at a point approximately 1000 bp 5 to the dual c-myc promoters. These genes are joined in opposite transcriptional orientation. The structure of the translocated gene and the nature of its linkage to the immunoglobulin locus and the presence of two c-myc promoters and consequently two long leader sequences raise novel possibilities for the activation of an oncogene. |
| Interchromosomal recombination of the cellular oncogene c-myc with the immunoglobulin heavy chain locus in murine plasmacytomas is a reciprocal exchange. | The 15:12 chromosome translocations found in most murine plasmacytomas involve the cellular gene (c-myc) homologous to the oncogene (v-myc) of avian retrovirus MC29, Translocation links the c-myc gene of chromosome 15 to the immunoglobulin heavy (H) chain locus of chromosome 12, often within the switch recombination (S) region 5 to the alpha constant region (C alpha) gene. We have investigated c-myc rearrangements in 21 BALB/c plasmacytomas and three B lymphomas by Southern blot analysis. We show that the t(15;12) is a reciprocal chromosome exchange since most tumours contain not only a c-myc gene linked to the S alpha C alpha region but also a separate structure with S mu or S alpha linked to the c-myc 5 -flanking region. Analysis of the two rearrangement products cloned from plasmacytoma J558 suggests that one type of H locus target for translocation is an S alpha region recombined with S mu; two other targets appear to be other switched heavy chain genes and an unrearranged C alpha gene. Nearly ALL the chromosome 15 breakpoints fall within a 1.1-kb region spanning a 5 c-myc exon; hence scission of the transcriptional unit by translocation can account for the altered c-myc transcription in plasmacytomas. The c-myc breakpoint region lacks substantial homology with S mu or S alpha, arguing against homologous recombination as the translocation mechanism. |
| Transcriptional activation of an unrearranged and untranslocated c-myc oncogene by translocation of a C lambda locus in Burkitt. | We have studied somatic cell hybrids between mouse myeloma cells and IARC-BL2 Burkitt lymphoma human cells carrying a t(8;22) chromosome translocation for the presence and expression of human immunoglobin lambda chains and for the c-myc oncogene. The results indicate that the c-myc oncogene remains on the 8q+ chromosome and that the excluded and rearranged C lambda allele translocates from chromosome 22 to this chromosome 8. As a result of the translocation, transcriptional activation of the c-myc oncogene on the rearranged chromosome 8 (8q+) occurs, while the c-myc oncogene in the normal chromosome 8 is transcriptionally silent. These findings suggest that the translocation of a rearranged immunoglobulin locus to the 3 side of an unrearranged c-myc oncogene may enhance its transcription and contribute to malignant transformation. |
| Identification of reciprocal translocation sites within the c-myc oncogene and immunoglobulin mu locus in a Burkitt lymphoma. | The association between certain human tumours and characteristic chromosomal abnormalities has led to the hypothesis that specific cellular oncogenes may be involved and consequently activated in these genetic recombinations. This hypothesis has found strong support in the recent findings that some cellular homologues of retroviral onc genes are located in chromosomal segments which are affected by specific tumour-related abnormalities (see ref. 4 for review). In the case of human undifferentiated B-cell lymphoma (UBL) and mouse plasmacytomas, cytogenetic and chromosomal mapping data have identified characteristic chromosomal recombinations directly involving different immunoglobulin genes and the c-myc oncogene (for review see refs 5, 6). In UBLs carrying the t(8:14) translocation it has been shown that the human c-myc gene is located on the region of chromosome 8 (8q24) which is translocated to the immunoglobulin heavy-chain locus (IHC) on chromosome 14. Although it is known that the chromosomal breakpoints can be variably located within or outside the c-myc locus and within the IHC mu (refs 9, 11) or IHC gamma locus, the recombination sites have not been exactly identified and mapped in relation to the functional domains of these loci. We report here the identification and characterization of two reciprocal recombination sites between c-myc and IHC mu in a Burkitt lymphoma. Nucleotide sequencing of the cross-over point joining chromosomes 8 and 14 on chromosome 14q--shows that the onc gene is interrupted within its first intron and joined to the heavy-chain mu switch region. This recombination predicts that the translocated onc gene would code for a rearranged mRNA but a normal c-myc polypeptide. |
| A variant translocation places the lambda immunoglobulin genes 3 to the c-myc oncogene in Burkitt s lymphoma. | Most translocations that occur in Burkitt s lymphoma involve movement of part of chromosome 8, containing the c-myc gene, from its normal position to the immunoglobulin heavy-chain locus on chromosome 14. The genes are often joined at their 5 ends in opposite transcriptional directions. However, a significant minority of Burkitt translocations involve the light-chain loci on chromosome 2 (kappa) or 22 (lambda). We have characterized one of these from a European-derived cell line (IARC-BL37) that carries an 8;22 translocation. Here the translocation has joined the 5 portion of the lambda light-chain locus to the 3 portion of the c-myc gene at a position about 7 kilobases from the normal c-myc promoters. The translocation is reciprocal and relatively conservative, involving the loss of only 21 base pairs from the site of recombination. This translocation allows us to orient the lambda genes with respect to the centromere of chromosome 22 and to predict the orientation of other translocations involving these chromosomal segments. The 3 translocation is accompanied by an increased level of c-myc transcripts, especially that derived from a normally under-used c-myc promoter. |
| Translocation of an immunoglobulin kappa locus to a region 3 of an unrearranged c-myc oncogene enhances c-myc transcription. | We have studied somatic cell hybrids between mouse myeloma and JI Burkitt lymphoma cells carrying a t(2;8) chromosome translocation for the expression of human kappa chains. and for the presence and rearrangements of the human c-myc oncogene and kappa chain genes. Our results indicate that the c-myc oncogene is unrearranged and remains on the 8q+ chromosome of JI cells. Two rearranged C kappa genes were detected: the expressed allele on normal chromosome 2 and the excluded kappa allele that was translocated from chromosome 2 to the involved chromosome 8 (8q+). The distribution of V kappa and C kappa genes in hybrid clones retaining different human chromosomes indicated that C kappa is distal to V kappa on 2p and that the breakpoint in this Burkitt lymphoma is within the region carrying V kappa genes. High levels of transcripts of the c-myc gene were found when it resided on the 8q+ chromosome but not on the normal chromosome 8, demonstrating that translocation of a kappa locus to region distal to the c-myc oncogene enhances c-myc transcription. |
| [Chromosome translocations and the activation of C-myc oncogene in mouse plasmacytomas]. | Plasmacytomas can be induced in BALB/c mice by three different agents: (1) Mineral oil, (2) Solid plastics such as diffusion chambers, and (3) Abelson murine leukemia virus plus pristane. We examined chromosome aberrations in mouse plasmacytomas induced by each of the three agents. Most of plasmacytomas showed the specific translocations of chromosomes between either No. 12 and No. 15 or No. 6 and No. 15. These chromosome translocations were common to ALL plasmacytomas induced by different agents. The specific breakpoints were at 12F2 where IgH genes appear to locate, and 6C2 where kappa light chain genes might be located, and 15D2/3 where c-myc oncogene appears to locate. However, we have found very recently a few plasmacytomas which have no translocations of chromosomes. The subregion (s) of one copy of chromosome 15 which is called D1:D2 appears to be deleted in these plasmacytomas. In the next study, we examined the relationship of chromosomal aberrations to the activation of c-myc oncogene. Not only the plasmacytomas with chromosome translocations, but also the translocation-negative plasmacytomas showed the either rearrangement or germline type of c-myc DNA. Rearranged c-myc transcript was found only in plasmacytomas with the 12;15 translocation. However, not ALL plasmacytomas belonging to this group expressed the altered c-myc RNA transcript. Our experiments indicated that the germline type c-myc RNA was 2.4 kb and the rearranged c-myc RNA was mostly 1.8 kb in length. Concerning the c-myc DNA, the germline type was 21 kb and the rearranged type of c-myc DNA was estimated, mostly, to be 14 kb by EcoRI digestion. |
| Antibodies to human c-myc oncogene product: evidence of an evolutionarily conserved protein induced during cell proliferation. | Antisera to a synthetic c-myc peptide and to c-myc antigens synthesized from various portions of the human gene expressed in Escherichia coli were used in order to characterize the protein product of the human c-myc oncogene. Although the deduced molecular weight of the human c-myc protein is 49,000, these antisera precipitate a protein from human cells that migrates in sodium dodecyl sulfate-polyacrylamide gel as if its molecular weight were 65,000. In addition, the mouse c-myc protein, whether synthesized in cells or in a cell-free system directed by pure, synthetic messenger RNA, has analogous properties and is immunoprecipitated by the antiserum to the human c-myc protein. Similar proteins are immunoprecipitated from monkey, rat, hamster, and frog cells, suggesting evolutionary conservation of antigenic structure of the c-myc protein among vertebrates. In addition, and in a manner consistent with the behavior of its messenger RNA, the immunoprecipitable c-myc protein is sharply induced by the action of mitogens on resting human T cells. |
| Variant (6 ; 15) translocation in a murine plasmacytoma occurs near an immunoglobulin kappa gene but far from the myc oncogene. | Chromosome translocations in B-lymphoid tumours are providing intriguing insights and puzzles regarding the role of immunoglobulin genes in the activation of the myc oncogene (reviewed in refs 1, 2). The 15 ; 12 translocations found in most murine plasmacytomas and the analogous 8 ; 14 translocation in human Burkitt s lymphomas involve scissions of murine chromosome 15 (human chromosome 8) near the 5 end of the c-myc gene and subsequent fusion near an immunoglobulin heavy-chain gene. The less well characterized variant translocations found in about 15% of such tumours also involve the myc-bearing chromosome band, but exchange occurs with a chromosome bearing an immunoglobulin light-chain locus--in mice, the kappa-chain locus bearing chromosome 6 (refs 3-5) and, in man, chromosome 2 (or 22), at the same band at which the kappa (or lambda) locus lies (reviewed in ref. 1). The Burkitt variant translocations involve scissions 3 of c-myc; one 8 ; 22 translocation placed the C lambda locus just 3 of c-myc, but usually the chromosome 8 breakpoint is a greater, but unknown, distance away from c-myc, more than 20 kilobases (kb) in one 8 ; 2 translocation involving the C kappa gene. Little is known about the murine 6 ; 15 translocations, although a C kappa gene cloned from one plasmacytoma (PC7183) is linked, via chromosome 12 sequences, to an unidentified region of chromosome 15 (ref. 11). We describe here the chromosome fusion region from plasmacytoma ABPC4, which displays the typical reciprocal 6;15 translocations. We find that the chromosome 6 breakpoint is near C kappa but, unlike those in the heavy-chain locus, not at a position where immunoglobulin genes normally recombine. Moreover, the chromosome 15 sequences involved in the ABPC4 translocation are not derived from the vicinity of c-myc. |
| A conserved sequence at c-myc oncogene chromosomal translocation breakpoints in plasmacytomas. | Many recent studies have shown that chromosomal translocation breakpoints frequently occur near cellular proto-oncogenes (reviewed in ref. 1). In both mouse plasmacytomas and Burkitt lymphomas, the c-myc oncogene becomes joined to an immunoglobulin heavy-chain gene in a head-to-head configuration. Within c-myc, the breaks frequently occur near the first exon-intron boundary, while within the immunoglobulin gene the breaks usually involve sequences directing heavy-chain switching. It has been assumed that the translocations represent abortive immunoglobulin switching events which have activated the c-myc gene for a role in tumour formation. However, sequence analysis of the c-myc gene does not reveal any apparent similarity to the immunoglobulin switch signals. With these results in mind, we have determined the precise breakpoints within c-myc for two plasmacytoma lines in order to search for any common features that may shed some light on the mechanism of chromosomal translocation. We report here that the tetranucleotide sequence GAGG occurs close to the breakpoint in five out of six translocations, and so may be a sequence recognized by either the enzymes that catalyse immunoglobulin heavy-chain switching, or some other DNA-cleaving activity. |
| Nuclear localization and DNA binding properties of a protein expressed by human c-myc oncogene. | Antisera to the human cellular myc oncogene product were used to identify a human c-myc specific protein with a molecular weight of 65,000. Subcellular fractionation showed that the human c-myc protein is predominantly found in the cell nucleus. The p65Kc-myc protein binds to double- and single-stranded DNA as measured by a DNA affinity chromatography assay. |
| The translocated c-myc oncogene of Burkitt lymphoma is differentially regulated in lymphoblastoid vs plasma cells. | Antisera to the human cellular myc oncogene product were used to identify a human c-myc specific protein with a molecular weight of 65,000. Subcellular fractionation showed that the human c-myc protein is predominantly found in the cell nucleus. The p65Kc-myc protein binds to double- and single-stranded DNA as measured by a DNA affinity chromatography assay. |
| Modes of c-myc oncogene activation in murine plasmacytomas. | Antisera to the human cellular myc oncogene product were used to identify a human c-myc specific protein with a molecular weight of 65,000. Subcellular fractionation showed that the human c-myc protein is predominantly found in the cell nucleus. The p65Kc-myc protein binds to double- and single-stranded DNA as measured by a DNA affinity chromatography assay. |
| Amplification of the c-myc oncogene in human stomach cancers. | Amplified c-myc oncogene was found in the DNAs of 2 of 11 human stomach cancers transplanted into nude mice; the amplification was 8- to 10-fold in one tumor and 13- to 15-fold in the other. Both tumors in which the c-myc oncogene was amplified were poorly differentiated adenocarcinomas, but there was no clear-cut correlation between the histological types or growth rates of the tumors and amplification of the c-myc oncogene. No amplification of the c-myc gene was detected in DNAs from 4 cultured stomach cancer cell lines, 19 primary stomach cancers or 11 metastases to lymph nodes from human stomach cancers. |
| Proteins encoded by the human c-myc oncogene: differential expression in neoplastic cells. | To examine myc protein products in the wide variety of human tumor cells having alterations of the c-myc locus, we have prepared an antiserum against a synthetic peptide corresponding to the predicted C-terminal sequence of the human c-myc protein. This antiserum (anti-hu-myc 12C) specifically precipitated two proteins of 64 and 67 kilodaltons in quantities ranging from low levels in normal fibroblasts to 10-fold-higher levels in Epstein-Barr virus-immortalized and Burkitt s lymphoma cell lines, to 20- to 60-fold-higher levels in cell lines having amplified c-myc. The p64 and p67 proteins were found to be highly related by partial V8 proteolytic mapping, and both were demonstrated to be encoded by the c-myc oncogene, using hybrid-selected translation of myc-specific RNA. In addition, the p64 protein was specifically precipitated from cells transfected with a translocated c-myc gene. Both p64 and p67 were found to be nuclear phosphoproteins with extremely short half-lives. In tumor cell lines having alterations at the c-myc locus due to amplification or translocation, we observed a significant change in the expression of p64 relative to p67 when compared with normal or Epstein-Bar virus-immortalized cells. |
| Transformation of mammalian fibroblasts and macrophages in vitro by a murine retrovirus encoding an avian v-myc oncogene. | A murine retrovirus which expresses the avain v-myc OK10 oncogene was constructed. The virus, denoted MMCV, readily transforms fibroblasts of established lines, such as mouse NIH/3T3 and rat 208F cells, to anchorage-independent growth in agarose. The virus also transforms primary mouse cells: (i) virus-infected macrophages are induced to form large colonies in semi-solid media, and can easily be expanded into mass cultures; (ii) MMCV-infected fibroblastic cells from mouse limb buds undergo morphological transformation and grow in semi-solid medium. MMCV thus transforms both mouse fibroblastic cells and macrophages in vitro, in a fashion similar to the v-myc-containing avian viruses in chicken cells. The possibility of introducing a transforming myc gene into mammalian cells by virus infection provides a novel approach for studying the mechanism of myc transformation in cells from many lineages. |
| The myc oncogene in mouse plasmacytomagenesis. | A murine retrovirus which expresses the avain v-myc OK10 oncogene was constructed. The virus, denoted MMCV, readily transforms fibroblasts of established lines, such as mouse NIH/3T3 and rat 208F cells, to anchorage-independent growth in agarose. The virus also transforms primary mouse cells: (i) virus-infected macrophages are induced to form large colonies in semi-solid media, and can easily be expanded into mass cultures; (ii) MMCV-infected fibroblastic cells from mouse limb buds undergo morphological transformation and grow in semi-solid medium. MMCV thus transforms both mouse fibroblastic cells and macrophages in vitro, in a fashion similar to the v-myc-containing avian viruses in chicken cells. The possibility of introducing a transforming myc gene into mammalian cells by virus infection provides a novel approach for studying the mechanism of myc transformation in cells from many lineages. |
| The structure and nucleotide sequence of the 5 end of the human c-myc oncogene. | We have established the structure and nucleotide sequence of the 5 end of the human c-myc oncogene, using a cloned genomic fragment isolated from a fetal liver library (clone lambda MC41) and cloned cDNA from the human leukemic cell line K562. The human c-myc oncogene consists of three exons and two introns. Primer extension of the human c-myc mRNA of three different cell lines and S1 nuclease protection experiments served to establish the position of two transcription initiation sites. The splicing site of the first exon-intron boundary was determined by comparative analysis of the sequences of the genomic and cDNA clones. The first exon contains termination codons in ALL three reading frames and no translation initiation signals, confirming our previous observation that the c-myc mRNA has a long 5 noncoding sequence. This first exon also was found to be utilized in the formation of c-myc mRNAs in a variety of human cell lines. |
| Association of amplified oncogene c-myc with an abnormally banded chromosome 8 in a human leukaemia cell line. | Several unusual chromosome structures have been described in drug-resistant cell lines and in certain tumours. These structures include elongated homogeneously staining regions (HSRs), small extrachromosomal paired chromatin bodies (double minutes, DMs) and abnormally banded regions (ABRs) with strong but anomalous band patterns. There is evidence that these are alternative forms of gene amplification, with HSRs breaking down to form DMs, and DMs integrating into the chromosome to generate HSRs and ABRs. Recently, it was demonstrated that, compared with several normal and leukaemia human cells, DNA sequences representing the human homologue of the onc gene of the avian myelocytomatosis virus (MC29), the so-called c-myc gene, were amplified in HL-60 cells. This is a human promyelocytic leukaemia cell line established in the laboratory of one of us (R.C.G.) at the National cancer Institute (Bethesda, Maryland) in 1977, and widely used for studies on myeloid and monocytic differentiation. Amplification of the gene was present in primary leukaemic cells of the patient, and DMs were noted in some of these cells as well as in early passages of the HL-60 line. No structure resembling HSRs or ABRs were noted in karyotypic studies at this early stage and there were no alterations involving the long arm of chromosome 8 (8q), to which the c-myc gene has recently been mapped. We have now re-examined the karyotype of the HL-60 line, using cells frozen at various times during its continuous passage at the Wistar Institute (Philadelphia, Pennsylvania) to look for chromosomal abnormalities that might be associated with the amplification of c-myc. We find that, beginning in 1979, HL-60 cells at the Wistar Institute no longer had DMs, but did show an abnormal 8q+ chromosome, replacing a normal chromosome 8, and representing an ABR reflecting the site of myc gene amplification. |
| The expression of the myc proto-oncogene in a dimethylsulfoxide resistant HL-60 cell line. | A cell line partially resistant to dimethylsulfoxide (DMSO) was derived from the HL-60 cell line. Cycloleucine, theophylline, sodium butyrate and elevated levels of DMSO were found to induce myeloid differentiation in this cell line while TPA induced monocytic differentiation. The levels of myc RNA and the genomic structure of the c-myc proto-oncogene were found to be the same in HL-60 and the resistant cell line. Differentiation of the DMSO resistant line was accompanied by a reduction in myc RNA levels. |
| Differential expression of c-erbB, c-myc and c-myb oncogene loci in human lymphomas and leukemias. | Total cellular polyadenylated RNA from a variety of fresh human lymphoma and leukemia cells, characterized by histopathology and certain cell surface markers, was analyzed for the expression of three distinct cellular oncogenes (c-onc genes), c-erbB, c-myc and c-myb by dot-blot hybridization assays. Probes used were molecularly cloned DNA containing the respective oncogene sequence of avian erythroblastosis virus, myelocytomatosis virus (MC29) and myeloblastosis virus. ALL lymphoma-leukemia cells irrespective of B, T or non-B/non-T lymphocyte lineage expressed the c-erbB locus. This gene was also found to be active in normal peripheral blood lymphocytes and lymphocytes from lymph nodes showing reactive hyperplasia. This observation suggested that c-erbB might be normally involved in cell growth functions since it was not unique to hematopoietic malignancies. In contrast to c-erbB, elevated expressions of c-myc or c-myb were detected in certain neoplasms of B-lymphocytes and some other lymphoproliferative disorders as compared to the majority of the samples tested which showed either low or undetectable levels of these transcripts. An examination of B-cell lymphomas and leukemias in which the majority of the cellular populations expressed either Kappa or lambda surface lg light chain molecules revealed variations in the levels of c-onc transcripts within a morphologic and immunologic subtype. These findings support the notion that, in general, genetic heterogeneity exists in groups of hematopoietic proliferations defined by conventional histopathologic and immunologic criteria. Although with the majority of the specimens there was no obvious correlation between the morphologic cell type of lymphoma/leukemia and the c-onc RNA levels, interestingly two of the three samples diagnosed as chronic lymphocytic leukemia, B-cell type, showed considerably increased transcription of the c-myc gene relative to the other B-cell neoplasms. Thus a class of differentiated B-cell leukemia has been identified in which the molecular mechanisms which affect c-myc gene expression can now be investigated. |
| Identification of the c-myc oncogene product in normal and malignant B cells. | Antiserum to a synthetic peptide corresponding to the carboxyl-terminus of the human c-myc protein immunoprecipitated a 48,000-dalton protein from a number of normal and malignant human and mouse cells. The size of the protein is consistent with the potential coding region predicted from the c-myc nucleotide sequence, and is the same for malignant cells carrying either a rearranged or an unrearranged c-myc oncogene. Because c-myc transcripts are expressed at higher levels in malignant than in normal B cells, it appears that an increased level of the c-myc protein rather than a change in the gene product is the relevant factor in determining transformation. |
| Amplification and expression of the c-myc oncogene in human lung cancer cell lines. | Genetic changes involving the c-myc oncogene have been observed in human tumours. In particular, the c-myc gene is translocated in Burkitt s lymphoma and is amplified in the human promyelocytic leukaemia cell line, HL-60, which contains double minute chromosomes (DMs). More recently, an amplified c-myc gene has been positioned on a chromosomal homogeneous staining region (HSR) in a human colon cancer cell line, COLO 320, with neuroendocrine properties. Furthermore, c-myc is expressed in increased amounts in some human tumour lines, and in some cases, human small cell lung cancers (SCLC) contain DMs and HSRs. These findings prompted us to study the c-myc gene and its RNA expression in a series of human lung cancer cell lines. We now report amplification and expression of the c-myc oncogene in a system other than B-cell lymphomas, namely human lung cancer. Of 18 human lung cancer cell lines tested, 8 showed an amplified 12.5-kilobase (kb) EcoRI c-myc DNA band. Of particular interest are five SCLC lines with a high degree of c-myc DNA amplification (20-76-fold) and greatly increased levels of c-myc RNA. ALL five lines reside in the variant class of SCLC (SCLC-V) characterized by altered morphology, lack of expression of some SCLC-differentiated functions and more malignant behaviour than pure SCLC. Three of the five lines which have been karyotyped also contain DMs or HSRs. The finding of a greatly amplified c-myc gene in ALL cell lines of the SCLC-V class examined strongly suggests a role for the c-myc gene in the phenotypic conversion and malignant behaviour of human lung cancer. |
| Rat c-myc oncogene is located on chromosome 7 and rearranges in immunocytomas with t(6:7) chromosomal translocation. | Two B-cell-derived tumours, human Burkitt s lymphoma (BL) and murine plasmacytoma (MPC), are regularly associated with a distinctive form of chromosomal translocation (for reviews see refs 1, 2). In BL, the distal portion of chromosome 8 breaks off and is transposed, in most cases, to chromosome 14, known to carry the immunoglobulin heavy-chain locus. In about 5% of the cases the same distal part of the chromosome 8 has moved to either chromosome 2 or 22, to the neighbourhood of the kappa or the lambda locus, respectively. In MPC the distal region of chromosome 15 is transposed to the chromosome 12, known to carry the immunoglobulin heavy-chain locus, or enters into reciprocal exchange with the kappa locus-carrying chromosome 6 (ref. 7). Several laboratories have located c-myc, the cellular homologue of the MC29 retroviral oncogene v-myc, to human chromosome 8 (refs 8-10) and mouse chromosome 15 (refs 11-13). It has also been shown that the BL- and MPC-associated translocations remove the c-myc gene from its original site and transpose it into or close to one of the immunoglobulin gene clusters. In view of the above findings we also looked for possible involvement of the c-myc gene in a B-cell-derived tumour of a third species, the rat. Rat immunocytomas of spontaneous origin carry a reciprocal translocation between chromosomes 6 and 7 (ref. 17). Here we have localized the c-myc locus to chromosome 7 of the rat. Moreover, we have found that the c-myc gene was rearranged in four of five immunocytomas carrying the characteristic chromosomal translocation. |
| Amplification of the c-myc oncogene in one of five human breast carcinoma cell lines. | The c-myc oncogene was not rearranged in any of five different human breast carcinoma cell lines examined. A 10-fold amplification and an elevated expression of the oncogene were detected in one of these cell lines, and the four other lines expressed low or undetectable levels of c-myc transcripts. Thus, c-myc amplification and elevated expression may be found only in a minority of human breast carcinomas. |
| Chromosome translocation can occur on either side of the c-myc oncogene in Burkitt lymphoma cells. | In Burkitt lymphoma cells reciprocal chromosomal translocations are observed between the long arm of chromosome 8 (8q24) and either the long arm of chromosome 14 (14q32), the short arm of chromosome 2 (2p12) or the long arm of chromosome 22 (22q11). Gene mapping studies have shown that c-myc, the cellular homologue of the viral myc oncogene, is localized at 8q24 (ref 3-5) and that the three immunoglobulin gene loci map at the breakpoints involved in the translocation: immunoglobulin heavy-chain genes are located at 14q32 (refs 6, 7), kappa light chains at 2p12 (ref. 8) and delta light chains at, or close to, 22q11 (ref 9, 10). This correlation suggests an association of immunoglobulin gene rearrangements with the occurrence of these specific translocations. By using in situ hybridization we have examined the translocation point with respect to c-myc in two cell lines containing 2;8 translocation, and report here that the c-myc gene remains on the chromosome 8 involved in the reciprocal exchange with chromosome 2. We have also confirmed that the c-myc gene moves from the translocated chromosome 8 in a cell line having a 8;14 translocation. These results show that chromosomal breakage can occur on either side of the c-myc gene in Burkitt lymphoma cells. |
| The N-myc oncogene in neural tumors. | In Burkitt lymphoma cells reciprocal chromosomal translocations are observed between the long arm of chromosome 8 (8q24) and either the long arm of chromosome 14 (14q32), the short arm of chromosome 2 (2p12) or the long arm of chromosome 22 (22q11). Gene mapping studies have shown that c-myc, the cellular homologue of the viral myc oncogene, is localized at 8q24 (ref 3-5) and that the three immunoglobulin gene loci map at the breakpoints involved in the translocation: immunoglobulin heavy-chain genes are located at 14q32 (refs 6, 7), kappa light chains at 2p12 (ref. 8) and delta light chains at, or close to, 22q11 (ref 9, 10). This correlation suggests an association of immunoglobulin gene rearrangements with the occurrence of these specific translocations. By using in situ hybridization we have examined the translocation point with respect to c-myc in two cell lines containing 2;8 translocation, and report here that the c-myc gene remains on the chromosome 8 involved in the reciprocal exchange with chromosome 2. We have also confirmed that the c-myc gene moves from the translocated chromosome 8 in a cell line having a 8;14 translocation. These results show that chromosomal breakage can occur on either side of the c-myc gene in Burkitt lymphoma cells. |
| Novel myc oncogene RNA from abortive immunoglobulin-gene recombination in mouse plasmacytomas. | We have found that the myc oncogene has been modified by abortive recombination with the alpha heavy-chain immunoglobulin constant-region (C alpha) gene in five different mouse plasmacytoma lines. Recombination occurred approximately 0.8-2.0 kb to the 5 side of two distinct coding regions, defined by sequence homology between the chicken cellular and plasmacytoma myc genes. The myc and C alpha genes were always in opposite transcriptional orientation, with the recombination site within the C alpha switch region sequences. DNA recombination was found to correlate with the production of a novel 2.1 kb species of myc RNA that was 0.4 kb shorter than the normal cellular transcript. No elevated levels of myc RNA were evident, suggesting that DNA rearrangements have altered the myc oncogene product. This oncogene activation corresponds to the chromosomal translocations found in nearly ALL plasmacytomas. |
