| Gene information | Literature | Expression | lncRNA | Mutation | Homolog |
Basic Information | |
|---|---|
Gene ID | 596 |
Name | BCL2 |
Synonymous | B-cell CLL/lymphoma 2;BCL2;B-cell CLL/lymphoma 2 |
Definition | apoptosis regulator Bcl-2|protein phosphatase 1, regulatory subunit 50 |
Position | 18q21.3 |
Gene type | protein-coding |
Title | Abstract |
| Expression of bcl-2, p53 oncoprotein, and proliferating cell nuclear antigen in renal cell carcinoma. | OBJECTIVES: This study was designed to examine the immunohistochemical expression of bcl-2, p53, and proliferating cell nuclear antigen (PCNA) and the relation of this expression to clinicopathological characteristics and prognosis in renal cell carcinoma (RCC). METHODS: The expression of bcl-2, p53 protein, and PCNA was studied by immunohistochemical methods in paraffin-embedded nephrectomy specimens from 53 patients whose clinicopathological data had already become clear. RESULTS: The expression of the bcl-2 protein was recognized in 34 cases (64%); the expression of the p53 protein, however, was seen in only 1 case. Bcl-2 positivity was not associated with any pathological parameters or prognosis. If the percentage of PCNA-positive cancer cells as compared to the total amount of cancer cells was defined as a labeling index (LI), a high PCNA LI number correlated significantly with a high T category, high grade, venous invasion, and shortened survival. Among the conventional pathological parameters, the T category, nuclear grade, and venous invasion had the most significant effect on prognosis. A multivariate analysis in the parameters of PCNA, T category, nuclear grade, and venous invasion demonstrated that only nuclear grade had a significant effect on prognosis. CONCLUSIONS: The inhibitory effect of the bcl-2 gene on apoptosis related to tumor development is not clear, and the expression of the p53 protein is uncommon in RCC. PCNA seems to be a good objective and quantitative marker of the biological malignant potential in RCC, although the assessment of malignant potential in combination with conventional pathological parameters is indispensable. |
| [Epstein-Barr virus infection and the expression of bcl-2 proto-oncogene in Hodgkin s disease]. | OBJECTIVE: To investigate the relationship between Epstein-Barr virus (EBV) and bcl-2 gene. METHODS: Sixty-four paraffin-embeded cases of Hodgkin s disease (HD) were studied. Immunohistochemistry was performed by using monoclonal antibody to latent membrane protein 1 (LMP-1) and bcl-2. In situ hybridization for EBV encoded small mRNA-EBER on 41 cases. Double staining combined in situ hybridization and immunohistochemistry was performed for dual labelling of EBER and bcl-2 in seven cases. RESULTS: The positive rates of LMP-1 and EBER were 39% and 44%. ALL cases which were EBER positive, also express LMP-1. The positive rate of bcl-2 protein was 23%. Only seven of these cases were also LMP-1 positive. CONCLUSION: ALL the results suggest that the bcl-2 expression in the R-S cells in this series did not correlate with EBV-positivity. |
| Prognostic significance of Bcl-2 in Wilms tumor and oncogenic potential of Bcl-X(L) in rare tumor cases. | Anaplastic Wilms tumors are commonly believed to be rare forms of progression, driven by p53 mutations, of the more common classical Wilms tumor or nephroblastoma Contrary to classical Wilms tumors, anaplastic tumors traditionally tend to metastasize, to be drug-resistant and to have a poor prognosis. The Bcl-2 gene product protects cells from programmed cell death, and its over-expression has been proposed to be tumorigenic and to mediate resistance to therapy. Because Bcl-2 has been reported to be transcriptionally repressed by p53, using immuno-histochemistry and mRNA analyses, we have examined Bcl-2 expression in a panel of 10 classical and 3 anaplastic nephroblastomas in which the p53 status had been previously analyzed. We found that classical Wilms tumors expressed significant amounts of Bcl-2 mRNA and protein, whereas anaplastic tumors did not, regardless of p53 mutations. However, because mortality occurred both among patients with classical and among those with anaplastic tumors, which had divergent Bcl-2 expression, analysis of variance failed to demonstrate prognostic Bcl-2 significance. Therefore, we examined the expression of the Bcl-X and Bax genes, which are known to synergize and antagonize Bcl-2, respectively. With the exception of anaplastic tumor W17, the monotony of Bcl-X and Bax mRNA levels did not suggest that the expression of these apoptosis-regulating genes could have a role in the prognosis of nephroblastoma. In addition to the standard 2.7-kb Bcl-X(L) mRNA, W17 expressed a 3.5-kb mRNA species which had the same coding capacity for Bcl-X(L) as the 2.7-kb mRNA. Western analysis demonstrated that W17 had the highest level of Bcl-X(L) protein, suggesting that Bcl-X(L) over-expression could play a part in the development of anaplasia in rare Wilms tumor cases without affecting prognosis. |
| Protection against hydrogen peroxide cytotoxicity in rat-1 fibroblasts provided by the oncoprotein Bcl-2: maintenance of calcium homoeostasis is secondary to the effect of Bcl-2 on cellular glutathione. | The oncoprotein Bcl-2 protects cells against apoptosis, but the exact molecular mechanism that underlies this function has not yet been identified. Studying H2O2-induced cell injury in Rat-1 fibroblast cells, we observed that Bcl-2 had a protective effect against the increase in cytosolic calcium concentration and subsequent cell death. Furthermore, overexpression of Bcl-2 resulted in an alteration of cellular glutathione status: the total amount of cellular glutathione was increased by about 60% and the redox potential of the cellular glutathione pool was maintained in a more reduced state during H2O2 exposure compared with non-Bcl-2-expressing controls. In our cytotoxicity model, disruption of cellular glutathione homoeostasis closely correlated with the pathological elevation of cytosolic calcium concentration. Stabilization of the glutathione pool by Bcl-2, N-acetylcysteine or glucose delayed the cytosolic calcium increase and subsequent cell death, whereas depletion of glutathione by dl-buthionine-(S, R)-sulphoximine, sensitized Bcl-2-transfected cells towards cytosolic calcium increase and cell death. We therefore suggest that the protection exerted by Bcl-2 against H2O2-induced cytosolic calcium elevation and subsequent cell death is secondary to its effect on the cellular glutathione metabolism. |
| Epstein-Barr virus encodes a novel homolog of the bcl-2 oncogene that inhibits apoptosis and associates with Bax and Bak. | The sequenced gammaherpesviruses each contain a single viral bcl-2 homolog (v-bcl-2) which may encode a protein that functions in preventing the apoptotic death of virus-infected cells. Epstein-Barr virus (EBV), a gammaherpesvirus associated with several lymphoid and epithelial malignancies, encodes the v-Bcl-2 homolog BHRF1. In this report the previously uncharacterized BALF1 open reading frame in EBV is identified as having significant sequence similarity to other v-bcl-2 homologs and cellular bcl-2. Transfection of cells with a BALF1 cDNA conferred apoptosis resistance. Furthermore, a recombinant green fluorescent protein-BALF1 fusion protein suppressed apoptosis and associated with Bax and Bak. These results indicate that EBV encodes a second functional v-bcl-2. |
| Expression of oncoprotein Bcl-2 and bax protein in the infiltration zone and in the parenchyma of primary glia-derived supratentorial neoplasms. | The aim of the study was to determine the survival of cells in the infiltration zone of the glia-derived primary tumors of the central nervous system and in the core of the tumor tissue with the use of immunocytochemical methods. According to the recent studies the proper functional relation of bcl-2 and bax proteins may play a major role in one of the possible pathways leading to cell survival or to cell death. From the point of view of the biological activity of a tumour the evaluation of cell population demonstrating the ability for survival is of importance for predicting tumour recurrence. We found that in the infiltration zone neurocytes and reactive glial cells had a strong expression of bcl-2 and weak expression of bax protein. Thus, we have concluded that the use of bcl-2 and bax can be a useful tool in the evaluation of survival activity of non-neoplastic cells in the infiltration zone and of the neoplastic cells within the tumour core. The latter cell populations can be regarded as germs responsible for tumour recurrence. |
| Apoptosis and bcl-2 oncogene expression in Wilms tumor. | Wilms tumor (WT) usually has a good outcome, although a poor prognosis is often related to more advanced stages and anaplastic features. Apoptosis occurs with variable frequency in malignant tumors, and may have a role in reducing their growth rate. The bcl-2 proto-oncogene inhibits apoptosis, and the consequent increase in the number of cells may play a role in the development of tumors. The aim of this study was to analyze the role of apoptosis and bcl-2 expression in WT. Twenty-six resected WT specimens were studied; 12 patients had stage I tumor, 4 stage II, 5 stage III, 3 stage IV, and 2 stage V. Twenty-three tumors were classified as favorable histology (FH) and 3 as unfavorable (UH). The mean follow-up was 34 months; 22 patients were alive and 4 were dead (2 with FH: 1 stage III and 1 stage IV, and 2 with UH stages 4). Apoptosis was detected by the in-situ end-labelling technique; bcl-2 expression was detected by immunohistochemistry. An apoptotic index (AI) was calculated as the ratio of apoptotic to normal cells in each specimen. The AI was lower in higher tumor stages, with a significant difference between stages I and IV (P < 0.05). In cases with UH, Al was lower than in tumors with FH (P < 0.01). The AI was also lower in patients who died than in those who survived (P < 0. 01). In ALL specimens no correlation between AI and bcl-2 expression was observed. Progression to advanced stages of WT and a poor prognosis f anaplastic tumors may be linked with disruption of the mechanisms that control apoptosis. Bcl-2 does not play a role as a regulator of apoptosis in WT, other oncogenes and tumor-suppression genes may be more involved in inhibiting apoptosis in WT. |
| WT1 modulates apoptosis by transcriptionally upregulating the bcl-2 proto-oncogene. | The Wilms tumor suppressor gene, WT1, encodes a zinc finger transcription factor that has been demonstrated to negatively regulate several growth factor and cognate receptor genes. However, inconsistent with its tumor suppressor function, WT1 has also been demonstrated to be required to inhibit programmed cell death in vitro and in vivo. Moreover, anaplastic Wilms tumors, which typically express wild-type WT1, display extreme resistance to chemotherapeutic agents that kill tumor cells through the induction of apoptosis. Although p53 mutations in anaplastic Wilms tumors have been associated with chemoresistance, this event is believed to occur late during tumor progression. Therefore, since dysregulated WT1 expression occurs relatively early in Wilms tumors, we hypothesized that WT1 was required to transcriptionally upregulate genes that provide a cell survival advantage to tumor cells. Here we demonstrate that sporadic Wilms tumors coexpress WT1 and the anti-apoptotic Bcl-2 protein. Using rhabdoid cell lines overexpressing WT1, we show that WT1 activates the endogenous bcl-2 gene through a transcriptional mechanism. Transient transfections and electromobility shift assays demonstrate that WT1 positively stimulates the bcl-2 promoter through a direct interaction. Moreover, WT1 expressing cells displaying upregulated Bcl-2 were found to be resistant to apoptosis induced by staurosporine, vincristine and doxorubicine. These data suggest that in certain cellular contexts, WT1 exhibits oncogenic potential through the transcriptional upregulation of anti-apoptotic genes such as bcl-2. |
| The immunohistochemical expression of BCL-2 oncoprotein in colorectal adenocarcinoma. | The immunoreactivity for bcl-2 oncoprotein was determined in tumor tissue samples from 40 patients with colorectal adenocarcinoma. Positive immunoreactivity for bcl-2 oncoprotein was seen in 14 of the 40 tumor tissue samples (35%) and was found to be associated with a significantly higher incidence of synchronous liver metastasis (P = 0.043); however, there was no correlation between the immunoreactivity for bcl-2 oncoprotein and tumor size, depth of tumor invasion, lymph node metastasis, or clinical stage of the disease. Among 33 patients who had undergone curative resection, disease-free survival did not differ significantly between 10 with bcl-2-positive tumors and 23 with bcl-2-negative tumors (P = 0.498). The present study showed that the positive immunohistochemical expression of bcl-2 oncoprotein was associated with a significantly higher incidence of liver metastasis from colorectal cancer, but it had no effect on the disease-free survival of patients who had undergone curative resection. |
| Expression of beta-amyloid precursor and Bcl-2 proto-oncogene proteins in rat retinas after intravitreal injection of aminoadipic acid. | In order to investigate the role of glia in relation to factors that affect the expression of beta-amyloid precursor protein (betaAPP) and B cell lymphoma oncogene protein (Bcl-2) in the central nervous tissue, the patterns of expression of betaAPP and Bcl-2 in developing and mature rat retinas were studied immunocytochemically after intravitreal injection of alpha-aminoadipic acid (alpha-AAA), a glutamate analogue and gliotoxin that is known to cause injury of retinal Muller glial cells. In normal developing retinas, betaAPP and Bcl-2 were expressed primarily but transiently in a small number of neurons in the ganglion cell layer during the first postnatal week. Immunoreactivity of betaAPP and Bcl-2 appeared in the endfeet and proximal part of the radial processes of Muller glial cells from the second postnatal week onwards. In rats that received intravitreal injection of alpha-AAA at birth, there was a loss of immunoreactivity to vimentin, and a delayed expressed on betaAPP or Bcl-2 in Muller glial cells until 3-5 weeks post-injection. Immunoreactive neurons were also observed in the inner retina especially in the ganglion cell layer from 5 to 35 days after injection. A significant reduction in numerical density of cells with large somata in the ganglion cell layer was observed in the neonatally injected retinas at P56, which was accompanied by an increased immunostaining in radial processes of Muller glial cells. In contrast, no detectable changes in the expression of betaAPP and Bcl-2 were observed in retina that received alpha-AAA as adults. These results indicate that the gliotoxin alpha-AAA has long lasting effects on the expression of betaAPP and Bcl-2 in Muller glial cells as well as neurons in the developing but not mature retinas. The loss of vimentin and delayed expression of betaAPP and Bcl-2 in developing Muller glial cells suggests that the metabolic integrity of Muller cells was temporarily compromised, which may have adverse effects on developing neurons that are vulnerable or dependent on trophic support from the Muller glial cells. |