| Myc and Max: molecular evolution of a family of proto-oncogene products and their dimerization partner. | The myc gene family encodes a group of transcription factors that regulate cell proliferation and differentiation. These genes are widely studied because of their importance as proto-oncogenes. Phylogenetic analyses are described here for 45 Myc protein sequences representing c-, N-, L-, S-, and B-myc genes. A gene duplication early in vertebrate evolution produced the c-myc lineage and another lineage that later gave rise to the N- and L-myc lineages by another gene duplication. Evolutionary divergence in the myc gene family corresponds closely to the known branching order of the major vertebrate groups. The patterns of sequence evolution are described for five separate highly conserved regions, and these analyses show that differential rates of sequence divergence (= mosaic evolution) have occurred among conserved motifs. Further, the closely related dimerization partner protein Max exhibits significantly less sequence variability than Myc. It is suggested that the reduced variability in max stems from natural selection acting to preserve dimerization capability with products of myc and related genes. |
| A novel strategy of c-myc oncogene in NK activity regulation not related to the W6/32 MHC class-I epitope. | The c-myc gene encodes a nuclear protein whose precise function is still not fully understood. Introduction of a c-myc gene into a number of cell lines leads to an increase in their susceptibility to NK-cell lysis. It was reported earlier that c-myc can induce a decrease in the membrane expression of the MHC class-I molecules and this may be one of the factors that render target cells relatively more susceptible to NK lysis. In this contribution, we show, in a human LCL line transfected with a constitutively active c-myc gene, an increased sensitivity to NK lysis, which correlates with an augmented effector-target binding ability of c-myc-transfected LCLs and with a high ICAM-I expression rather than with down-regulation of MHC class-I W6/32 epitope expression. |
| Down-regulation of the c-myc proto-oncogene in inhibition of vascular smooth-muscle cell proliferation: a signal for growth arrest?. | Vascular smooth muscle (VSM) cell proliferation contributes to the pathogenesis of atherosclerosis, restenosis after angioplasty and vein graft disease. The regulation of genes involved in VSM cell proliferation, particularly by naturally occurring inhibitors, is therefore of some importance. We have investigated the role of the c-myc proto-oncogene in growth arrest of exponentially proliferating rat VSM cells, following mitogen withdrawal, treatment with heparin (50 micrograms/ml), interferon-gamma (IFN-gamma) (100 i.u./ml), or the cyclic nucleotide analogues, 8-bromo-adenosine-3 5 -cyclic monophosphate (8-Br-cAMP; 0.1 mM) and 8-bromoguanosine-3 5 -cyclic monophosphate (8-Br-cGMP; 0.1 mM). Growth arrest was accompanied by down-regulation of c-Myc protein and mRNA following treatment with ALL inhibitors. Serum withdrawal or IFN-gamma treatment suppressed c-myc expression by more than 50% within 2 h, and this occurred throughout the cell cycle. Platelet-derived growth factor, epidermal growth factor and basic fibroblast growth factor ALL contributed independently to the maintenance of c-myc expression. Heparin, 8-Br-cAMP or 8-Br-cGMP also suppressed c-myc, but this occurred later, after 24-48 h, and was also observed following arrest by metabolic block. We conclude that c-myc expression is linked to VSM cell growth arrest in response to endogenous regulators and metabolic block. Down-regulation of c-myc expression may thus be an essential part of the arrest programme in VSM cells induced by many pharmacological agents. |
| Inverse expressions of the N-myc oncogene and beta 1 integrin in human neuroblastoma: relationships to disease progression in a nude mouse model system. | A nude mouse model for human neuroblastoma has been developed to examine possible relationships between amplification/over-expression of the N-myc oncogene and altered regulation of expression of specific integrin subunits during tumor progression. Subcutaneous (ectopic) or intra-adrenal (orthotopic) injection of the neuroblastoma cell lines SK-N-SH or IMR-32 has generated a number of derivative tumor cell lines. tumor cell lines derived from SK-N-SH cells (which do not express N-myc) or IMR-32 cells (which over-express N-myc) produce tumors at higher rates when re-injected into the subcutaneous space of nude mice. Moreover, cell lines derived from tumors initiated by IMR-32 cells exhibit shorter latent periods than do IMR-32 cells direct from tissue culture. With regard to integrin subunit expression, SK-N-SH and related cell lines express high levels of beta 1 integrin, which is associated with the alpha 2 and alpha 3 integrin subunits (predominantly alpha 3). IMR-32 cells display reduced beta 1 expression, and that which is produced is not associated with common alpha subunits. LaN1 cells, which express N-myc at even higher levels than do IMR-32 cells, express even less beta 1. Interestingly, the tumor-derived cell lines (especially those from tumors initiated in adrenal glands) also exhibit reduced integrin expression compared with the parental cell lines; this reduction is associated with the enhanced tumor take rate observed when the cells are re-injected into nude mice. Our results raise the possibility of a relationship between over-expression of N-myc and down-regulation of beta 1 integrin expression (possibly some alpha subunits also). In addition, the data suggest that human neuroblastoma-derived cell lines which exhibit reduced integrin expression display more aggressive tumor growth in nude mice. |
| Proliferative and metabolic capacity of rat embryo fibroblasts immortalized by c-myc depends on cellular age at oncogenic transfection. | It is well known that secondary rat embryo fibroblasts are immortalized and transformed with respect to requirements of growth factors by transfection with an overexpressed c-myc protooncogene. On the other hand, c-myc expression of nontransformed cells was shown to be independent of cellular age in vitro. In order to elucidate further the role of the c-myc protooncogene in the process of aging of rat embryo fibroblasts, we have transfected these cells at low (< or = 2) and at high (> or = 16) cumulative population doublings with SV40-promoter/enhancer-driven murine c-myc. These cells transformed young or aged, as well as their nontransformed, young and aged controls, were characterized with respect to their expression of c-myc at the mRNA and the protein level. Furthermore, we have investigated in detail their cell density-dependent growth, dependence of cell proliferation on stimulation by combinations of growth factors, and dependence of entry into cell cycle on cell size. In addition, we have measured rates of synthesis and degradation of cellular RNA and protein. The main result was that cells transformed at old age cannot be distinguished from nontransformed old cells by any of the characteristics investigated except by their immortalization. Thus, the cell lines overexpressing c-myc are immortalized and fixed in the proliferative/metabolic state achieved at the time of transfection. It is concluded that the intracellular effects of c-myc depend on the epigenetic status of the cells. |
| Recurrent anaplastic ependymoma with an abnormal karyotype and c-myc proto-oncogene overexpression. | Cytogenetic analysis on a supratentorial, recurrent, anaplastic ependymoma from a 29-year-old female disclosed the presence of an abnormal clone with the karyotype 46,XX,der(8)t(8;11)(q24;p11),-11,add(?)t(?;11)(?;q13). By the Northern hybridization assay and immunohistochemical staining, tumor cells revealed overexpression of c-myc proto-oncogene, although no evidence of amplification or structural rearrangement of this gene was found. |
| [Analysis of rearrangements in the first exon of c-myc oncogene in squamous cell carcinoma of the head and neck]. | Activation of c-myc has been implicated in the origin of different human tumors, and can be produced by diverse mechanisms as amplifications or rearrangements. We examined 55 squamous cell carcinomas of the upper aerodigestive tract for rearrangements involving the first exon of c-myc, which plays a regulatory role in the c-myc expression. Polymerase chain reaction (PCR) amplification of different fragments of c-myc exon 1 was performed using four oligonucleotide primers that correspond to consecutive sequences from the 5 end of the c-myc exon 1, combined with one oligonucleotide that corresponds to the 3 end. Amplified c-myc PCR products appear as single bands of 580, 495, 417 and 333 base pairs on the electrophoretic analysis. Only in one case a rearrangement involving the first exon of c-myc was found. We concluded that gene rearrangement is not a common mechanism of activation of c-myc in squamous cell carcinomas of the head and neck. |
| Flow cytometric analysis of c-myc oncoprotein in non-small-cell lung carcinoma: comparison with immunohistochemical results. | c-myc oncoprotein expression was evaluated in 36 non-small-cell lung carcinomas using immunohistochemical and flow cytometric analysis. Formalin fixed and paraffin embedded material was used. The same monoclonal antibody (mouse anti-human c-myc) was employed both for immunohistochemistry and flow cytometry. For the immunohistochemical evaluation we calculated the percentage of stained cells on 200 neoplastic cells. c-myc oncoprotein was measured using flow cytometry by linking the monoclonal with a secondary FITC-conjugated antibody; for each sample 20,000 events were analysed and the percentage of cells positive for green fluorescence was calculated. DNA content was obtained by propidium iodide staining. Results showed a high correlation between immunohistochemical and cytometric data, suggesting that flow cytometry could be used as an alternative to immunohistochemistry in evaluating nuclear antigens. Moreover, using flow cytometry information on DNA content can be obtained simultaneously. |
| Structural constraints for DNA recognition by Myc and other b-HLH-ZIP proteins: design of oncoprotein analogues. | DNA recognition is a critical property of many transcription factors, some of which play important roles in human disease. Disruption of this recognition may profoundly influence the biology of these factors. One such factor, the Myc oncoprotein, utilizes a basic/helix-loop-helix/leucine zipper motif to recognize the DNA target CACGTG. As discussed here, this recognition appears to occur through recognition by one face of a basic region alpha helix utilizing amino acid side chains highly conserved among CACGTG binding proteins. This basic domain alpha helix, however, requires DNA binding for stabilization. To circumvent this energetic requirement, analogues were produced that introduce multiple alanines, displaying substantially increased spontaneous alpha helicity and significantly enhanced DNA affinity. These studies simplify our understanding of the structural constraints for DNA recognition by this family and may serve as a template for the design of small molecule transcription-targeted therapeutics. |
| Growth control of human colon-adenocarcinoma-derived Caco-2 cells by vitamin-D compounds and extracellular calcium in vitro: relation to c-myc-oncogene and vitamin-D-receptor expression. | The human colon-cancer cell line Caco-2, though of malignant origin, is still able to express the c-myc proto-oncogene in a regulable fashion. Transition from the logarithmic growth phase into the quiescent, i.e., confluent state, is accompanied by a significant increase in the number of cells in the G0/G1 phase of the cell cycle and a concomitant reduction of c-myc mRNA and of nuclear association of c-myc protein. Conversely, growth stimulation by lowering extracellular [Ca++]0 to 0.25 mM results in up-regulation of c-myc expression levels and consequently inhibition of re-entry of Caco-2 cells into the G0/G1 phase. In contrast, regulation of c-myc in Caco-2 cells is completely resistant to vitamin-D sterols, since the anti-mitogenic action of I alpha, 25-dihdroxyvitamin D3 (I alpha, 25(OH)2D3) and of 2 synthetic analogs, I alpha, 25(OH)2-16-ene-23-yne-D3 and I alpha, 25(OH)2-26, 27-F6-16-ene-23-yne-D3, occurred independently of any change in c-myc mRNA and nuclear protein levels. Although the antiproliferative effect of the vitamin-D sterols requires high-affinity binding to the cytoplasmic vitamin-D receptor (VDR), vitamin-D sterols have no effect on VDR mRNA levels in Caco-2 cells. However, VDR mRNA expression changed in an antiparallel fashion to c-myc regulation upon transition between different growth states. This suggests that VDR mRNA abundance could nevertheless be important for vitamin-D-related c-myc-independent growth control in Caco-2 cells. |
| Expression of c-myc oncoprotein in chronic T cell leukemias. | T cell clones in patients with ataxia telangiectasia (AT) and T cell prolymphocytic leukemia (T-PLL) have identical chromosome abnormalities, namely inv(14)(q11q32), t(14;14)(q11;q32) and t(X;14)(q27;q11). In T-PLL and AT developing T cell leukemia, the above abnormalities occur frequently together with trisomy for 8q. We postulated that the additional abnormalities of chromosome 8, where the c-myc oncogene is mapped to 8q24, may play a role in the development of overt leukemia. DNA analysis using the CD1A c-myc probe did not reveal rearrangements of the c-myc gene by Southern blotting. We have used a monoclonal antibody for the c-myc protein to investigate the level of expression in 11 patients with T-PLL and two with Sezary cell leukemia and compared it with levels seen in normal lymphocytes. Significantly higher levels were observed in patients compared with controls (P < 0.0001). The highest levels of c-myc were seen in eight cases with trisomy for 8q resulting from an i(8q). One patient was investigated before and after treatment. In the active state, c-myc showed a level of 64.36 units (range 20-200). After treatment a residual population of malignant cells showed a c-myc level of 155 (range 90-280). This study suggests that the increased expression of c-myc as a result of trisomy for 8q may have a role in the pathogenesis of de novo T-PLL and T cell leukemia supervening AT and that there may be a correlation between c-myc levels and resistance to therapy. |
| Suppression of c-myc oncogene expression by a polyamine-complexed triplex forming oligonucleotide in MCF-7 breast cancer cells. | Polyamines are excellent stabilizers of triplex DNA. Recent studies in our laboratory revealed a remarkable structural specificity of polyamines in the induction and stabilization of triplex DNA. 1,3-Diaminopropane (DAP) showed optimum efficacy amongst a series of synthetic diamines in stabilizing triplex DNA. To utilize the potential of this finding in developing an anti-gene strategy for breast cancer, we treated MCF-7 cells with a 37mer oligonucleotide to form triplex DNA in the up-stream regulatory region of the c-myc oncogene in the presence of DAP. As individual agents, the oligonucleotide and DAP did not downregulate c-myc mRNA in the presence of estradiol. Complexation of the oligonucleotide with 2 mM DAP reduced c-myc mRNA signal by 65% at 10 microM oligonucleotide concentration. In contrast, a control oligonucleotide had no significant effect on c-myc mRNA. The expression of c-fos oncogene was not significantly altered by the triplex forming oligonucleotide (TFO). DAP was internalized within 1 h of treatment; however, it had no significant effect on the level of natural polyamines. These data indicate that selective utilization of synthetic polyamines and TFOs might be an important strategy to develop anti-gene-based therapeutic modalities for breast cancer. |
| Effects of the MYC oncogene antagonist, MAD, on proliferation, cell cycling and the malignant phenotype of human brain tumour cells. | To investigate how overexpression of MAD, an antagonist of MYC oncogenes influences the malignant phenotype of human cancer cells, an adenovirus vector system was used to transfer the human MAD gene (AdMAD) into human astrocytoma cells. Decreased growth potential of AdMAD-infected cells was evidenced by a decrease in [3H]thymidine incorporation, an increase in cell doubling time and alteration of cell-cycle distribution. Diminished malignant potential of AdMAD-infected cells was manifested by their loss of anchorage-independent growth in soft agar and by their inability, in general, to induce tumorigenesis in a xenograft animal model. These studies indicate that adenovirus constructs encoding MAD dramatically inhibit the proliferation and tumorigenicity of human astrocytoma cells and support the use of MAD for gene therapy of human tumours. |
| Macrophage colony-stimulating factor is expressed by an ovarian carcinoma subline and stimulates the c-myc proto-oncogene. | A small, fast-growing and non-differentiated clone (N.1) derived from the heterogeneous human epithelial ovarian carcinoma cell line HOC-7 produces an autocrine/paracrine factor that is secreted into the cell culture supernatant. This factor is capable of enhancing mRNA levels of the proliferation-related oncogene c-myc in the more differentiated clone D3 and in normal human fibroblasts MRC.5, but also in N.1 cells themselves. Supernatants enriched for this paracrine/autocrine factor also confer a mitogenic stimulus as measured by [3H]thymidine incorporation. Trypsin can neutralise the stimulating activity of the secreted factor as well as monoclonal antibodies directed against macrophage colony-stimulating factor (M-CSF). We show that M-CSF and also M-CSF receptor are expressed in N.1 cells and that recombinant M-CSF induces c-myc transcript levels in N.1 cells. This investigation raises the possibility that M-CSF might be an autocrine growth factor in non-differentiated ovarian carcinomas. Inappropriate cytokine production could create a tumour-promoting microenvironment in this cancer type. |
| Effects of sex steroids on cell growth and C-myc oncogene expression in LN-CaP and DU-145 prostatic carcinoma cell lines. | The prostate gland is dependent on androgens for the maintenance of its normal growth and functional integrity. Initially, growth of the majority of prostate tumours can be manipulated by endocrine therapy. In the present study, we evaluated the effects of sex steroids on the cell growth and expression of the C-myc oncogene in two human prostatic adenocarcinoma cell lines. We found that dihydrotestosterone increases the proliferation rate of prostatic cells, and amplification of C-myc oncogene is hormone-dependent. We also demonstrated a positive correlation between the number of cells positive for C-myc oncogene and oncoprotein in hormone-treated prostate cell lines. |
| ACTH-induced c-myc proto-oncogene expression precedes antimitogenic effect during differentiation of fetal rat adrenocortical cells. | The regulation of proto-oncogenes has been connected with proliferation and differentiation in various cell types. In the present study, the ACTH-induced expression of c-myc mRNA and proliferation of fetal rat adrenocortical cells have been studied. Low levels of c-myc mRNA were detected in undifferentiated zona glomerulosa-like cells. Stimulation with ACTH for 2 to 6 h transiently increased the c-myc mRNA levels. Both basal and ACTH-induced expression levels were increased by the protein synthesis inhibitor cycloheximide. Treatment with a protein kinase C (PKC) activator 12-0-tetradecanoyl phorbol-13-acetate mimicked the effect of ACTH, whereas c-myc mRNA levels decreased by inhibiting the PKC with H-7. ACTH inhibited proliferation of fetal rat adrenocortical cells during the first 24 h of stimulation. The inhibitory effect began from 6 h, reached its maximum at 12 h and slowly vanished at 24 h. Our data demonstrated that ACTH transiently increased c-myc mRNA expression. Adrenocortical c-myc expression was mediated via PKC. In contrast to previous reports, where c-myc expression precedes proliferation of various cells, ACTH-induced c-myc mRNA expression of cultured fetal rat adrenocortical cells was followed by inhibition of proliferation. |
| Immunohistochemical expression of C-myc oncogene, heat shock protein 70 and HLA-DR molecules in malignant cutaneous melanoma. | The clinical course of malignant melanomas is frequently unpredictable, although a number of prognostically useful variables can be identified. There is a need for additional markers of prognostic value. In a series of 60 malignant cutaneous melanomas, we analysed the immunohistochemical expression of c-myc proto-oncogene, heat shock protein 70 (HSP70) and HLA-DR molecules in order to investigate their prognostic significance. C-myc, HSP70 and HLA-DR were expressed in 43.3%, 56.6% and 38.3% of ALL melanoma cases, respectively. Advanced Clark levels (Clark III-V) were significantly associated with c-myc expression rate (P < 0.05), HSP70 detection (P < 0.01) and HLA-DR positivity (P < 0.01). Increased Breslow thickness (> 1.5 mm) was related to HLA-DR expression (P < 0.05). High mitotic rate was closely associated with c-myc positivity (P < 0.05), while HSP70 and HLA-DR expression separately correlated to clinical stage of the disease (P < 0.05). The evaluation of these variables may be of immunological and prognostic significance. They were found to be associated with melanocyte subpopulations of the vertical growth phase which are arguably characterized by an increased invasive potential. |
| Influence of protein tyrosine phosphorylation on the expression of the c-myc oncogene in cancer of the large bowel. | We tested the potential impact of tyrosine phosphorylation on the expression of the c-myc gene in two colon cancer cell lines, HCT8 and SW837. We found that the protein tyrosine kinase inhibitor genistein causes a decrease in the abundance of c-myc RNA and an inhibition of proliferation with a similar dose response. Geldanamycin, a mechanistically different tyrosine kinase inhibitor, also causes a decrease in both the expression of c-myc RNA and proliferation. Genistein has also been found to inhibit topoisomerase II, but the topoisomerase II inhibitor novobiocin did not lower the expression of c-myc. The most likely interpretation is that inhibition of protein tyrosine kinase activity caused a decrease in c-myc expression in these cells. The impact of tyrosine phosphorylation on the expression of the c-myc gene is further supported by the finding that inhibition of phosphotyrosine phosphatase using orthovanadate causes an increase in the level of c-myc RNA. The effect of genistein on HCT8 cells is not dependent on the synthesis of new protein and does not involve an alteration in the stability of the message. Analysis of transcription in the c-myc gene reveals a more complicated picture with a decrease in initiation and an increase in elongation but no net change in transcription. We speculate that the genistein induced reduction in myc expression is the result of a posttranscriptional intranuclear event(s). |
| Transcriptional activation of the c-myc oncogene in the T-47D mammary cancer cells by conditioned media from embryonic mouse fibroblasts (BALB/c-3T3). Effect of the antiestrogen ICI 164,384. | The effects of the conditioned medium (CM) of embryonic mouse fibroblast (BALB/c-3T3) cells (clone A31) on the mRNA of the c-myc oncogene of the hormone-dependent T-47D mammary cancer cells were explored. After 6h incubation a significant stimulation of c-myc expression was observed with a 10% v/v concentration of CM, and the effect was even higher using a CM concentration of 30% v/v. It is suggested that this action of CM could be related to the stimulatory effect on proliferation and DNA synthesis induced by the CM, as was recently demonstrated for the T-47D cells. It was also observed that the antiestrogen ICI 164,384 (5 x 10(-6) M) can inhibit the stimulatory action of CM on c-myc expression. It is concluded that the fibroblast mouse embryonic cells contain and secrete factor(s) involved in the mechanism of proliferation of human hormone-dependent mammary cancer cells. |
| Inhibition of CTP synthetase induces differentiation of HL-60 cells and down-regulation of the c-myc oncogene. | An elevated, sustained expression of c-fos mRNA was found in primary cultures of mouse cerebellar granule cells following exposure to toxic concentrations of the excitatory amino acids, L-glutamate, L-homocysteate, S-sulpho-L-cysteine and N-methyl-D-aspartate (NMDA), using leakage of lactate dehydrogenase (LDH) as an indicator of cytotoxicity. In contrast, when used at non-toxic concentrations these compounds induced a rapid and transient increase in c-fos mRNA levels. Both LDH release and elevated, sustained c-fos mRNA induction were blocked (in the case of L-homocysteate) or reduced (in the case of L-glutamate and S-sulpho-L-cysteine) by the selective NMDA receptor antagonist (DL(+/-)-2-amino- 5-phosphonopentanoic acid) whereas 6-cyano-7-nitroquinoxaline-2,3-dione (a selective antagonist at non-NMDA ionotropic receptors) had no effect. These data suggest a role for altered c-fos mRNA expression in excitotoxic mechanisms. |
| [Immunohistochemical detection of c-myc proto-oncogene products in middle ear cholesteatoma]. | Cholesteatoma epithelium is characterised by a keratinocyte dysregulation with a hyperproliferative growth and altered differentiation. In a variety of cells c-myc oncogene was found to be highly linked to the control of growth and differentiation. The expression of c-myc was studied in cholesteatoma epithelium using a monoclonal antibody directed against the 67 kD c-myc protein product and the alkaline phosphatase-anti-alkaline phosphatase-method. Furthermore for quantitative analysis we used a computer aided analysing system. In contrast to normal skin the keratinocytes of suprabasal layers showed a nuclear staining in cholesteatoma epithelium. The incidence of nuclear stainings of epithelial cells in cholesteatoma was significantly increased. Simultaneously, cytoplasmatic staining was observed in both skin and cholesteatoma with a stronger reactivity in the latter. Our findings suggest a participation of the c-myc oncogene in the reported dysregulation of cholesteatoma epithelium. |
| C-myc oncogene expression in anal squamous neoplasia. | AIMS: To determine the pattern of c-myc oncogene expression in anal squamous neoplasia and to determine if this could be used as a marker of disease progression. METHODS: The presence and localisation of the c-myc gene product p62 in archival specimens of anal squamous epithelium, normal and neoplastic, was examined using immunohistochemical staining with the monoclonal antibody Myc1-6E10. Ten normal and epithelia, 10 anal intraepithelial neoplasia (AIN) III, and 31 anal squamous cancers were examined. RESULTS: There was a noticeable difference between the staining characteristics of invasive tumours, normal anal epithelium, and AIN III. Intense, diffuse, mixed nuclear and cytoplasmic (n = 14) and exclusively nuclear (n = 8) staining in 22 of 31 (71%) of invasive anal tumours was observed. ALL positively staining tumours were well differentiated histologically, while the negatively staining nine of 31 (29%) were poorly differentiated (n = 7) and moderately well differentiated (n = 2). In six positively staining tumour sections adjacent areas of AIN III and non-dysplastic anal epithelium had staining characteristics similar to those of the invasive component. Staining in both normal anal epithelium (4/10) and AIN III specimens obtained from patients without a history of invasive disease (8/10) was less intense, focal in distribution, and exclusively nuclear. No difference in staining characteristics could be detected in these two groups. CONCLUSIONS: The results of this study suggest that c-myc oncogene expression is implicated in the pathogenesis of anal squamous neoplasia, and that immunohistochemical staining for c-myc protein may be helpful in identifying those AIN III lesions most likely to progress to invasive tumours. |
| Testosterone regulation of proto-oncogene c-myc expression in primary Sertoli cell cultures from prepubertal rats. | The expression of c-myc has been associated with cell proliferation through changes of nuclear function. To evaluate the possibility that the proto-oncogene c-myc plays a role in testosterone-dependent gene regulation, the effects of testosterone on the expression of c-myc have been investigated in primary Sertoli cell cultures. Testosterone increased c-myc mRNA levels, with maximal stimulation reached in 16 hours. The induction of c-myc mRNA was dependent on the concentration of testosterone. Testosterone-induced c-myc mRNA levels were also increased in cells after addition of cycloheximide but reduced by actinomycin-D pretreatment. Even in the absence of hormone in culture medium, c-myc mRNA was clearly detectable in Sertoli cells from 8-day-old rats but hardly detectable in cells from 14 and 28 days of age. Testosterone stimulated c-myc mRNA expression in the Sertoli cells from only 8-/and 14-day-old rats. These results suggest that testosterone induces c-myc mRNA levels in the primary Sertoli cells from prepubertal rats, and then transient expression of c-myc may be responsible for some of the regulatory roles of testosterone-dependent genes in the Sertoli cells. The biological significance of testosterone-dependent c-myc induction is not known. |
| Overexpression of the c-Myc oncoprotein blocks the growth-inhibitory response but is required for the mitogenic effects of transforming growth factor beta 1. | One of the more intriguing aspects of transforming growth factor beta 1 (TGF beta 1) is its ability to function as both a mitogenic factor for certain mesenchymal cells and a potent growth inhibitor of lymphoid, endothelial, and epithelial cells. Data are presented indicating that c-myc may play a pivotal role in both the mitogenic and antiproliferative actions of TGF beta 1. In agreement with previous studies using C3H/10T1/2 fibroblasts constitutively expressing an exogenous c-myc cDNA, we show that AKR-2B fibroblasts expressing a chimeric estrogen-inducible form of c-myc (mycER) are able to form colonies in soft agar in the presence of TGF beta 1 only when c-myc is activated by hormone. Whereas these findings support a synergistic role for c-myc in mitogenic responses to TGF beta 1, we also find that c-myc can antagonize the growth-inhibitory response to TGF beta 1. Mouse keratinocytes (BALB/MK), which are normally growth-arrested by TGF beta 1, are rendered insensitive to the growth-inhibitory effects of TGF beta 1 upon mycER activation. This ability of mycER activation to block TGF beta 1-induced growth arrest was found to occur only when the fusion protein was induced with hormone in the early part of G1. Addition of estradiol late in G1 had no suppressive effect on TGF beta 1-induced growth inhibition. |
| DNA repair in the endogenous and episomal amplified c-myc oncogene loci in human tumor cells. | We have studied the repair of u.v.-induced cyclobutane pyrimidine dimers (CPDs) in amplified c-myc oncogene loci in human colon cancer cells to better understand the relationship between chromatin structure, transcription and DNA repair. To assess the variation in DNA repair in the same gene whether located in a chromosomal site or in a extra-chromosomal site, we have quantitated the efficiency of excision repair after u.v. exposure in the endogenous and episomal c-myc genes isolated from COLO320HSR and DM cells. In the HSR cells, c-myc is localized in a homogeneously staining region (HSR), and in the DM cells, the gene is localized in double minute chromosomes (DM). Our results indicate that the repair is less efficient in c-myc amplicons organized as double minute chromosomes than in the endogenous c-myc amplicons. The episomal gene is not repaired with the same efficiency as when it is intrachromosomal. This may reflect differences in chromatin structure. An advantage of this biological system is that the cells possess two different alleles of the c-myc gene, one that is active and another which is inactive. We have studied the relationship between DNA repair and transcriptional activity in the c-myc locus by measuring the efficiency of excision repair after u.v. exposure in the normal and rearranged alleles of the c-myc gene. Surprisingly, the c-myc gene is repaired with similar efficiency in the highly transcribed allele as in the poorly expressed allele. However, u.v. damage is selectively removed from the transcribed strand of the active c-myc allele, but DNA repair is not strand specific in the non-expressed c-myc allele. |