| Coexistence of malignant melanoma, Hodgkin s disease and follicular lymphoma with expression of the B-cell leukaemia/lymphoma (bcl-2) oncogene. | Alveolar rhabdomyosarcoma is an aggressive pediatric cancer of striated muscle characterized in 60% of cases by a t(2;13)(q35;q14). This results in the fusion of PAX3, a developmental transcription factor required for limb myogenesis, with FKHR, a member of the forkhead family of transcription factors. The resultant PAX3-FKHR gene possesses transforming properties; however, the effects of this chimeric oncogene on gene expression are largely unknown. To investigate the actions of these transcription factors, both Pax3 and PAX3-FKHR were introduced into NIH 3T3 cells, and the resultant gene expression changes were analyzed with a murine cDNA microarray containing 2,225 elements. We found that PAX3-FKHR but not PAX3 activated a myogenic transcription program including the induction of transcription factors MyoD, Myogenin, Six1, and Slug as well as a battery of genes involved in several aspects of muscle function. Notable among this group were the growth factor gene Igf2 and its binding protein Igfbp5. Relevance of this model was suggested by verification that three of these genes (IGFBP5, HSIX1, and Slug) were also expressed in alveolar rhabdomyosarcoma cell lines. This study utilizes cDNA microarrays to elucidate the pattern of gene expression induced by an oncogenic transcription factor and demonstrates the profound myogenic properties of PAX3-FKHR in NIH 3T3 cells. |
| Correlation of bcl-2 oncoprotein immunohistochemical expression with proliferation index and histopathologic parameters in colorectal neoplasia. | Thebcl-2oncogene plays an important role in carcinogenesis by inhibiting cell death (apoptosis). It was initially discovered in follicular B cell lymphoma with t(14,18), and subsequently found in other malignant and premalignant lesions. Alteration of the normal controls of cell proliferation is also a significant factor in the multistep process of tumorigenesis. The proliferative activity of a given lesion is commonly valuated by MIB1, a monoclonal antibody to Ki67 proliferation antigen. Immuno-histochemical (IHC) staining expression of bcl-2 and Ki67 was retrospectively investigated in a series of 52 colorectal carcinomas and 56 adenomas according to the avidin-biotin-complex method. The aim of the study was twofold: 1) to investigate any correlation between MIB1 and bcl-2 immunostaining expression in colonic adenomas and carcinomas, 2) to identify any relationship between either marker and several histopathologic parameters including tumor size, pathologic stage, lymph node metastasis, angio-lymphatic invasion, tumor grade and differentiation in colon carcinomas. Bcl-2 was consistently higher in adenomas than in carcinomas. There were 44/56 (78.6%) adenomas, and 27/52 (51.9%) carcinomas positive for bcl-2 (p=0.004). The mean Ki67 labeling index (LI) was 30.05+/-7.6 and 38.12+/-11.01 in adenomas and carcinomas, respectively (p=0.0001). expression of bcl-2 in carcinoma was significantly associated with a lower mean Ki67 LI and with favorable histopathologic parameters. We conclude that bcl-2 oncoprotein expression is probably an early step in the process of colon carcinogenesis, and its expression may be associated with a favorable clinical course. Furthermore, an inverse relationship exists between bcl-2 and Ki67 in colonic neoplasia. Evaluation of bcl-2 and Ki67 IHC expression in colonic carcinoma should be performed prospectively to determine if their expression is of value in predicting the clinical course in these patients. |
| Differential expression of beta-amyloid precursor and Bcl-2 proto-oncogene proteins in the developing dog retina. | Previous studies of rat retinas have not only provided evidence that beta-amyloid precursor (APP) and B-cell lymphoma proto-oncogene (Bcl-2) proteins are colocalized in retinal Muller glial cells, but have also indicated that common mechanisms regulate their expression in these cells (Chen, S.T., Garey, L.J., Jen, L.S., 1994. Bcl-2 proto-oncogene protein immunoreactivity in normally developing and axotomised rat retinas. Neurosci. Lett. 172, 11 14; Chen, S.T., Gentleman, S.M., Garey, L.J., Jen, L.S., 1996. Distribution of beta-amyloid precursor and B-cell lymphoma proto-oncogene proteins in the rat retina after optic nerve transection or vascular lesion. J. Neuropathol. Exp. Neurol. 55, 1073-1082; Chen, S.T., Garey, L.J., Jen, L.S., 1997. expression of beta-amyloid precursor protein immunoreactivity in the retina of the rat during normal development and after neonatal optic tract lesion. NeuroReport 8, 713-717). This investigation attempts to resolve whether or not the pattern observed in rats also applies to other higher mammalian species by examining the expression of immunoreactivity to APP and Bcl-2 in developing as well as mature dog retinas using immunocytochemical methods. Experimental results indicate that the immunoreactivity of both APP and Bcl-2 is located primarily in the inner retina, particularly in the ganglion cells and their axons in late fetal and neonatal stages. From the second postnatal week (the time of eye opening) onwards, immunoreactivity to APP, but not Bcl-2, is localized primarily in the endfeet and proximal part of the radial process of retinal Muller glial cells. Although the findings show both APP and Bcl-2 are expressed in ganglion cells and their processes suggest that the molecules have a role in the differentiation of neurons in the central nervous tissue, the lack of Bcl-2 in the Muller glial cells in dog retinas further suggests that the two molecules may have different biological roles with respect to glial function. |
| Bcl-2 proto-oncogene expression in low- and high-grade prostatic intraepithelial neoplasia. | OBJECTIVE: To determine the incidence of bcl-2 protein expression in low- and high-grade prostatic intra-epithelial neoplasia (PIN) lesions, and to explore the role of bcl-2 in prostatic tumorigenesis. Materials and methods Immunoreactivity for bcl-2 was examined in 10 samples of benign prostatic hyperplasia (BPH), 13 of primary prostatic adenocarcinoma, 15 of high-grade PIN and 18 of low-grade PIN. ALL immunostaining results were scored for the approximate percentage of positive tumour cells and relative immunostaining intensity (score range 0-12). RESULTS: In ALL BPH samples, bcl-2 staining was detected consistently in the basal cell layer of the ducts and acini, but no staining was ever apparent in luminal cells. The immunoreactivity for bcl-2 was heterogeneous in the prostatic carcinomas and bcl-2 protein expression was present in six samples. In these six bcl-2-positive tumours, the mean (range) staining score was 1.15 (1-6). There was detectable expression of bcl-2 in low- and high-grade PIN in ALL cell layers; immunoreactivity was present in 10 of 15 high-grade PIN lesions, with a mean (range) score of 1.14 (1-4), and in 12 of 18 samples of low-grade PIN, with a mean (range) score of 1.77 (1-6). CONCLUSIONS: The high incidence of bcl-2 protein expression in low- and high-grade PIN lesions suggests that bcl-2 protein expression is associated with early prostate tumorigenesis. |
| Expression of bcl-2 oncoprotein in Indian oral cell carcinomas. | OBJECTIVE: To determine the incidence of bcl-2 protein expression in low- and high-grade prostatic intra-epithelial neoplasia (PIN) lesions, and to explore the role of bcl-2 in prostatic tumorigenesis. Materials and methods Immunoreactivity for bcl-2 was examined in 10 samples of benign prostatic hyperplasia (BPH), 13 of primary prostatic adenocarcinoma, 15 of high-grade PIN and 18 of low-grade PIN. ALL immunostaining results were scored for the approximate percentage of positive tumour cells and relative immunostaining intensity (score range 0-12). RESULTS: In ALL BPH samples, bcl-2 staining was detected consistently in the basal cell layer of the ducts and acini, but no staining was ever apparent in luminal cells. The immunoreactivity for bcl-2 was heterogeneous in the prostatic carcinomas and bcl-2 protein expression was present in six samples. In these six bcl-2-positive tumours, the mean (range) staining score was 1.15 (1-6). There was detectable expression of bcl-2 in low- and high-grade PIN in ALL cell layers; immunoreactivity was present in 10 of 15 high-grade PIN lesions, with a mean (range) score of 1.14 (1-4), and in 12 of 18 samples of low-grade PIN, with a mean (range) score of 1.77 (1-6). CONCLUSIONS: The high incidence of bcl-2 protein expression in low- and high-grade PIN lesions suggests that bcl-2 protein expression is associated with early prostate tumorigenesis. |
| Bcl-2 oncogene (B cell lymphoma/leukemia-2) levels correlate with systemic lupus erythematosus disease activity. | OBJECTIVE: Bcl-2 translocation or overexpression is found in many types of malignancy, possibly through alteration of the apoptosis mechanism. It has also been suggested that similar apoptotic alterations may be important in the pathogenesis of systemic lupus erythematosus (SLE). It is believed that a process of apoptosis at the stage of maturation or differentiation of lymphocytes may be related to the beginning of an autoimmune event, due to the non-elimination of autoreactive lymphocytes. The aim of this study is to test bcl-2 antigen expression in human SLE peripheral blood and to analyze its relationship with disease activity. MATERIALS AND METHODS: Serum levels of bcl-2 were studied by enzyme-linked immunoabsorbent assay in whole blood samples in 68 patients with SLE and its correlation with disease activity according to SLE disease activity index (SLEDAI). RESULTS: No significant differences were found in bcl-2 levels between ALL SLE patients and controls. We observed increased levels of bcl-2 in active SLE patients in relation to inactive (p = 0.0003) and controls (p = 0.02). Our results show a significant correlation between bcl-2 levels and SLEDAI values (R = 0.46, P < 0.001). CONCLUSIONS: These results suggest that bcl-2 levels are related to disease activity and that this protein may play a role in the pathogenesis of SLE. |
| [Expression of the bcl-2 and bax oncoprotein in TCC and its clinical significances]. | To investigate the role of bcl-2 (an apoptosis suppressing oncogene) and bax (an apoptosis accelerating oncogene) in the development of TCC. We investigated bcl-2 and bax expression by means of immunohistochemical technique in 34 cases of TCC and in 9 cases of normal bladder tissue. Bcl-2 was positive in 44.44% of normal bladder tissue and in 82.35% of TCC. Bcl-2 staining intensity was significantly stronger in TCC than that in normal bladder tissue. Intensity and positivity of bcl-2 also increased with increasing grades of TCC. Bax was positive in 88.89% of normal bladder tissue and in 52.94% of TCC. Bax staining intensity was significantly weaker in TCC than that in the normal bladder tissue. These results suggested that increased expression of bcl-2 and decreased expression of bax in TCC play an important role in the development of TCC. |
| Expression of BCL-2 oncoprotein on tumor cells and tumor-infiltrating lymphocytes (TIL) in meningiomas. | The expression of the antiapoptotic oncoprotein BCL-2 and its correlation to tumor grade in 62 meningiomas (48 classic, 9 atypical, and 5 anaplastic) using single and double immunohistochemistry was investigated. BCL-2 expression was found in two different cell populations identified as lymphocytes (BCL-2+CD3+) and tumor cells (BCL+/CD3-). tumor-infiltrating lymphocytes (TIL) (CD3+) were found within classic (9.5% of cells), atypical (2.4% of cells), and anaplastic (1.8% of cells) meningiomas. In classic meningiomas, 66.5% of TIL were BCL-2-positive, in atypical meningiomas 79.2%, and in anaplastic meningiomas 37.9%. In 33 (68.8%) of the classic meningiomas, medium to high counts of BCL-2+ tumor cells were detected. Atypical meningiomas showed nearly equal percentages of high (two patients), medium (five patients), and low (two patients) BCL-2+ tumor cell counts, whereas anaplastic meningiomas showed only medium (two patients) and low (three patients) BCL-2 tumor cell counts or were BCL-2-negative (one patient). In summary, a significant inverse correlation between the number of BCL-2-positive tumor cells and tumor grade in meningiomas was found. These findings support the hypothesis of cell survival prolongation by the antiapoptotic ability of BCL-2 proto-oncogenes and demonstrate the prognostic relevance of BCL-2 immunoreactivity in meningiomas. |
| 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. |
| The patterns of expression of an apoptosis-related CK18 neoepitope, the bcl-2 proto-oncogene, and the Ki67 proliferation marker in normal, hyperplastic, and malignant endometrium. | expression of a neoepitope on cytokeratin 18, recognized by the monoclonal antibody M30, is an early indicator of apoptosis in epithelial cells. The aim of this study was to determine the equilibrium between apoptosis (M30), anti-apoptosis (bcl-2), and proliferation (Ki-67) in different endometrial conditions. Paraffin-embedded samples (n = 107), representing proliferative endometrium (18), secretory endometrium (19), postmenopausal endometrium (15), disordered proliferative endometrium (6), simple hyperplasia (12), complex hyperplasia (8), and endometrial adenocarcinoma (29), were evaluated immunohistochemically. The indirect streptavidin-biotin-horseradish peroxidase technique, with 3-amino-9-ethylcarbazole as the chromogen, was used to visualize the reactions. Proliferative endometrium showed high bcl-2 and Ki-67 expression levels with no M30. In the secretory phase, the balance was tipped in favor of M30 with a decrease of bcl-2 and Ki-67. Postmenopausal endometrium revealed high Ki-67 and bcl-2 expression levels and no M30. In complex hyperplasia, M30, bcl-2, and Ki-67 showed increased expression. In endometrial carcinoma, an increasing reactivity for M30 and Ki-67 was seen as the grade progressed. bcl-2 reacted weakly and only in grade 1 cancer. Immunohistochemistry facilitates the study of the expression of proteins related to cyclic endometrial activity. Interruption of these cyclic events is associated with specific disturbances in the expression patterns of these proteins. |