| [Gallbladder carcinoma: expression of the c-myc and ras-p-21 oncogene products]. | The expression of c-myc and p-ras-21 oncogenes was studied using an immunohistochemical method with monoclonal antibodies in 126 samples of gallbladder carcinoma (103 primary tumors and 23 metastatic lesions). Twenty five gallbladder samples without tumor evidence were used as controls. C-myc oncoprotein was positive in one control sample and p-ras-21 oncoprotein was negative in all. Among primary carcinomas c-myc was positive in 9 (9%) and p-ras-21 in 4 (4%); among metastatic carcinomas c-myc was positive in 6 (26%, p = 0.03 vs primary carcinoma) and p-ras-21 in 11 (48%, p < 0.001 vs primary carcinoma). There was a non significant association between c-myc and p-ras-21 expression and degree of histological differentiation and level of tumoral infiltration. It is concluded that c-myc and p-ras-21 oncoprotein expression is observed in less than 10% of primary gallbladder carcinomas and that this expression is significantly higher in metastatic carcinomas. This may reflect an activation or overexpression of these oncogenes in metastatic cells. |
| Estradiol stimulates c-myc proto-oncogene expression in normal human breast epithelial cells in culture. | The proto-oncogene c-myc is involved in the stimulation of cell proliferation, and its expression is known to be stimulated by estradiol (E2) in human breast cancer cell lines and various non-cancerous E2-dependent tissues. However, little information is currently available concerning its expression and regulation in normal human breast tissue. We therefore studied c-myc expression and hormone modulation in normal human breast epithelial (HBE) cells in culture, routinely obtained in our laboratory and which remain hormone-dependent. On these normal HBE cells, E2 induced a biphasic increase in c-myc mRNA level, with a first peak as early as 30 min, and a secondary increase after 2 h of treatment; this stimulation was dose-dependent, with an optimal concentration of 10 nM E2. Its primary action is probably at the transcriptional level since the half-life of c-myc mRNA measured in the presence of actinomycin D (12 +/- 3 min) was not modified by E2 treatment. In addition, E2 stimulation of c-myc mRNA does not require protein synthesis since it was not suppressed by cycloheximide treatment. Western blot studies of c-myc protein in HBE cells revealed the same biphasic pattern of stimulation, with a first peak after 60 min and a second one after 2 h of E2 treatment. In conclusion, the c-myc proto-oncogene is expressed in normal HBE cells, as in breast cancer cells. Moreover, E2 stimulates c-myc expression which, therefore, may partly mediate the growth-promoting effect of E2. |
| A divergent cDNA homologue of the c-myc proto-oncogene in the eastern oyster Crassostrea virginica: implications for Myc evolution. | The polymerase chain reaction was used to identify myc-like cDNA fragments from several marine invertebrate phyla. A PCR clone produced from the eastern oyster Crassostrea virginica was subsequently used to screen a larval cDNA library, and a 1.9-kb cDNA clone was isolated and sequenced. The putative amino acid sequence encoded by this clone evidences a leucine zipper at its predicted carboxyl-terminus and has an overall structural similarity to vertebrate c-myc proto-oncogenes with several regions of high amino acid similarity. However, this oyster cDNA clone lacks the necessary amino acid conservation in the critical functional domains of Myc and thus is unlikely to function intracellularly in the oyster as a true homologue of vertebrate c-myc. We propose that the oyster cDNA clone described here represents a gene that has been derived from the same ancestral gene that eventually gave rise to vertebrate c-myc. Despite the apparent critical importance of the c-myc proto-oncogene in regulating cellular activities, these data suggest that the c-myc gene: (1) is unique to deuterostome phyla, and (2) assumed its critical role in regulating cell cycle activities at the divergence of the deuterostome ancestors from other protostomes during the Cambrian explosion. In support of these conclusions we present a functional model for the evolution of the Myc gene. |
| A transactivator of c-myc is coordinately regulated with the proto-oncogene during cellular growth. | A recently cloned nuclear protein, which binds a far upstream element (FUSE) of the human c-myc proto-oncogene, stimulates promoter driven expression in undifferentiated cells. In concert with a loss of c-myc expression, both FUSE binding protein (FBP) mRNA and protein levels disappeared in HL60 cells after PMA-induced differentiation, due to a drop in the rate of transcription that was measured by nuclear runoff. During the differentiation of these cells, the brief half-lives of FBP mRNA (3 h) and protein (1.5 h) did not change, allowing for the rapid down-regulation of nuclear protein levels, as detected by immunohistochemical staining. Like c-myc, FBP is expressed in proliferating cells from a variety of lineages, but not in quiescent cells. When T cells and fibroblasts were stimulated to transit from G0 into the cell cycle, there was a dramatic rise of both FBP mRNA and DNA sequence specific nuclear FBP binding activity, which correlated with the appearance of c-myc mRNA. In contrast to the transient expression of many other immediate early growth response genes, both FBP and c-myc expression were sustained for more than 24 h. In fibroblasts, the coordinate expression of FBP and c-myc throughout ALL phases of the cell cycle is consistent with FBP s role as a growth-dependent regulator of c-myc expression. |
| [Angiotensin II induces c-fos and c-myc proto-oncogene expression in the left ventricle]. | In the present study, the effects of angiotension II on the expression of protooncogene c-fos and c-myc in the left ventricle were investigated on Langedorff heart preparations. It was observed that angiotensin induced both c-fos and c-myc expression in a dose-dependent manner and the c-fos expression showed an earlier appearance than c-myc. ALL these induced expressions were blocked by a Angiotensin II receptor antagonist saralasin. The Angiotensin II induced expression of c-fos was also blocked by TTX, but the c-myc gene expression was unaffected. |
| Oncogene protein co-expression. Value of Ha-ras, c-myc, c-fos, and p53 as prognostic discriminants for breast carcinoma. | OBJECTIVE: A refinement of prognostic variables using traditional pathologic markers integrated with oncogene proteins, enzymes, and hormonal factors may enhance the ability to predict for recurrence or survival in patients with mammary carcinoma. Although various oncogenes and oncogene products have been identified in human breast carcinoma, their relationship to disease outcome remains controversial. METHODS: Using the monoclonal antibodies cS93.1, 9E1.0, F235-1.7.1, and PAb 1801 against each oncogene protein studied, the avidin-biotin complex immunoperoxidase method provided immunohistochemical staining of bound oncogene protein for c-fos, c-myc, Ha-ras, and p53, respectively. Analyses were made on archival pathology tissues of 85 breast cancer patients (stages I, IIA, and IIB). Forty patients (47%) had recurrence of disease; 45 remained free of local-regional or distant disease at mean follow-up of 48 months (range 6-180 months). Molecular biological data were merged with clinicopathologic demographics 1) to determine the frequency of single or co-expression of oncogenes in this patient population; 2) to evaluate the value of these molecular protein markers to predict probability of recurrence; and 3) to determine worth of the studied oncogenes to correlate with traditional clinical pathologic parameters and overall survival. RESULTS: In this study, oncogene expression had statistical correlation for recurrence with increasing co-expression: one oncogene 17.2%, two oncogenes 56.3%, three or four oncogenes, 100% (p = 0.001). Increasing oncogene or co-oncogene expression correlated with statistically significant reduction in disease-free and overall survival; with no expression of oncogenes, disease-free survival was 30 (SE +/- 5.7) months and overall survival was 56.4 (SE +/- 4.57) months. With expression of three oncogenes, disease-free survival was 12 (SE +/- 1.23) months (p = 0.0018) and overall survival was 23.4 (SE +/- 3.38) months (p = 0.0025). In univariate Wilcoxon analysis, oncogene expression was the most significant variable to determine survival (p = 0.035); in multivariate analysis, age and oncogene co-expression each emerged as the most significant variables for overall survival. For the proportional hazards regression model, oncogene co-expression was significant (p = 0.0104, risk-ratio 1.914) and correlated with age and tumor size as significant variables. Ha-ras and c-fos both emerged as important individual oncogene proteins to affect survival (p = 0.0925, risk-ratio 3.517 and p = 0.025, risk-ratio 4.214, respectively). The proto-oncogene c-myc and the antitumor suppressor gene p53 did not have significant effects as individual oncogenes to influence survival. CONCLUSIONS: Approximately one fifth of the breast cancer patients in this analysis (disease-free and recurrent) expressed only a single oncogene marker (c-fos, c-myc, Ha-ras, or p53); one quarter of patients with recurrent disease expressed only one oncogene protein. Single oncogene expression did not possess independent prognostic significance for prediction of recurrence. Further, p53 mutations did not function as independent correlates for prognosis. The co-expression of the studied proto-oncogenes (c-myc, Ha-ras) and the nuclear transcriptional protein (c-fos) functioned as a strong prognostic correlate for recurrence and survival; the effect of individual oncogenes to predict survival was greatest for Ha-ras and c-fos. Immediate or early co-expression of three oncogene proteins in neoplastic transformation endowed cells of invasive carcinoma with an aggressive phenotype. This aggressive phenotype was evident in a small percentage of the studied population (11%) and predicted adverse disease-free and overall survival. These findings suggest that oncogene co-expression possesses significant prognostic and potential therapeutic value; incorporation of this molecular technology into future prospective randomized trials is advisable. |
| [Inhibition of proto-oncogene c-myc expression with recombinant human tumor necrosis factor-alpha and interferon-gamma in HL-60 cell lines and acute myelocytic leukemic fresh cells]. | HL-60 cell lines and AML fresh bone marrow cells were incubated with rhTNF-alpha and rhIFN-gamma in suspension culture system. Then total RNA was prepared for dot blot with 32P nick-translated c-myc DNA probe. The expression changes of c-myc oncogene when the HL-60 cell lines were treated with rhTNF-alpha and IFN-gamma and the AML fresh bone marrow cells treated with rhTNF-alpha alone were observed. The results showed that when the HL-60 cells were treated with 100U/ml or 500U/ml IFN-gamma and 50U/ml rhTNF-alpha for 8 hours, the expression of c-myc oncogene can be inhibited remarkably. The combination of rhIFN-gamma and rhTNF-alpha shows synergistic effect on inhibition of c-myc expression. High expression of c-myc was found in 8 patients with AML; c-myc mRNA level decreased remarkably after treatment of fresh bone marrow cells with 50U/ml rhTNF-alpha for 12 hours in 6 cases, while the remaining 2 cases showed minimal changes. The results demonstrate that rhTNF-alpha have inhibitive effect on c-myc expression in HL-60 cells and AML fresh leukemic cells. It also indicates the possibility of treating AML with low-dose rhTNF-alpha. |
| Transfection of the c-myc oncogene into normal Epstein-Barr virus-harboring B cells results in new phenotypic and functional features resembling those of Burkitt lymphoma cells and normal centroblasts. | Activated c-myc gene was introduced into the cells of three normal Epstein-Barr virus (EBV)-positive lymphoblastoid B cell lines (LCL). The cells were monitored for the appearance of new phenotypic and functional features compared with the control LCL cells transfected with plasmid that did not contain the c-myc gene. The LCL-expressing c-myc constitutively did not arrest growth in low serum concentration. However, the cell number in the cultures failed to increase because of substantial cell death. Death was due to apoptosis as demonstrated by flow cytometric analysis of propidium iodide-stained cells, by typical DNA laddering in gel electrophoresis, and by the inspection of Giemsa-stained cell smears. Apoptosis was also induced by exposing the transfected cells to antibodies directed to the immunoglobulin mu chain (a-mu-ab) irrespective of the serum concentration in the culture. Exposure of the cells to CD40 ligand (CD40L) or CD40 monoclonal antibody prevented cell apoptosis. Upon transfection with c-myc, the LCL cells acquired a vacuolated morphology that was never observed in control cells. Moreover, the expression of CD10 and CD38 was upregulated, while that of CD39 and especially CD23 was downregulated. Unlike that observed in certain Burkitt lymphoma (BL) cell lines that share the same surface phenotype (CD10+CD38+CD23-CD39-), the c-myc-transfected cells expressed lymphocyte function-associated (LFA) 1, LFA-3, and intercellular adhesion molecule 1 and grew in large clumps rather than single-cell layers. expression of CD10 and CD38 was particularly evident on the cells undergoing apoptosis, thus suggesting a correlation between the presence of these markers and the apoptotic process. Cells placed in conditions favoring in vitro apoptosis displayed downregulation of Bcl-2 protein. Bcl-2 expression was, however, upregulated when the cells were exposed to CD40L. These data indicate that the B cells expressing c-myc constitutively acquire some of the features of normal centroblasts and of BL cells, including the expression of CD10 and CD38, and the propensity to undergo apoptosis, which can be prevented by exposure to CD40L. Therefore, these cells can serve as a model system to study both BL lymphomagenesis as well as the process of B cell selection occurring in the germinal centers. |
| Immunohistochemical analysis of the Bcl-2 oncoprotein in human neuroblastomas. Comparisons with tumor cell differentiation and N-Myc protein. | BACKGROUND: The bcl-2 gene encodes a 26-kilodalton integral membrane oncoprotein that is noteworthy for its function as a blocker of programmed cell death, and ability to render cells resistant to killing by chemotherapeutic drugs and x-irradiation. EXPERIMENTAL DESIGN: To determine the in vivo patterns of bcl-2 expression in neuroblastomas (NBs), tumor specimens derived from 17 children with NB or ganglioneuromas were immunohistochemically evaluated using formalin-fixed, paraffin-embedded material and antibodies specific for the Bcl-2 and N-Myc proteins, or various markers typically used to assess the differentiation status of these tumors, including neuron-specific enolase, S-100 protein, beta 2-microglobulin (beta 2M) and the intermediate filament proteins, vimentin, and neurofilament light- and medium-chains. RESULTS: Using two-color immunohistochemical methods, Bcl-2 protein was found exclusively in tumor cells that did not contain N-Myc, an oncoprotein previously associated with poor prognosis in NB. Levels of Bcl-2 immunostaining were heterogeneous in the undifferentiated small, round cells typically seen in tumors with aggressive histology, and ranged from essentially undetectable, to strong in intensity. Somewhat higher levels of Bcl-2 immunostaining were found in the slightly larger, more differentiated neuroblastic cells that had more generous cytoplasm in these neoplasms. In contrast to the heterogeneous levels of Bcl-2 seen in undifferentiated NBs, Bcl-2 immunoreactivity was uniformly present at high levels in tumor cells that were more differentiated and judged to be similar to immature ganglion cells at an intermediate stage of neuronal differentiation, based on morphologic characteristics and immunophenotyping with antibodies specific for various differentiation markers. The still more differentiated ganglionic cells seen in ganglioneuroblastomas and ganglioneuromas exhibited much less intense immunoreactivity with anti-Bcl-2 antibodies, suggesting down-regulation of bcl-2 during final terminal differentiation. In contrast to cells with neuronal features, the stromal Schwann cells were uniformly negative for Bcl-2 protein in ALL histologic grades of tumors. Thus, bcl-2 expression in NBs was limited to cells of the neuronal lineage and tended to be highest in tumor cells with the characteristics of ganglionic cell precursors. The expression of bcl-2 in the normal fetal and postnatal adrenal medulla and sympathetic ganglia paralleled that seen in NBs, consistent with previous suggestions that NB reflects a block in the normal differentiation process. CONCLUSIONS: Taken together, these findings indicate that the levels of the Bcl-2 protein are developmentally regulated in normal and neoplastic cells of the sympathetic branch of the autonomic nervous system, and suggest that this oncoprotein may be useful as a differentiation marker for subclassification of NBs for prognostic purposes and for investigations of normal neuronal maturation. Furthermore, strong Bcl-2 immunoreactivity was detected in islets of residual tumor cells in 6 of 7 specimens obtained from 5 patients after therapy, suggesting that this oncoprotein may be cytoprotective for NB cells in vivo. |
| Integrated control of cell proliferation and cell death by the c-myc oncogene. | Regulation of multicellular architecture involves a dynamic equilibrium between cell proliferation, differentiation with consequent growth arrest, and cell death. Apoptosis is one particular form of active cell death that is extremely rapid and characterized by auto-destruction of chromatin, cellular blebbing and condensation, and vesicularization of internal components. The c-myc proto-oncogene encodes an essential component of the cell s proliferative machinery and its deregulated expression is implicated in most neoplasms. Intriguingly, c-myc can also act as a potent inducer of apoptosis. Myc-induced apoptosis occurs only in cells deprived of growth factors or forcibly arrested with cytostatic drugs. Myc-induced apoptosis is dependent upon the level at which it is expressed and deletion mapping shows that regions of c-Myc required for apoptosis overlap with regions necessary for co-transformation, autoregulation, inhibition of differentiation, transcriptional activation and sequence-specific DNA binding. Moreover, induction of apoptosis by c-Myc requires association with c-Myc s heterologous partner, Max. ALL of this strongly implies that c-Myc drives apoptosis through a transcriptional mechanism: presumably by modulation of target genes. Two simple models can be invoked to explain the induction of apoptosis by c-Myc. One holds that death arises from a conflict in growth signals which is generated by the inappropriate or unscheduled expression of c-Myc under conditions that would normally promote growth arrest. In this Conflict model, induction of apoptosis is not a normal function of c-Myc but a pathological manifestation of its deregulation. It thus has significance only for models of carcinogenic progression in which myc genes are invariably disrupted.(ABSTRACT TRUNCATED AT 250 WORDS)FAU - Evan, G |
| Regulation of cell growth and the c-myc proto-oncogene expression by phorbol ester 12-0-tetradecanoyl phorbol-13-acetate (TPA) in the androgen-independent human prostatic JCA-1 cells. | The proliferation of the human prostatic cancer JCA-1 cells showed a complex response to different concentrations of TPA. Whereas cells exposed for 24 h had growth reduction which was proportional to the concentration of TPA added to the culture media, they showed resistance to low (0.016 and 0.16 nM) but not high (> or = 1.6 nM) doses of TPA after 72 h. Growth-inhibited, treated cells also displayed a distinct cell morphology compared with the controls. Since c-myc expression has previously been shown to be correlated with cellular proliferation, we determined changes in its steady-state level in control and treated cells by Northern analysis. Following a 24h, 48h, and 72h treatment, with 16 nM TPA, c-myc mRNA was suppressed by 91%, 83%, and 78%, respectively, in good agreement with the extent of growth reduction observed. At the low dose of TPA (0.16 nM), however, the c-myc mRNA expression remained inhibited by 85% even though cell growth was only reduced by 10-14%. No difference in the total amount of c-myc protein could be detected between control and treated cells by Western analysis. |
| Identification of a cDNA for SSRP1, an HMG-box protein, by interaction with the c-Myc oncoprotein in a novel bacterial expression screen. | We describe a system for screening cDNA expression libraries in Escherichia coli based on protein-protein interactions. The system utilizes fusion proteins containing the DNA binding domain of the lambda phage cl repressor and a heterologous dimerization domain, which is the target of the screen. Such chimeric proteins were functional as transcriptional repressors in E.coli; function was dependent on the presence of the heterologous dimerization domain, and function of the chimeras was disrupted by expression of excess dimerization domain. A screen was designed to identify factors that could interact with the heterologous dimerization domain and thereby inactivate the chimeric repressor. We used this screen to identify factors that could interact with the basic helix-loop-helix/leucine zipper domains of c-Myc, and isolated the cDNA for a previously characterized HMG domain protein that interacts specifically with c-Myc in this system. This screening method could be used with proteins that have the ability to homo- or heterodimerize. |
| Down-regulation of c-myc oncogene during NGF-induced differentiation of neuroblastoma cell lines. | There may be a close relationship between myc oncogenes and carcinogenesis of human neuroblastoma. In previous studies, we were able to induce differentiation of certain neuroblastoma cell lines with NGF. In order to study gene regulation during differentiation, N-myc and c-myc cDNA probes were hybridized with RNA extracted from different cell lines before and after NGF treatment. It was found that cell lines which expressed N-myc did not express c-myc while those with c-myc did not express N-myc except for SHEP cell line which had neither c-myc nor N-myc expression. In NGF-induced differentiated neuroblastoma cells, c-myc oncogene was down-regulated in comparison with the control samples. The time course of c-myc down-regulation was concomitant with the appearance of morphological differentiation. In situ hybridization also showed remarkable reduction of c-myc oncogene expression in NGF-induced differentiated cells as compared with the untreated control cells. These results indicate that down-regulation of c-myc oncogene may be a key event during NGF-induced differentiation and over-expression of c-myc oncogene may, at least partially, be responsible for the genesis of neuroblastoma. |
| An amino-terminal domain of Mxi1 mediates anti-Myc oncogenic activity and interacts with a homolog of the yeast transcriptional repressor SIN3. | Documented interactions among members of the Myc superfamily support a yin-yang model for the regulation of Myc-responsive genes in which transactivation-competent Myc-Max heterodimers are opposed by repressive Mxi1-Max or Mad-Max complexes. Analysis of mouse mxi1 has led to the identification of two mxi1 transcript forms possessing open reading frames that differ in their capacity to encode a short amino-terminal alpha-helical domain. The presence of this segment dramatically augments the suppressive potential of Mxi1 and allows for association with a mammalian protein that is structurally homologous to the yeast transcriptional repressor SIN3. These findings provide a mechanistic basis for the antagonistic actions of Mxi1 on Myc activity that appears to be mediated in part through the recruitment of a putative transcriptional repressor. |
| Increased frequency of the S allele of the L-myc oncogene in non-Hodgkin s lymphoma. | We studied 100 patients with non-Hodgkin s lymphoma, 44 patients with Hodgkin s disease and 100 controls for the prevalence of the EcoRI restriction fragment polymorphism of the L-myc oncogene. No difference in the frequency of the three genotypes (LL, LS, SS) was found between the patient and control groups. However, the S allele was found to occur more frequently in the non-Hodgkin s lymphoma patients (chi 2 = 4.57, P = 0.032). These data confirm an earlier report and suggest that the presence of the S allele is associated with susceptibility to non-Hodgkin s lymphoma. |
| Expression of the multidrug resistance-associated protein (MRP) gene correlates with amplification and overexpression of the N-myc oncogene in childhood neuroblastoma. | The MRP gene (Cole et al., Science (Washington DC), 258: 1650-1654, 1992) encodes a membrane-bound glycoprotein the expression of which correlates with non-P-glycoprotein-mediated multidrug resistance in a variety of cultured human cell lines. Using an RNA-polymerase chain reaction assay, expression of this gene was examined in the highly chemoresistant pediatric malignancy, neuroblastoma. MRP expression was observed in 5 human neuroblastoma cell lines and in ALL 25 primary neuroblastoma tumors of stage I through IVS. tumors with amplification of the N-myc oncogene were found to have significantly higher MRP expression that those with no amplification (P = 0.0016). expression of the MRP gene in the tumor specimens was highly correlated with expression of the N-myc gene (P = 0.0009), while expression of the MDR1 gene, encoding P-glycoprotein, was not related to expression of either the N-myc or MRP genes. Decreased expression of the N-myc oncogene in neuroblastoma cell lines SH-SY5Y and BE(2)-C, following treatment with retinoic acid, was paralleled by down-regulation of MRP gene expression, contrasting with increased expression of the MDR1 gene. expression of the MRP gene is thus common in both primary neuroblastoma tumors and cultured cell lines, and correlates with amplification and overexpression of the N-myc oncogene, which is central to the malignant phenotype of this disease. |
| Stage-limited expression of myc oncoprotein in the human ovary during follicular growth, regression and atresia. | The cytologic localization and cellular levels of myc oncoprotein in the human ovary during follicular growth, regression and atresia were examined by the avidin/biotin immunoperoxidase method with a specific antibody to myc oncoprotein. In primordial follicles, only the oocyte showed intense immunostaining for myc protein, whereas the granulosa cells were negative for the staining. In preantral follicles, both the oocyte and granulosa cells were moderately immunostained for myc protein. In antral and preovulatory follicles, there was no appreciable staining for myc protein in the granulosa or theca cells, while myc protein staining in the oocyte persisted with less intensity. It is of interest that myc protein expression in granulosa cells was apparent only during the preantral follicle stage. Corpora lutea during the early and mid luteal phase were negative for myc protein staining, whereas in regressing corpora lutea during the late luteal phase, peripheral theca lutein cells adjacent to the central core of scar tissue were immunostained for myc protein. Corpora albicans showed no staining for myc protein. In atretic follicles, granulosa cells and theca interna cells demonstrated positive staining for myc protein. Ovarian stromal cells were negative for the immunostaining throughout the menstrual cycle. This demonstrates that myc protein is expressed in a stage-limited manner in the human ovary during follicular growth and regression. The abundant expression of myc protein in the oocyte at the primordial and preantral follicle stages and in the granulosa cells at the preantral follicle stage suggests a role for myc expression in the initial growth of the oocyte as well as in the autonomous growth of granulosa cells during the preantral stage seemingly independent of gonadotropic stimulation. Furthermore, notable expression of myc protein in the granulosa cells and theca interna cells of atretic follicles and in the peripheral theca lutein cells of regressing corpora lutea implies the possible participation of myc expression in remodelling the ovarian local tissue following atresia and luteolysis in the human ovary. |
| The N-myc oncoprotein is a transcriptional activator and associates with max and RB1 proteins. | Of 567 children with neuroblastoma diagnosed between November 1984 and May 1993 in 21 Italian institutions, 235 (41%) have been evaluated for MYCN oncogene amplification. The amplification (3 or more copies of the gene) was found in 39 patients (17%) and was more frequent in patients aged more than one year, abdominal primary site of the tumor, advanced stages, normal urinary excretion of vanillylmandelic acid (VMA), and high level of LDH, NSE and ferritin. The five-year survival of the 235 patients (62%) was significantly better in patients with normal copy number of MYCN (69% versus 29%). By correlating genomic amplification with clinical and biochemical characteristics, MYCN amplification was found associated with a worse prognosis even when patients were subdivided for age (under and above one year), disease extension (localized operable, localized but inoperable, and disseminated) with exception for Stage IV-S, VMA and homovanillic acid excretion, serum levels of NSE and ferritin, but not of LDH. These data confirm the unfavourable prognostic meaning of MYCN amplification, but are unable to define if it represents a new independent variable. |
| Ki-ras and c-myc oncogene expression measured by coamplification polymerase chain reaction. | Ki-ras and c-myc oncogene mRNA in carcinoma tissue was quantitatively detected by the coamplification polymerase chain reaction. After the reverse transcription of the mRNA mixture with random hexanucleotide primer the coamplification polymerase chain reaction of the oncogene and the internal standard beta-actin cDNA was done. The amount of oncogene mRNA was calculated from the coamplified product ratio. Ki-ras expression in a human gastric cancer strain H-111 was estimated to 5 percent of beta-actin. The expression of c-myc mRNA in colorectal carcinoma tissue was observed to be ten to one hundred times higher than normal mucosa. Gene expression was compared numerically in mole/liter without using hybridization and radioactive probes. |
| Down-regulation of the human c-fos and c-myc proto-oncogene promoters by adeno-associated virus Rep78. | Adeno-associated virus (AAV) is a non-pathogenic human parvovirus which has anti-tumor and anti-proliferation properties in tissue culture and animal studies. Furthermore, AAV infection is negatively associated with human cervical cancer. C-myc has been implicated in cervical cancer, and c-fos is involved in signal transduction initiation of cell growth. To study the potential regulation of these two prominent human proto-oncogenes by AAV, the expression of three marker coding sequences ligated 3 of the proto-oncogene promoters were observed. Demonstrated here, the AAV Rep78 gene product was able to down-regulate the human c-fos and c-myc proto-oncogene promoters in ALL three assay systems. These interactions may partially explain AAVs anti-proliferation properties. |
| Investigation of c-myc oncogene amplification in colorectal cancer. | tumour DNA samples of 20 patients with colorectal carcinoma were tested for c-myc amplification, using a quantitative dot-blot hybridization. Statistical analysis involving clinical and histological parameters like degree of differentiation, Dukes stage, TNM staging system, age, sex and severity of disease, was applied to estimate the prognostic value of c-myc amplification. The amplification of the investigated oncogene--1.61-fold on the average--was found to significantly correlate with the presence of distant metastasis (corr. coeff.: 0.506, P < 0.05) and the severe course of the disease (corr. coeff.: 0.468, P < 0.05). This result supports the hypothesis that tumour cells with c-myc amplification represent a more malignant and aggressive phenotype. It is also worth noting that both c-myc amplification and formation of distant metastasis are late events in the progression of colorectal cancer, which accounts for the more severe course of the disease. |
| Human neuroblastoma: amplification of the N-myc oncogene and loss of a putative cancer-preventing gene on chromosome 1p. | The protein product of the oncogene bcl-2 is a potent inhibitor of apoptotic cell death. The Bcl-2 protein has variously been reported to reside in the nuclear envelope and endoplasmic reticulum or exclusively in the inner membrane of mitochondria. We therefore undertook a detailed analysis of the intracellular distribution of Bcl-2 by immunofluorescence, immunogold electron microscopy, and subcellular fractionation in three mouse cell lines expressing a human bcl-2 transgene and measured its importation into isolated mitochondria. By these methods, the protein was localized to the nuclear envelope, the endoplasmic reticulum, and the outer mitochondrial membrane. Any proposal for the mechanism by which Bcl-2 inhibits apoptosis must therefore accommodate the fact that Bcl-2 localizes to cytoplasmic membranes facing the cytosol. |
| Activation of the proto-oncogene c-myc and c-fos by c-ras: involvement of polyamines. | Rat kidney cells infected with a temperature-sensitive mutant of Kirsten sarcoma virus (Ki-MSV ts 371) expressed Ki-Ras at 37 degrees C but not at 42 degrees C. This expression of the oncogene was accompanied by an increase in the activity of ornithine decarboxylase (ODC) and the accumulation of putrescine. Elevation of cellular polyamine content triggered the transcription of c-myc and c-fos. alpha-Difluoromethylornithine, a specific inhibitor of ODC, prevented the transcription of c-myc in cells grown at 37 degrees C. Putrescine, at physiological concentrations, triggered the transcription of c-myc and c-fos in cells grown at 42 degrees C, when Ki-ras was not expressed. It has been suggested that polyamines participate in a cascade of events leading to the communication between membrane-bound and nuclear oncogene products. These findings may attribute a new function to the naturally occurring polyamines. |
| Induction of c-fos and c-myc oncogene expression in the pyloric mucosa of rat stomach by N-methyl-N -nitro-N-nitrosoguanidine and taurocholate. | The induction of c-fos and c-myc expression in the pyloric mucosa of 8-week-old F344 male rats after oral administration of the glandular stomach carcinogen, N-methyl-N -nitro-N-nitrosoguanidine (MNNG), or the tumor-promoter, taurocholate, was examined by Northern blotting. MNNG at doses of 5-50 mg/kg body weight dose-dependently induced transient increase of up to 30-fold c-fos expression with a maximum after 30 min, and of 8-fold c-myc expression with a maximum after 3 h. It also induced up to 3-fold increase in S-phase cells in the proliferation zone of the pyloric mucosa after 16 h. Similar effects were observed with sodium taurocholate at doses of 200-800 mg/kg body weight. These results suggest that c-fos and c-myc oncogenes play a role in stomach carcinogenesis. |
| Kinetics of hybridization of mRNA of c-myc oncogene with 111In-labeled antisense oligodeoxynucleotide probes by high-pressure liquid chromatography. | Antisense oligodeoxynucleotides (ASON) were labeled with gamma-emitting 123I, 99mTc and 111In radionuclides. The hybridization kinetics of 111In-labeled ASON probes [phosphorothioate (S) and phosphodiester (O)] with intact leukemic cells (P388) and purified mRNA was studied by gel filtration technique. The 15-mer oligodeoxynucleotide (ON) sequence was synthesized, amino linked and coupled to diethylenetriaminepentaacetic acid (DTPA)-isothiocyanate, and aliquots were lyophilized to make a kit for convenient preparation. 111In radionuclide was chelated to DTPAASON derivatives and free 111In was separated by gel filtration. The probe was incubated with P388 cells and mRNA extract of P388 cells. Hybridization kinetics was studied by measuring the free and mRNA-bound probe separated by the HPLC technique. The distribution of radioactivity associated with proteins, DNA and mRNAs was directly measured with a gamma camera and further quantified with an ionization chamber. The kinetics of direct and indirect hybridization of 111In-labeled antisense probes with mRNA and intact cells was similar. |
| [Amplification of C-myc oncogene in squamous cell carcinoma of the larynx]. | C-myc amplification in 22 squamous cell carcinomas and 10 normal tissues (control) from the larynx was assessed by dot hybridization technique. Significant amplification of C-myc oncogene was found in malignant tumours as compared with the normal tissues. The extent of amplification also correlated with advanced tumour stages. There was a significant increase in C-myc amplification in TNM stages III and IV when compared with the stages I and II. These data suggested that C-myc oncogene might be activated by gene amplification and it might have a key role in determining the aggressiveness of laryngeal carcinoma. |
| A study of c-myc oncogene expression and amplification in colorectal cancer. | expression of c-myc oncogene transcripts in colorectal neoplasia was studied in paraffin embedded tissue sections from 25 patients undergoing surgery and from the rectal carcinoma cell line HR-8348 by using in situ hybridization, and its amplification was investigated in tumor and normal mucosa tissue from 25 coloproctomy samples by slot blot hybridization. Overexpression of this gene was seen in 78% (7/9) of the benign adenomas and 91% (20/22) of the malignancies sampled. There was no significant correlation between overexpression and the histologic type or grade, and no significant relationship between the level of expression and clinical stage was found, although overexpression was apparently more common in tumors with metastasis. Amplification of the gene was found in 0 of 4 benign adenomas and 7 of 22 malignancies. No obvious correlation was found between amplification and histological type or grade, though amplification was more frequent in tumors with metastasis. Amplification was also found in 2 adenomas with malignant change. The results suggest that multiple factors are involved in the progression of colorectal cancer, and in situ hybridization with a nonradiolabeled probe is useful in the detection of gene expression. |
| Amplification of c-myc oncogene and absence of c-Ha-ras point mutation in human bone sarcoma. | The genomic organization of four oncogenes, c-myc, c-myb, c-Ha-ras, and v-fms, was analyzed in 21 patients with malignant bone tumors. Amplification of the c-myc proto-oncogene without rearrangement was the sole abnormality detected in four tumors: two chondrosarcomas, one osteosarcoma, and one lymphoma of bone. DNA hybridizations with c-myb, c-Ha-ras, and v-fms probes disclosed no structural gene abnormalities. Point mutations at the 12th codon of the c-Ha-ras gene were investigated with the polymerase chain reaction technique; no alterations were detected. The observed amplification of the c-myc there was not related to histologic type, grade, surgical stage, or ploidy level of the tumors. The results indicated that c-myc amplification, presumed to be involved in the development of malignancy in a variety of solid tumors, is encountered sporadically in malignant bone tumors; however, this occurs without relation to common histopathologic features. The clinical significance of oncogene amplification in bone sarcoma remains to be established. |
| Liver-specific expression and high oncogenic efficiency of a c-myc transgene activated by woodchuck hepatitis virus insertion. | The high oncogenic efficiency of woodchuck hepatitis virus (WHV) has been correlated with the ability of this virus to provoke insertional activation of myc family genes. To assess the impact of viral integration on liver cell transformation, we have generated transgenic mice carrying the mutated c-myc gene and adjacent viral DNA from a woodchuck tumor, in original configuration. Virtually ALL mice from two different strains developed hepatocellular carcinoma with a mean latency period of 8-12 months. The c-myc transgene was expressed transiently in neonatal livers, and re-expressed at preneoplastic and neoplastic stages in adult livers. Woodchuck c-myc mRNA driven by the normal P1 and P2 promoters and WHV-specific transcripts encoding viral surface antigens were produced in a strictly co-regulated fashion during development and tumorigenesis, indicating a predominant regulatory influence of the viral enhancer. Furthermore, the activity of the viral enhancer in response to various biological stimuli was apparently modulated by glucose uptake and glucagon/insulin balance in differentiated hepatocytes. In this model, a viral integration event selected from a naturally occurring tumor proved to be determinant for induction of hepatocarcinogenesis, although enforced, liver-specific expression of c-myc was limited to a particular developmental stage. |
| Effects of denervation on the expression of c-myc proto-oncogene during forelimb regeneration of Xenopus laevis froglets. | Hirschsprung s disease (HSCR) is a common condition (1 in 5,000 live births) resulting in intestinal obstruction in neonates and megacolon in infants and adults. This disease has been ascribed to the absence of autonomic ganglion cells, which are derived from the neural crest, in the terminal hindgut. Segregation analyses have suggested incompletely penetrant dominant inheritance in familial HSCR. Recently, a gene for HSCR has been mapped to chromosome 10q11.2 (refs 6, 7). No recombination was observed between the disease locus and the locus for the RET proto-oncogene, a protein tyrosine kinase gene expressed in the cells derived from the neural crest. Here we report nonsense and missense mutations in the extracellular domain of RET protein (exons 2, 3, 5 and 6) in six unrelated probands and show that the mutant genotypes segregate with the disease in HSCR families. mutations of RET have been previously reported in multiple endocrine neoplasia type 2A (MEN 2A). Thus, germ-line mutations of the RET gene may contribute either to developmental anomalies in HSCR or to inherited predisposition to cancer in MEN 2A. |
| Analysis of DNA aneuploidy and c-myc oncoprotein content of canine plasma cell tumors using flow cytometry. | To derive a method for determining malignant potential of plasma cell tumors, a retrospective analysis of the DNA ploidy and relative p62c-myc oncoprotein content using bivariate flow cytometry was performed on 23 formalin-fixed, paraffin-embedded tissues from 23 dogs. The samples included one tissue each from 17 males and six females 2 to 16 years of age (mean = 7.5 years). Twelve breeds were represented, including three Cocker Spaniels, three Golden Retrievers, and five of mixed breed. Ten of the samples were histologically classified as malignant-plasma cell tumors, and ten specimens were classified as benign. Three samples of plasmacytic inflammation, from two Cocker Spaniels and one Shih Tsu, were included as controls. The ploidy and relative c-myc content data obtained were compared with the histologic grade. A significant difference in ploidy was found between benign and malignant tumors (P < or = 0.05). Five of nine malignant plasma cell tumors were aneuploid; the remainder were diploid (4/9) or tetraploid (1/9). Only one of the benign plasmacytomas was aneuploid (1/10), whereas six were diploid (6/10), and three were tetraploid (3/10). ALL of the controls were diploid (3/32). When relative amounts of p62c-myc from malignant and benign tumors were compared by flow cytometry, a greater significant difference was established (P < or = 0.01) than bu using aneuploidy alone. Relative values of p62c-myc content ranged from 219 to 553 units in 8/10 malignant plasma cell tumors and from 86 to 392 units in 3/10 benign plasmacytomas.(ABSTRACT TRUNCATED AT 250 WORDS)FAU - Frazier, K S |
| Deregulated expression of the c-myc oncogene abolishes inhibition of proliferation of rat vascular smooth muscle cells by serum reduction, interferon-gamma, heparin, and cyclic nucleotide analogues and induces apoptosis. | We have investigated the requirement for c-myc downregulation in the growth arrest of vascular smooth muscle cells (VSMCs). Rat VSMCs were infected with a retrovirus vector directing constitutive expression of either the complete human c-Myc protein (VSM-myc cells) or the c-Myc deletion mutant D106-143, which is inactive in cotransformation and autosuppression assays (VSM-D106-143 myc cells). Clones of transfected VSM-myc cells were isolated that constitutively expressed a range of levels of c-Myc protein from that observed in normal proliferating VSMCs to approximately seven times normal. The growth rates of these clones and their responses to growth inhibitors were then assessed. VSM-myc clones possessed a shorter mean intermitotic time than normal cells, which was inversely correlated (P < .05) with the level of c-Myc protein expressed. VSM-myc cells also expressed lower levels of alpha-smooth muscle actin mRNA and protein and exhibited an altered morphology. The proliferation of normal VSMCs and VSM-D106-143 myc cells was inhibited by serum reduction (0.5% fetal calf serum) and also by treatment with interferon-gamma (100 IU/mL), heparin (50 micrograms/mL), 8-bromo-cAMP (0.1 mmol/L), or 8-bromo-cGMP (0.1 mmol/L). In contrast, proliferation of VSM-myc cells was not inhibited by any of these agents, even if present at 10-fold higher concentrations. However, approximately 75% of VSM-myc cells expressing levels of c-Myc protein seen in normal proliferating VSMCs underwent apoptosis after 4 days of serum reduction or treatment with interferon-gamma. The results show that constitutive c-myc expression induces continuous cell proliferation, reduction in alpha-smooth muscle actin expression and apoptosis in VSMCs. We conclude that downregulation of c-myc is a prerequisite for growth arrest and subsequent survival of VSMCs. Conversely, deregulated c-myc expression may be important in the proliferation and death of VSMCs--characteristics of the pathogenesis of atherosclerosis. |
| Induction of stable p53 oncoprotein and of c-myc overexpression in cultured normal human uroepithelium by radiation and N-nitrosodiethanolamine. | Uroepithelium cultured from normal patients without cancer (60 individuals) was found to segregate into four subtypes based on the level of carcinogen treatment needed to induce abnormal p53 and c-myc. Twenty-two percent of patient cultures never showed abnormal p53 expression, even after chronic exposure to nitrosamines, in addition to irradiation. In these cultures, c-myc expression was confined to viable, normal-appearing cells at the growing edge of the culture and to apoptotic bodies. Twenty-eight percent of cultures were negative for abnormal p53 unless challenged with both radiation and chronic administration of nitrosamines, while a further 26% required only a single dose of radiation to induce the abnormal protein. The remaining patients had tissue which, while initially negative for stable p53, became positive when put into culture and stimulated to grow. The c-myc protein was overexpressed in ALL cultures with abnormal p53. It would appear that elevated expression of conformationally inactive p53 and of high levels of c-myc represents an early response of normal uroepithelial cells to carcinogen challenge. It also appears that a relatively high number of patients without cancer express these proteins when their cells are challenged to grow; a pre-exposure to environmental carcinogens such as nitrosamines in cigarette smoke is likely to be involved. |
| c-myc oncoprotein expression in oral precancerous and early cancerous lesions. | Squamous cell carcinoma of the oral cavity is often preceded by clinically evident precancerous lesions. These lesions exhibit progressive cytomorphologic changes connoting cellular transformation to malignant neoplasia. Molecular events underlie the microscopically identifiable cytological changes that herald transformation. Various proto-oncogenes are activated, overexpressed or mutated in the process of transformation. This investigation was designed to determine whether the nuclear binding c-myc oncoprotein, an activator of cell division, parallels or precedes cytomorphological changes at various histologically defined stages in oral precancerous lesions. Employing immunohistological methods, it was determined that c-myc nuclear labelling paralleled the progressive histological changes among various stages of transformation. It was also noted that some, yet not all, instances of benign keratoses which lacked any cytologic evidence of atypia harboured c-myc oncoprotein positive nuclei. It is concluded that c-myc expression is correlated with progressive cell transformation in oral cancerous lesions. |
| Transcriptional activation of c-myc proto-oncogene by estrogen in human ovarian cancer cells. | NIH:OVCAR-3 is a human ovarian cancer cell line that expresses a moderate amount of estrogen receptors, 28 fmol/mg protein. We have found that estrogen at a concentration of 10(-7) M induced a 2.3-fold increase in the growth of NIH:OVCAR-3 cells after 48 h stimulation. A 4-fold increase in c-myc mRNA expression at 30 min and a 7.5-fold increase at 50 min post-induction with estradiol were observed. Nuclear run-on analysis indicated that c-myc transcripts increased 4-fold within 10 min of estrogen addition. The half-life of c-myc mRNA was 64 min +/- 5 min and was not affected by estrogen. Antisense oligonucleotide to c-myc specifically inhibited the estrogen stimulated c-myc protein expression as well as the growth of NIH:OVCAR-3 cells. A control ovarian cancer cell line OC-3-VGH that had few estrogen receptors (1 fmol/mg protein) did not respond to estrogen in growth; however, these cells respond to estrogen with a 1.5-fold increase in c-myc mRNA. The stability of c-myc mRNA of these cells was not affected by estrogen. Our results indicate that transcriptional induction of c-myc expression by estrogen plays a critical role in the proliferation of NIH:OVCAR-3 cells. |
| Noninvasive imaging of c-myc oncogene messenger RNA with indium-111-antisense probes in a mammary tumor-bearing mouse model. | The c-myc oncogene is amplified in leukemia and solid tumors, thus making the c-myc messenger RNA (mRNA) a suitable target for following the progression of malignancy by noninvasive imaging with radiolabeled antisense pharmaceuticals or radiolabeled antisense oligodeoxynucleotide (RASON) probes. Considering the higher stability of phosphorothioate over phosphodiester, the probe stability and tumor localization was compared with both derivatives. METHODS: The 15-mer oligonucleotide sequence was synthesized, aminolinked [sense and antisense phosphodiester (O) and monothioester (S)] and coupled with diethylenetriamine pentaacetate (DTPA)-isothiocyanate and aliquots were lyophilized to make a DTPAAHON kit. The radionuclide 111In was chelated to DTPAAHON derivatives, and free 111In was separated by gel filtration. The radiolabeled antisense and sense probes were injected intravenously in mammary tumor-bearing BALB/c mice (1 x 10(6) cells, 8 days postinoculation). RESULTS: The highest uptake was observed at 2 hr with both thio and oxo derivatives of RASON probes, and small tumors could be imaged noninvasively. tumor uptake and tumor/blood and tumor/muscle ratios for the sense probe (control) were significantly lower (p < 0.001) than those of the antisense probe. CONCLUSION: The radiolabeled antisense probe may provide a new sensitive tool for noninvasive imaging of c-myc oncogene mRNA for a variety of malignant tumors at an earlier stage. |
| Molecular characterization of CD30+ anaplastic large-cell lymphoma: high frequency of c-myc proto-oncogene activation. | Anaplastic large-cell lymphoma (ALCL) represents a morphologically distinct type of non-Hodgkin s lymphoma (NHL) characterized phenotypically by the expression of the CD30 antigen, a new member of the nerve growth factor gene family. The lymphoid origin of ALCL has been documented using immunohistochemical and molecular genetic analyses. However, very little is known so far regarding the precise pathogenetic mechanisms involved in its development and progression. Therefore, we investigated bcl-2, p53, and retinoblastoma gene (Rb) expression immunohistochemically; the occurrence of bcl-2, c-myc, and Rb gene rearrangements using Southern blotting; and the presence of ras and p53 gene somatic mutations by single-strand conformation polymorphism assay in a panel of 18 well-characterized ALCLs. In addition, the presence of Epstein-Barr (EBV) and human T-cell lymphotropic virus type I (HTLV-I) genomes were investigated using polymerase chain reaction. We identified abnormal c-myc gene products in 6 of 18 cases (33%) of ALCL. On the other hand, the bcl-2 and Rb genes were not rearranged and K-, N-, and H-ras gene somatic mutations were not found. Significant levels of p53 protein expression were found in more than 60% of ALCLs, but only a single ALCL carried a p53 gene mutation (exon 5). Only 3 ALCL cases, ALL occurring in human immunodeficiency virus-infected patients, were positive for EBV genomes. On the other hand, contrary to previous findings, no HTLV-I products could be identified. Despite the fact that the c-myc proto-oncogene appears to be frequently altered in ALCL, no pathognomonic abnormality could be identified and therefore additional studies and new strategies should be designed to identify the pathogenetic mechanisms involved in the development of ALCL. |
| Immunohistochemical detection of the c-myc oncogene product in normal, hyperplastic and carcinomatous endometrium. | The expression and the distribution of the c-myc oncogene product (p62) was studied by a 3-step immunoperoxidase technique using the monoclonal antibody myc 1-6 E10 in 22 cases of normal endometrium (11 proliferative and 11 secretory phase), 43 endometrial hyperplasias (24 adenomatous and 19 adenocystic) and 26 endometrial carcinomas. Increased expression of c-myc product appeared in endometrial carcinomas compared with respective non-neoplastic tissue (p < 0.001). The immunolocalization of the c-myc protein shows a consistent difference between the various histologic patterns of non-neoplastic and neoplastic endometrium. Nuclear staining of the c-myc product was demonstrated in epithelial cells of the proliferative phase and predominantly in poorly differentiated forms of endometrial carcinomas. On the other hand cytoplasmic staining was found predominantly in the secretory phase and in well differentiated carcinomatous endometrium. In hyperplastic endometrium an intermediate immunohistochemical pattern was observed. The results of the present study emphasize that c-myc product overexpression and localization plays an important role in initiation, differentiation and progression of endometrial carcinomas. |
| The control of chondrocyte differentiation during endochondral bone growth in vivo: changes in TGF-beta and the proto-oncogene c-myc. | The expression of transforming growth factor-beta and the c-myc proto-oncogene was studied in situ in the chondrocytes of the tibial growth plate of normal chicks and those with avian tibial dyschondroplasia in which the chondrocytes are developmentally arrested in the transitional phase between proliferation and differentiation. This results in an accumulation of unmineralised and avascular cartilage. Dyschondroplastic chicks showed reduced c-myc expression in the transitional chondrocytes but unaltered levels in the proliferating chondrocytes. Transforming growth factor-beta expression was reduced in the transitional chondrocytes of dyschondroplastic chicks. In areas where the lesion was being repaired there was evidence of increased expression of both c-myc protein and transforming growth factor-beta. Addition of 1,25-dihydroxyvitamin D to the diet, which is known to reduce the incidence of dyschondroplasia, resulted in an increase in c-myc production. These results suggest that both transforming growth factor-beta and the proto-oncogene c-myc may be important elements of the cascade of events that lead to chondrocyte differentiation, hypertrophy and mineralisation. |
| Characterization of the superinduction of the c-myc proto-oncogene in fibroblasts by benzamide derivatives. | In mouse fibroblasts stimulated from quiescence into proliferation by serum the induction of expression of the c-myc proto-oncogene is strongly stimulated by 3-methoxybenzamide. Similar superinduction effects are seen with related compounds such as 3-aminobenzamide and the acid analogues, 3-anisic acid and 3-aminobenzoic acid. Whereas the benzamide derivatives are inhibitors of poly(ADP-ribose) polymerase the acid analogues are not, suggesting that inhibition of this enzyme is not the basis for superinduction of the c-myc gene. Analysis of the kinetics of induction of c-myc mRNA indicates that the RNA accumulates more rapidly as well as to a higher level in the presence of serum plus 3-methoxybenzamide than with serum alone. However the stimulation is transient in both cases. Addition of actinomycin D at 30 min or 1 h after serum stimulation shows the c-myc mRNA to be stable at these times, in the presence or absence of 3-methoxybenzamide. Thus the effect of the latter on c-myc mRNA accumulation is likely to be exerted at the level of transcription or RNA processing rather than turnover of the mRNA. |
| Amplification of the c-myc proto-oncogene in soft tissue sarcomas. | Soft tissue sarcoma fresh specimens from 23 patients were screened for genetic abnormalities of 3 cellular oncogenes, i.e., c-myc and c-myb and c-Ha-ras. Southern blot hybridization analysis demonstrated amplification of the c-myc gene (4- to 8-fold) in 7 cases, i.e., 3 malignant fibrous histiocytomas, 1 liposarcoma, 1 fibrosarcoma, 1 lymphoma of the soft tissues and 1 synovial sarcoma. Amplification of the c-myc gene was not associated to other genetic alterations such as gene rearrangement. Hybridizations with c-myb and c-Ha-ras probes showed no gene abnormalities in this series. Our results indicate that c-myc oncogene amplification may play an important role in the development of certain soft tissue sarcomas as it has been found for other human malignancies. The clinical significance of these features remains to be established. |
| Expression of c-myc, c-Ki-ras and c-Ha-ras oncogene products in peripheral blood mononuclear cells from patients with myasthenia gravis. | The oncogene products of c-myc, c-Ki-ras and c-Ha-ras and the subsets of natural killer cells in the peripheral blood mononuclear cells (PBMC) from 39 patients with myasthenia gravis (MG) and 40 healthy individuals were studied by immunocytochemical procedures. The MG patients showed an increased expression of c-myc, c-Ki-ras and c-Ha-ras oncoproteins in both lymphocytes and monocytes compared to those of healthy individuals (P < 0.01, P < 0.005 and P < 0.001, respectively). On the contrary, the number of Leu-7-Leu-11c+ cells of MG patients was less than that of healthy controls (P < 0.05). The oncogene expressions in PBMC of MG patients correlated positively with white blood cell counts, total natural killer cell counts (NK), Leu-7+Leu-11c+ of NK cell subset, gamma-globulin, erythrocyte sedimentation rate and serum immunoglobulins; the oncogene expressions were negatively correlated with the Leu-7+Leu-11c-NK subset. Thus, the increased expressions of c-myc, c-Ki-ras and c-Ha-ras oncoproteins accompanying the decreased Leu-7-Leu-11c+NK cell in MG PBMC are likely responsible for the acceleration of the clinical manifestations in MG patients. |
| Differential regulation of the c-myc oncogene promoter by the NF-kappa B rel family of transcription factors. | The murine c-myc gene contains two elements responsive to the rel-oncogene-related family of NF-kappa B factors. Previously we have shown that factor binding to these two NF-kappa B elements mediates induction of transcription of the c-myc promoter upon interleukin-1 treatment of human dermal fibroblasts and human T-cell leukemia virus type I tax gene expression in T cells (D. J. Kessler, M. P. Duyao, D. B. Spicer, and G. E. Sonenshein, J. Exp. Med. 176:787-792, 1992; M. P. Duyao, D. J. Kessler, D. B. Spicer, C. Bartholomew, J. L. Cleveland, M. Siekevitz, and G. E. Sonenshein, J. Biol. Chem. 267:16288-16291, 1992). To begin to delineate the specific roles of the individual members of the NF-kappa B family, here we have tested their effects on activation of a c-myc promoter/exon 1-CAT construct in NIH 3T3 cells. Classical NF-kappa B (p65/p50) was a potent transcriptional activator of the c-myc promoter. Cotransfection with either p65 alone or p65 in combination with p50 mediated significant induction. In contrast, expression of either v-rel or chicken c-rel failed to transactivate, while murine c-rel induced c-myc promoter activity only slightly. Furthermore, induction by classical NF-kappa B was inhibited by coexpression of either v-rel or chicken c-rel. Thus, individual members of the rel family have differential effects of the c-myc promoter, which can modulate overall transcriptional activity and allow for precise regulation of this oncogene under diverse physiologic conditions. |
| Intracellular association of the protein product of the c-myc oncogene with the TATA-binding protein. | The c-myc proto-oncogene encodes nuclear phosphoproteins that bind DNA in a sequence-specific fashion and appear to function as transcriptional activators. Here we demonstrate that a 40-kDa nuclear protein coimmunoprecipitated with c-Myc specifically when nuclear proteins, extracted from nuclei of exponentially growing murine B-lymphoma WEHI 231 cells by using procedures for preparation of trans-acting factors, were reacted with anti-c-Myc antibodies made against different regions of the c-Myc protein. In contrast, preparation of nuclear lysates under denaturing conditions significantly reduced this coprecipitation. Upon incubation of WEHI 231 cells with the reversible chemical cross-linking agent dithiobis(succinimidyl propionate), the 40-kDa protein could be cross-linked to c-Myc protein intracellularly. Identification of the 40-kDa protein as the TATA-binding protein (TBP) of the TFIID transcription initiation complex was made by comigration and V-8 protease mapping, which yielded identical peptide fragments upon digestion of the 40-kDa protein and material immunoprecipitated with an anti-TBP specific antibody. Furthermore, in vitro-translated TBP bound to the amino-terminal portion of c-Myc. Column chromatography of cross-linked nuclear proteins showed TBP to be in a large-molecular-weight complex with c-Myc, consistent with a transcription initiation complex. These results indicate that intracellularly, c-Myc interacts with TBP, suggesting a mechanism of interaction of this oncoprotein with the basal transcription machinery. |
| N-myc oncogene and urinary catecholamines in children with neuroblastoma. | This paper reports the analysis of N-myc amplification, urinary vanillylmandelic acid (VMA), and norepinephrine (NE) excretion and survival in 22 children with neuroblastoma and 7 with ganglio-neuroblastoma. Five patients had N-myc amplification (from 30 to more than 200 copies), ALL of whom had advanced-stage disease. The urinary excretion of VMA was normal in ALL of them, only one showed increased NE excretion. ALL patients with stage C-D disease and one copy of N-myc had increased VMA urinary excretion and increased (9/14) or normal (5/14) NE urinary excretion. ALL patients with stage A or B disease had one copy of N-myc. Half of them showed increased VMA urinary levels, while only 3/10 showed increased NE urinary values. Comparison of cumulative survival curves in relation to N-myc amplification and to VMA and NE urinary excretion showed a clear parallelism. Amplification of N-myc corresponded to normal VMA and NE urinary excretion, and was associated with the worst prognosis (P < 0.01), while increased VMA and/or NE excretion was found in patients with only one copy of N-myc. |
| Over-expression of the c-myc proto-oncogene in colorectal carcinoma. | Alterations in the c-myc proto-oncogene in colorectal cancer were studied at the level of RNA expression, gene amplification and rearrangements. One hundred cases of colorectal cancer, stratified by Dukes stage were examined. The level of messenger RNA expression was measured in tumours and matched normal mucosa from the same patient. Between 5 and 400 fold over-expression was found in 66% of tumours. Neither the presence nor the level of over-expression correlated with tumour staging. A significant correlation (P < 0.01) was found between over-expression of c-myc in tumours and the presence of synchronous adenomas elsewhere in the colon. In contrast to other tumours, no rearrangements of the gene were found on Southern analysis of colorectal cancers. Similarly, amplification of the gene was not found in the cancers examined. |