| Elevated plasma levels of interleukin-1 receptor antagonist are associated with decreased cellular BCL-2 oncoprotein expression in B-chronic lymphocytic leukemia. | Plasma IL-1Ra levels and cellular BCL-2 oncoprotein expression were measured in a total of forty blood samples obtained from twenty-eight B-CLL patients and four healthy subjects. High IL-1Ra plasma levels (as defined by mean + three times standard deviation of normal controls) were observed in eleven samples (ten patients) which showed a significantly decreased cellular expression of BCL-2 protein (14.7 +/- 16.3% of cells as determined by immunofluorescence) when compared to B-CLL samples with no elevated IL-1Ra (BCL-2, 31.0 +/- 18.6%; p < or = 0.0115). Albeit correlational only, our results may encourage further experiments to elucidate potential regulatory effects of IL-1Ra for cellular BCL-2 oncoprotein expression. |
| [Study of bcl-2 oncogene in squamous-cell carcinoma of the larynx]. | Apoptosis is a special type of programmed cell death that occurs in the embryonic period, in normal adult tissues, and in several pathological situations. The Bcl-2 gene (B-cell leukemia/lymphoma) is the first member of an oncogene family whose main function is to increase cell survival and inhibit apoptosis, thus participating in the carcinogenic process. This relationship motivated our study of antiapoptosis through the immunohistochemical expression of Bcl-2 oncogene in 72 patients with cancer of the larynx who underwent surgery in our department. The correlation between immunohistochemical expression and clinical factors was analyzed: age, sex, work, smoking and drinking history, marital status, etc., as well as other known biological and histopathological prognostic factors (tumoral stage, histological grade, neck metastases, and local invasion). Bcl-2 expression showed a statistically significant correlation with histological grade and regional lymph node involvement, but no correlation with the other parameters studied. |
| Theophylline and cisplatin synergize in down regulation of BCL-2 induction of apoptosis in human granulosa cells transformed by a mutated p53 (p53 val135) and Ha-ras oncogene. | Cisplatin is in common use in ovarian cancer therapy, although it is also implicated in cytotoxicity in normal tissue. We have examined the effect of cisplatin alone and in combination with theophylline, a phoshodiesterase inhibitor, on modulation of Bcl-2/Bax expression and induction of apoptosis in human granulosa cells transformed by stable transfection with mutant p53 plus Ha-ras. Theophylline elicited cell death only at relatively high concentrations with an EC50 of 200 microg/ml. Cisplatin exerted its lethal effect with an EC50 of 7 microM. In the presence of 15 or 50 microg/ml of theophylline (in the range used against asthma in humans), the EC50 for cisplatin was reduced to 2 microM or 1.2 microM, respectively. Using fluorescence-activated cell sorting analysis of DNA stained cells and the terminal deoxy-nucleotide tranferase-mediated dUTP nick end-labeling method, we found that even at concentrations of 0. 3 and 1 microM cisplatin, theophylline at 15 and 50 microg/ml increased the incidence of apoptosis in these cells by 3-5-fold, while theophylline alone induced extremely low apoptosis. Neither drug had any measurable effect on Bax protein expression. In contrast Bcl-2 protein expression levels were markedly reduced by theophylline and cisplatin in a dose-dependent manner. The combination of theophylline and cisplatin resulted in a further dramatic reduction in Bcl-2, under-scoring the pronounced synergy of these two drugs. These observations suggest that suppression of Bcl-2 expression may play an important role in mediating the synergistic effect of cisplatin and theophylline on induction of apoptosis in ovarian cancer cells. |
| Bcl-2 proto-oncogene expression in low- and high-grade prostatic intraepithelial neoplasia. | The predictive and prognostic value of the c-K-ras mutation is still unequivocal despite extensive and intensive studies. Investigation of the occurrence of mutations in 88 colorectal cancer patients specimens using the polymerase chain reaction (PCR) is reported: age: 61.9 years (27-80), gender: 48 male, 42 female, Dukes stages: 43 at B, 35 at C, 10 at D, primary of tumour: 52 colon, 36 rectal adenocarcinoma. mutation of one of the three ras-codons was detectable in the 54 cases, more frequently at the Dukes stage C (p < 0.05). The ras-mutation correlated to a more elevated death-rate in the Dukes B and C stages (p < 0.01). Mean survival time and time to progression were significantly longer at the Dukes stage B if mutation was not detected (p < 0.01). The genetic alteration occurred significantly more frequently at tumours of the right-side colon, than the left side (p < 0.02) or rectum (p < 0.05). However, in the age group of 41-50 years, it was more significantly identified in the cases of rectal cancer (p < 0.01). At the age of 51-60 years mutations were detected in men at a higher rate (p < 0.05). The mutation of the codon 13 appeared more frequently in the cases of local recurrences (p < 0.05). The occurrence of the ras-oncogene is a sign of an extremely malignant potential of tumour. This fact manifested itself in the time to progression and mean survival time of patients at the same clinical or pathological stage. The higher frequency of genetic alterations at the proximal colon may be the reason for more unfavourable prognosis of the disease localised to this site. Reconstructing the molecular events, the presence of the ras mutation proved to be an important element for prognosis of the disease and should be a basis of potentially individualised therapeutic intervention. |
| Analysis of the role of conserved cysteine residues in the bcl-2 oncoprotein. | The Bcl-2 oncoprotein is an integral membrane protein localized primarily to the outer membrane of the mitochondria. The precise molecular mechanism responsible for the antiapoptotic action of Bcl-2 remains unknown. Two cysteine residues are found in Bcl-2 and these residues are well-conserved across species. The first cysteine (cys(155)) is located in the alpha5 domain, a region important for the ion channel properties of Bcl-2, while the second cysteine (cys(226)) is located in the carboxyl-terminal membrane anchor domain. In this study, we found that replacement of both cysteines with serine residues generated a mutant protein that retained the ability to homodimerize and heterodimerize with proapoptotic Bax protein in vitro. In whole cells, the mutant protein efficiently heterodimerized with Bax, but exhibited impaired homodimerizationrelative to wild-type Bcl-2. The mutant protein was also less efficient than wild-type Bcl-2 at suppressing caspase activation, DNA fragmentation, and loss of viability during IL-3 withdrawal-induced apoptosis. Together, the data indicate that the cysteine residues in Bcl-2 contribute, but are not absolutely essential, to the ability of Bcl-2 to homodimerize, heterodimerize with Bax, and suppress apoptosis. |
| Triplex forming oligonucleotide targeted to 3 UTR downregulates the expression of the bcl-2 proto-oncogene in HeLa cells. | The bcl-2 proto-oncogene is overexpressed in a variety of human cancers and plays an important role in programmed cell death. Recent reports implied that the 3 -untranslated region (3 UTR) functions effectively in the regulation of gene expression. Here, we attempt to assay the ability of triplex forming oligonucleotides (TFOs) to inhibit expression of a target gene in vivo and to examine the potential of the 3 UTR of the bcl-2 proto-oncogene in the regulation of bcl-2 gene expression. To do this, we have developed a novel cellular system that involves transfection of a Doxycyclin inducible expression plasmid containing the bcl-2 ORF and the 3 UTR together with a TFO targeted to the 3 UTR of the bcl-2 proto-oncogene. Phosphorothioate-modified TFO targeted to the 3 UTR of the bcl-2 gene significantly downregulated the expression of the bcl-2 gene in HeLa cells as demonstrated by western blotting. Our results indicate that blocking the functions of the 3 UTR using the TFO can downregulate the expression of the targeted gene, and suggest that triplex strategy is a promising approach for oligonucleotide-based gene therapy. In addition, triplex-based sequence targeting may provide a useful tool for studying the regulation of gene expression. |
| [Bcl-2 oncoprotein expression in head and neck malignant neoplasm]. | To investigate the expression of the apoptosis-suppressing protein Bcl-2 in head and neck neoplasm and the relationship between Bcl-2 and p53 oncoprotein, 90 malignant tumours and 20 benign diseases were studied with immunohistochemical LSAB(labeled streptavidin biotin) method. The results indicated that 48.9% (44/90) cases of head and neck malignant tumours were Bcl-2 positive, and ALL benign diseases were negative. The expression rate of Bcl-2 in head and neck squamous carcinoma (59.6%) was obviously higher than adenocarcinoma (24.8%), undifferentiated tumour (33.3%) and malignant lymphoma (P < 0.05). The expression rate of Bcl-2 in p53-positive tumours was significantly higher in p53-negative neoplasm. The positive rate of Bcl-2 oncoprotein was not connected with clinical stage and pathological grade. The positive staining intensity was significantly related with clinical stage. This study suggested that Bcl-2 oncoprotein may play an important role in the development of head and neck tumour. |
| p53 and Bcl-2 oncoprotein expression in placentas with hydropic changes and partial and complete moles. | Forty molar and non-molar placentas with hydropic changes (14 complete moles, 14 partial moles, and 12 hydropic non-molar placentas) were examined immunohistochemically for expression of oncoproteins p53 and Bcl-2. The data were evaluated to determine if p53 and Bcl-2 expression could aid in differentiating molar from non-molar pregnancies on the one hand and complete mole from partial mole on the other. Thirteen out of fourteen complete moles showed p53 expression (93%), 8 of the 14 partial moles expressed p53 (57%), and none of the non-molar pregnancies expressed p53 in the extravillous intermediate trophoblasts. Regarding Bcl-2, the syncytiotrophoblasts of most molar and non-molar placentas showed strong and diffuse positivity. These results suggest that p53 expression can be used as a distinguishing parameter between complete moles and placentas with hydropic changes on the one hand and to a lesser extent between partial moles and placentas with hydropic changes on the other hand. Bcl-2 cannot be used in the same way as p53. |
| [Transfection of TF-1 cell line with human bcl-2 proto-oncogene provides short-term survival in absence of GM-CSF without changing the phenotype]. | Apoptosis is a process genetically controlled. The produce of the bcl-2 gene, bcl-2, is an anti apoptotic protein that is linked to the external membrane of the mitochondria. OBJECTIVE: To explore the possibility that bcl-2 transfection could change phenotype, response to mitogenic factor, and cell morphology on the TF-1 parental cell line and the bcl-2 transfectant TB-1 or TF-1neo. METHODS: We look at the expression of CD13, CD34 and c-Kit surface markers by flow cytometry. We have measured cell proliferation in response to GM-CSF and cell survival after GM-CSF withdrawal by the MTT assay on the same cell lines. Apoptosis was evaluated by the apoptotic membrane blebbing set up at different times after serum and survival factor removal or tolerance to cytotoxic compounds from Justicia spicigera. RESULTS: According with our results, ectopic expression of the bcl-2 gene prevented apoptosis without changes in morphology or phenotype in the absence of GM-CSF and serum or the presence of the extract from Justicia spicigera. Consisting with the Bcl-2 function, we found that Bcl-2 did not change response to GM-CSF. Serum deprivation or GM-CSF withdrawal induces cell death at 36 hours in TF-1 and TF-1neo cells, whereas TB-1 cells undergo apoptotic membrane blebbing after 96 hours under the same conditions. CONCLUSIONS: Taken together, our data indicate that Bcl-2 is a short term anti apoptotic protein in TB-1 cell line, that does not affect response to GM-CSF neither CD13, CD34 nor c-Kit antigen expression. |
| Differential regulation of apoptosis in AK-5 tumor cells by the proto-oncogene Bcl-2: presence of Bcl-2 dependent and independent pathways. | The anti-apoptotic protein Bcl-2 functions as a crucial negative regulator of apoptosis. Bcl-2 has been shown to prevent the efflux of apoptogenic factors from mitochondria to cytosol, thus inhibiting cell death. Here, we show the susceptibility of a spontaneously regressing, rat histiocytic tumor cell line, AK-5, to the apoptotic effects of diverse stimuli and the ability of Bcl-2 overexpression to block cell death. Bcl-2 overexpression selectively inhibits apoptosis induced by ceramide and serum factor from AK-5 tumor regressing animals but not actinomycin D and curcumin, whereas the pancaspase inhibitor z-Val-Ala-Asp fluoromethylketone completely blocks apoptosis, irrespective of the inducer used. The ability of Bcl-2 overexpression to block cell death does not depend on its ability to prevent cytochrome c release but correlates with its ability to prevent the dissipation of mitochondrial transmembrane potential. The results demonstrate that there are inducer dependent redundant activation pathways in a single cell, which may either be Bcl-2 dependent or independent. |
| Bcl-2 oncoprotein protects the human prostatic carcinoma cell line PC3 from TRAIL-mediated apoptosis. | The role of Bcl-2 in TRAIL-induced apoptosis has been investigated in lymphoid cells. Here we show that the human prostatic carcinoma cell line PC3 was sensitive to TRAIL treatment whereas PC3 overexpressing of Bcl-2 was resistant. TRAIL receptors ligation in PC3 activated caspases -2, -3, -7, -8, and -9, induced Bid processing, dissipation of mitochondrial transmembrane potential (Delta Psi(m)), and cytochrome c release. We have detected caspases -8 and -3 only in the cytosolic fraction of cells, but caspases -2, -7, and -9 were found both in cytosolic and mitochondrial fractions. Bcl-2 overexpression did not affect caspase-8 activation although it did change the processing pattern of caspase-3. At the same time, Bcl-2 overexpression inhibited the activation of mitochondrial localized caspases -2, -7, and -9. Bcl-2 also abrogated TRAIL-induced cytochrome c release and dissipation of Delta Psi(m). These findings suggest that TRAIL-induced apoptosis in the epithelial cell line PC3 depends both on mitochondrial integrity and caspase activation. |
| Photochemical destruction of the Bcl-2 oncoprotein during photodynamic therapy with the phthalocyanine photosensitizer Pc 4. | Photodynamic therapy (PDT), utilizing a photosensitizer and visible light, causes localized oxidative damage. With the mitochondrial photosensitizer Pc 4, PDT induces apoptosis, yet its molecular targets are not known. Here, the anti-apoptotic protein Bcl-2 is shown to be highly sensitive to PDT, as judged on Western blots by the disappearance of anti-Bcl-2-reactive material from the position of the native 26 kDa protein. The loss of Bcl-2 was PDT dose dependent and was observed for both endogenous and overexpressed Bcl-2 in several cell lines, immediately after PDT, and with chilled cells. It was accompanied by a trace of a 23-kDa cleavage product as well as high-molecular weight products that may result from photochemical crosslinking. PDT-induced Bcl-2 loss occurred in MCF-7 cells that do not express caspase-3 or in the presence of protease inhibitors, but was prevented, along with the induction of apoptosis, by the singlet oxygen scavenger L-histidine. Loss of FLAG-Bcl-2 was observed with both anti-FLAG and anti-Bcl-2 antibodies, indicating loss of native protein rather than simple BCL-2-epitope destruction. Photochemical damage was not observed in Bcl-x(L), Bax, Bad, the voltage-dependent anion channel, or the adenine nucleotide translocator. Therefore, Bcl-2 is one target of PDT with Pc 4, and PDT damage to Bcl-2 contributes to its efficient induction of apoptosis. |
| [The regulation of estrogen and tamoxifen to bcl-2 oncogene in endometrial carcinoma]. | OBJECTIVE: To study the regulation mechanisms of bcl-2 oncogene in endometrial carcinoma. METHODS: A reverse transcription-polymerase chain reaction (RT-PCR) method was utilized to quantitate bcl-2 mRNA levels which regulated by estrogen(17-beta-estradiol) and tamoxifen in estrogen receptor (ER)(+) RL-952 endometrial carcinoma cells. RESULTS: bcl-2 mRNA level was detected in ER(+) RL-952 cells. 17-beta-estradiol stimulated a concentration-dependent increase in bcl-2 mRNA level, while tamoxifen lead to a concentration-dependent decrease in bcl-2 mRNA level. CONCLUSIONS: bcl-2 oncogene expression in ER(+) endometrial carcinoma is regulated by estrogen and antiestrogen. Estrogen may up-regulate the cell bcl-2 level to inhibit cell apoptosis, while tamoxifen may down-regulate the cell bcl-2 level and induce apoptosis. |
| Evaluation of p53 and bcl-2 oncoprotein expression in precancerous lesions of the oral cavity. | The oral cavity is continually exposed to various traumas due to the effect of thermal, mechanical and chemical stimuli, which when accompanied by inflammatory states may promote the growth of neoplastic changes. Numerous studies have revealed a correlation between the expression of p53 and Bcl-2 proteins and the progression of neoplastic disease. It cannot be excluded that these proteins act as biomarkers of a neoplastic transformation threatening in precancerous states (including leukoplakia) or the already existing neoplastic transformation (e.g. in oral squamous cell carcinoma). The aim of the study was to evaluate the expression of p53 and Bcl-2 proteins in the proliferating epithelium in relation to leukoplakia degree and with regard to the lesions accompanied and not accompanied by squamous cell carcinomas. Fifty-five cases of proliferating changes in the oral epithelium (leukoplakia) were investigated. Group I contained 20 leukoplakias not accompanied by oral squamous cell carcinomas. Groups II, III and IV included 35 cases of changes in the vicinity of carcinomas on the lower lip (group II), in the front 2/3 of the tongue (group III) and in the oral floor (group IV). Staining was performed according to the immunohistochemical method with the use of monoclonal antibodies against human p53 protein (DAKO No M7001) and Bcl-2 (DAKO No M0887). A higher expression of p53 protein (54%) was found in leukoplakia changes coexisting with squamous cell carcinomas, compared with the non-accompanied ones (p53--45%). The results indicate a correlation between epithelial dysplasia degree and p53 and Bcl-2 protein expression--severe dysplasia occurred with an increase in the expression of both proteins. Leukoplakias situated in the vicinity of squamous cell carcinomas showed higher expression of p53 and Bcl-2 compared with the non-accompanied alterations. A correlation was also revealed between the location and p53 and Bcl-2 protein expression degree in the non-accompanied changes; no such correlations were found in proliferating epithelial changes adjacent to neoplastic tumors. |
| Differential expression of Bcl-2 proto-oncogene in the trophoblast from embryos with Down s syndrome and those after spontaneous abortion. | Down s syndrome (trisomy 21) was the first human chromosomal syndrome to be recognized (in 1959 by Lejeune and colleagues). It is also the most frequent chromosomal aberration occurring in one out of 700 live newborns. In the present study we investigated the immunohistochemical expression of the apoptosis-suppressing protein Bcl-2 in placental trophoblastic cells from embryos with Down s syndrome (gestational age 12th, 15th and 22nd week) and correlated the findings with equivalent trophoblastic cells from embryos after spontaneous abortion. In our cases with Down s syndrome a weak Bcl-2 expression was noted in the cytotrophoblast and syncytiotrophoblast of chorionic villi in contrast to strong Bcl-2 staining of the same cells in the cases of spontaneous abortions (p < 0.0001). Although there are no specific findings that truly characterize a placenta with trisomy, obtaining a small piece of chorionic villus tissue (chorionic villus biopsy) and immunohistochemical control for Bcl-2 protein could be an additional prenatal examination available to the perinatologist to detect chromosomal abnormalities. |
| NF-kappaB1 (p50) homodimers contribute to transcription of the bcl-2 oncogene. | The bcl-2 proto-oncogene is frequently expressed in human cancer. Although bcl-2 was first cloned as the t(14;18) translocation breakpoint from human follicular B-cell lymphoma, it has become apparent that many cell types express bcl-2 because of transcriptional regulation. As such, several transcription factors have been demonstrated to activate expression of bcl-2, including NF-kappaB. We investigated the role of NF-kappaB1 (p50) homodimers in the expression of Bcl-2 in two murine B-cell lymphoma cell lines: LY-as, an apoptosis-proficient line with low Bcl-2 protein expression and no nuclear NF-kappaB activity, and LY-ar, a nonapoptotic line with constitutive p50 homodimer activity and 30 times more Bcl-2 protein expression than LY-as. We found that nuclear p50 homodimer activity correlated with Bcl-2 expression in these cell types and identified several sites within the bcl-2 5 -flanking region that p50 was capable of binding. In vitro transcription revealed that recombinant p50 enhanced the production of run-off transcripts from the bcl-2 P1 promoter. Additional in vitro transcription experiments suggested the sites by which p50 afforded this effect. We conclude that the p50 homodimer is capable of transcriptional activation of the bcl-2 gene and suggest that its nuclear activity contributes to the expression of bcl-2 in LY-ar cells. |
| A pitfall in the survival benefit of adjuvant chemotherapy for node- and hormone receptor-positive patients with breast cancer: the paradoxical role of Bcl-2 oncoprotein (review). | The survival benefit of adjuvant chemotherapy in node-positive patients with breast cancer compared with surgery alone has been established. The survival benefit differs considerably between hormone receptor-positive and -negative patients, and it is believed that the effectiveness of adjuvant chemotherapy can be increased by hormonal therapy with tamoxifen. In the present review, we discuss the rationale behind the effectiveness of combination treatment with anticancer drugs and tamoxifen in terms of the paradoxical role of Bcl-2 in apoptosis in breast cancer. The survival benefit between receptor-positive and -negative patients was assessed using previous reports of randomized controlled studies for postoperative adjuvant chemotherapy in node-positive breast cancer. Tamoxifen induces the anti-apoptotic gene, Bcl-2, by its effect on estradiol (E2), via an E2-response element in the promotor region of Bcl-2. The efficicacy of chemoendocrine therapy was assessed in terms of the influence of tamoxifen on the effect of anticancer drugs. Adjuvant chemotherapy, including anthracycline and non-anthracycline based regimens, has an overall survival benefit in node-positive breast cancer, with a 23.5% reduction in the annual odds of recurrence and a 15% reduction in mortality (P<0.00001). A comparison of the reduction of the relative risk indicates that the survival benefit in receptor-negative patients is superior to that in receptor-positive patients by approximately 3-fold. Further, in contrast to receptor-negative patients, there is no additional benefit from paclitaxel over doxorubicin and cyclophosphamide (AC) in receptor-positive patients. The possible reasons that the chemotherapy benefit in receptor-positive patients is small and marginal are the following: i) concurrent treatment or pretreatment with tamoxifen can increase plasma E2 levels in premenopausal patients, thereby inducing Bcl-2 in residual cancer cells, which might decrease drug-sensitivity in combination with chemotherapy; ii) induction of Bcl-2 might be involved predominantly in the resistance to taxanes, the cytotoxic action of which targets Bcl-2. Co-treatment or pretreatment with tamoxifen for adjuvant therapy might decrease the efficacy of anticancer drugs, an effect that is mediated by induction of Bcl-2, especially in premenopausal patients with node-positive breast cancer. Treatment with anticancer drugs should be followed by treatment with tamoxifen to produce a survival benefit from combination therapy in receptor-positive patients. |
| Chronic morphine induces up-regulation of the pro-apoptotic Fas receptor and down-regulation of the anti-apoptotic Bcl-2 oncoprotein in rat brain. | 1. This study was designed to assess the influence of activation and blockade of the endogenous opioid system in the brain on two key proteins involved in the regulation of programmed cell death: the pro-apoptotic Fas receptor and the anti-apoptotic Bcl-2 oncoprotein. 2. The acute treatment of rats with the mu-opioid receptor agonist morphine (3-30 mg x kg(-1), i.p., 2 h) did not modify the immunodensity of Fas or Bcl-2 proteins in the cerebral cortex. Similarly, the acute treatment with low and high doses of the antagonist naloxone (1 and 100 mg x kg(-1), i.p., 2 h) did not alter Fas or Bcl-2 protein expression in brain cortex. These results discounted a tonic regulation through opioid receptors on Fas and Bcl-2 proteins in rat brain. 3. Chronic morphine (10-100 mg x kg(-1), 5 days, and 10 mg x kg(-1), 13 days) induced marked increases (47-123%) in the immunodensity of Fas receptor in the cerebral cortex. In contrast, chronic morphine (5 and 13 days) decreased the immunodensity of Bcl-2 protein (15-30%) in brain cortex. Chronic naloxone (10 mg x kg(-1), 13 days) did not alter the immunodensities of Fas and Bcl-2 proteins in the cerebral cortex. 4. The concurrent chronic treatment (13 days) of naloxone (10 mg x kg(-1)) and morphine (10 mg x kg(-1)) completely prevented the morphine-induced increase in Fas receptor and decrease in Bcl-2 protein immunoreactivities in the cerebral cortex. 5. The results indicate that morphine, through the sustained activation of opioid receptors, can promote abnormal programmed cell death by enhancing the expression of pro-apoptotic Fas receptor protein and damping the expression of anti-apoptotic Bcl-2 oncoprotein. |
| DNA ploidy correlates with grade, proliferation and clinical outcome but not with presence of human oncogenic HPVs or expression of Bcl-2 in preneoplastic and neoplastic lesions of the uterine cervix. | The aim of this study was to analyse whether DNA ploidy correlates with proliferative activity as measured by PCNA expression, presence of oncogenic human papillomaviruses (HPVs), histological grade, expression of antiapoptotic protein Bcl-2 and clinical outcome in a cohort of 57 preneoplastic and neoplastic lesions of the uterine cervix. The samples were analysed using computer image cytomorphometry of Feulgen stained sections, standard indirect immunohistochemistry and hybridisation of HPV DNA in situ. The ploidy data were found to be significantly different between low/high grade preneoplasia and invasive carcinoma. Significant positive relationships were also found between DNA content and proliferation of lesions, and DNA content and clinical behavior of the lesions. Nevertheless, no relationship between DNA ploidy and HPV/Bcl-2 status was established. |
| Cytotoxic activity of Justicia spicigera is inhibited by bcl-2 proto-oncogene and induces apoptosis in a cell cycle dependent fashion. | Identification of organic compounds from plants is of clinical significance because of the effect that they might have in patients with haematopoietic disorders. We studied the effect of the plant extract Justicia spicigera (Acanthaceae) in different haematopoietic cells: human leukaemic cell lines, umbilical cord blood cells, and mouse bone marrow cells. By examining colony formation and performing the MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide) assay it was shown that the plant extract of Justicia spicigera contains cytotoxic factors for leukaemic cells and has no proliferative activity on normal haematopoietic progenitor cells. Our results show that this plant extract induces apoptosis in the human leukaemia cell line TF-1, but not in the bcl-2 transfectant cell line TB-1. Similar results were obtained using a haemopoietic cell line 32D and 32DBcl2. The cultures of umbilical cord blood cells and mouse bone marrow that contain granulocyte-macrophage colony-stimulating factor (GM-CSF) do not proliferate or become terminally differentiated in the presence of the infusion of Justicia spicigera. GM-CSF that acts by abrogating programmed cell death is not sufficient to inhibit the apoptotic stimulus in TF-1 and 32D cells. Moreover mouse fibroblasts (3T3) and two cervical carcinoma cell lines CALO and INBL, undergo apoptosis in the presence of different concentrations of an infusion from the plant. Our data show that there is a strong correlation between the cytotoxic effect and cell proliferation. Together, these results indicate that the plant infusion of Justicia spicigera does not contain any haematopoietic activity, induces apoptosis inhibited by bcl-2 and is linked to cell proliferation. |