| Distribution of c-myc oncoprotein in healthy and atherosclerotic human carotid arteries. | PURPOSE: Smooth muscle cell (SMC) proliferation is a central event in the development of arteriosclerotic plaque. Regulation of this proliferative process is controlled in part by the action of specific peptide growth factors that may influence early cell-cycle regulatory gene expression. Such "early" response genes include the protooncogene c-myc, which has been implicated in the induction of cell proliferation and differentiation. We compared the distribution of the c-myc protooncogene product in healthy and atherosclerotic human carotid arteries to determine its cellular and tissue localization. METHODS: Samples of six carotid artery plaques from six patients were rapidly frozen in liquid nitrogen at the time of carotid endarterectomy. Three nondiseased human carotid arteries obtained at organ harvest from brain-dead organ donors were similarly prepared. Frozen sections were labeled with a polyclonal rabbit anti-c-myc antibody that recognizes the 64 kd c-myc human protein. The percentages of cells positive for c-myc (c-myc index) and the intensity of antibody labeling were determined. RESULTS: Normal human carotid artery demonstrated minimal, isolated cell staining, with single scattered grains of immunocytochemical staining product seen in SMC nuclei. The myc index was 14.7% +/- 3.5% positive cells. In comparison, SMCs from carotid plaque showed a significant predominance of c-myc immunoreactive cells (89.8% +/- 4%; p < 0.001). The intensity of c-myc staining was greater in plaque SMCs, with many of the cells demonstrating confluence of immunocytochemical precipitate throughout 50% of SMC nuclei. CONCLUSIONS: Although the exact role of enhanced expression of the c-myc protooncogene in atherosclerosis is unclear, a cooperative influence of abnormal early cell-cycle gene expression and humoral factors may initiate the atherogenic process. The c-myc gene and other protooncogenes are early molecular markers of cell-cycle activity, which may be important in the development of atherosclerosis and occlusive vascular disease. |
| Modulation of c-myc, c-myb, c-fos, c-sis and c-fms proto-oncogene expression and of CSF-1 transcripts and protein by phorbol diester in human malignant histiocytosis DEL cell line with 5q 35 break point. | Following exposure to phorbol ester (TPA), DEL cell line, a human malignant histiocytosis (MH) cell line, is able to differentiate along a macrophage phenotype and thus it provides a suitable model for analyzing the sequential and differential gene expression associated with monocyte/macrophage differentiation. C-myc, c-myb, c-fos, c-sis and c-fms expression were determined by Northern analysis at various times following TPA treatment. The results showed that TPA down-modulated the constitutive expression of c-myc, c-myb, and c-fms, mRNA to low but still detectable levels. Conversely, TPA-induced differentiation resulted in transient appearance of c-fos, whereas no change in the level of c-sis and actin transcripts were observed. Thus, the c-fms and c-sis genes appear to be regulated in a specific manner in this malignant histiocytosis derived cell line. Furthermore, these investigations demonstrated a constitutive CSF-1 gene expression which transiently increased at mRNA and also at protein level as evaluated by a murine bone marrow CFU bioassay. Through this drug-induced modulation, the DEL cell line offers an additional model for studying some of the subtle interrelations existing between a growth factor (CSF-1) and its receptor (c-fms) in the monocyte/macrophage system. |
| Expression of C-myc p62 oncoprotein in multiple myeloma: an immunohistochemical study of 180 cases. | The immunohistochemical expression of C-myc p62 oncoprotein was investigated using the immunoperoxidase method and the monoclonal antibody (Mab) MYC 1-9E10 in bone marrow paraffin sections. 180 cases of multiple myeloma (MM) were studied. C-myc expression was found to correlate well with the grade of malignancy, type of myeloma and tumor cell burden (p < 0.001). A relationship was also observed between C-myc p62 and IgA-secreting myelomas. It was found that intermediate grade myelomas are heterogeneous as far as C-myc expression is concerned. Our findings strongly suggest that C-myc might be involved in myelomutagenesis. The evaluation of its expression in MM may be helpful in determining the grade of malignancy and possibly the biological behaviour of this tumor. |
| The c-myc oncogene in tumor progression. | tumor progression is a complex process involving many alternative molecular pathways that are often tissue and/or species specific. The c-myc oncogene has been implicated in malignant progression in a variety of human tumors. In many instances, amplification and/or elevated expression of the c-myc gene have been associated with poor prognosis or decreased survival; in other cases, correlations have been demonstrated between c-myc activation and specific parameters of advanced neoplastic stage such as hormone independence, transplantability, invasiveness, etc. The tumor types exhibiting c-myc as a "progressor" gene include breast, colon, small cell lung carcinoma, as well as ovarian cancer, lymphomas, and squamous cell carcinomas. The c-myc oncogene has been implicated in a number of experimental animal tumor models, especially rat liver. Several studies have found that c-myc often functions in rodent tumor progression. For example, rat skin carcinomas induced by ionizing radiation show c-myc amplification to be related directly to tumor size and age. |
| Rearrangement of the N-myc oncogene in acute leukemias: a case report. | Rearrangements of the N-myc oncogene have not been described in the literature. The authors present a case of ANLL with the N-myc gene rearranged out of 16 ANLLs and 11 ALLs. While the proportion of the blast cells in the case reported was 85%, the rearranged gene gave a hybridization band which was less intense than that of the germline band, making it probable that this gene rearrangement is present in a leukemia subclone. The c-myc oncogene as well as Ig and TcR genes were in germline configurations. The presence of the rearranged N-myc in the reported case could imply an alternative mechanism of mutation of this oncogene in the pathogenesis of hematological malignancies. |
| Effects of prostaglandins and hydroxyoctadecadienoic acid on epidermal growth factor-dependent DNA synthesis and c-myc proto-oncogene expression in Syrian hamster embryo cells. | Epidermal growth factor (EGF) stimulates DNA synthesis in quiescent Syrian hamster embryo (SHE) cells. Work in the present authors laboratory has shown that the formation of 9- and 13-hydroxyoctadecadienoic acid (HODEs), 15-lipoxygenase-derived metabolites of linoleic acid, are involved in the mitogenic response to EGF in these cells (Glasgow et al. (1992) J. Biol. Chem. 267, 10771-10779). SHE cells also produce prostaglandin E2 (PGE2) and prostaglandin F2 alpha (PGF2 alpha). We now report the effects of HODEs and prostaglandins on EGF-dependent expression of the growth-related proto-oncogene c-myc in SHE cells. Treatment of cells with eicosatetraynoic acid (ETYA), which blocks EGF-dependent HODE formation, inhibited the mitogenic response to EGF, while exogenous 13-HODE potentiated EGF-dependent DNA synthesis. However, neither ETYA or 13-HODE altered the accumulation of c-myc mRNA in response to EGF. In contrast, PGE2 inhibited EGF-induced DNA synthesis and down-regulated EGF-stimulated c-myc mRNA accumulation in a dose-dependent manner, whereas PGF2 alpha had no effect on these responses. PGE2, but not PGF2 alpha, induced a rapid increase in cAMP formation, and both forskolin and 8-(4-chlorophenylthio)-cAMP mimicked the inhibitory effects of PGE2 on EGF-dependent DNA synthesis and c-myc mRNA accumulation, suggesting that the involvement of cAMP. The results indicate that the modulation of EGF-dependent DNA synthesis by PGE2, but not by HODEs, is associated with altered expression of the proto-oncogene c-myc in SHE cells. |
| Cytogenetic rearrangement of C-MYC oncogene occurs prior to infection with Epstein-Barr virus in the monoclonal malignant B cells from an AIDS patient. | Two cell lines were originated from the peripheral blood (PB-LAM) and bone-marrow (BM-LAM) of a patient with Burkitt-type acute lymphoblastic leukemia and AIDS. 26 and 7 clones were isolated from PB-LAM and BM-LAM respectively by limiting dilution. ALL of these had surface IgM lambda and the CD10 marker with low to absent CD23, CD30, CD39 and surface adhesion molecules. Furthermore, they shared the same chromosomal abnormalities (trisomy 7 and t(8;14) translocation) and the same rearrangements of immunoglobulin L and H chain and of c-myc gene loci. These features are those most frequently found in Burkitt s lymphoma (BL) cells and were different from those of the parental cell lines, which, besides cells identical to those of the malignant clones, also contained normal lymphoblastoid cells. Therefore, the cloning procedure used selected for the growth of cells with malignant features. EBV latent antigens were detected in ALL clones by Western blotting and their pattern of expression resembled that usually observed in BL cells. ALL the clones were positive for the EBV genome by Southern blotting and had monomorphic EBV-fused termini as determined by using cDNA probes specific for sequences at either end of the viral genome. However, the clones derived from PB-LAM had EBV fused termini of a different size from that of the clones derived from BM-LAM. The presence of different EBV-fused termini in otherwise monoclonal malignant cells indicate that EBV infection was possibly a late event in lymphomagenesis following rearrangement of the c-myc and the Ig gene loci. |
| L-myc proto-oncogene alleles and susceptibility to hepatocellular carcinoma. | A common inherited RFLP of the L-myc proto-oncogene has been reported to correlate with cancer susceptibility or prognosis for some tumors. Using a PCR-based RFLP assay on DNA extracted from peripheral blood samples, we determined the L-myc EcoRI genotype of patients with HCC, patients with other liver tumors, and healthy controls. In this polymorphism there are 2 alleles, L and S, which define 3 possible genotypes: LL, LS, and SS. While the genotype distribution of patients with other liver tumors and healthy controls do not differ from one another, both differ significantly from the genotype distribution of patients with HCC. This difference is primarily the result of a low frequency of the SS genotype among HCC patients compared to controls or other liver tumor patients. Persons with the SS genotype appear to be protected against HCC and have roughly one-ninth the risk of persons who carry one or more copies of the L allele. Within HCC cases, patients with different L-myc genotypes show slight, but not statistically significant, differences in tumor characteristics and survival. |
| Over-expression of c-myc oncoprotein in B lymphocytes of renal transplant recipients with lymphoproliferative disorders. | The bovine papillomavirus E5 transforming protein appears to activate both the epidermal growth factor receptor (EGF-R) and the platelet-derived growth factor receptor (PDGF-R) by a ligand-independent mechanism. To further investigate the ability of E5 to activate receptors of different classes and to determine whether this stimulation occurs through the extracellular domain required for ligand activation, we constructed chimeric genes encoding PDGF-R and EGF-R by interchanging the extracellular, membrane, and cytoplasmic coding domains. Chimeras were transfected into NIH 3T3 and CHO(LR73) cells. ALL chimeras expressed stable protein which, upon addition of the appropriate ligand, could be activated as assayed by tyrosine autophosphorylation and biological transformation. Cotransfection of E5 with the wild-type and chimeric receptors resulted in the ligand-independent activation of receptors, provided that a receptor contained either the transmembrane domain of the PDGF-R or the cytoplasmic domain of the EGF-R. Chimeric receptors that contained both of these domains exhibited the highest level of E5-induced biochemical and biological stimulation. These results imply that E5 activates the PDGF-R and EGR-R by two distinct mechanisms, neither of which specifically involves the extracellular domain of the receptor. Consistent with the biochemical and biological activation data, coimmunoprecipitation studies demonstrated that E5 formed a complex with any chimera that contained a PDGF-R transmembrane domain or an EGF-R cytoplasmic domain, with those chimeras containing both domains demonstrating the greatest efficiency of complex formation. These results suggest that although different domains of the PDGF-R and EGF-R are required for E5 activation, both receptors are activated directly by formation of an E5-containing complex. |
| Combined determination of N-myc oncogene amplification and DNA ploidy in neuroblastoma. Complementary prognostic indicators. | BACKGROUND: N-myc gene amplification is a well-established prognostic indicator in neuroblastoma. Flow cytometric analysis of nuclear DNA content has shown that an abnormal nuclear DNA content in neuroblastoma is associated with a better prognosis. Because some patients with N-myc unamplified tumors have a poor prognosis, factors other than N-myc amplification may play a role in determining the clinical behavior of neuroblastoma. In the current study, the authors correlated N-myc gene amplification and flow cytometric nuclear DNA content with respect to prognosis. METHODS: Forty-one patients with neuroblastoma, including 15 screened patients, served as subjects. The copy number of the N-myc gene was determined by Southern blot analysis. DNA ploidy analysis was done on nuclei isolated from formalin-fixed, paraffin-embedded blocks. RESULTS: Of 40 specimens of neuroblastoma, 7 involved tumors containing amplification of the N-myc gene and 33 did not; 13 specimens showed DNA diploidy, and 27 showed DNA aneuploidy (including 4 with DNA tetraploidy). The Kaplan-Meier survival analysis indicated a significantly better prognosis in patients with unamplified N-myc tumors compared with those with N-myc amplified tumors (87.3% versus 28.6%, P < 0.05) and in patients with DNA aneuploid tumors compared with those with DNA diploid tumors (96.3% versus 43.0%, P < 0.001). The difference in the survival of the two extreme combinations, (e.g., 25 with N-myc unamplified and DNA aneuploidy [4 tetraploidy] versus 5 with N-myc amplified and DNA diploidy) was more significant (96.0% versus 20.0%, P < 0.001) than any other combination. CONCLUSION: Evaluations of N-myc gene amplification and DNA ploidy are complementary, and the combined determination of these two factors may be one of the most powerful prognostic indicators in neuroblastoma. |
| [In vivo regulation of c-myc proto-oncogene: contribution of transgenic mice]. | The t(9,22) chromosomal translocation generating the Philadelphia chromosome and the BCRABL oncogene has been shown both cytogenetically and molecularly to be the etiologic event in chronic myelogenous leukemia (CML). We have designed a ribozyme to cleave the BCRABL mRNA by targeting a GUU triplet adjacent to the junction of the c-BCR and c-ABL fused genes. This ribozyme efficiently cleaved BCRABL RNA transcripts as demonstrated by in vitro cleavage reactions. To determine the effect of constitutive expression of the ribozyme on the elimination of the BCRABL gene product, the ribozyme cDNA sequence was inserted into different retroviral expression vectors. Introduction of the recombinant retroviruses into the CML blast crisis cell-line K562, resulted in the elimination of the P210 protein-kinase activity in several single cell clones infected with the ribozyme expression cassette. Therefore BCR-ABL specific ribozymes may provide a potential genetic therapy for CML. |
| Oncogenic activity of the c-Myc protein requires dimerization with Max. | c-Myc (Myc) and Max proteins dimerize and bind DNA through basic-helix-loop-helix-leucine zipper motifs (b-HLH-LZ). Using a genetic approach, we demonstrate that binding to Max is essential for Myc transforming activity and that Myc homodimers are inactive. Mutants of Myc and Max that bind efficiently to each other but not to their wild-type partners were generated by either exchanging the HLH-LZ domains or reciprocally modifying LZ dimerization specificities. While transformation defective on their own, complementary mutants restore Myc transforming activity when coexpressed in cells. The HLH-LZ exchange mutants also have dominant negative activity on wild-type Myc function. In addition, wild-type max antagonizes myc function in a dose-dependent manner, presumably through competition of Max-Max and Myc-Max dimers for common target DNA sites. Therefore, Max can function as both suppressor and activator of Myc. A general model for the role of Myc and Max in growth control is discussed. |
| Amplification of c-MYC oncogene and point mutation of N-RAS oncogene point mutation in acute myelocytic leukemias with double minute chromosomes. | Two patients with acute myelocytic leukemia (AML) showing double minute (dmin) chromosomes were analysed to identify oncogene activation. Cytogenetic analysis showed 1-53 dmin chromosomes with the normal karyotype in the first patient and 1-84 dmin chromosomes with complex chromosome aberrations. Analysis of DNA from two patients revealed five- to tenfold amplification of c-MYC oncogene in the leukemic cells. The other sixteen oncogenes studied showed no increase in the gene content. Furthermore, a transforming gene, N-RAS was detected in the first patient by nude mouse tumorigenicity assay (in vivo selection assay). These results suggest that the amplification of c-MYC gene is common in dmin-positive AML patients and co-ordination of c-MYC and N-RAS oncogene might also play a significant role in the pathogenesis of some AML patients. |
| DNA ploidy, c-myc oncoprotein p62 and v-H-ras oncoprotein p21 in colorectal carcinoma. | DNA ploidy and expression of the c-myc oncoprotein p62 and the v-H-ras oncoprotein p21 were examined in 54 colorectal carcinomas. DNA ploidy, determined by DNA flow cytometry, was diploid in 19 samples and aneuploid in 35. expression of the p62 oncoprotein, determined by immunohistochemical staining, was intensely positive in 18 samples while that of the p21 oncoprotein, also determined by immunohistochemical staining, was positive in 29. There was no correlation between DNA ploidy and expression of the p62 oncoprotein, and DNA ploidy did not correlate with expression of the p21 oncoprotein. There was, however, a close correlation between expression of the p62 oncoprotein and that of the p21 oncoprotein being P < 0.01 according to Peason s chi-square test. |
| Expression of the myc proto-oncogene in the rainbow trout Oncorhynchus mykiss. | 1. The myc proto-oncogene is shown to be expressed in the pituitary gland, brain and heart of the rainbow trout. 2. Based on transcript sizes the pituitary gland expressed B-myc and L-myc, the brain expresses L-myc and the heart expresses either C-myc or L-myc. 3. Pituitary B-myc is expressed at a level 3-fold greater than liver C-myc and 8-fold greater than the heart transcript. 4. The amounts of the pituitary B-myc and heart transcript nearly double as the fish approach sexual maturity. |
| Zebra fish myc family and max genes: differential expression and oncogenic activity throughout vertebrate evolution. | To gain insight into the role of Myc family oncoproteins and their associated protein Max in vertebrate growth and development, we sought to identify homologs in the zebra fish (Brachydanio rerio). A combination of a polymerase chain reaction-based cloning strategy and low-stringency hybridization screening allowed for the isolation of zebra fish c-, N-, and L-myc and max genes; subsequent structural characterization showed a high degree of conservation in regions that encode motifs of known functional significance. On the functional level, zebra fish Max, like its mammalian counterpart, served to suppress the transformation activity of mouse c-Myc in rat embryo fibroblasts. In addition, the zebra fish c-myc gene proved capable of cooperating with an activated H-ras to effect the malignant transformation of mammalian cells, albeit with diminished potency compared with mouse c-myc. With respect to their roles in normal developing tissues, the differential temporal and spatial patterns of steady-state mRNA expression observed for each zebra fish myc family member suggest unique functions for L-myc in early embryogenesis, for N-myc in establishment and growth of early organ systems, and for c-myc in increasingly differentiated tissues. Furthermore, significant alterations in the steady-state expression of zebra fish myc family genes concomitant with relatively constant max expression support the emerging model of regulation of Myc function in cellular growth and differentiation. |
| Correlative patterns between cellular DNA content, N-myc oncogene amplification, and karyotypic abnormalities in human neuroblastomas. A preliminary report. | The v-cbl oncogene is the transforming gene of the murine Cas NS-1 retrovirus which induces pre-B cell lymphomas and myeloid leukaemias. Sequencing of c-cbl has revealed that v-cbl was generated by a large truncation that removed 60% of the C-terminus of the corresponding protein. In this study we prepared antibodies to cbl and found that c-cbl encodes a 120 kDa protein which is localized in the cytoplasm with a cytosolic and cytoskeletal distribution. Immunofluorescence studies show a striking pattern of brightly staining vesicles in mitotic cells similar to that observed with cytokeratin antibodies. In contrast to p120c-cbl, which is exclusively cytoplasmic, the p100gag-v-cbl encoded by Cas NS-1 is localized in both the cytoplasm and the nucleus. This redistribution to the nucleus correlates with the ability of cbl to induce acute transformation. Furthermore the truncated protein encoded by v-cbl can bind DNA, unlike the full-length protein. These results suggest that the C-terminus of cbl is involved in the retention of p120c-cbl in the cytoplasm and the inhibition of DNA binding. The findings also suggest that a truncated protein encoded by c-cbl exists in the nucleus of normal cells. |
| Do products of the myc proto-oncogene play a role in transcriptional regulation of the prothymosin alpha gene?. | The Myc protein has been reported to activate transcription of the rat prothymosin alpha gene by binding to an enhancer element or E box (CACGTG) located in the first intron (S. Gaubatz et al., Mol. Cell. Biol. 14:3853-3862, 1994). The human prothymosin alpha gene contains two such motifs: in the promoter region at kb -1.2 and in intron 1, approximately 2 kb downstream of the transcriptional start site in a region which otherwise bears little homology to the rat gene. Using chloramphenicol acetyltransferase (CAT) reporter constructs driven either by the 5-kb human prothymosin alpha promoter or by a series of truncated promoters, we showed that removal of the E-box sequence had no effect on transient expression of CAT activity in mouse L cells. When intron 1 of the prothymosin alpha gene was inserted into the most extensive promoter construct downstream of the CAT coding region, a diminution in transcription, which remained virtually unchanged upon disruption of the E boxes, was observed. CAT constructs driven by the native prothymosin alpha promoter or the native promoter and intron were indifferent to Myc; equivalent CAT activity was observed in the presence of ectopic normal or mutant Myc genes. Similarly, expression of a transiently transfected wild-type prothymosin alpha gene as the reporter was not affected by a repertoire of myc-derived genes, including myc itself and dominant or recessive negative myc mutants. In COS-1 cells, equivalent amounts of the protein were produced from transfected prothymosin alpha genes regardless of whether genomic E boxes were disrupted, intron 1 was removed, or a repertoire of myc-derived genes was included in the transfection cocktail. More importantly, cotransfection of a dominant negative Max gene failed to reduce transcription of the endogenous prothymosin alpha gene in COS cells or the wild-type transfected gene in COS or L cells. Taken together, the data do not support the idea that Myc activates transcription of the intact human prothymosin alpha gene or reporter constructs that mimic its structure. Rather, they suggest that the human prothymosin alpha promoter and downstream elements are buffered so as to respond poorly, if at all, to transient fluctuations in transcription factors which regulate other genes. |
| [Sensibility and specificity of N-myc oncogene with respect to other prognostic factors in 15 neuroblastomas]. | Several biologic features of tumor cells correlate closely with a favorable or unfavorable outcome. To aid in assessing correlation in the various number of prognostic factors including the age, stage, VMA/HVA ratios, and the serum levels of NSE and ferritin, the histopathological features, ploidy, partial monosomy for the short arm of chromosome 1, and the tumor N-myc gene copy number, are examined. We determined the sensitivity and specificity of classical markers above the amplification of the N-myc oncogene. A striking new observation is the positive correlation between genomic amplification and some prognostic factors (stage, ferritin, NSE, pathologic anatomy and 1p deletion. |
| Overexpression of the c-myc proto-oncogene occurs frequently in uterine sarcomas. | Overexpression of the c-myc proto-oncogene occurs in carcinoma of the ovary, endometrium, and cervix, and is associated with an adverse prognosis, but little is known about the pattern of c-myc expression in uterine sarcomas. This study investigates the expression of c-myc in uterine smooth muscle tumors and malignant mixed mullerian tumors. Twenty-three leiomyosarcomas, 10 leiomyomas, and 9 malignant mixed mullerian tumors were examined for c-myc overexpression by immunohistochemistry. Differences in mitotic rate and in survival were compared in c-myc positive and negative cases of leiomyosarcoma. Overexpression of c-myc was seen in 6/12 leiomyomas, 11/23 leiomyosarcomas, and 9/9 malignant mixed mullerian tumors. Positive staining was restricted to a perinuclear location in ALL of the leiomyomas and one leiomyosarcoma. Diffuse cytoplasmic staining was seen in the remaining 10 positive leiomyosarcomas. Positive staining was seen in both epithelial and stromal elements of malignant mixed mullerian tumors, including homologous and heterologous areas of stromal differentiation. There was no significant difference in mitotic rate or in survival between c-myc positive and negative cases of leiomyosarcoma. Overexpression of c-myc occurs in many uterine leiomyosarcomas and the majority of malignant mixed mullerian tumors. Overexpression of c-myc also occurs in benign uterine smooth muscle tumors but with a different pattern than that seen in malignant tumors. This overexpression does not correlate with survival and the significance of overexpression of c-myc in these tumors is unclear. |
| Translational upregulation of the c-myc oncogene in Bloom s syndrome cell lines. | Previous studies have shown a constitutive increase in the levels of c-myc protein in cell lines derived from patients with the cancer-prone disorder Bloom s Syndrome (BS). We report here that this overexpression results from a specific increase in the translation of the c-myc mRNA and is not the result of either a chromosomal translocation involving the c-myc locus or an amplification of this gene. We also did not detect any increase in the stability of the c-myc protein or any significant increases in the levels of c-myc mRNA expressed in BS cells compared to control cell lines. Overall, there is a 39-80% increase in the association of the c-myc mRNA with polysomes in BS cell lines. Since, in some cases, overexpression of the c-myc protein has been shown to increase levels of the translation initiation factors eIF-4E and eIF-2 alpha, which may themselves play a role in malignant conversion, we have also examined the levels of these proteins in BS cells and found them to be either comparable or lower than those in control cell lines. These data suggest that if c-myc does contribute to the cancer predisposition phenotype in BS then it does not appear to act via an eIF-4E and eIF-2 alpha mediated pathway. |
| Over-expression of transfected N-myc oncogene in human SKNSH neuroblastoma cells down-regulates expression of beta 1 integrin subunit. | Amplification of the N-myc oncogene is associated with progression of neuroblastoma in humans. Previous studies indicated that neuroblastoma cell lines which are amplified for the N-myc gene and over-express N-myc exhibit enhanced tumorigenic properties when injected into athymic nude mice. In addition, neuroblastoma cells which over-express N-myc (IMR32 cells) expressed little or no beta 1, alpha 2, or alpha 3 integrin subunits, as compared with cells which do not express N-myc (SKNSH cells). In order to probe the possible relationship between N-myc and beta 1 integrin gene expressions more directly, transfection experiments were performed in which an N-myc cDNA (on the episomal expression vector pREP4; high-level constitutive expression is driven by an RSV-LTR promoter) was introduced into SKNSH cells. expression of N-myc produced significant morphological alterations in transfected cells; one subpopulation of cells remained spread on tissue culture substrata, while a second subpopulation became rounded and grew as multi-cellular aggregates. Spread (attached) cells expressed low levels of N-myc and high levels of beta 1 integrin, while rounded (loose) cells expressed relatively high levels of N-myc and low levels of beta 1 integrin. Maintenance of transfected cells in higher concentrations of selective agent produced a higher proportion of loose cells, which expressed even greater amounts of N-myc and even less beta 1 integrin; a similar effect was observed in attached cells. Interestingly, loose cell populations expressed elevated levels of the neural cell adhesion molecule [NCAM]. The results presented here infer that N-myc regulates the expression of the beta 1 integrin and NCAM cell-surface receptors responsible for cell:extracellular cellular matrix interaction and possibly cell:cell adhesion. |
| Prognostic relevance of Ki-67 antigen and c-myc oncoprotein in malignant fibrous histocytoma. | 47 cases of malignant fibrous histiocytoma were stained immunohistochemically for the presence of Ki-67 antigen and c-myc oncoprotein. Percentage of Ki-67 and c-myc positive cells correlated with each other and with grade of tumour, mitotic index, cellularity and survival time of patients, but not with the extent of necrosis. Differences of mean values of Ki-67 index between grade I and grade II tumours as well as between grade II and grade III tumours were highly statistically significant. ALL 3 parameters connected with c-myc expression (index, intensity and score) differed significantly between grade I and grade II tumours but not between grade II and grade III MFH. The possible differential role of Ki-67 antigen and c-myc oncoprotein for improvement of grading is discussed. |
| Activation of N-myc2 gene expression by cis-acting elements of oncogenic hepadnaviral genomes: key role of enhancer II. | Woodchuck hepatitis virus (WHV) is strongly oncogenic in its native host, producing hepatocellular carcinomas in the majority of chronically infected animals. An important step in this oncogenic process is the activation of N-myc transcription in the liver as a result of integration of viral sequences in cis to the N-myc2 locus. We have examined the viral sequences involved in the up-regulation of N-myc2 using transient transfection assays of permissive HepG2 cells in culture. WHV sequences corresponding to enhancer I of human hepatitis B virus are nearly inactive in N-myc2 activation when tested alone and are not significantly activated by WHV X gene coexpression. By contrast, sequences corresponding to enhancer II strongly activate expression in a position and orientation-independent manner and are only modestly further up-regulated by WHx expression. Qualitatively similar results were observed with sequences of the ground squirrel hepatitis virus (GSHV), which produces hepatomas in woodchucks without insertional activation of N-myc2, but the GSHV EnII element is fourfold less active in N-myc2 up-regulation than its WHV counterpart. |
| Overexpression of the proto-oncogene/translation factor 4E in breast-carcinoma cell lines. | The expression of the proto-oncogene, translation factor elF-4E, was examined in breast-cell lines: 5 carcinomas and 2 normal. At the protein level, elF-4E was 10 times higher in the carcinoma lines than in normal cells, which is comparable to the level found in breast-cancer biopsies. The elevation appears to be due to increased transcription, since the elF-4E mRNA was correspondingly increased. These results demonstrate that cells isolated from naturally occurring breast carcinomas maintain an elevated expression of the factor. Turnover rates for elF-4E (mRNA and protein) were determined for normal and cancer cells. We found that elF-4e mRNA is relatively stable during an 8-hr incubation with Actinomycin D, but the half-life of the protein is fairly short (approximately 4.5 hr). This suggests that, in proliferating cells, elF-4E may be turning over rapidly, possibly to fine-tune the changes in translation rates which occur during the cell cycle. |
| Detection of c-myc oncogene amplification in a CML blastic phase patient with double minute chromosomes. | Double minute chromosomes (dmin) are relatively rare in leukemias. Cytogenetic analysis of blood cells from a woman with blastic phase chronic myelogenous leukemia (BC-CML) showed numerous dmin chromosomes and complex abnormalities including a Philadelphia (ph(1))-chromosome. oncogene amplification in hematopoietic malignancies is also rare. Using PCR, we retrospectively investigated the extent of c-myc gene amplification in DNA extracted from stored blood smears from the patient. To qualify the PCR products, the beta-globin gene was used as the internal reference gene and it was co-amplified with the c-myc gene. The extent of amplified c-myc was about 6.8-fold. This finding suggests that the c-myc gene was amplified in dmin and that the gene amplification contributes to the progression to acute leukemia or rapid growth of leukemic cells. |
| Differentiation of the immortalized adult neuronal progenitor cell line HC2S2 into neurons by regulatable suppression of the v-myc oncogene. | A regulatable retroviral vector in which the v-myc oncogene is driven by a tetracycline-controlled transactivator and a human cytomegalovirus minimal promoter fused to a tet operator sequence was used for conditional immortalization of adult rat neuronal progenitor cells. A single clone, HC2S2, was isolated and characterized. Two days after the addition of tetracycline, the HC2S2 cells stopped proliferating, began to extend neurites, and expressed the neuronal markers tau, NeuN, neurofilament 200 kDa, and glutamic acid decarboxylase in accordance with the reduced production of the v-myc oncoprotein. Differentiated HC2S2 cells expressed large sodium and calcium currents and could fire regenerative action potentials. These results suggest that the suppression of the v-myc oncogene may be sufficient to make proliferating cells exit from cell cycles and induce terminal differentiation. The HC2S2 cells will be valuable for studying the differentiation process of neurons. |
| Expression of Mad, an antagonist of Myc oncoprotein function, in differentiating keratinocytes during tumorigenesis of the skin. | The Myc oncoprotein is associated with cell proliferation and is often down-regulated during cell differentiation. The related Mad transcription factor, which antagonises Myc activity, is highly expressed in epidermal keratinocytes. Mad also inhibits cell proliferation in vitro. To study Mad expression in keratinocyte proliferation and differentiation, we have analysed Mad RNA expression in regenerating and hyperproliferative epidermal lesions and epidermal tumours of varying degrees of differentiation using the RNA in situ hybridisation and RNAase protection techniques. Mad was strongly expressed in differentiating suprabasal keratinocytes in healing dermal wounds and in benign hyperproliferative conditions, but also in squamous cell carcinomas, in which the keratinocytes retain their differentiation potential. However, Mad expression was lost in palisading basal carcinoma cells and poorly differentiated squamous cell carcinomas, which lacked the epithelial differentiation marker syndecan-1. We therefore suggest that Mad expression is closely associated with epithelial cell differentiation, and that this association is retained in epithelial tumours of the skin. |
| c-MYC oncoprotein production in experimental vein graft intimal hyperplasia. | PURPOSE: The expression of c-MYC oncoprotein in proliferating smooth muscle cells (SMCs) was analyzed in an experimental model of vein graft intimal thickening. METHODS: Superficial epigastric vein grafts were inserted into the femoral arteries of male Sprague-Dawley rats. The vein grafts were harvested at 6 hr, 2 days, 1 week, 2 weeks, and 4 weeks after grafting and were rapidly frozen in liquid nitrogen. Immunohistochemical labeling and morphologic analysis of vein graft sections with a double staining technique were used to identify c-MYC/alpha SMC actin and proliferating cell nuclear antigen (PC10)/alpha SMC actin within intimal cells. c-MYC/alpha SMC actin and PC10/alpha SMC actin positive cells were quantitated in the perianastomotic area (R-1) and the body of the graft (R-2) for each time period. Total wall and intimal thickness of perfusion fixed vein grafts were measured with a computer digitized system. RESULTS: Intimal and total wall thickening in the R-1 region peaked at 1 week (27.4 and 579.4 microns respectively) and were significantly thicker (P < 0.01) than the same region at 6 hr after graft implantation (6.0 and 113.5 microns respectively). Staining for c-MYC and PC10 in R-1 was also significantly higher (P < 0.05) at 1 week (5.75 and 7.00 positive cells/10 cells, respectively) compared with that at 6 hr (1.5 and 1.33, respectively). The R-1 region stabilized and remodeled over the following 3 weeks, while c-MYC and PC10 staining progressively decreased. In the R-2 region, intimal thickness significantly increased (P < 0.05) from 6 hr (4.0 micrometers) to 1 week (12.0 micrometers) and stabilized, while total wall thickness increased throughout the first week and the difference became significant at 2 weeks (P < 0.05). Staining for c-MYC and PC10 paralleled the staining in R-1 with a significant peak at 1 week (P < 0.05). CONCLUSIONS: c-MYC oncoprotein is expressed early after experimental vein grafting, with peak expression at 1 week. This occurs during a period of maximal intimal thickening, SMC proliferation, and increased expression of PC10. expression of c-myc protooncogene may contribute to the induction and regulation of SMC proliferation, producing intimal hyperplasia. |
| Genetic clinical markers of human neuroblastoma with special reference to N-myc oncogene: amplified or not amplified?--An overview. | Neuroblastoma is the most common extracranial tumor in children, and cytogenetically, chromosome 1p deletions, extrachromosomal double minutes, and homogeneously staining regions (HSRs) are commonly observed in cell lines and in tumors in advanced stages. It is found that an HSR represents genomic amplification of N-myc, which plays a key role in determining the aggressiveness of neuroblastoma. However, stage IV neuroblastomas or cell lines which lack N-myc amplification are also progressive, and some of them show evidence of N-myc expression in terms of mRNA and/or N-Myc oncoprotein. It was recently shown that a small proximal locus mapped between 1p35-36.1 and 1p36.23 may function as a suppressor gene of N-myc amplification. In neuroblastoma, a pattern of diploidy is associated with rapid tumor growth and poor survival. expression of bcl-2 proto-oncogene is strongly associated with unfavorable histology, while expressions of Ha-ras and trk-A proto-oncogenes indicate a favorable prognosis. trk-A proto-oncogene encodes a receptor for nerve growth factor. Genetic characteristics of neuroblastomas found by urinary catecholamine mass screening are also discussed. |
| Immunohistochemical demonstration of c-myc oncogene product in middle ear cholesteatoma. | Cholesteatoma epithelium is characterized by a dysregulation with a hyperproliferative growth and altered differentiation. In a variety of cells c-myc oncogene was found to be highly linked to the control of growth and differentiation. expression of c-myc was studied in cholesteatoma epithelium using a monoclonal antibody directed against the 67 kDa c-myc protein product and the alkaline phosphatase-antialkaline phosphatase method. For quantitative analysis a computer-linked analyzing system was used. In contrast to normal skin, keratinocytes of basal and suprabasal layers showed nuclear staining in cholesteatoma epithelium. The extent of nuclear staining of epithelial cells in the cholesteatomas studied was significantly increased. Concurrent cytoplasmic staining was observed in both skin and cholesteatoma, but with a stronger reactivity in the latter. These findings suggest participation of the c-myc oncogene in cholesteatoma epithelium. |
| Induction of c-myc and c-jun proto-oncogene expression in rat L6 myoblasts by cadmium is inhibited by zinc preinduction of the metallothionein gene. | Certain proto-oncogenes transfer growth regulatory signals from the cell surface to the nucleus. These genes often show activation soon after cells are exposed to mitogenic stimulation but can also be activated as a nonmitogenic stress response. Cadmium (Cd) is a carcinogenic metal in humans and rodents and, though its mechanism of action is unknown, it could involve activation of such proto-oncogenes. Metallothionein (MT), a metal-inducible protein that binds Cd, can protect against many aspects of Cd toxicity, including genotoxicity and possibly carcinogenesis. Thus, the effects of Cd on expression of c-myc and c-jun in rat L6 myoblasts, and the effect of preactivation of the MT gene by Zn treatment on such oncogene expression, were studied. MT protein levels were determined by the Cd-heme assay, and MT, c-myc, and c-jun mRNA levels were measured using oligonucleotide hybridization and standardized to beta-actin levels. Cd (5 microM CdCl2, 0-30 h) stimulated both c-myc and c-jun mRNA expression. An initial peak of activation of c-myc expression occurred 2 h after initiation of Cd exposure, and levels remained elevated throughout the assessment period. Zn pretreatment markedly reduced the activation of c-myc expression by Cd compared to cells not receiving Zn pretreatment. Cd treatment increased c-jun mRNA levels by up to 3.5-fold. Again, Zn pretreatment markedly reduced Cd-induced activation of c-jun expression as minimal increases occurred with Cd exposures of < or = 1 h, but otherwise the Zn pretreatment prevented activation of c-jun. The Zn pretreatment elevated MT protein levels > 5-fold over control at the point of Cd exposure, but Cd exposure did not further elevate these Zn-induced MT levels. Similarly, Zn pretreatment did not result in increased relative MT mRNA levels above Cd exposure alone at various time points after Cd exposure. Therefore, Zn pretreatment, possibly by providing elevated MT protein levels at the point of Cd exposure, inhibited the Cd-induced c-myc and c-jun proto-oncogene expression. The extent of Cd-induced proto-oncogene activation thus may be limited by the presence of cellular MT. |
| The proto-oncogene c-myc blocks myeloid differentiation independently of its target gene ornithine decarboxylase. | Ornithine decarboxylase (ODC), a rate-limiting enzyme of polyamine biosynthesis, has been shown to be required for entry into and progression through the cell cycle and to be a transcriptional target of the proto-oncogene, c-myc. We show that ODC transcripts and enzyme activity are down-regulated following induction of myeloid differentiation, using M1 myeloblastic leukemic cells and normal cells from bone marrow (BM), and fail to be suppressed when c-myc expression is deregulated. In M1mycer cells, when endogenous c-myc expression has been suppressed following stimulation by interleukin-6 (IL-60), treatment with estrogen and cycloheximide results in induction of ODC transcripts. These data demonstrate that ODC is a c-myc target gene in M1 cells. It was of interest to determine whether deregulated ODC expression would alter the myeloid differentiation program. To answer this question, M1-ODC cell lines constitutively expressing ODC were established. These cells can undergo terminal differentiation and growth arrest following IL-6 stimulation, exactly like parental M1 cells, demonstrating that deregulated ODC expression is not sufficient to block myeloid differentiation. Another question to be answered was whether ODC expression is necessary for the c-myc-mediated block in differentiation. The use of alpha-difluoromethylornithine (DFMO), an irreversible inhibitor of ODC enzyme activity, indicates that ODC is not necessary for the c-myc-mediated differentiation block. |
| Effects of c-myc oncogene modulation on drug resistance in human small cell lung carcinoma cell lines. | Small cell lung carcinoma (SCLC) is characterized by rapid development of resistance to drugs, such as cisdiamminedichloroplatinum (II) (cDDP) and anthracyclines. The molecular basis for resistance to cDDP and adriamycin (Adr) is poorly understood. One of the genetic alterations observed in SCLC, which is correlated with poor prognosis, is amplification and overexpression of c-myc oncogene. Therefore, activation of the c-myc oncogene might form a basis for resistance. The relationship between c-myc and cDDP as well as Adr resistance was analyzed by down-regulation of endogenously expressed c-myc in the human SCLC cell line GLC4, and its cDDP and Adr resistant sublines (GLC4-cDDP and GLC4-Adr). Cells were incubated with an unmodified antisense (AS) oligodeoxynucleotide complementary to the first 5 codons of the c-myc mRNA in serum free culture medium. Pre-incubation with 15 microM AS c-myc, reduced c-myc protein expression and induced 30-35% growth inhibition in ALL 3 cell lines. It resulted in increased cDDP sensitivity in GLC4-cDDP but not in GLC4. However, this pre-incubation did not affect Adr sensitivity in ALL lines. The effect of AS c-myc pretreatment on cDDP resistance was not mediated by changes in cell cycle distribution. These findings suggest that c-myc plays a role in cDDP resistance by effects other than those on cell cycle distribution. |
| [The effect of 2 ,5 -oligoadenylates on the expression of the cellular proto-oncogene c-myc during the development of Svec s leukemia in rats]. | The effects of 2 ,5 -oligoadenilates (2,5A) on the survival of Wistar rats inoculated with Svec leukemia cells and the proliferation of tumoral cells were investigated. An agreement between the expression of c-myc protooncogene and inhibition of leukemic cell proliferation by 2,5A was found. |
| C-myc oncogene expression in human melanoma and its relationship with tumour antigenicity. | Melanoma produces specific tumour antigens which are capable of eliciting an immune response. However, this tumour evades the immune system, in part, by downregulation of class I HLA antigens on the cell surface, which are required for T cell recognition. It has been suggested that the oncogene c-myc may have a role in effecting this change in vitro, however, the relationship between oncoprotein level and tumour antigenicity has not been established in human tumours. This study measured c-myc oncoprotein in 94 melanoma specimens (46 primary tumours and 48 regional metastases) using flow cytometry and evaluated class I HLA expression with immunohistochemistry. C-myc expression was found in 91 tumours (96%) with higher expression in metastases than primary melanomas (P<0.005). Class I HLA expression was found to show great variation although metastases showed less antigenicity than primary tumours (P<0.01). Analysis of the relationship between these two parameters revealed a highly significant correlation in both primary (P<0.01) and metastatic disease (P<0.01), with high oncoprotein being associated with down regulation of cell surface antigens. Knowledge of the control of tumour antigenicity is likely to provide an objective platform for the development of new strategies for immunotherapy. |
| Detection of auto-antibodies against L-myc oncogene products in sera from lung cancer patients. | Auto-antibodies against L-myc oncogene products (L-Myc) in sera from lung cancer patients were examined using bacterially synthesized glutathione S-transferase (GST) L-Myc fusion proteins and Western blot analysis. The detection rate of anti-L-Myc antibodies in sera from lung cancer patients was 10%, while that in sera obtained from normal volunteers was 0%. Five patients with non-small-cell lung cancers (2 adenocarcinomas, 2 squamous-cell carcinomas and I large-cell carcinoma) were included in the group with anti-L-Myc antibodies. These auto-antibodies belonged to the IgG class and recognized the carboxy terminus of L-Myc. Circulating L-Myc was not detected in sera from patients with anti-L-Myc antibodies. Differences in age, sex, performance status, histology, stage, smoking history and prior treatment were not significantly different between anti-L-Myc antibody-positive and antibody-negative patients. Anti-nuclear antibodies were detected in 40% of lung cancer patients and 57% of those with anti-L-Myc antibodies. Our data suggest that detection of anti-L-Myc antibodies may be helpful in the diagnosis and evaluation of the host-immune response to L-Myc in a subset of lung cancer patients. |
| Olfactory neuronal cell lines generated by retroviral insertion of the n-myc oncogene display different developmental phenotypes. | Being genetically homogeneous, clonal cell lines are potentially important for investigating many aspects of cellular differentiation. We describe here the creation of clonal cell lines by immortalization of neuronal precursor cells from the adult mouse olfactory epithelium. Unlike neurons elsewhere in the vertebrate nervous system, the olfactory sensory neuron can be replaced throughout the lifespan of the animal. However, little is known about the molecular aspects of olfactory neurogenesis. Continuous cell lines were generated by retroviral transduction of the n-myc proto-oncogene into the mitotically active basal cells of the olfactory epithelium which give rise to the sensory neuron. Twenty-one clonal cell lines were produced which could be divided into three distinct morphological classes: one with flat, epithelial-like cells only; another with round, flat, and bipolar cells; and a third with large flat and large bipolar cells. These morphological classes had different patterns of intermediate filament expression, as shown by immunocytochemistry and immunoblot analysis. ALL cells in ALL cell lines expressed the intermediate filament protein vimentin. Most bipolar cells, but not other cell types, expressed neurofilament protein and in one morphological class the bipolar cells co-expressed neurofilament and glial fibrillary acidic protein. Several cell lines expressed mRNA for OMP, a marker of mature olfactory sensory neurons, and GOLF, a guanine nucleotide binding protein involved in olfactory sensory transduction. It is concluded that these cell lines were immortalized from sensory neuron precursors late in the lineage pathway. Other cell lines appear to have been immortalized at earlier stages in the lineage pathway. These cell lines therefore provide useful tools for the investigation of neuronal differentiation and sensory transduction in the olfactory epithelium. |
| Elevated pim-1 and c-myc proto-oncogene induction in B lymphocytes from BLV-infected cows with persistent B lymphocytosis. | Bovine leukemia virus (BLV) induces a non-malignant, polyclonal, persistent lymphocytosis (PL) of circulating, CD5 B lymphocytes in cattle, with variable progression to CD5 B cell leukemia or lymphoma. We analyzed the expression of two proto-oncogenes, pim-1 and c-myc, proto-oncogenes deregulated in some human B cell leukemias and lymphomas, in peripheral blood mononuclear leukocytes (PBML) from BLV-infected PL cows. Results demonstrate that pim-1 and c-myc mRNA levels are elevated in unfractionated stimulated PBML from a sample of PL cows naturally infected with BLV. Results confirm that pim-1 is constitutively expressed, but not inducible in normal bovine peripheral blood B lymphocytes, but can be induced in the predominantly CD5 B lymphocytes from BLV-infected PL cows. Results further demonstrate that c-myc is inducible in bovine B and T lymphocytes regardless of BLV status, but the amount of induction is greater in B lymphocytes from BLV-infected PL cows than in B lymphocytes from noninfected control cows. These results suggest that pim-1 and c-myc are upregulated in B lymphocytes from BLV-infected PL cows and that deregulation of proto-oncogene expression is not limited to completely transformed cells, but can also characterize a naturally occurring, pre-neoplastic lymphocytic state. |
| Lack of expression of c-myc oncogene in peripheral blood mononuclear cells of patients with active rheumatoid arthritis. | We looked for the expression of c-myc oncogene, one of the genes that enhance apoptosis, in 11 patients with active rheumatoid arthritis (RA) along with five patients with osteoarthritis (OA) knee as disease controls and six healthy volunteers. A dot-blot assay using a probe specific for c-myc oncogene was performed on total RNA obtained from peripheral blood mononuclear cells. There was no expression in patients with active RA and healthy volunteers. One patient with OA expressed c-myc. Lack of expression of c-myc suggests that in active RA circulating lymphocytes are not in the replicative phase despite ongoing disease activity. |
| Antigen Ki-67 and c-myc oncogene as related to histoclinical parameters in pigmented skin lesions. | 121 cases of cutaneous melanomas, 82 lymph nodes with melanoma metastases and 62 naevi were stained immunohistochemically for presence of Ki-67 antigen and c-myc oncogene. A significant correlation between expression of investigated markers, and survival time as well as presence of metastases, in cutaneous melanomas was found (p < 0.05). The role of Ki-67 antigen for differential diagnosis between naevi and melanomas is also demonstrated. |
| The programmed cell death of an immature thymocyte cell line transgenic for an alpha beta TCR and the c-myc proto-oncogene. | The c-myc proto-oncogene linked to the mouse Thy-1 gene transcriptional unit predisposes mice to development of thymic tumors consisting predominantly of immature CD4+ CD8+ cells. In an attempt to immortalize immature T cells expressing a known T-cell antigen receptor (TCR), Thy-1/c-myc transgenic mice were bred to alpha beta TCR transgenic mice (F5), and CD4+ CD8+ cell lines were established from thymic tumors in double-transgenic mice. These cells expressed high-level heat-stable antigen (HSA) and were able to undergo programmed cell death upon induction with steroids and CD3 cross-linking, but not with cognate peptide. In addition, one line had rearranged and transcribed endogenous TCR alpha and beta genes, in spite of the fact that transgenic alpha and beta genes were also expressed. Furthermore, we show that Thy-1/myc transgenic mice deficient in recombination activating gene-1 (RAG-1) do not develop tumors, in contrast to RAG-1-/- mice, which are also transgenic for both Thy-1/myc and the F5 TCR. This indicates that in order for thymocytes to be transformed by the Thy-myc transgene, they need to proceed to the double-positive stage. |
| Expression of bcl-2 oncoprotein in pituitary tumours: comparison with c-myc. | AIMS/BACKGROUND: Whereas the control of hormone secretion from pituitary adenomas has been studied in considerable detail, the molecular events underlying the development of these tumours are still poorly understood. Abnormalities of some oncogenes and tumour suppressor genes have been previously reported to occur at very low frequencies. The aim of the present study was to assess the possible expression of the bcl-2 oncoprotein and to compare it with that of c-myc in pituitary adenomas. METHODS: Monoclonal antibodies were used, along with microwave antigen retrieval and the avidin-biotin immunohistochemical method, to investigate expression of the oncoproteins bcl-2 and c-myc in 30 primary pituitary tumours from five broad diagnostic groups and in five normal pituitaries. RESULTS: Bcl-2 and c-myc immunoreactivities were detected in nine (30%) and eight (27%) tumour samples, respectively. Of the nine bcl-2 and eight c-myc positive tumours, seven were positive for both oncoproteins and included one of the four corticotrophinomas studied, four of seven prolactinomas, one of two somatotrophinomas, and one of four oncocytomas. ALL 13 null cell adenomas studied were negative for both bcl-2 and c-myc immunoreactivities. CONCLUSIONS: These results indicate that the bcl-2 and c-myc oncoproteins are expressed abnormally in over one quarter of pituitary tumours. Most these tumours co-expressed both oncoproteins. The genetic complementation of simultaneously deregulated bcl-2 and c-myc is implicated, through the regulation of apoptosis, in the pathogenesis of pituitary tumours. |
| Induction of pgp3 expression and reversion of the multidrug resistance phenotype in 9-OH-ellipticine-resistant Chinese hamster lung fibroblasts transfected with the MYC oncogene. | Chinese hamster lung cells resistant to the DNA topoisomerase II inhibitor 9-OH-ellipticine (DC-3F/9-OH-E) are cross resistant to various drugs through the expression of the MDR phenotype. The myc oncogene was approximately 10-fold amplified and 20-fold overexpressed in parental DC-3F cells as compared with DC-3F/9-HO-E cells. Transfection of the resistant cells with a mouse c-myc gene did not alter the resistance to topoisomerase II inhibitors and, in cells with a low multidrug (MDR) expression, reversed this phenotype. Northern and Western blot analyses revealed an increased expression of pgp1 in the DC-3F/9-OH-E cells, which was not modified in the myc-transfected clones. However, myc expression in these clones resulted in an increased expression of pgp3, roughly in proportion to the level of myc expression. Transfection of the DC-3F/9-OH-E cells with the human MDR3 gene, homologous to pgp3, also resulted in the reversion of the MDR phenotype. These results show that (1) expression of the transfected myc gene positively regulates pgp3 expression but has no effect on pgp1; (2) when observed, reversion of the MDR phenotype is proportional to the levels of myc and pgp3 expression; and (3) this reversion, resulting from pgp3 expression, is associated with a decreased functional activity of the pgp1 protein and might require an appropriate balance of pgp1 and pgp3 expression. |
| Loss of the N-myc oncogene in a patient with a small interstitial deletion of the short arm of chromosome 2. | To our knowledge, only four previous cases of distal chromosome 2p deletions exist in the literature. We present a patient with minor facial anomalies who had a distal interstitial deletion of the short arm of chromosome 2, del(2)(p24.2p25.1). This patient had many features seen in other patients with distal 2p deletion including short stature, "rectangular" facies, microcephaly, hypotonia, and mental retardation. This patient also has sensorineural hearing loss which has been described in one other patient with a similar deletion. The N-myc oncogene has been mapped to 2p24. By fluorescence in situ hybridization using a cDNA probe for the N-myc oncogene, this patient was found to have a deletion of the N-myc oncogene. This confirms the previous map location for N-myc. |
| Comparison of transformation by manganese sulfate and 5-azacytidine in Rat 6 cells overexpressing the c-myc oncogene. | Rat 6 cells are not transformed by treatment with the well-known carcinogens benzo[a]pyrene (BP) or N-methyl-N-nitro-N -nitrosoguanidine (MNNG). Upon retroviral transduction of the mouse c-myc gene, Rat 6 cells showed mildly altered morphology and formed microcolonies in soft agar; furthermore, they could be transformed by BP and MNNG to form large colonies in agar (Hsiao et al. (1992) Mol. Carcinogenesis, 5, 140-154). In the current report, we tested the sensitivity of the c-myc-overexpressing cells (Rat 6/c-myc) to two additional chemicals: 5-azacytidine and MnSO4. These chemicals differ from the direct-acting mutagens tested previously. 5-Azacytidine, a potent DNA methylation inhibitor, induced growth of large colonies in soft agar cultures of Rat 6 or Rat 6/c-myc cells. On the other hand, MnSO4 only induced transformation in Rat 6/c-myc cells, but not the parental Rat 6 cells. Transformants induced by 5-azacytidine lost c-myc-induced apoptotic cell death, whereas MnSO4-induced transformants showed a higher degree of apoptosis than the parental Rat 6/c-myc cells. These results suggest that MnSO4 co-operates with overexpressed c-myc in inducing transformation, while 5-azacytidine transformation is independent of c-myc overexpression and may involve alterations in the regulation of apoptosis. |
| Detection of c-myc oncogene amplification and chromosomal anomalies in metastatic prostatic carcinoma by fluorescence in situ hybridization. | The role of c-myc in prostatic carcinogenesis is poorly understood. The pathogenetic relationship between high-grade prostatic intraepithelial neoplasia (PIN), prostatic carcinoma, and metastases is not well-defined. We used fluorescence in situ hybridization (FISH) with a region-specific probe for c-myc (band 8q24) and chromosome enumeration probes for chromosomes 7, 8, 10, 12, and Y to evaluate genetic changes in matched PIN (48 foci), localized prostatic carcinoma (71 foci), and lymph node metastases (23 foci) in 25 totally embedded whole-mount stage D1 (T2-3 N1-3 M0) radical prostatectomy and pelvic lymphadenectomy specimens. The c-myc protein expression in these lesions was evaluated by immunohistochemistry. Foci with extra copies of c-myc could be divided into three groups: (a) those with simple gain of a whole chromosome 8 (no increase in c-myc copy number relative to the chromosome 8 centromere), which was identified in 42, 25, and 46% of foci of PIN, carcinoma, and metastases, respectively; (b) those with an intermediate increase in c-myc copy number relative to the chromosome 8 centromere, which was found in 8, 11, and 25% of foci of PIN, carcinoma, and metastases, respectively; and (c) those with substantial amplification of c-myc (large increases in c-myc copy number relative to the chromosome 8 centromere), which was detected in 0, 8, and 21% of foci of PIN, carcinoma, and metastases, respectively. Substantial amplification of c-myc was strongly correlated with increasing cancer nuclear grade and immunohistochemical evidence of c-myc protein overexpression. Numeric chromosomal anomalies were found in 67, 68, and 96% of foci of PIN, carcinoma, and metastases, respectively. The most frequent anomaly in PIN and carcinoma was a gain of chromosome 8, and the presence of this anomaly strongly correlated with Gleason score. Carcinoma foci usually contained more FISH anomalies than paired PIN foci, but three prostates contained one or more PIN foci with more anomalies than carcinoma. Thirteen primary tumor foci exhibited intratumor genetic heterogeneity by FISH. One or more foci of the primary tumor usually shared FISH anomalies with the matched metastases. Our FISH results indicate that: (a) gain of chromosome 8 and amplification of c-myc are potential markers of prostate carcinoma progression; (b) PIN is likely a precursor of carcinoma; (c) intraglandular and intratumoral genetic heterogeneity is relatively common; and (d) usually a single focus of cancer gives rise to metastases. |
| Drosophila Myc is oncogenic in mammalian cells and plays a role in the diminutive phenotype. | Biochemical and biological activities of Myc oncoproteins are highly dependent upon their association with another basic region helix-loop-helix/leucine zipper (bHLH/LZ) protein, Max. Our previous observation that the DNA-binding/dimerization region of Max is absolutely conserved throughout vertebrate evolution provided the basis for a yeast two-hybrid interaction screen that led to the isolation of the Drosophila Myc (dMyc1) protein. Structural conservation in regions of known functional significance is consistent with the ability of dMyc1 to interact with vertebrate Max, to transactivate gene expression in yeast cells, and to cooperate with activated H-RAS to effect the malignant transformation of primary mammalian cells. The ability of P-element-mediated ectopic expression of dmyc1 to reverse a subset of the phenotypic alterations associated with the diminutive mutation suggests that diminutive may correspond to dmyc1. This finding, along with the localization of dmyc1 expression to zones of high proliferative activity in the embryo, implicates dMyc1 as an integral regulator of Drosophila growth and development. |