| Serum and tissue c-erb B2, bcl-2, and mutant p53 oncoprotein levels in nasopharyngeal cancer. | To date there are no prognostic factors that can account for the biology and disease behavior in nasopharyngeal cancer. Therefore, identification of new factors that can help in predicting the behavior of the disease and characterizing the subgroup with more aggressive tumors more likely to benefitfrom chemotherapy is important. In this study, c-erb B2, bcl-2, and mutant p53 protein levels were investigated in sera and tumor tissue of patients with nasopharyngeal cancer. Serum c-erb B2 levels were significantly higher in the patients than in the healthy subjects. No meaningful difference was observed between the serum and tissue levels of the mutant p53 protein. Tissue bcl-2 concentrations were considerably high. Our results suggest that serum c-erb B2 levels may aid in identifying a subgroup of patients with a poorer response rate to first-line treatment. |
| Protooncogene Bcl-2 induces apoptosis in several cell lines. | Using a recombinant vaccinia virus expressing protooncogene Bcl-2, we demonstrate opposite effects of the expressed Bcl-2 in two cell lines: apoptosis induction in BSC-40 cells and apoptosis prevention in HeLa G cells. The apparent molecular weight of the expressed Bcl-2, its amounts and its effects on the mitochondrial membrane potential are comparable in both cell lines, suggesting that the consequences of Bcl-2 expression depend on the cellular environment. To further support these findings we demonstrate the pro-apoptotic effect of the expressed Bcl-2 in several other cell lines. |
| Expresssion of bcl-2 oncoprotein in cases of acute and chronic viral hepatitis type B and type C: a clinicopathologic study. | The bcl-2 gene is involved in the regulation of programmed cell death by providing a survival advantage to rapidly proliferating cells. This study investigates bcl-2 protein expression in liver biopsies with acute or chronic viral hepatitis B (HBV) or C(HCV). The study comprised 60 liver biopsies with hepatitis B or C. These included 10 biopsies from cases with acute lobular hepatitis (ALH), and 50 with chronic hepatitis (CH). In addition, 10 liver biopsies were used as controls. In CH cases, HAI grade ranged from 3/18 to 15/18, and stage from 1 to 6 (6HBV/8HCV). Immunohistochemical bcl-2 expression was assessed using the streptavidin-biotin method and the presence of apoptotic cells was evaluated by TUNEL method. Immunohistochemical and in situ hybridization (TUNEL) results were expressed following morphometric analysis. In CH cases, bcl-2 was detected in portal and intralobular lymphocytes, and in cholangiolar epithelial cells of the interface area. In ALH and control cases, bcl-2 was expressed only in lymphocytes. Lymphocytic bcl-2 expression was correlated directly with categories A, C and D of HAI (P < 0.001), whereas the degree of fibrosis was reversibly correlated to bcl-2 expression. In conclusion, in cases of chronic hepatitis, bcl-2 expression in cholangioles of interface area suggests that this oncoprotein may be involved in regulation of growth of these epithelial cells. |
| Expression of Bcl2 proto-oncogene in primary tumors of the central nervous system. | The present study was addressed to find out the expression of Bcl2 proto-oncogene in tumor tissues derived from 25 patients with primary central nervous system tumors. Brain parenchyma in 8 cases, with deeply located tumor, was also examined for Bcl2 expression which served as control. Both benign and malignant tumors (confirmed by histopathological examination) expressed Bcl2 gene product. tumors exhibited 2-6 fold increase in Bcl2 expression as compared to the normal parenchyma adjacent to some of these tumors studied. However, no correlation was found between the histopathological types of tumor, glial fibrillary acidic protein positivity and degree of Bcl2 expression. Based on this study, we propose that the overexpression of Bcl2 gene product found in primary CNS tumors may be an important molecular event which is known to make the various types of tumor resistant to chemotherapy or radiotherapy. |
| Bcl-2 determines susceptibility to induction of lung cancer by oncogenic CRaf. | The efficiency of tumor induction by oncogenes is influenced by modifier genes that determine individual susceptibility. We have used a transgenic mouse model to examine the role of a candidate susceptibility gene, bcl-2, for development of Raf oncogene-induced lung adenomas. Loss of bcl-2 greatly retarded tumor development without affecting tumor phenotype. tumor tissues from bcl-2 positive and negative mice were compared for the fraction of S phase cells by staining for proliferating cell nuclear antigen and for the fraction of apoptotic cells by terminal deoxynucleotidyl transferase-mediated nick end labeling assay. The data indicate that the increased tumor latency in the absence of bcl-2 results primarily from an increased apoptotic rate but also involves a decrease in tumor cell proliferation. Both effects can be rescued by breeding with H2K-bcl-2 transgenic mice demonstrating that loss of bcl-2 was the major genetic factor determining tumor resistance. These findings suggest that bcl-2 is a major susceptibility gene for development of lung cancer in mice and perhaps in humans. |
| [The Antisense Oligodeoxynucleotides of bcl-2 Oncogene Enhances the Sensitivity of K562 Leukemic Cells to As(2)O(3)]. | The biological reaction, changes of cellular DNA and bcl-2 protein content of K562 cells to bcl-2 ASODN or As(2)O(3) alone or bcl-2 ASODN associated with As(2)O(3) were investigated by cellular microculture, immunological tissue-chemistry method, and flow cytometry. The results showed that there is much more induce-apoptotic effect of As(2)O(3) on K562 cells while it combined with bcl-2 ASODN (ASODN 10.0 micro mol/L + As(2)O(3) 5.0 micro mol/L) than bcl-2 ASODN or As(2)O(3) alone (ASODN 10.0 micro mol/L or As(2)O(3) 5.0 micro mol/L), (P < 0.01), and so does inhibitory effect of bcl-2 protein expression by flow cytometry (P < 0.01). In conclusions, the bcl-2 ASODN can enhance the drug-sensetivity of K562 leukemic cells to As(2)O(3). |
| Bcl-2 promotes premature senescence induced by oncogenic Ras. | The expression of the apoptosis inhibitory protein, Bcl-2, is increased in naturally senescing human fibroblasts and upon induction of their senescence-like growth arrest by oxidative stress, implying its role in maintaining their extended viability. Oncogenic Ras(V12) protein induces signaling cascades that result in the premature senescence of primary fibroblast cells, which are insensitive to oncogene-dependent apoptosis. Here we show that constitutive expression of Bcl-2 accelerates selected features of the Ras-induced senescence program in primary human fibroblasts. Yet, Bcl-2 also inhibits fibroblast apoptosis induced by exogenous H(2)O(2), while both signals induce an increased endogenous Bcl-2 expression in these cells. Together, these data suggest a context-dependent phenotypic function of Bcl-2 in the regulation of overlapping cell fate specification programs, with potential implications for both physiology and multistep tumorigenesis. |
| [The expression of proliferating cell nuclear antigen and Bcl-2 oncoprotein in nasopharyngeal carcinoma]. | OBJECTIVE: To observe PCNA, Bcl-2 gene expression and their relationship with clinicopathologic factors in primary nasopharyngeal carcinoma(NPC). METHOD: PCNA, Bcl-2 proteins were assayed with immunohistochemical technique. RESULT: The expression of Bcl-2 protein was 9.5% in chronic inflammation of nasopharyngeal epithelium(CINE), which was significantly lower than it in NPCs with 83.1% (P < 0.01). In NPCs, we could find PCNA and Bcl-2 expression were significantly negatively correlated with each other(rs = -0.41, P < 0.01). In our study, there was some correlation in the grade of PCNA proliferating index(PI) with the clinical stages or cervical lymph node metastasis of NPCs. CONCLUSION: PCNA PI may represent the proliferative state of NPC, Bcl-2 protein may be a better tumor marker of NPC, ALL of them may play important roles in the pathogenesis of nasopharyngeal carcinoma. |
| The bcl-2 oncogene and apoptosis. | The bcl-2 oncogene is activated as a consequence of the t(14;18) chromosomal translocation in human follicular lymphomas. Bcl-2 functions to inhibit apoptosis in a variety of in vitro and in vivo experiments, suggesting interference with a central mechanism of apoptosis. The bcl-2 protein is associated with the inner mitochondrial membrane, however, the biochemical function of bcl-2 is unknown. Transgenic mice which overexpress bcl-2 provide evidence for bcl-2 s role in memory B cells and thymic education as an intracellular survival factor. Additional regulators of apoptosis, such as the p53 tumor suppressor gene, may be altered in human cancers as one step in tumorigenesis. |
| Disruption of B-cell homeostatic control mediated by the BLV-Tax oncoprotein: association with the upregulation of Bcl-2 and signaling through NF-kappaB. | Transactivating proteins associated with complex onco-retroviruses including human T-cell leukemia virus-1 (HTLV-1) and bovine leukemia virus (BLV) mediate transformation using poorly understood mechanisms. To gain insight into the processes that govern tumor onset and progression, we have examined the impact of BLV-Tax expression on ovine B-cells, the targets of BLV in experimentally infected sheep, using B-cell clones that are dependent on CD154 and gammac-common cytokines. Tax was capable of mediating progression of B-cells from cytokine dependence to cytokine independence, indicating that the transactivator can over-ride signaling pathways typically controlled by cytokine receptor activation in B-cells. When examined in the presence of both CD154 and interleukin-4, Tax had a clear supportive role on B-cell growth, with an impact on B-cell proliferation, cell cycle phase distribution, and survival. Apoptotic B-cell death mediated by growth factor withdrawal, physical insult, and NF-kappaB inhibition was dramatically reduced in the presence of Tax. Furthermore, the expression of Tax was associated with higher Bcl-2 protein levels, providing rationale for the rescue signals mediated by the transactivator. Finally, Tax expression in B-cells led to a dramatic increase of nuclear RelB/p50 and p50/p50 NF-kappaB dimers, indicating that cellular signaling through NF-kappaB is a major contributory mechanism in the disruption of B-cell homeostasis. Although Tax is involved in aspects of pathogenesis that are unique to complex retroviruses, the viral strategies associated with this transactivating oncoprotein may have wide-ranging effects that are relevant to other B-cell malignancies. |
| BHRF1 of Epstein-Barr virus, which is homologous to human proto-oncogene bcl2, is not essential for transformation of B cells or for virus replication in vitro. | The Epstein-Barr virus (EBV) genome contains an open reading frame, BHRF1, that encodes a presumptive membrane protein with sequence similarity to the proto-oncogene bcl2, which is linked to human B-cell follicular lymphoma. Potential roles for BHRF1 in EBV s ability to growth transform human B cells and to replicate in B cells in culture were investigated by generating EBV mutants that lack most of the open reading frame. This was accomplished by recombination of plasmids carrying mutations in BHRF1 with the transformation-defective EBV strain P3HR1. Because BHRF1 resides close to the deletion in P3HR1 that renders this strain transformation defective, B-cell transformation could be used to select for recombination events in the region. B-cell clones were established by recombinants which lacked most of the BHRF1 open reading frame, although most of these initial B-cell transformants also carried nonrecombinant (BHRF1+) P3HR1 genomes, at levels ranging from a fraction of a copy to four copies per cell. Secondary B-cell transformants that lacked BHRF1+ EBV at detectable levels were found to release transforming, BHRF1-deficient EBV at levels that were within the normal range for EBV-immortalized B-cell clones. These studies demonstrate that BHRF1 is nonessential for growth transformation of B cells and for virus replication and release from these cells in culture. |
| Follicular lymphomas of the gastrointestinal tract. Pathologic features in 31 cases and bcl-2 oncogenic protein expression. | The gastrointestinal tract is the most common site for extranodal lymphomas, but follicular lymphomas involving the gut are rare. To study their pathologic features and bcl-2 expression, 31 follicular lymphomas of the GI tract were reviewed and unstained paraffin sections from 24 of the cases were immunohistochemically stained using a monoclonal antibody for the peptide product of the proto-oncogene bcl-2. The most common site of lymphoma involvement was the small intestine, especially the terminal ileum. Gastric lymphomas tended to present clinically with symptomatic ulcers and small intestinal lesions presented with obstruction. Five cases involving the terminal ileum or colon had a gross appearance of multitudinous mucosal polyps and were considered to represent examples of "multiple lymphomatous polyposis." Enhanced expression of the bcl-2 oncogenic protein was detectable in lymphoma cells in 75% of cases and at lower levels in normal lymphoid cells in most cases. Small cleaved or mixed cell lymphomas were more likely to show enhanced expression than were large cell cases. Reactive germinal centers showed no bcl-2 staining. It is concluded that follicular GI lymphomas are associated with distinctive pathological features. In their tendency to express bcl-2, these neoplasms resemble their lymph node-based counterparts. Immunohistochemical staining for enhanced bcl-2 expression is of potential diagnostic utility in distinguishing between follicular lymphoma and follicular lymphoid hyperplasia in the gastrointestinal tract. The relevance of the results to lymphoma of mucosa-associated lymphoid tissue (MALT) is discussed. |
| Prevention of programmed cell death of sympathetic neurons by the bcl-2 proto-oncogene. | Approximately half of the neurons produced during embryogenesis normally die before adulthood. Although target-derived neurotrophic factors are known to be major determinants of programmed cell death--apoptosis--the molecular mechanisms by which trophic factors interfere with cell death regulation are largely unknown. Overexpression of the bcl-2 proto-oncogene in cultured sympathetic neurons has now been shown to prevent apoptosis normally induced by deprivation of nerve growth factor. This finding, together with the previous demonstration of bcl-2 expression in the nervous system, suggests that the Bcl-2 protein may be a major mediator of the effects of neurotrophic factors on neuronal survival. |
| Expression of the bcl-2 oncogene product and chromosomal translocation t(14;18) in Hodgkin s disease. | The B-cell lymphoma/leukemia oncogene bcl-2 takes part in crucial regulatory events in B-cell maturation and differentiation. The reciprocal chromosomal translocation t(14;18), leading to overexpression of this oncogene, can be found in the majority of follicular lymphomas and much less frequently in B-cell leukemias and diffuse lymphomas. We have studied the expression of this protein in different subtypes of Hodgkin s disease using monoclonal antibodies directed against a formalin-resistant epitope of the bcl-2 protein and also have investigated these cases by polymerase chain reaction for evidence of the t(14;18) translocation. We were particularly interested to determine whether nodular paragranuloma (lymphocyte-predominant, nodular), which differs from other subtypes of Hodgkin s disease by virtue of the B-cell nature of its malignant cell population, is characterized by expression of the bcl-2 protein. Our data indicate that only a small number of nodular paragranulomas express the bcl-2 protein and that the expression is not specific for this type of Hodgkin s disease. In a smaller number of cases this expression of bcl-2 could be explained by the presence of the translocation t(14;18). |
| A strategy for generating monoclonal antibodies against recombinant baculovirus-produced proteins: application to the Bcl-2 oncoprotein. | A strategy is described for production of monoclonal antibodies against recombinant proteins that are produced using the baculovirus expression system and that requires no prior purification of the protein of interest. Crude lysates prepared from cultured Sf9 insect cells infected with recombinant or control baculoviruses are absorbed to nitrocellulose filters and used in a dot-immunobinding assay for screening hybridomas. The monoclonal antibody-producing hybridomas are derived by immunization of mice with a synthetic peptide corresponding to a hydrophilic region in the recombinant protein of interest. By using the baculovirus-produced recombinant protein as the screening antigen and by comparing antibody binding to filters containing control Sf9 lysates, hybridomas are identified that produce monoclonal antibodies with specific reactivity for the recombinant protein of interest and that can then subsequently be used to assist in the large-scale purification of the recombinant protein from baculovirus-infected cells. We applied this method to recombinant 26-kDa human Bcl-2 (B-cell lymphoma/leukemia-2), an integral membrane oncoprotein that regulates programmed cell death ("apoptosis") in hematolymphoid cells through unknown mechanisms. Two mouse monoclonal antibodies were produced that specifically bound the recombinant Bcl-2 baculoprotein in both solution and solid-phase assays. |
| Overexpression of the bcl-2 oncogene in the mouse pre-B cell line SPGM-1 protects from apoptosis, but does not affect blocked B-lineage differentiation and lineage switch towards macrophage like cells. | The CD5(+) mouse pre-B cell line SPGM-1 is able to undergo lineage conversion towards a macrophage like cell type. Although one of the kappa-light chain alleles is rearranged in V-Jkappa4 configuration, no protein is expressed nor could the expression be induced. Infection with and expression of the human bcl-2 gene protected SPGM-1 cells from apoptosis, allowing the rearrangement of their second kappa-allele in V-Jkappa5 configuration. mRNA transcripts of the V-Jkappa regions were detected only in SPGM-1 x bcl-2 cells, but not in SPGM-1, while kappa-light chain protein was not found in any of the cell lines. The myeloid differentiation potential of SPGM-1 cells was not affected by overexpression of the human bcl-2 gene. Upon appropriate stimulation, SPGM-1xbcl-2 cells became enlarged, adhered to the plastic surfaces and lost their immunoglobulin mu heavy chain expression. |
| Immunohistochemical study of apoptosis-related Bcl-2 protein and its correlation with proliferation indices (Ki67, PCNA), tumor suppressor genes (p53, pRb), the oncogene c-erbB-2, sex steroid hormone receptors and other clinicopathological features, in normal, hyperplastic and neoplastic endometrium. | The bcl-2 gene codes for a protein which functions to inhibit apoptotic cell death, that involves an intrinsic normal cell death program. Bcl-2 overexpression was originally described in a follicular lymphoma, but more recently bcl-2 expression has been observed in a variety of other human neoplasms. Variation in the frequency of apoptosis in hormone-sensitive tissues, such as the endometrium, is known to occur as a result of hormonal changes in both physiological and pathological circumstances. In this study we examined bcl-2 protein expression in a total of 170 samples of endometrial tissues (18 proliferative endometrium, 14 secretory endometrium, 35 adenomatous hyperplasia and 103 carcinomas). The results were compared with p53, pRb and c-erbB-2 proteins expression, estrogen and progesterone receptors status, with the proliferative activity and with clinicopathological features. The expression of bcl-2 protein was lower in the group of carcinomas, when compared with the cases of adenomatous hyperplasia (p < 0.0001), normal proliferative (p < 0.0001) and secretory endometrium (p = 0.07). In normal proliferative endometrium bcl-2 expression was correlated with PCNA (p = 0.026) and in secretory endometrium it was correlated with ER status (p = 0.042). In hyperplasias, bcl-2 was correlated with PCNA (p = 0.019) and the PR (p = 0.007) expression. In carcinomas, decreased bcl-2 expression was associated with increased tumor grade (p = 0.04). A positive relationship between bcl-2 expression and pRb, as well as PCNA score (p = 0.014 and p = 0.001, respectively), was also found. These results indicate that bcl-2 expression may play a role in the inhibition of apoptosis in endometrial carcinoma and its expression seems to be associated with tumor differentiation and cell proliferation. |
| Synthesis of radiometal-labeled and fluorescent cell-permeating peptide-PNA conjugates for targeting the bcl-2 proto-oncogene. | The B-cell lymphoma/leukemia-2 (bcl-2) proto-oncogene has been associated with the transformation of benign lesions to malignancy, disease progression, poor prognosis, reduced survival, and development of resistance to radiation and chemotherapy in many types of cancer. The objective of this work was to synthesize an antisense peptide nucleic acid (PNA) complementary to the first six codons of the bcl-2 open reading frame, conjugated to a membrane-permeating peptide for intracellular delivery, and modified with a bifunctional chelating agent for targeting imaging and therapeutic radiometals to tumors overexpressing bcl-2. Four peptide-PNA constructs were synthesized by a combination of manual and automated stepwise elongation techniques, including bcl-2 antisense conjugates and nonsense conjugates with no complementarity to any known mammalian gene or DNA sequence. The PNA sequences were synthesized manually by solid-phase 9-fluorenylmethoxycarbonyl (Fmoc) techniques. Then a fully protected lysine monomer, modified with 1,4,7,10-tetraazacyclododecane-N,N ,N ,N "-tetraacetic acid (DOTA) for radiometal chelation, was coupled manually to each PNA sequence. Synthesis of the DOTA-PNA conjugates was followed by automated elongation with a peptide sequence (PTD-4-glycine, PTD-4-G), known to mediate cellular internalization of impermeable effector molecules, or its retro-inverso analogue (ri-PTD-4-G). Preparation of the four conjugates required an innovative synthetic strategy, using mild acid conditions to generate hydrophobic, partially deprotected intermediates. These intermediates were purified by semipreparative reversed-phase HPLC and completely deprotected to yield pure peptide-PNA conjugates in 6% to 9% overall yield. Using modifications of this synthetic strategy, the ri-PTD-4-G conjugate of bcl-2 antisense PNA was prepared using a lysine derivative of tetramethylrhodamine (TMR) for fluorescence microscopy. Plasma stability studies showed that (111)In-DOTA-labeled ri-PTD-4-G-anti-bcl-2 PNA was stable for 168 h at 37 degrees C, unlike the conjugate containing the parent peptide sequence. Scanning confocal fluorescence microscopy of TMR-labeled ri-PTD-4-G-anti-bcl-2 PNA in Raji lymphoma cells demonstrated that the retro-inverso peptide was active in membrane permeation and mediated cellular internalization of the antisense PNA into the cytoplasm, where high concentrations of bcl-2 mRNA are expected to be present. |
| The proto-oncogene Bcl-2 inhibits cellular toxicity of dopamine: possible implications for Parkinson s disease. | It is currently believed that excessive oxidant stress induced by metabolism of dopamine (DA), plays a major role in the pathogenesis of the selective nigrostriatal neuronal loss in Parkinson s disease. We recently showed that the neurotransmitter DA, in physiological concentrations, is capable of initiating apoptosis in cultured, post-mitotic sympathetic neurons. Bcl-2 is a proto-oncogene that blocks apoptosis. We now report that Bcl-2 is a powerful inhibitor of DA toxicity in PC-12 pheochromocytoma cells. We induced stable expression of Bcl-2 in PC-12 cells by transfection with recombinant pCMV5 expression vector, containing mouse bcl-2 (coding-sequence) cDNA. Cells expressing Bcl-2 manifested marked resistance to otherwise lethal (300 uM) in vitroconcentrations of DA. This protective effect was reflected in the trypan-blue test of cell survival, 3 H-thymidine incorporation and inhibition of the characteristic apoptotic morphologic alterations in scanning electron microscopic studies. Bcl-2 and associated control systems of apoptosis may have an important physiological role in restraining the apop-tosis-triggering potential of DA in nigrostriatal neurons. This novel field of research may yield insights into the pathogenesis of Parkinson s disease and lead to development of novel therapeutic approaches. |
| Molecular cloning and DNA sequence analysis of cDNA encoding chicken homologue of the Bcl-2 oncoprotein. | We have isolated a 2228 bp cDNA clone encoding a chicken homologue of the human Bcl-2 oncoprotein by low-stringency hybridization screening of a lambda gt10 cDNA library derived from a chicken B-cell lymphoma. DNA sequence analysis of this cDNA revealed an open reading frame predicting a polypeptide of 232 amino acids and an M(r) of 25,839. The predicted protein is highly homologous to the human (73%) and mouse (70%) Bcl-2 proteins, and contains a hydrophobic stretch of amino acids within its carboxyl-end (213-229) consistent with an integral membrane protein. Areas of very high sequence homology shared by ALL three Bcl-2 proteins at the NH2-terminus (amino acids 1-33) and within the last 150 amino acids of these proteins suggest the presence of at least two evolutionarily conserved domains within the family of Bcl-2 proteins that may be important either for their targeting to mitochondria or their ability to block programmed cell death. |
| 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. |
| Transcriptional overexpression of the proto-oncogene bcl-2 in patients with systemic Lupus erythematosus. | In systemic Lupus erythematosus (SLE) spontaneous hyperreactivity of the cells of the immune system leads to the production of pathogenic autoantibodies. A hyperproliferative state of lymphocytes is indicated by the increased expression of nuclear oncogenes. We investigated the expression of a putative proto-oncogene, bcl-2, which is responsible for prolonged survival of lymphocytes and protection from programmed cell death. In 19 of 24 patients with SLE an increased concentration of bcl-2 mRNA was found in unstimulated circulating blood lymphocytes. The overexpression of the bcl-2 gene was more pronounced in patients with active SLE. A pathogenic role of increased bcl-2 expression and prolonged survival of autoimmune memory cells in SLE can be hypothesized. |
| 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. |
| bcl-2 proto-oncogene expression in normal and neoplastic human myeloid cells. | The present study provides immunobiochemical and molecular data on the differentiation-linked expression of the bcl-2 proto-oncogene in normal and neoplastic myeloid cells. Using a recently developed monoclonal antibody (MoAb) to the bcl-2 molecule, staining of normal bone marrow myeloblasts, promyelocytes, and myelocytes, but neither monocytes nor most polymorphonuclear cells, was demonstrated. By two-color flow cytometric analysis, bcl-2 was evidenced in CD33+ and CD33+/CD34+ myeloid cells as well as in the more primitive CD33-/CD34+ population. The leukemic cell lines HL-60, KG1, GM-1, and K562 were bcl-2 positive together with 11 of 14 acute myeloid leukemias (AML) and three of three chronic myeloid leukemias (CML) in blast crises; six of seven CML were negative. Among myelodysplastic cases, augmentation of the bcl-2 positive myeloblastic compartment was found in refractory anemia with excess of blasts (RAEB) and in transformation (RAEB-t). Western blots of myeloid leukemias and control lymphocytes extracts evidenced an anti-bcl-2 immunoreactive band of the expected size (26 Kd). Moreover, the HL-60 and KG1 cell lines, both positive for the bcl-2 protein, exhibited the appropriate size bcl-2 mRNA (7.5 Kb). These findings clearly indicate that the bcl-2 gene is operative in myeloid cells and that the anti-bcl-2 MoAb identifies its product and not a cross-reactive epitope. Induction of HL-60 differentiation toward the monocytic and granulocytic pathways was accompanied by a marked decrease in bcl-2 mRNA and protein levels; bivariate flow cytometric analysis showed that the fraction becoming bcl-2 negative was in the G1 phase of the cell cycle. These data establish that the bcl-2 proto-oncogene is expressed on myeloid cells and their progenitors and is regulated in a differentiation-linked manner. |