| Double minute chromosomes contain amplified c-myc oncogene sequences in acute myeloid leukemia. | We describe two elderly male patients with acute myeloid leukemia transformed from myelodysplastic bone marrow. Neither patients had a history of prior exposure to mutagenic agents or other malignancies. Chromosome analysis at the time of initial diagnosis revealed 47,XY,del(5)(q14q33),+21 in patient 1 and 45,XY,add(1)(q23),-5,del(8)(p11.2p23),der(17)t(5;17)(p12;p11.2) in patient 2. In addition, numerous copies of double minute chromosomes were seen in both patients. We used fluorescence in situ hybridization to identify the amplified sequences presumed to represent the dmins in the leukemic cells. In both cases, it appeared that the dmins were derived from specific amplification of c-myc oncogene. |
| Transfection of cardiac muscle: effects of overexpression of c-myc and c-fos proto-oncogene proteins in primary cultures of neonatal rat cardiac myocytes. | 1. Studies of cells transfected with specific expression vectors allow functions of specific gene products to be investigated. We first established optimum conditions for transfection of neonatal cardiac myocytes in primary culture. Increased proto-oncogene expression has been implicated in the development of cardiac hypertrophy; we therefore wished to examine the effects of overexpression of the c-myc and c-fos proto-oncogenes induced by cell transfection on cell growth. 2. Neonatal rat ventricular myocytes were transfected by electroporation, voltage and capacitance settings were optimized and these conditions were then used to transfect expression vectors encoding MYC and FOS proteins into this cell type. Effects on cell number, DNA synthesis and protein content were determined. 3. Increased expression of c-myc and c-fos in cells transfected with proto-oncogene expression vectors was confirmed by Northern and Western blotting. Increases in cardiac myocyte cell number, DNA synthesis and total cellular protein were observed in cells transfected with either c-myc or c-fos expression vectors compared with cells transfected with non-coding vectors. 4. Overexpression of MYC and FOS proteins results in hyperplastic rather than hypertrophic growth of the neonatal rat heart, providing evidence for a role of these proteins in the control of myocardial growth. |
| Abnormal c-myc oncogene DNA methylation in human bladder cancer: possible role in tumor progression. | OBJECTIVE: It has been suggested that the hypermethylation of normally unmethylated DNA sequences plays a critical role in the genesis and progression of human tumors. Although the molecular bases of this mechanism have not been completely explained, the altered methylation pattern of the c-myc oncogene is supposed to represent an important step in tumor development. METHODS: We have analyzed tissue samples from 47 urinary bladder tumors (43 primary transitional and 4 squamous cell carcinomas) and the respective blood with HpaII methyl-sensitive endonuclease digestion and the Southern blotting technique to detect the methylation pattern in a widespread area in and around the c-myc oncogene. RESULTS: Data presented in this study showed significant differences between the c-myc methylation pattern and pathological grade (p < 0.05). On the other hand, we did not find a significant correlation between the c-myc methylation pattern and clinical stage. However, a variable covalent alteration of c-myc DNA existed in bladder cancer as compared to normal tissue. CONCLUSION: Although the correlation between superficial and infiltrating forms was not statistically significant, we did, however, find differences in aggressive neoplastic behavior. This suggested that local hypermethylation may be considered as one potential mechanism for increasing genetic alterations in bladder cancer formation. |
| Differential regulation of the N-myc proto-oncogene by ROR alpha and RVR, two orphan members of the superfamily of nuclear hormone receptors. | ROR alpha1 and RVR are orphan members of the superfamily of nuclear hormone receptors which constitutively activate and repress, respectively, gene transcription by binding to a common DNA sequence. In an attempt to understand the physiological functions of these two transcription factors, we aimed to identify target genes. We have identified a consensus binding site for ROR alpha1 and RVR in the first intron of the N-myc gene that we designated N-myc RORE (ROR response element). Unlike most of the intronic sequence, the region encompassing the N-myc RORE is highly conserved between human and mouse, underscoring its importance. Our studies revealed that ROR alpha1 and RVR specifically bind to the human and mouse N-myc ROREs and transactivate and transrepress, respectively, reporter constructs containing the ROREs. Moreover, Northern blot analysis demonstrated a direct modulation of an exogenously introduced N-myc gene by ROR alpha1 and RVR in COS-1 cells. This effect is mediated through the N-myc RORE, since mutation of this site abolished the regulatory effects of both receptors. While transfection of ROR alpha1 in P19 embryonic carcinoma cells had no effect on the levels of endogenous N-myc mRNA, RVR down-regulated its expression. The regulatory function of the N-myc RORE was further demonstrated by the rat embryonic fibroblast (REF) transformation assay. mutation of the RORE increased the oncogenic potential of the N-myc gene in the REF assay. The foci were more numerous and significantly larger with the mutated than with the wild-type N-myc gene, regardless of ROR alpha1 or RVR expression. Moreover, concomitant expression of ROR alpha1 and wild-type N-myc resulted in a twofold increase in the number of transformed foci. In contrast, RVR expression resulted in the formation of foci that could be established as permanent clones with a very low frequency compared to foci transformed in its absence. These observations show that ablation of the RORE results in a more oncogenic form of N-myc and suggest that deregulation of the activity of the ROR alpha1 and RVR could contribute to the initiation and progression of certain neoplasias. |
| Calcium-dependent c-myc proto-oncogene expression and proliferation of Caco-2 cells: a role for a luminal extracellular calcium-sensing receptor. | The human colonic cell line Caco-2 responds to a reduction of ambient [Ca++]o to levels at and below 0.25 mM by a twofold increase in [3H]thymidine labelling of their DNA. [Ca++]o signals sensed preferentially across the luminal aspect of Caco-2 cells, are rapidly (4 h) transduced via PKC activation into up to sixfold increases in c-myc expression. This suggests the presence of a [Ca++]o-sensing membrane receptor (CaR) similar to that described by Brown et al. (1) in parathyroid and kidney cells. By RT-PCR we were able to amplify a 426 bp fragment from Caco-2 mRNA with 98% nucleotide identity to a part of the coding region for the extracellular domain of the parathyroid CaR. Immunohistochemical staining with a monoclonal antiparathyroid CaR antibody demonstrates CaR protein at the plasma membrane of confluent Caco-2 cells. Our results imply that the intestinal CaR is a potential mediator for the transduction of low luminal [Ca++]o into tumor promoting signals in human colonocytes. |
| Cytotoxic effect of sodium nitroprusside on cancer cells: involvement of apoptosis and suppression of c-myc and c-myb proto-oncogene expression. | Nitric oxide (NO) is an unstable free radical gas known as an effector molecule of macrophage cytotoxicity against cancer cells. Although several mechanisms of NO-mediated cytotoxicity have been proposed, this phenomenon remains to be characterized in detail. To explore the mechanisms by which NO kills cancer cells, we made use of sodium nitroprusside (SNP), which releases NO in the culture medium. SNP showed a dose-dependent cytotoxic effect on NA cells, an epithelial cancer cell line. When NA cells were killed by SNP, high levels of NO2- (stable end product of NO) were detected in the culture medium. The cell death induced by SNP was mediated by apoptosis, as demonstrated by the presence of nuclear condensation and blebbing of the nuclear membrane, and internucleosomal DNA fragmentation quantified by a specific ELISA. Northern blot analysis revealed that c-myc mRNA expression of NA cells was rapidly reduced by treatment with SNP. RT-PCR analysis showed that c-myb mRNA was expressed in untreated NA cells, and c-myb mRNA level of NA cells was dose-dependently reduced by treatment with SNP. These results indicate that SNP exerts its cytotoxic effect on NA cells through spontaneous release of NO. Cytotoxicity induced by SNP is at least partially mediated via the process known as apoptosis. Our results also suggest that down-regulation of c-myc and c-myb proto-oncogenes might be involved in SNP-induced cytotoxicity. |
| Oncostatin M-specific receptor mediates inhibition of breast cancer cell growth and down-regulation of the c-myc proto-oncogene. | Human oncostatin M (OM) is a M(r) 28,000 glycoprotein that has been shown to regulate cell proliferation and differentiation. The biological activities of OM can be mediated by two different heterodimeric receptor complexes, the leukemia inhibitory factor (LIF)/OM shared receptor and the OM-specific receptor. In this study, we have examined the growth-regulatory effect of OM on 10 breast cancer cell lines derived from human tumors. The cellular proliferation of seven of these breast cancer cell lines was inhibited by OM. The three cell lines that did not respond to OM treatment lacked the expression of OM receptors. The growth-inhibitory activity of OM is examined further in the H3922 breast cancer cell line, which expresses the high-affinity OM receptor at a relatively higher level. We found that the cellular proliferation of H3922 cells was induced strongly by extrogenous epidermal growth factor (EGF), EGF-like factor, and basic fibroblast growth factor. The proliferative activities of these growth factors can be abolished totally by cotreatment of H3922 cells with OM. Treatment of H3922 cells with OM for 24 h did not block EGF binding or the induction of EGF receptor tyrosine phosphorylation. This finding suggests that OM interferes with the mitogenic signal at steps distal to the EGF receptor. Examination of proto-oncogene expression demonstrated that OM down-regulates the c-myc gene in H3922 cells. The biological effects reported herein are not shared by the OM-related cytokines interleukin 6 or LIF, as demonstrated by the inability of these proteins to inhibit cell growth or modulate c-myc gene expression in breast cancer cells. Additionally, the high-affinity binding of labeled OM cannot be displaced by LIF. Together, these data suggest that OM is a growth inhibitor for breast cancer cells. The inhibitory activity is mediated predominantly through the OM-specific receptor, and activation of this receptor abrogates growth factor stimulation and down-regulates the c-myc proto-oncogene. |
| c-myc proto-oncogene expression by germinal center B cells isolated from human tonsils. | PURPOSE: To evaluate retrospectively c-erbB-2 oncogene amplification in paraffin embedded specimens of collecting duct carcinoma of the kidney (CDC) with competitive polymerase chain reaction (PCR). MATERIALS AND METHODS: Eleven CDC specimens were evaluated with a novel PCR procedure for oncogene amplification measurement, which provides sensitive and accurate results even in presence of low-quality DNA, unsuitable for Southern blot techniques. RESULTS: c-erbB-2 oncogene amplification was present in 5 out of 11 cases (45%) with a number of copies ranging from 4 to 12. ALL patients presenting oncogene amplification decreased within one year, while 50% (3/6) of those without amplification are alive with a mean follow-up of 42 months. CONCLUSIONS: The high incidence of c-erbB-2 oncogene amplification in CDC further characterizes this tumor as a separate entity from renal cell carcinoma, and shows some genetic characteristics in common with transitional cell carcinoma. |
| Overload-induced C-Myc oncoprotein is reduced in aged skeletal muscle. | The C-Myc oncoprotein was examined in anterior latissimus dorsi (ALD) muscles of young (6 weeks) and aged (90 weeks) quail after 0.5 hours to 14 days of stretch. Western analyses of nuclear extracts showed an increase in the C-Myc oncoprotein after 1 h of stretch in young adult birds, and C-Myc remained elevated for 3 days of stretch. The onset and total accumulation of the C-Myc oncoprotein was less in muscles from aged quail as compared to muscles from young adult birds. Immunocytochemical analyses showed that C-Myc was localized in nuclei and averaged 0.2 +/- 0.04 nuclei/muscles fiber cross-section (n/f) in control muscles. C-Myc immunopositive nuclei were more numerous in muscles from young adult birds (1.7 +/- 0.2 n/f) compared to aged birds (1.1 +/- 0.1 n/f) after 2-12 h of stretch. C-Myc positive nuclei declined to 0.7 +/- 0.1 n/f after 3 days of stretch, in muscles from young adult birds; however, this was greater than in muscles from aged birds at the same time point (0.3 +/- 0.04 n/f). Many nuclei that were associated with muscle fibers expressed the C-Myc oncoprotein but did not incorporate bromodeoxyuridine, a marker of DNA synthesis and activated satellite cells. These data show a decreased ability of skeletal muscles from aged quails to initiate a program inclusive of early C-Myc oncoprotein accumulation in response to stretch. |
| Alterations of level of total genomic DNA methylation and pattern of c-myc, c-Ha-ras oncogene methylation in human gastric carcinogenesis. | OBJECTIVE: To investigate the status of DNA methylation in gastric carcinogenesis. METHODS: We analysed methylation pattern of c-myc, c-Ha-ras oncogenes by southern blot hybridization. DNA from cancerous, paracancerous and non-cancerous area of surgically resected samples in 21 cases of advanced gastric cancer were digested with MspI/HpaII and hybridized with the two genomic 32P labelled probes. In addition, the level of total genomic DNA methylation was measured by incubating DNA with 3H-S-Adenosylmethionine (3H-SAM) in the presence of a methylase which methylates ALL the cytosine residues that are in the double CpG (cytosine-guanine). RESULTS: The results indicated that both c-myc and c-Ha-ras oncogene fragments containing CCGG sequence were hypomethylated in DNA samples from cancerous (10/21 and 5/10) and paracancerous (13/21 and 4/10) areas. Moreover, the level of total genomic DNA methylation in cancerous tissue was significantly lower than that in non-cancerous and paracancerous mucosa tissues (P < 0.05). The results from two methods are incompletely alike. CONCLUSION: These results supported a strong correlation between DNA hypomethylation and gastric carcinogenesis, particularly methylated pattern of c-myc and c-Ha-ras oncogenes fragments containing CCGG sequence was abnormal in gastric mucosa tissue from gastric cancerous and paracancerous areas. |
| [Analysis of DNA methylation pattern of c-myc oncogene in hepatocellular carcinoma]. | OBJECTIVES: To assess whether hypomethylation of c-myc gene occours in HCC and to determine its clinical significance. METHODS: The methylation pattern at 3 end of c-myc gene was analyzed by Southern blot using methylation sensitive restrcition endonuclease enzymes Hpa I and Msp I in six normal liver tissues and 18 HCCs. RESULTS: At least 5 CCGG sites were methylated at 3 end of c-myc gene in 6 normal liver tissues. However, the normal hypermethylation pattern was absent in 11 hepatocellular carcinoms (HCC) which showed different degree of hypomethylation even if among subclonal cells of same tumour tissues. The hypomethylation was observed more often in markedly advanced HCC with metastasis and poorly differentiated histological grade. CONCLUSION: Scattered CpG at 3 end of c-myc gene was methylated in normal liver tissues. Methyl groups were deleted in different extent in HCC, which can lead to abnormal expression of c-myc gene. The hypomethylation of c-myc can reflect the malignlant extent of HCC and may serve as a useful prognostic indicator in clinical practice. |
| Increased expression of c-myc p67 oncoprotein in patients with myelodysplastic syndromes in transformation to acute leukaemia. | Thirty-five patients, 24 males and 11 females, with myelodysplastic syndromes were studied for the expression of c-myc encoded p67 oncoprotein. According to FAB classification, 5 patients had refractory anaemia (RA). 5 refractory anaemia with ringed sideroblasts (RARS), 17 refractory anaemia with excess of blasts (RAEB), 4 refractory anaemia with excess of blasts in transformation (RAEB-t), and 4 chronic myelomonocytic leukaemia (CMML). The mouse anti-human 9E10 derived monoclonal antibody in the standard APAAP technique for immunohistochemical analysis was used. A scoring method similar to that routinely used for endogenous neutrophil alkaline phosphatase estimation, was applied to obtain parametrically comparable results. In ALL but two MDS patients, the observed c-myc oncoprotein score values did not differ statistically from those found in the controls. The values did not correlate with peripheral blood or bone marrow blast cell numbers. In two out of 17 patients with RAEB in whom very high c-myc score values were found, acute non-lymphocytic leukaemia (ANLL) was diagnosed 30 and 45 days later, respectively. Furthermore, we found high c-myc score values in three patients with RAEB and in two patients with RAEB-t during the ANLL phase which was diagnosed six to ten months after the initial study. Our data suggest that c-myc activation may be seen in ALL cases of MDS in overt ANLL phase, and also in some RAEB patients a few weeks before diagnosis of overt ANLL. The possible prognostic value of c-myc activation in MDS patients remains to be clarified. |
| [Efficacy of interferon alpha in primary prevention of preneoplastic lesions in a transgenic murine model of hepatocellular carcinoma related to the interaction between woodchuck hepatitis viruses and c-myc oncogene]. | OBJECTIVES: C-myc oncogene overexpression by near insertion of hepatitis B virus is important in woodchuck hepatocarcinogenesis. This DNA fragment was transferred in mice who developed hepatocellular carcinoma via preneoplastic lesions. In the present study, we tested the preventive effect of alpha interferon on the incidence of hepatocyte dysplasia. METHODS: Human recombinant alpha interferon hybrid B/D was continuously administered at increasing doses (0 to 10,000 IU/g) in a transgenic mouse model. One cohort was treated from day 21 to day 80. A histological liver examination was performed and the transgene expression was assessed by hybridization with or without previous genic amplification, and by indirect immunofluorescence. RESULTS: At day 15, histological liver examination was normal. Interferon treatment decreased the expression of viral sequences, but not of c-myc. At day 80, interferon treatment resulted in a reduction of the incidence and severity of dysplasic lesions, and a marked decrease in c-myc overexpression. CONCLUSION: In this transgenic mouse model, alpha interferon treatment decreased the incidence and severity of precancerous lesions, due to a reduction in c-myc overexpression. This prophylaxis could be of interest in human hepatocarcinogenesis where c-myc overexpression is frequent. |
| Alterations of the metastasis suppressor gene nm23 and the proto-oncogene c-myc in human testicular germ cell tumors. | The putative metastasis suppressor genes nm23-H1, nm23-H2 and the c-myc proto-oncogene were investigated in testicular germ cell tumors (GCTs) using Southern and Northern blotting as well as semiquantitative reverse transcription polymerase chain reaction (RT-PCR) and single strand conformation polymorphism (SSCP) analysis. When studying Bgl II RFLPs, allelic losses of the nm23 gene were found in 3/12 (25%) informative tumors, and ALL 3 had lymph node and/or distant metastases. A 2 to 7 fold nm23 mRNA overexpression was found in 22/34 (64.7%) tumors examined. RT-PCR revealed that this phenomenon is mainly a consequence of nm23-H2 overexpression. Overexpression of both the H1 and the H2 gene was predominantly found in the seminoma subtype and was not associated with tumor stage. Only 1/25 tumors, a seminoma with distant metastases, had a point mutation in the coding region of the nm23-H2 gene as demonstrated by SSCP analysis. None of the 8 seminomas and only 1/13 non-seminomas had c-myc overexpression. No abnormalities of the c-myc gene could be detected on the DNA level. Despite the fact that in previous investigations nm23-H2 was demonstrated to be a putative transcription factor for c-myc, no coexpression of c-myc and nm23-H2 was found by quantitative RT-PCR in this study. |
| Autoregulation of the human N-myc oncogene is disrupted in amplified but not single-copy neuroblastoma cell lines. | Amplification of the N-myc gene is a significant adverse prognostic factor in neuroblastoma, a common childhood tumor. In non-transformed cells, myc expression is controlled through an autoregulatory circuit, through which elevated Myc protein levels lead to down-regulation of myc transcription. The precise mechanism of myc gene autoregulation is unknown. Loss of c-myc autoregulation has been documented in transformed cells from a number of different lineages, but N-myc autoregulation has not yet been investigated. In neuroblastoma, the increased N-Myc protein produced by amplified tumors would be expected to silence N-myc transcription if the autoregulatory loop were intact. To determine whether N-myc autoregulation is operative in human neuroblastoma, and to localize cis-acting elements which mediate N-myc autosuppression, we transfected a series of N-myc 5 promoter constructs into a panel of human neuroblastoma cell lines carrying one or multiple copies of N-myc. The transfected promoter was equally active in single-copy and amplified lines. Significant promoter activity in the presence of abundant Myc protein in amplified neuroblastoma lines indicates that autoregulation is disabled in this subset of tumors. To investigate whether single-copy lines produce insufficient N-Myc protein to trigger autosuppression yet retain an intact autoregulatory circuit, we transfected neuroblastoma lines with 5 promoter constructs in the presence of a c- or N-myc expression vector. Overexpression of c- or N-Myc resulted in diminution of activity of both the transfected promoter and the endogenous N-myc gene in single-copy, but not amplified lines. Using a series of 5 promoter-deletion minigenes, we localized a cis-acting element required for autoregulation close to the transcription start sites. While the precise mechanism of autosuppression remains unknown, we demonstrated that Myc is incapable of silencing the adenovirus major late promoter (AdMLP) in neuroblastoma cells, indicating that Myc suppression of its own promoter and the AdMLP involve distinct components. These studies provide the first systematic investigation of autoregulation in neuroblastoma, and indicate that single-copy neuroblastoma lines produce insufficient N-Myc protein to activate downstream effector(s) of autosuppression; the autoregulatory circuit is otherwise intact. Amplified lines, in contrast, have lost autoregulation. |
| Transcription effect of nm23-M2/NDP kinase on c-myc oncogene. | Transactivating factor PuF which interacts with a nuclease hypersensitive element locates upstream from the c-myc gene. PuF was recently identified as being encoded by nm23-H2/ NDP kinase gene [Postel, E. H., Berberich, S. J., Flint, S. J., and Ferrone, C. A. (1993) Science 261, 428-429]. Here we have studied the correlation of expression between c-myc and nm23 genes in vitro. By a comparative study of the expression of 2 genes in cell lines, no direct correlation of kinetics was found. A plasmid containing the human c-myc fragment (c-myc CAT) was cloned upstream from the bacterial chloramphenicol acetyltransferase (CAT) gene. When the murine melanoma cell line was cotransfected with a nm23-M2/ NDP kinase expression vector and c-myc CAT, CAT activity was elevated. In addition, cell cycle phases in the murine cell lines transfected with nm23/NDP kinase were estimated; an alteration of the cell cycle, prolonged S-phase was found in the cell lines transfected with nm23-M2/NDP kinase, whereas human nm23-H2/NDP kinase did not play a role in transactivating the c-myc gene or in S-phase prolongation in murine cell lines. From these results we conclude that the murine nm23-M2 gene transactivates the c-myc gene and controls the cell cycle, S-phase, indirectly via a cellular cofactor in the murine cell line, which does not work with the human nm23-H2 gene. |
| Alternative translation of the proto-oncogene c-myc by an internal ribosome entry site. | The human proto-oncogene c-myc encodes two proteins, c-Myc1 and c-Myc2, from two initiation codons, CUG and AUG, respectively. It is also transcribed from four alternative promoters (P0, P1, P2, and P3), giving rise to different RNA 5 -leader sequences, the long sizes of which suggest that they must be inefficiently translated by the classical ribosome scanning mechanism. Here we have examined the influence of three c-myc mRNA 5 -leaders on the translation of chimeric myc-CAT mRNAs. We observed that in the reticulocyte rabbit lysate, these 5 -leaders lead to cap-independent translation initiation. To determine whether this kind of initiation resulted from the presence of an internal ribosome entry site (IRES), COS-7 cells were transfected with bicistronic vectors containing the different c-myc 5 -leaders in the intercistronic region. An IRES was identified, requiring elements located within the P2 leader, between nucleotides -363 and -94 upstream from the CUG start codon. This is the first demonstration of the existence of IRES-dependent translation for a proto-oncogene. This IRES could be a translation enhancer, allowing activation of c-myc expression under the control of trans-acting factors and in response to specific cell stimuli. |
| Measurement of c-myc oncoprotein provides an independent prognostic marker for regional metastatic melanoma. | Patients with melanoma who develop nodal metastatic disease represent a group with heterogeneous clinical outcome. Nodal positivity remains the most accurate prognostic marker for regional melanoma although it fails to predict outcome in a significant number of patients. Recent studies have illustrated the prognostic potential of c-myc oncogene expression in melanoma. The aim of this study was to measure c-myc oncoprotein in a series of regional metastatic specimens from 48 patients, and evaluate its use as a marker of clinical outcome. oncoprotein expression was detected in 46 (96%) of the tumours with a median positivity of 68% (range 0-98%). Survival analysis revealed a significant association between oncoprotein positivity and survival (Long-Rank test, chi 2 = 15.2, P < 0.001). Multivariate analysis of outcome showed c-myc oncoprotein to be an independent prognostic marker more accurate than ALL other clinicopathological parameters including nodal positivity (chi 2 = 8.34, P = 0.003). Estimation of c-myc oncoprotein is therefore recommended as a powerful prognostic marker for regional metastatic melanoma. |
| Disruption of the pRb/E2F pathway and inhibition of apoptosis are major oncogenic events in liver constitutively expressing c-myc and transforming growth factor alpha. | The oncogene c-myc and transforming growth factor (TGF) alpha are frequently coexpressed in human cancers, suggesting that their interaction may be a critical step in malignant growth. Consistent with this idea, we recently demonstrated in a transgenic mouse model that TGF-alpha dramatically enhances c-myc-induced hepatocarcinogenesis. To elucidate this synergistic effect, we have now investigated regulation of cell cycle and apoptosis during neoplastic development in the liver of c-myc and c-myc/TGFalpha transgenic mice. Both lines displayed dramatic increases of mitotic and apoptotic rates before the onset of hepatocellular carcinoma (HCC), but only c-myc/TGF-alpha livers showed significant levels of net proliferation (mitosis minus apoptosis). Subsequently, mitosis declined in peritumorous tissues, concomitant with the previously reported induction of TGF-beta1, whereas c-myc and c-myc/TGFalpha HCCs maintained mitotic hyperactivity. The c-myc/TGF-alpha HCCs were also characterized by a particularly strong expression of TGF-alpha and very low apoptotic index in contrast to high levels of apoptosis in peritumorous tissues and c-myc HCCs. The differential levels of cell proliferation in noncancerous and cancerous tissues correlated with a stronger induction of cyclin D1 mRNA and protein in c-myc/TGF-alpha and c-myc HCCs associated with intense pRb hyperphosphorylation. Severe deregulation of G1-S transition was also indicated by the dramatic up-regulation, particularly in the HCCs, of pRb-free E2F1-DP1 and E2F2-DP1 transcription factor heterodimers, as assessed by immunoprecipitation and immunohistochemistry. The existence of increased E2F activity during hepatocarcinogenesis was further indicated by the transcriptional induction of putative E2F target genes involved in cell cycle progression, such as endogenous c-myc, cyclin A, Cdc2, and E2F itself. Cdc2 overexpression and the elevated mitotic indices in the HCCs correlated also with induction of cyclin B steady-state levels. The data suggest that coexpression of c-myc and TGF-alpha leads to a selective growth advantage for hepatic (pre)neoplastic cells by disrupting the pRb/E2F pathway and by TGF-alpha-mediated reduction of apoptosis. |
| Expression and regulation of the myc proto-oncogene in the pituitary gland of rainbow trout. | We have isolated two c-myc cDNA clones from a trout pituitary gland (PG). One of these clones (tmyc2) is expressed as a 1.9-2.0 kb transcript in the PG, brain and heart, but not in the liver and codes for a protein of 398 amino acids. The second clone (tmyc3) is expressed in the PG (1.6 kb), but not in brain, liver or heart and codes for a protein of 401 amino acids. The expression level of tmyc3 in the PG is 10-fold greater than that of tmyc2. This profile is markedly different from a previously isolated genomic c-myc clone (tmyc1) that is expressed primarily in the liver (2.4 kb) and codes for a larger protein consisting of 417 amino acids. In situ hybridization and Northern blot analysis showed that tmyc3 is expressed primarily in somatolactotrophs of the intermediate lobe (IL) of the PG. Tmyc2 is expressed at similar levels in both the IL and the pars distalis (PD). In vitro stimulation experiments show that releasing factors, known to control cells in the PD, failed to stimulate tmyc2 or tmyc3. However, dopamine and norepinephrine (two neurotransmitters known to control hormone release from the IL) increased tmyc3 expression two to five times. Two other neurotransmitters (GABA and serotonin) failed to stimulate tmyc3 expression. None of the neurotransmitters tested affected tmyc2 expression. These results suggest that tmyc3 is involved in regulating hypertrophy of somatolactotrophs and may have a role in stimulating production of somatolactin, the only hormone known to be synthesised by these cells. |
| Decreased expression of c-myc oncoprotein by peripheral blood mononuclear cells in thalassaemia patients receiving desferrioxamine. | Desferrioxamine (DFX) is an iron chelation agent widely used in the treatment of transfusional iron overload in patients with thalassaemia major and other severe refractory anaemias. DFX has been shown to induce inhibition of DNA synthesis and apoptosis in vitro; however, the molecular targets of DFX action are not well known. The c-myc proto-oncogene is involved in a number of cellular processes including proliferation, differentiation and apoptotic cell death. We have examined the expression of c-myc in peripheral blood mononuclear cells from 71 patients with homozygous beta-thalassaemia in regular transfusion and iron chelation therapy with DFX, 5 non-transfusion, non-chelation-dependent thalassaemic patients, and 15 healthy volunteers using an APAAP immunocytochemical method. We have found that mononuclear cells from thalassaemic patients receiving DFX express significantly lower levels of c-myc protein compared to control healthy volunteers or thalassaemics receiving no DFX. In vitro treatment of HL60 or K562 leukaemic cells with 100 microliters DFX also induced a rapid decrease in c-myc mRNA and protein levels, followed by apoptosis and inhibition of DNA synthesis. These effects were blocked by simultaneous addition of ferric chloride. Our data suggest that deprivation of cellular iron induces downregulation of c-myc expression in vitro and in vivo and may influence haemopoietic cell growth and survival. |
| Expression of c-myc oncoprotein represents a new prognostic marker in cutaneous melanoma. | BACKGROUND: Overexpression of the c-myc oncoprotein has been observed to be of prognostic significance in several human cancers. This study was undertaken to establish whether c-myc has any prognostic significance in melanoma. METHODS: expression of c-myc oncoprotein was studied in a prospective series of primary and secondary malignant melanomas. Ethanol-fixed tissue was digested into nuclei and stained for flow cytometric analysis using a pan-myc antibody. RESULTS: Overexpression of the c-myc oncoprotein was prevalent in both disease stages. In primary disease, overexpression was associated with tumour thickness and with the presence of ulceration, age and reduced disease-free interval. Of most importance, high expression of c-myc predicted poor outcome in both primary and metastatic disease. In addition, c-myc was able to discriminate prognosis in melanomas uniformly stratified as thick (greater than 3 mm) lesions. CONCLUSION: These results indicate an important role for c-myc in melanoma which may lead to better prognostic information and identification of new therapeutic strategies. |
| Inhibition of cell growth in CaCO2 cells by the polyamine analogue N1,N12-bis(ethyl)spermine is preceded by a reduction in MYC oncoprotein levels. | The polyamine analogue N1,N12bis(ethyl)spermine (BESpm) is a potent inhibitor of cell proliferation and is representative of a class of agents currently in clinical trials. Previous studies have demonstrated that BESpm treatment can produce a decrease in the mRNA levels of the protooncogene c-myc resulting from decreased transcription. Investigation into the mechanism of the antiproliferative effect of BESpm in the colon cancer cell line CaCO2 indicated that significant reduction in MYC protein, but not c-myc mRNA levels, preceded cytostasis. Specificity of the downregulation of MYC expression by BESpm treatment was demonstrated by comparison to effects on the polyamine catabolic enzyme spermidine/spermine N1-acetyltransferase (SSAT) and the polyamine biosynthetic enzyme ornithine decarboxylase (ODC). SSAT activity rapidly increased while levels of ODC activity decreased after BESpm treatment. Measurement of intracellular polyamines demonstrated significant uptake of the analogue after 24 hours, which was concurrent with a reduction of spermine and spermidine levels. Thus, cellular uptake of BESpm mediated a reduction of polyamine levels that was associated with a decrease of MYC protein at the post-transcriptional level. |
| [N-myc oncogene amplification in tumors of the sympathetic nervous system: preliminary study of methods and clinico-pathologic correlations]. | tumors of the sympathetic nervous system (NT), namely neuroblastoma (NB) and ganglioneuroblastoma (GNB), have a variable clinical course. Prognostic factors include clinical stage, age of the patient, histological grade, and changes at the genomic level, of which amplification of N-myc oncogene is a well recognized phenomenon. The aim of this study was to establish the status of the N-myc oncogene in NT and to compare the results with histopathological grading, with risk groups according to criteria outlined by Joshi et al., and with the clinical stage. To detect the amplification of N-myc oncogene we used differential polymerase chain reaction (D-PCR). Amplified N-myc oncogene was found in 10 out of 31 investigated children with NB (32%). The result of D-PCR could not be interpreted reliably in two patients. Of seven children with GNB the N-myc amplification was found in one case. None of seven children with ganglioneuroma was found to have amplified N-myc oncogene. The tumors with N-myc amplification were histologically poorly differentiated of undifferentiated with a high mitotic activity-8 children were classified as a high risk category; in two we had not enough surgical material to evaluate the histological prognostic factors. The correlation of N-myc status with clinical stage revealed N-myc amplification in two of 9 children classified as clinical stage III, and in eight of 11 children classified as clinical stage IV. The N-myc amplification was not found in any child diagnosed at stage I, II and IV. Five of 10 children with NB and N-myc amplification died of the disease progression. Four children died in the group of 19 children without N-myc amplification. The median of follow-up was 18 months. The patient with GNB and N-myc amplification also died of the disease progression. Although the follow-up period of the investigated group of patients was short, the results showed that the amplification of N-myc oncogene was associated with tumors of patients diagnosed at a late clinical stage (III and IV), and with tumors whose morphology and age were assessed collectively under the term "high risk group". |
| Restriction fragment length polymorphism of the L-myc oncogene in non-Hodgkin s lymphoma patients from India. | We examined 89 non-Hodgkin s lymphoma (NHL) patients of Indian origin for EcoRI restriction fragment length polymorphism (RFLP) of the L-myc gene with a view to testing the hypothesis that the presence of the L-myc S-allele predisposes towards NHL. We found no significant difference either in the distribution of the LL, LS and SS genotypes or in the allelic frequencies between the patient group and the control group with the frequencies of L-myc alleles, L (10.0 kb) and S (6.6 kb), being 0.56 and 0.44, respectively, in the patient group and 0.54 and 0.46, respectively, in the control group. However, a higher proportion (70%) of the S-allele was observed in our control group of normal healthy volunteers. Thus, the presence of L-myc S-allele did not indicate increased susceptibility or predisposition to the malignancy. |
| Effects of c-myc oncogene modulation on differentiation of human small cell lung carcinoma cell lines. | Amplification and over-expression of oncogenes of the myc family are related to the prognosis of certain solid tumors such as small cell lung cancer (SCLC). For SCLC, c-myc is the oncogene most consistently found to correlate with the end stage behaviour of the tumour, in particular with survival after chemotherapeutic treatment. C-myc is important in many cellular processes such as proliferation, differentiation and apoptosis. In the present study the relationship between c-myc and differentiation was analyzed by down-regulation of endogenous c-myc protein, using two approaches: first by coculturing with antisense (AS) oligodeoxynucleotides (ODN) in the human SCLC cell line GLC4 and its 6-fold cisplatin resistant subline GLC4-CDDP, second by stable transfection of GLC4-CDDP with a dexamethasone-inducible AS c-myc expression vector. Basic characterization of the differentiation status of GLC4 and GLC4-CDDP showed a decrease in neuroendocrine differentiation in GLC4-CDDP compared to GLC4 Cytokeratin was absent in both cell lines. No significant differences in expression of adhesion molecules or myeloid antigens were observed between the lines. Vimentin expression was higher in GLC4-CDDP compared to GLC4 (AS c-myc ODN)-induced growth inhibition and down-regulation of endogenous c-myc protein further decreased neuroendocrine differentiation (CD57 positive cells) in GLC4-CDDP without affecting the expression of other antigens such as vimentin (intermediate filament),CD15 (myeloid antigen) and VLA-alpha 4 (adhesion molecule) and did not alter the expression of these antigens in GLC4 (AS c-myc RNA)-induced growth inhibition did not significantly affect the expression of the tested antigens in the AS c-myc transfected GLC4-CDDP/AS cell line. No effect of nonsense c-myc ODN or dexamethasone-induced control RNA (controls) was observed. |
| Value of glutathione S-transferase pi and the oncogene products c-Jun, c-Fos, c-H-Ras, and c-Myc as a prognostic indicator in endometrial carcinomas. | OBJECTIVE: To examine the relationship between the expressions of glutathione S-transferase pi (GST-pi) and four oncogene products, c-Jun, c-Fos, c-H-Ras, and c-Myc, and clinicopathological prognostic factors and patients prognosis in endometrial carcinomas, and to assess their prognostic value in endometrial carcinomas. METHODS: Specimens of endometrial carcinoma obtained from 63 patients were investigated immunohistochemically using respective specific antibodies. RESULTS: The overall positive rates in 63 carcinoma specimens were 34.9% for GST-pi, 44.4% for c-Jun, 34.9% for c-Fos, 47.6% for c-H-Ras, and 54.0% for c-Myc. Multivariate analysis revealed that GST-pi expression correlated independently with paraaortic lymph node (PAN) metastasis, and c-Jun expression was independently related to pelvic lymph node (PLN) and PAN metastasis. The prognosis of patients with a GST-pi-positive tumor was significantly poorer than that of those with a GST-pi-negative tumor (P < 0.05). The patients with c-Jun-positive tumor also had a significantly worse prognosis than those with c-Jun-negative tumor (P < 0.05). No significant relationship between the expressions of the remaining three oncogene products, c-Fos, c-H-Ras, and c-Myc, and the examined prognostic factors and clinical outcome was apparent. CONCLUSION: These results suggest that the expressions of GST-pi and c-Jun may reflect the metastatic potential of endometrial carcinomas and that their expressions of endometrial carcinoma may be useful as a prognostic indicator for predictive testing. |
| [S allele of the L-myc oncogene is associated with lung cancer metastases in patients from Moldova]. | Race is widely believed to be a factor in the relationship between S allele of L-MYC oncogene and disseminated lung cancer. In particular, the clinical significance of L-MYC genotype was demonstrated in the Japanese while the results for the white US, Australian and Norwegian cohorts were negative. The present study was concerned with distribution of L-MYC oncogene alleles in 43 patients with lung cancer and 77 healthy subjects in Moldova. L and S allele frequency in both groups were nearly identical. However, the SS genotype was registered much more frequently in patients with metastasis (10/28; 36%)(p < 0.05) than in those with localized tumor (0/12). Moreover, overall frequency of S allele was significantly higher in lung cancer patients with node involvement (35/56; 63%)(p < 0.02) than in those with localized tumors (8/24; 33%)(p < 0.02). Finally, a significant correlation was found between S allele occurrence and distant metastases (M1: 19/28; 68%; M0:26/58; 45%)(p < 0.05). Similar data were reported in Russia. (ABSTRACT TRUNCATED)FAU - Chernitsa, O I |
| The prognostic significance of c-myc oncogene expression in uveal melanoma. | The role of the c-myc oncogene has been little investigated in uveal melanoma. In this study an analysis of c-myc oncoprotein expression was undertaken using flow cytometry in 71 patients with posterior uveal melanoma. Nuclear c-myc oncoprotein was detected in ALL of the tumours, and survival analysis revealed a significant association between high oncoprotein positivity and improved survival (log rank test: chi2 = 6.47, P = 0.01). Multifactorial analysis using Cox s proportional hazards model revealed nuclear c-myc oncoprotein to be an independent prognostic marker more accurate than other clinicopathological parameters (log rank test: chi2 = 6.61, P = 0.01). However, this result of high oncoprotein expression correlating with improved outcome is surprising and in contrast to our previous studies using the same method on cutaneous melanoma, where high levels of nuclear c-myc expression have been found to correlate with poor outcome both in primary and secondary disease. This study suggests that the pattern of oncogene expression in uveal melanoma is distinct from cutaneous melanoma and that the underlying biology of these tumours is different. |
| Molecular genetic alterations of c-myc oncogene in superficial and locally advanced bladder cancer. | OBJECTIVE: Gene activation and altered expression of cellular proto-oncogene are important mechanisms implicated in initiation and development processes of human cancer. It has already been shown that c-myc oncogene is implicated in the control of cell proliferation, apoptosis and differentiation. METHODS: We have determined the methylation status, the presence of genetic amplification and the presence of m-RNA overexpression of c-myc gene in 31 samples from patients with bladder carcinomas. RESULTS: Our data demonstrated the presence of c-myc gene amplification only in 5 of 15 superficial bladder carcinomas (p < 0.05). On the other hand, we did not find statistical significant correlation between the methylation, expression of c-myc gene and the clinical-histopathological parameters. A significant correlation (p < 0.05) was found between the methylation pattern and m-RNA overexpression of c-myc oncogene. CONCLUSION: We demonstrate aberrant c-myc gene status in human bladder cancer. This oncogene is altered at different levels in bladder carcinoma genesis and progression. |
| [Expression of transforming growth factor-alpha and myc oncoprotein in the human ovary during follicular growth, atresia and corpus luteum formation regression]. | OBJECTIVE: To investigate the expression of transforming growth factor (TGF)-alpha and myc oncoprotein on human follicular development and atresia in vitro. METHODS: Ovarian tissues were obtained from 36 women with regular menstrual cycles who underwent abdominal hysterectomy for a variety of gynecological conditions. expression of TGF-alpha and myc protein in the ovarian tissues was examined by immunohistochemical technique. RESULTS: In primordial follicale only the oocyte showed intense immunostaining for both TGF-alpha and myc oncoprotein. Immunostaining for TGF-alpha in granulosa cells and theca interna cells became apparent in the follicles of preantral stage. With the increase in the size of follicles the intensity of immunostaining in the oocyte decreased, whereas the staining intensity of the granulosa and theca cells increased, and persisted in the corpus luteum and further intensifying during the midluteal phase. myc protein expression in granulosa cells was apparent only in the preantral follicle stage. In the regressing corpus luteum, expression of both TGF-alpha and myc oncoprotein was restricted only in the peripheral theca lutein cells adjacent to the central core of scar issue. In atretic follicles theca interna cells exhibited prominent immunostaining for TGF-alpha and myc protein. CONCLUSION: TGF-alpha and myc oncoprotein combination play a role as intraovarian regulators through autocrine and paracrine mechanism and may participate in remodelling the initial growth of the oocyte, follicular growth, differentiate and apoptosis. |
| Basal and human papillomavirus E6 oncoprotein-induced degradation of Myc proteins by the ubiquitin pathway. | We have previously shown that the degradation of c-myc and N-myc in vitro is mediated by the ubiquitin system. However, the role of the system in targeting the myc proteins in vivo and the identity of the conjugating enzymes and possible ancillary proteins involved has remained obscure. Here we report that the degradation of the myc proteins in cells is inhibited by lactacystin and MG132, two inhibitors of the 20S proteasome. Inhibition is accompanied by accumulation of myc-ubiquitin conjugates. Dissection of the ancillary proteins involved revealed that the high-risk human papillomavirus oncoprotein E6-16 stimulates conjugation and subsequent degradation of the myc proteins in vitro. expression of E6-16 in cells results in significant shortening of the t1/2 of the myc proteins with subsequent decrease in their cellular level. Analysis of the conjugating enzymes revealed that under basal conditions the proteins can be conjugated by two pairs of E2s and E3s-E2-14 kDa and E3alpha involved in the "N-end rule" pathway, and E2-F1 (UbcH7) and E3-Fos involved also in conjugation of c-Fos. In the presence of E6-16, a third pair, E2-F1 and E6-AP mediate conjugation of myc by means of a mechanism that appears to be similar to that involved in the targeting of p53, formation of a myc. E6.E6-AP targeting complex. It is possible that in certain cells E6-mediated targeting of myc prevents myc-induced apoptosis and thus ensures maintenance of viral infection. |
| The clinical significance of c-myc oncogene expression in melanomas of the scalp. | Melanomas of the scalp are rare and have a poorer prognosis than melanomas arising at other cutaneous sites. In order to study the biology of this disease, the activity of the c-myc oncogene was studied in tumours from 25 patients with scalp melanoma using the technique of flow cytometry. Survival analysis revealed that stratification of patients according to oncogene activity provided a prognostic marker with shorter overall survival (log rank test, chi 2 = 3.9, P = 0.05) in tumours with high nuclear c-myc oncoprotein positivity. These results support our previous studies of the prognostic value of c-myc expression in melanoma and suggest that estimation of c-myc oncoprotein may be of clinical significance in identifying high risk patients. |
| Translational induction of the c-myc oncogene via activation of the FRAP/TOR signalling pathway. | Previous studies on the regulation of c-myc have focused on the transcriptional control of this proto-oncogene. We have investigated the signalling pathways involved under circumstances in which there is a translational upregulation in the levels of c-myc protein. We have demonstrated an up to tenfold serum-dependent increase of c-myc protein levels in Epstein-Barr virus immortalized B-cell lines 2-4 h after disruption of cellular aggregates, which is not accompanied by an equivalent increase in mRNA. Overall protein synthesis rates only increased threefold suggesting that the c-myc message was being selectively translated. We observed increases in the phosphorylation of p70 and p85 S6 kinases and of initiation factor eIF-4E binding protein 1 (4E-BP1) 1-2 h after stimulation, suggesting activation of the FRAP/TOR signalling pathway. The increased phosphorylation of 4E-BP1 led to a decrease in its association with eIF-4E and an increase in its association with the eIF-4G component of the eIF-4F initiation complex. The signalling inhibitors rapamycin and wortmannin blocked the phosphorylation of 4E-BP1 and abolished the translational component of the c-myc response. Our data suggest that dissociation of eIF-4E from 4E-BP1, leading to an increase in the formation of the eIF-4F initiation complex, relieves the translation repression imposed on the c-myc mRNA by its structured 5 UTR. |
| TNF alpha-induced aerobic synthesis of ATP on plasma membranes of target cells. The relation to the expression of the nuclear oncogene c-myc. | The accumulation of ATP by preparations of plasma membranes enriched particles (PMEP) isolated from rat hepatocytes, murine splenocytes and human T-lymphocytes has been investigated after the binding of human and murine tumour necrosis factors (TNF alpha) to their specific receptors. The TNF alpha-induced expression of the nuclear oncogene c-myc in intact hepatocytes has been also studied. TNF alpha induced the marked biosynthesis of ATP on PMEP of hepatocytes and splenocytes within the first minute of incubation. The biosynthesis of ATP was independent of the activity of adenylate kinase and only occurred in the presence of ALL the components of aerobic phosphorylation and the electron acceptor, cytochrome C or diferric transferrin. The level of ATP on PM correlated with the degree of expression of the nuclear oncogene c-myc in the same target cells. Adriamycin totally suppressed the biosynthesis of ATP on PM and simultaneously inhibited the expression of c-myc. The ATP synthesized on PM is suggested to be involved in transduction of the proliferative or growth signal to the cell nucleus. |
| Effects of recombinant human transforming growth factor-beta 1 or/and interleukin-6 on growth inhibition and proto-oncogene c-myc expression in human leukemia cells. | OBJECTIVE: To examine the effect of recombinant human transforming growth factor-beta 1 (rhTGF-beta 1) alone or recombinant human interleukin 6 (rhIL-6) alone or in combination on proliferation inhibition of the human leukaemia cell line. METHODS: In the present study, using the human monoblastic cell line (U937) and human promyelocytic cell line (HL60) as an in vitro model, we analyzed the effect of two cytokins on proliferation inhibition with rate of 3H-TdR incorporation, the cellular content of DNA, DNA indices, the cell cycle and the expression of c-myc mRNA. RESULTS: With administration of rhTGF-beta 1 and rhIL-6, U937 cell growth was inhibited and the rate of 3H-TdR incorporation inhibition was increased. There was a decrease in the cellular content of DNA and DNA indices. And no change in the cell cycle was observed after administration of rhTGF-beta 1 or rhIL-6. However, there was an increase in G0/G1 phase cells and a decrease in G2M + S phase cells after administration of combination of rhTGF-beta 1 and rhIL-6. It was also found that rhIL-6 could inhibit proliferative responses of HL60 cells, meanwhile the inhibition could be enhanced by rhTGF-beta 1. The rate of 3H-TdR incorporation inhibition rose up to 39.89%, and DNA index fell to 1.00 following induction by rhIL-6 plus rhTGF-beta 1. Furthermore, G0/G1 phase cells increased while G2M + S cells decreased. CONCLUSIONS: These results suggest that combination of rhTGF-beta 1 and rhIL-6 acted in synergy to inhibit proliferation of both U937 and HL60 cell lines. Molecular hybridization test show that rhTGF-beta 1 alone, rhIL-6 alone or rhTGF-beta 1 and rhIL-6 in combination can inhibit U937 and HL60 cells expression of c-myc mRNA in a time and dose dependent manner. rhTGF-beta 1 and rhIL-6 in combination synergistically inhibited c-myc expression, which may be one of the machanisms for the actions of the two cytokines. |
| Increased C-MYC oncogene copy number detected with combined modified comparative genomic hybridization and FISH analysis in a Richter syndrome case with complex karyotype. | Modified comparative genomic hybridization (mCGH) was performed in a Richter syndrome case with a complex karyotype to identify and map gains of DNA sequences with possible importance in the pathogenesis and progression of the tumor. The mCGH analysis revealed a more intense signal on part of the long arm of one pair of chromosomes belonging to group C. The G-banding study showed that the increased DNA-sequence copy number originated from the 8q22-->qter chromosomal region. This increase was confirmed by performing a fluorescence in situ hybridization analysis on tumor metaphases by first using a chromosome 8-specific library and subsequently a C-MYC probe, which revealed positive staining on six different regions located on six different chromosomes, each one bearing a single copy of the C-MYC oncogene. These results show the existence of C-MYC oncogene copy-number increases and confirm the usefulness of mCGH in the genetic analysis of malignancies. |
| Overexpression of the c-myc proto-oncogene in colorectal carcinoma is associated with a reduced mortality that is abrogated by point mutation of the p53 tumor suppressor gene. | The survival of 119 colorectal cancer patients was analyzed in the light of the overexpression status of the c-myc proto-oncogene mRNA and the point mutation status of the p53 tumor suppressor gene in the primary adenocarcinoma. The presence of >3 fold overexpression of c-myc mRNA in the primary tumor was found to be associated with a better prognosis than patients who evinced no overexpression (P = 0.02, log rank analysis). Point mutation of the p53 tumor suppressor gene was found to be associated with a poorer patient prognosis (P = 0.007, log rank analysis). Endogenous levels of c-myc and point mutation of p53 both contributed independently toward a poorer patient prognosis in Cox regression modeling. The better prognosis seen in patients who overexpress c-myc was offset when c-myc overexpression was coupled with a point mutated p53 gene. These results suggest that in colorectal adenocarcinoma c-myc deregulation leads to increased apoptotic death, but that this response may be modulated by a more downstream event such as point mutation of the p53 gene. |
| Zinc finger protein GFI-1 has low oncogenic potential but cooperates strongly with pim and myc genes in T-cell lymphomagenesis. | The gfi-1 gene encodes a zinc finger containing protein that is specifically expressed in T-lymphocytes and is a frequent target of proviral insertion in T-cell lymphoma provoked by infection with MoMuLV--a non acute transforming retrovirus. expression of a gfi-1 transgene targeted to T-cells by the lck proximal promoter provokes a reduction of peripheral CD4 and CD8 positive T-cells but nevertheless weakly predisposes transgenic animals for the development of T-cell lymphoma. Forced coexpression of the serine/threonine kinase Pim-1 can partially restore normal T-cell numbers in double pim-1/gfi-1 transgenic mice. Moreover, the combinatorial expression of Pim-1 and Gfi-1 leads to accelerated development of T-cell lymphoma with a mean latency period of 114 days. A similar accelerated rate of lymphoma development was observed when lck-gfi-1 mice were crossed with mice that carry a L-myc gene targeted to be expressed at high levels in T-cells. The results show that gfi-1 can act with low activity as a dominant oncogene when overexpressed but also demonstrate that it is most efficient only in the presence of a cooperative partner protein as for example Pim-1 or L-Myc. In addition, the results suggest that Pim-1 and Gfi-1 are acting synergistically in both T-cell lymphomagenesis and T-cell development. |
| Modulation of the proteolytic balance plasminogen activator/plasminogen activator inhibitor by enhanced N-myc oncogene expression or application of genistein. | The aim of this study was to determine whether enhanced expression of N-myc in a neuroblastoma cell line affects the balance of plasminogen activator/plasminogen activator inhibitor (PA/PAI), a shift towards proteolysis having been observed in other malignant tissues. Two transfected neuroblastoma cell lines with (WAC2 cells) or without (SH-EP007 cells) enhanced expression of the N-myc oncogene were examined by zymography and RNA extraction to determine UPA and PAI enzyme activity and uPA RNA and PAI RNA expression, respectively. The effect of genistein, an inhibitor of tyrosine protein kinase, on uPA/PAI was also investigated. Both the uPA/PAI-1 ratio at mRNA level and the PA/PAI ratio at protein activity level were higher in the more malignant, WAC2 cell line. Genistein attenuated uPA activity and stimulated PAI activity in both cell lines, leading to a decrease in the PA/PAI ratio. This effect was more pronounced in the more malignant, WAC2 cell line. |
| S allele of L-MYC oncogene is associated with metastatic lung cancer in patients from Moldova. | The aim of this study was to determine whether enhanced expression of N-myc in a neuroblastoma cell line affects the balance of plasminogen activator/plasminogen activator inhibitor (PA/PAI), a shift towards proteolysis having been observed in other malignant tissues. Two transfected neuroblastoma cell lines with (WAC2 cells) or without (SH-EP007 cells) enhanced expression of the N-myc oncogene were examined by zymography and RNA extraction to determine UPA and PAI enzyme activity and uPA RNA and PAI RNA expression, respectively. The effect of genistein, an inhibitor of tyrosine protein kinase, on uPA/PAI was also investigated. Both the uPA/PAI-1 ratio at mRNA level and the PA/PAI ratio at protein activity level were higher in the more malignant, WAC2 cell line. Genistein attenuated uPA activity and stimulated PAI activity in both cell lines, leading to a decrease in the PA/PAI ratio. This effect was more pronounced in the more malignant, WAC2 cell line. |
| The proto-oncogene c-myc and apoptosis. | Deregulated expression of c-Myc not only promotes proliferation, but also can either induce or sensitize cells to apoptosis. Inappropriate expression of c-Myc under conditions which inhibit growth and down-regulate endogenous c-Myc expression, including serum deprivation and exposure to cytotoxic agents including the anticancer agents vinblastine, etoposide, Ara-C, and nocodazole, usually results in programmed cell death in many different cell types. Also, inappropriate Myc expression is associated with an apoptotic response elicited by induction of differentiation. The proapoptotic property of c-Myc requires an intact N-terminal transactivation domain and bHLHZip domain, as well as interaction with Max, thereby implicating c-Myc target genes in this apoptotic process. Although some target genes, namely cdc25A and ODC, have been shown to participate in Myc-mediated apoptosis, no target gene has yet been identified which is essential for this apoptotic response. It is possible that the response of cells inappropriately expressing c-Myc is due not only to the growth arrest signals per se, but also to signals elicited by specific growth inhibitors in the context of a particular biological setting. Also regulating the response of the cells is expression of other oncogenes and tumor suppressor genes, as well as paracrine and autocrine survival factors. Apoptosis associated with inappropriate Myc expression limits the tumorigenic effect of the c-myc proto-oncogene. Mechanisms which inhibit apoptosis should enhance or promote tumorigenesis. |
| Infrequent presence of anti-c-Myc antibodies and absence of c-Myc oncoprotein in sera from lung cancer patients. | To clarify the host immune response and explore a new serological marker of lung cancer, we examined serum c-Myc antigens and auto-antibodies against c-Myc in 68 lung cancer patients and 30 healthy volunteers using bacterially synthesized glutathione S-transferase c-Myc fusion proteins and immunoblotting. The detection rate of anti-c-Myc antibodies was 13.2% (9/68) in lung cancer patients and 3.3% (1/30) in healthy volunteers. These anti-c-Myc antibodies were directed toward exon 2 alone (4/68), exon 3 alone (1/68), and both exon 2 and exon 3 (4/68) of c-Myc. Circulating c-Myc antigen was not detected in any individuals with lung cancer and normal controls. Age, sex, performance status, histology, stage, smoking history, and prior treatment of the patients with and without anti-c-Myc antibodies were not significantly different. The low incidence of anti-c-Myc antibodies and c-Myc antigens in peripheral blood suggests that these examinations are not useful in the serological diagnosis of lung cancer. |
| EGF promotes development of a differentiated trophoblast phenotype having c-myc and junB proto-oncogene activation. | Human placental cytotrophoblast cells differentiate by a process of fusion into a syncytium. This process is stimulated by EGF but also occurs spontaneously at a slower rate in cultured cytotrophoblast cells. To determine nuclear proto-oncogene changes mediating these events, c-myc, c-fos, c-jun and junB were measured in spontaneously differentiating cells and in cells exposed to EGF. c-myc showed a transient rise in expression at 4-8 h with augmented expression by EGF, occurring even in the absence of serum or attachment. c-myc and c-jun declined during culture, but c-fos and particularly junB showed increased expression by day 3 with marked responses to EGF stimulation. Syncytia induced to form by EGF exposure for 48 h demonstrated marked junB expression after rechallenge with 40 min EGF exposure, but negligible responses of c-fos and c-jun. c-myc showed increased expression after 6 h EGF exposure throughout the culture period and in syncytia. The results indicate EGF promotes a syncytial phenotype characterized by c-fos and junB expression during syncytial formation. EGF continues to elicit junB and c-myc responsiveness in more mature syncytium, indicative of continued EGF actions which may include acting as a survival factor, as an hCG secretagogue, and as an inducer of continued development of the syncytium. |