| [Expression of oncogene proteins Bag-1, p53, and bcl-2 in endometrium adenocarcinoma with different rate of differentiation]. | OBJECTIVE: To investigate the expression of the proto-oncogene eIF4E in laryngeal squamous cell carcinoma and its relationship with clinical pathology. METHOD: Sections of 37 samples of laryngeal squamous cell carcinoma (LSCC) and 10 samples of vocal cords polyp were analyzed with anti-eIF4E polyclonal antibody utilizing SP (Streptavidin Peroxidase) immunohistochemical technique. RESULT: ALL 37 LSCC samples overexpressed eIF4E in the tumors (eIF4E score: 30 approximately 210), whereas no staining was observed in 10 samples of vocal cords polyp (eIF4E score: 0). There was a significant correlation between overexpression of protein eIF4E with T stage, N stage, histological grade, recurrence and the states of metastases (P < 0.01). It did not correlate with age, sex, and site of tumor (P > 0.05). CONCLUSION: The eIF4E plays an important role on tumorgenesis, development, invasion and metastases of laryngeal squamous cell carcinoma. There was a correlation between the overexpression of protein eIF4E with TNM stage, histological grade, recurrence and metastases. eIF4E in the laryngeal squamous cell carcinoma can be considered as an independent prognostic factor and tumour molecular marker. |
| Expression of p53 oncoprotein and bcl-2 in renal cell carcinoma. | 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. |
| BCL2 oncogene translocation is mediated by a chi-like consensus. | Examination of 64 translocations involving the major breakpoint region (mbr) of the BCL2 oncogene and the immunoglobulin heavy chain locus identified three short (14, 16, and 18 bp) segments within the mbr at which translocations occurred with very high frequency. Each of these clusters was associated with a 15-bp region of sequence homology, the principal one containing an octamer related to chi, the procaryotic activator of recombination. The presence of short deletions and N nucleotide additions at the breakpoints, as well as involvement of JH and DH coding regions, suggested that these sequences served as signals capable of interacting with the VDJ recombinase complex, even though no homology with the traditional heptamer/spacer/nonamer (IgRSS) existed. Furthermore, the BCL2 signal sequences were employed in a bidirectional fashion and could mediate recombination of one mbr region with another. Segments homologous to the BCL2 signal sequences flanked individual members of the XP family of diversity gene segments, which were themselves highly overrepresented in the reciprocal products (18q-) of BCL2 translocation. We propose that the chi-like signal sequences of BCL2 represent a distinct class of recognition sites for the recombinase complex, responsible for initiating interactions between regions of DNA separated by great distances, and that BCL2 translocation begins by a recombination event between mbr and DXP chi signals. Since recombinant joints containing chi, not IgRSS, occur in brain cells expressing RAG-1 (Matsuoka, M., F. Nagawa, K. Okazaki, L. Kingsbury, K. Yoshida, U. Muller, D. T. Larue, J. A. Winer, and H. Sakano. 1991. Science [Wash. DC]. 254:81; reference 1), we further suggest that the product of this gene could mediate both BCL2 translocation and the first step of normal DJ assembly through the creation of chi joints, rather than signal or coding joints. |
| Expression of bcl-2 oncogene in gastric precancerous lesions and its correlation with syndromes in traditional Chinese medicine. | AIM: To observe the protein and mRNA expression of bcl-2 oncogene in gastric precancerous lesions (GPL) and to analyze its correlation with syndromes in traditional Chinese medicine (TCM). METHODS: Sixty-seven patients with GPL confirmed by gastroscopy and pathology were studied, including 39 cases of moderate gastric mucosal dysplasia, 19 cases of severe gastric mucosa dysplasia, 9 cases of incomplete colon metaplasia. In syndrome differentiation of TCM, 17 cases belonged to the syndrome of qi and yin deficiency of the spleen and stomach complicated by qi stagnation, 21 cases belonged to the syndrome of qi and yin deficiency of the spleen and stomach complicated by stomach heat, 29 cases belonged to the syndrome of qi and yin deficiency of the spleen and stomach complicated by blood stasis. Protein and mRNA expression of bcl-2 oncogene were detected by labeled streptavidin biotin (LSAB) immunohistochemistry and in situ hybridization respectively. RESULTS: Abnormal expression of protein and mRNA on bcl-2 oncogene was found in GPL, which increased gradually with the course of lesions. In moderate and severe gastric mucosal dysplasia and incomplete colon metaplasia, there was no difference in the expression of bcl-2 oncogene (P>0.05). In different accompanying syndromes, the expression of protein and mRNA on bcl-2 oncogene increased gradually in the following order: deficiency of both qi and yin of the spleen and stomach accompanying qi stagnation-->stomach heat-->blood stasis. In GPL, compared with accompanying blood stasis, there was an obvious difference in the expression of bcl-2 oncogene between the syndrome of qi and yin deficiency of the spleen and stomach and accompanying stomach heat, so did accompanying qi stagnation (the level of protein: chi(2) = 8.45, P<0.05; the level of mRNA: chi(2) = 7.35, P<0.05). CONCLUSION: Apoptosis-associated bcl-2 oncogene is abnormally expressed in GPL, which correlates with different accompanying syndromes in TCM. |
| [Aspects of Bcl-2 proto-oncogene expression in dysplastic and malignant lesions of the uterine cervix]. | We studied Bcl-2 proto-oncogene expression in dysplastic and malignant lesions of the uterine cervix and looked for a relation between its incidence and tumor histopathologic type and tumor differentiation grade. We used immunohistochemical reaction with a Bcl-2 specific monoclonal antibody in order to identify this protein in 40 patients biopsies. We noticed a Bcl-2 nuclear immunoreaction in high differentiated squamous carcinomas, whereas a positive cytoplasmic reaction of a granular pattern was registered in low differentiated types. Distribution and intensity of Bcl-2 reaction final product was correlated with tumor differentiation grade in 29 of ALL studied cases (72.5%). Immunostaining technique may be an important adjuvant factor for a more accurate prognosis. |
| Proliferative activity, apoptosis and expression of oestrogen receptor and Bcl-2 oncoprotein in canine mammary gland tumours. | Samples of 39 canine mammary gland tumours (MGTs) were examined immunohistochemically for oestrogen receptor (ER-alpha), Bcl-2 protein and Ki67 antigen, and by TUNEL assay for apoptosis. ER-alpha was expressed by 80% (31/39) of the tumours, including ALL of the 15 benign tumours and 67% (16/42) of the malignant tumours. ER-alpha expression was greater in the benign than in the malignant tumours (P<0.01). Bcl-2 protein was detected in 62% (24/39) of the MGTs, of which 67% (10/15) were benign and 58% (14/24) malignant. No significant difference in Bcl-2 expression between benign and malignant tumours was detected. The Ki67 and TUNEL indices were greater in malignant than in benign tumours (P<0.01). Correlation analysis suggested that ER-alpha and Bcl-2 expression were related, but this observation lacked statistical significance. The levels of cell proliferation and apoptosis did not appear to be significantly correlated with the expression of Bcl-2. A positive relationship was apparent between cell proliferation and apoptosis, whilst a negative correlation between ER-alpha and cell proliferation was demonstrated. In conclusion, the suggestion of a positive correlation between ER-alpha and Bcl-2 in canine MGTs indicates that ER may be the regulator of Bcl-2 protein, as in human breast cancer. In contrast to cell proliferation and apoptosis, ER-alpha and Bcl-2 expression were greater in benign MGTs than in their malignant counterparts. |
| Oncogenic Vav1 induces Rac-dependent apoptosis via inhibition of Bcl-2 family proteins and collaborates with p53 deficiency to promote hematopoietic progenitor cell proliferation. | Vav1 is an hematopoietic-specific Rho guanine nucleotide exchange factor coupling tyrosine kinase receptors and Rac GTPases, and has been implicated in transformation of fibroblasts and pancreas. To determine the biologic effect and oncogenic potential of Vav1 in hematopoietic lineages, we stably express oncogenic mutant of Vav1 in primary bone marrow cells using retrovirus-mediated gene transfer. Contrary to the growth stimulatory effects observed in fibroblasts, oncogenic Vav1 inhibits hematopoietic stem cell/progenitor engraftment in vivo and progenitor cell expansion in vitro via inducing apoptosis. The oncogenic Vav1-induced apoptosis is associated with reduced expression of Bcl-2 and Bcl-xL proteins and effectively suppressed by transgenic overexpression of Bcl-2, suggesting Vav1-mediated signaling via Bcl-2 in apoptosis. Also, oncogenic Vav1 stimulates sustained activation of Rac GTPases and the biologic effects of oncogenic Vav1 are Rac-dependent. Further, when expressed in the p53-deficient cells, which express elevated Bcl-2 and Bcl-xL and are resistant to the apoptosis, oncogenic Vav1 enhances both proliferation and self-renewal of hematopoietic progenitor cells. These results demonstrate clear phenotypic differences between wild-type and p53(-/-) hematopoietic cells expressing oncogenic Vav1, and suggest oncogenic potential of Vav1-mediated pathways in primary hematopoietic cell when they collaborate with additional genetic hits that affect the p53 pathway. |
| [Antiapoptotic oncogene bcl-2 induces a program of senescence in E1A + c-Ha-ras-transformants treated with adriamycin]. | Introduction of bcl-2 gene in EIA + c-Ha-ras-transformed rat embryo fibroblasts, which are unable to be arrested after damaging influences and possess high proapoptotic sensitivity, results not only in suppression of cell death but also in re-establishment of cell cycle block following DNA damage and serum starvation. Flow cytometry showed that E1A + c-Ha-ras + bcl-2-transformants treated with DNA-intercalator adriamycin are capable of being arrested at G1/S boundary for a long time (for less than 5 days). According to the growth curve data, the number of Bcl-2-overexpressing cells remanins constant for a week of cultivation with adriamycin. Clonogenic efficacy of E1A + c-Ha-ras + bcl-2-cells is brought to no already in 16 h after adriamycin addition. Apoptotic death, revealed by oligonucleosomic fragmentation of DNA, as well as cell death, occurring due to mitotic catastrophe, after adriamycin treatment are almost absent in Bcl-2-overexpressing transformants, as compared with parental E1A + c-Ha-ras-transformants. Bcl-2 introduction in E1A + c-Ha-ras-transformants is accompanied by a rise of SA beta-Gal (Senescence Associated beta-Galactosidase) activity, which is commonly considered to be a marker of cell senescence. Adriamycin treatment of E1A + c-Ha-ras + bcl-2-transformants results in a much higher rise in SA beta-Gal activity, as compared with untreated cells. Co-immunoprecipitation experiments demonstrated the introduction of Bcl-2 to result in formation of Bcl-2 complexes with early region E1A oncoproducts, which are thought to be responsible for proapoptotic susceptibility of E1A-expressing transformants. The data obtained lead to suggestion that bcl-2 transfer to E1A + c-Ha-ras-transformants may induce a switch from the cell death program on the program of senescence after DNA damage, due, presumably, to Bcl-2 interaction with the apoptosis activator the viral oncoprotein E1A. |
| Bcl2 and ROS1 expression in human meningiomas: an analysis with respect to histological subtype. | tumors of the central nervous system account for approximately 9% of ALL primary neoplasm in humans, while tumors of covering elements, the meninges, account for 13-19% and constitute the second largest group of brain tumors. These are known to exhibit a variety of chromosomal abnormalities besides change in the expression level of certain oncogenes. Among oncogenes, bcl2, an anti-apoptotic factor and ROS1 that encodes a protein with a structure similar to the epidermal growth factor (EGF) and insulin receptor and has a tyrosine kinase activity, have been shown to be associated with many malignant tumors. In the present study we have analysed the expression of bcl2 using immuno-histochemistry and ROS1 expression by reverse-transcription coupled with polymerase chain reaction (RT-PCR) of the transcript using primers specific for the intra-cellular domain and then tried to correlate the findings with the subtype of the meningioma defined on the basis of histology. Out of the six bcl2 positive cases in our study, there were three transitional tumors, two fibroblastic and one recurrent meningioma subtype. bcl2 seemed to be more consistently expressed in the cytoplasm of spindle cell component of meningiomas. Thirteen meningiothelial meningiomas did not show any staining for bcl2. ROS1 gene expression could be detected in 4 tumors ALL of those were Grade-I meningothelial meningiomas. One of the malignant meningioma included in the study was clearly negative for bcl2 as well as ROS1. Thus bcl2 and ROS1 oncogene expression in meningiomas are not concurrent and neither can be ascribed to any histologic subtype or grade of tumor. |
| Detection of the bcl-2 t(14;18) translocation and proto-oncogene expression in primary intraocular lymphoma. | PURPOSE: Primary intraocular lymphoma (PIOL) is a diffuse large B cell lymphoma that initially infiltrates the retina, vitreous, or optic nerve head, with or without central nervous system involvement. This study examined the expression of the bcl-2 t(14;18) translocation, the bcl-10 gene, and high expression of bcl-6 mRNA in PIOL cells. METHODS: Microdissection and PCR analysis were used to examine vitreous specimens in patients with PIOL for the presence of bcl-2 t(14;18) translocations, the bcl-10 gene, and expression of bcl-6 mRNA. A medical record review was also conducted to determine whether the bcl-2 t(14;18) translocation correlated with prognosis. RESULTS: Forty of 72 (55%) PIOL patients expressed the bcl-2 t(14;18) translocation at the major breakpoint region. Fifteen of 68 (22%) patients expressed the translocation at the minor cluster region. The bcl-10 gene was detected in 6 of 26 (23%) patients, whereas 4 of 4 (100%) PIOL patients expressed higher levels of bcl-6 mRNA compared with inflammatory lymphocytes. An analysis of clinical outcome in 23 PIOL patients revealed no significant association between bcl-2 t(14;18) translocations and survival or relapse. However, patients with the translocation were significantly younger. CONCLUSIONS: PIOL has unique molecular patterns of bcl-2, bcl-10, and bcl-6 when compared with other systemic lymphomas. This study lays the foundation for future studies aimed at exploring the genotypic classification of PIOL based on the quantitative molecular framework of gene expression profiling, with the goal of providing useful adjuncts to the pathologic diagnosis of this complex disease. |
| Prevention of apoptosis in CNTF-dependent neurons by a mutant ICE and by viral protein CrmA but not by proto-oncogene product Bcl-2. | The interleukin-1beta converting enzyme (ICE) gene family, (homologues of C. elegans cell death gene product Ced-3) plays an important role in controlling programmed cell death. Nerve growth factor (NGF) promotes survival of cultured embryonic chicken dorsal root ganglion neurons. Ciliary ganglion neurons depend exclusively on ciliary neurotrophic factor (CNTF) for survival. Complete depletion of NGF or CNTF from culture medium induces apoptosis in both types of neurons. We can prevent apoptosis, due either to NGF or CNTF withdrawal and in either type of neuron, by overexpression of a mutant inactive ICE and an ICE inhibitor, the product of cowpox virus gene crmA. Bcl-2 does not prevent apoptosis in CNTF-dependent ciliary neurons or DRG neurons as it does in NGF-dependent neurons. These results suggest that neuronal cell death is mediated through a common effector mechanism involving the Ice family of genes, whereas different suppression mechanisms are engaged depending upon the specific neurotrophic factors present. |
| Bcl-2 overexpression in thyroid carcinoma cells increases sensitivity to Bcl-2 homology 3 domain inhibition. | CONTEXT: The Bcl-2 family of proteins regulates apoptosis in various models and may represent a promising therapeutic target in human malignancies. OBJECTIVE/METHODS: We evaluated the sensitivity of thyroid carcinoma cell lines (two papillary, one follicular, two anaplastic, three medullary) in vitro to BH3I-1 and BH3I-2 , two cell-permeable inhibitors of the Bcl-2 homology (BH)-3 domain-mediated interaction between proapoptotic and antiapoptotic Bcl-2 family members. The thyroid carcinoma cell line FRO was stably transfected with cDNA for Bcl-2 or constitutively active Akt and evaluated for sensitivity to BH3-domain inhibition. RESULTS: BH3-domain inhibition disrupted the mitochondrial membrane potential in thyroid carcinoma cells, induced caspase-dependent apoptosis, and potently sensitized them to sublethal concentrations of doxorubicin and the proteasome inhibitor bortezomib (Velcade). Overexpression of constitutively active Akt suppressed BH3I-1-induced cell death. Bcl-2-overexpressing FRO cells were more resistant to conventional chemotherapeutic agents (such as doxorubicin) but significantly more sensitive to BH3I-1 than control cells and were found to overexpress caspase-9, caspase-8, Bmf, Bok, and Bik transcripts and express less A1, BRaf, and FLIP transcripts. CONCLUSIONS: Bcl-2 expression protects thyroid carcinomas against chemotherapy-induced apoptosis. Nevertheless, overexpression of Bcl-2 may result in "oncogene addiction" of the cancer cell, which can be exploited by using BH3-domain inhibitors alone or in combination with other agents, including conventional chemotherapeutics (such as doxorubicin) or novel targeted therapies (such as the proteasome inhibitor bortezomib), for the treatment of aggressive thyroid cancer, including the medullary and anaplastic types. |
| Study of antiapoptotic gene of oral carcinoma by using Bcl-2 oncogene. | The present study was addressed to find out the expression of Bcl-2 proto-oncogene in tumor tissue derived from 24 patients with malignant oral carcinoma and oral mucosa from the same patients served as control and showed a cytoplasmic pattern of Bcl-2 immunoreactivity in basal cell layer. Fourteen of 24 (58.3%) of oral carcinoma and four adenocystic carcinoma expressed positive Bcl-2 oncogene. Well-differentiated squamous cell carcinoma showed absence of immunoreactivity. No statistically significant correlation could be demonstrated between Bcl-2 immunoreactivity and the age or sex of the patients, tumor size, and lymph node metastasis. A direct correlation between Bcl-2 immunoreactivity in G2 and G3 was statistically significant (P < 0.05). Patients with absence of or low (scores 0 or 1) Bcl-2 immunoreactive tumors manifested poorer overall survival rate in comparison with patients with moderate or high (scores 2 and 3) Bcl-2 expression, but the difference was not statistically significant. tumors exhibited three different expressions of Bcl-2 (weak, moderate, and strong positive), compared to the mucosa of some patients affected by these tumors. No correlation was found between the histopathology of the tumors, mucosal expression, and degree of Bcl-2 expression. We propose from this study that overexpression of Bcl-2 proto-oncogene acts as a strong antiapoptotic in both squamous cells and adenocystic carcinoma may be an important molecular event on oral carcinoma to make these tumors resistant to radiotherapy and chemotherapy. |
| The proto-oncogene expression varies over the course of chronic myeloid leukemia. | The chronic phase (CP) of chronic myeloid leukemia (CML) is characterized by the expression of chimeric BCR/ABL gene, extended survival, and profligate growth of maturing granulocyte stemline. The accelerated phase (AP) and blast crisis (BC) of CML are usually manifested by additionally acquired oncogene aberrations, resistance to therapy, advancing anaplasia, progressive organomegaly, and increased blast count. Abnormal expression of some proto-oncogenes may accompany or even precede AP or BC of CML. Our objective was to follow-up oncogene expression over time covering different clinical phases of CML. A total of 85 patients [44 females and 41 males; median age 51 years; range 16-75 years] were studied. At the start of the study, 29 patients were in CP, 25 in an AP, and 31 in BC. Temporal variation in expression (percentage positivity per 1000 analyzed cells) of c-kit, c-myc, H-Ras, cyclin A1, p53, bcl-2 and VEGF oncogenic proteins in CP, AP, and BC of CML was studied by immunohistochemical procedures. This was then correlated with parameters of clinical disease (organomegaly, duration of CP, AP, and BC) and laboratory (Hb, WBC and platelet counts, and the percentage of blasts) data. The level of c-kit expression differed significantly over the course of disease (x(2), p = 0 x 025). Antiapoptotic bcl-2 protein increased significantly with the progression of CML (x(2), p = 0 x 005). The expression of c-myc was most pronounced in the AP (Anova, p = 0 x 033) and then tended to decline. There was no significant difference in the level of expression of H-Ras, cyclin A1 and p53 over the course of disease. The expression of VEGF protein was most pronounced in the AP (Anova, p = 0 x 033) and it was inversely correlated with degree of splenomegaly (Pearson, r = -0 x 400, p = 0 x 011) and overall survival (log rank, p = 0,042). CONCLUSION: The changes in oncogene expression, assessed by immunohistochemical approach over the course of CML may have clinical relevance in deciding on and timing of therapy. Temporal distribution of changes in oncoprotein expression in CML requires further study at the molecular level. |
| Oncoprotein Bcl-2 and microsatellite instability are associated with disease-free survival and treatment response in colorectal cancer. | Colorectal cancer (CRC) cell lines displaying microsatellite instability (MSI) are resistant to 5-fluorouracil in vitro, which can be overcome by restoring DNA mismatch repair (MMR) competence. Furthermore, elevated levels of Bcl-2 protein confers cytotoxic drug resistance to tumour cell lines. We examined the expression of Bcl-2 and two MMR proteins (hMLH1 and hMSH2) in advanced CRC patients, to determine their mutual relationship, association to therapeutic response and impact on disease outcome. tumour samples from 73 CRC patients who were treated in advanced stage with either irinotecan alone or in combination with 5-FU/leucovorin, were analysed for expression of Bcl-2, hMLH1 and hMSH2 using immunohistochemistry. Bcl-2 expression was closely correlated with hMLH1 and hMSH2 expression (negative-weak/moderate-strong) (p=0.01). Bcl-2/MMR expression was significantly (p=0.030 for whole series; p=0.018 for the 5-FU-treated cases) related to the response to treatment; tumours with low levels of both Bcl-2 and MMR responded better (n=18/31, 58%) than those with high Bcl-2 and MMR (n=3/16, 18%). Patients with high Bcl-2/MMR expression had a significantly longer DFS (47 vs. 11 months, n=26) than those with low Bcl-2/MMR index (p=0.005). Bcl-2/MMR index was not significantly related to disease-specific survival or survival with metastases. The present data suggest that MSI patients with low Bcl-2/MMR demonstrate a significantly shorter DFS, whereas patients with high expression of the two markers obtain the greatest benefit from 5-FU-based chemotherapy. |
| Bcl-2 oncogene expression in estrogen receptor-positive and negative breast carcinoma. | PURPOSE: The aim of this study was to evaluate Bcl-2 oncogene expression in estrogen receptor (ER)-positive and negative breast carcinomas. METHODS: A study involving 72 cases of infiltrating ductal carcinoma of the breast in postmenopausal women divided into two groups: Group A (ER positive, n=37) and Group B (ER negative, n=35). Immunohistochemical analysis of bcl-2 expression was carried out semiquantitatively based on the percentage of stained tumoral cells and the intensity of staining. The chi-square test was used in the statistical analysis of the data and significance was established at p < 0.05. RESULTS: Bcl-2 oncogene expression was statistically greater in tumors of Group A (59.5%) compared to those of Group B (8.6%), (p < 0.001). CONCLUSION: Bcl-2 had a significantly greater expression in the ER-positive breast tumors compared to ER-negative tumors. |
| Spectroscopy probing of the formation, recognition, and conversion of a G-quadruplex in the promoter region of the bcl-2 oncogene. | This study has demonstrated the formation of the G-quadruplex structure from the G-rich sequence in the promoter region of the bcl-2 oncogene; the formation could be induced by addition of NH(4)(+) or K(+) ions. The binding affinity and stoichiometry of seven small molecules with the G-quadruplex were examined by using ESI-MS, as well as CD and UV spectroscopy. The binding-affinity order was determined to be P1 approximately = P5 > P2 > P3 approximately = P4 > P7 > P6. In particular, the small-molecule induction of the structural transition between the G-quadruplex and duplex DNA forms in this promoter region was investigated by ESI-MS. We directly observed specific binding of dehydrocorydaline (P7) and cationic porphyrin (P5) in one system consisting of the G-quadruplex and the duplex DNA, respectively. The results indicate that P7 selectively stabilizes the G-quadruplex and shifts the equilibrium toward G-quadruplex formation of the bcl-2 promoter, whereas P5 converts the G-quadruplex into the duplex DNA, which results in strong and selective binding to the duplex form. Therefore, P5 and P7 with their attractive binding specificities could be considered as precursors for pathway-specific drug design for regulation of bcl-2 oncogene transcription. |
| Nonviral delivery platform for therapeutic RNAi: pegylated siRNA/cationic liposome complexes for targeting of the proto-oncogene bcl-2. | The protein LMO3 belongs to the LIM only (LMO) group of transcriptional regulators, which act as molecular adaptors for protein-protein interactions. However, little is known about its interactive proteins and functions. Evaluating LMO3 in a yeast two-hybrid screen, we identified the calcium- and integrin-binding protein CIB as an LMO3-binding protein, which binds via the second LIM domain (LIM2) of LMO3. Cotransfection of LMO3 and CIB resulted in a shift in LMO3 protein from the nucleus to the cytoplasm. In functional assays, LMO3 induced C8 astrocyte proliferation was suppressed by the overexpression of CIB. This study demonstrates one function for LMO3 in C8 cells and suggests that one role of the CIB/LMO3 complex is to inhibit cell proliferation. |
| Repression of PKR mediates palmitate-induced apoptosis in HepG2 cells through regulation of Bcl-2. | The present study shows that double-stranded RNA-dependent protein kinase (PKR) regulates the protein expression level and phosphorylation of Bcl-2 and plays an anti-apoptotic role in human hepatocellular carcinoma cells (HepG2). In various types of cells, saturated free fatty acids (FFAs), such as palmitate, have been shown to induce cellular apoptosis by several mechanisms. Palmitate down-regulates the activity of PKR and thereby decreases the level of Bcl-2 protein, mediated in part by reduced activation of the NF-kappaB transcription factor. In addition to the level of Bcl-2 protein, the phosphorylation of Bcl-2 at different amino acid residues, such as Ser70 and Ser87, is also important in regulating cellular apoptosis. The decrease in the phosphorylation of Bcl-2 at Ser70 upon exposure to palmitate is mediated by inhibition of PKR and possibly by c-Jun N-terminal kinase (JNK), whereas the phosphorylation of Bcl-2 at Ser87 is unaffected by palmitate or PKR. In summary, PKR mediates the regulation of the protein level and the phosphorylation status of Bcl-2, providing a novel mechanism of palmitate-induced apoptosis in HepG2 cells. |
| Investigation of the formation and recognition of a dimeric G-quadruplex in the promoter of Bcl-2 proto-oncogene by electrospray ionization mass spectrometry. | One of the features of malignant gliomas is their deviant resistance to cellular apoptosis induced by cytotoxic reagents. Bmi-1, an oncoprotein, has been linked to oncogenesis and cancer progression in various types of human cancers including gliomas. However, the mechanisms underlying Bmi-1 antiapoptotic function remain largely unknown. In this study, we report that Bmi-1 renders apoptotic resistance to glioma cells through nuclear factor-kappaB (NF-kappaB). In glioma cells, ectopic expression of Bmi-1 significantly inhibits doxorubicin-, BCNU-, or UV irradiation- induced apoptosis through reduction of activated caspase-3 and PARP, and induction of Bcl-X(L). Cellular depletion of Bmi-1 enhances the sensitivity of glioma cells to apoptosis induced by doxorubicin, BCNU, or UV irradiation. Bmi-1 activates NF-kappaB through stimulation of IkappaB phosphorylation, nuclear translocation, and transcriptional activity of NF-kappaB and expression of downstream genes of NF-kappaB including caspase-3, PARP, Bcl-X(L), and c-Myc. Inhibition of the IKK-NF-kappaB pathway abrogates the antiapoptotic effect of Bmi-1 on glioma cells. In high-grade gliomas, Bmi-1 and NF-kappaB are co-expressed in the cell nucleus. Up-regulation of Bmi-1 also correlates with tumor progression and poor survival of patients with gliomas. Together, our data demonstrate that Bmi-1 bestows apoptotic resistance to glioma cells through the IKK-NF-kappaB pathway and suggest Bmi-1 as a useful indicator for glioma prognosis. |
| Oncogenic HER2{Delta}16 suppresses miR-15a/16 and deregulates BCL-2 to promote endocrine resistance of breast tumors. | Tamoxifen is the most commonly prescribed therapy for patients with estrogen receptor (ER)alpha-positive breast tumors. tumor resistance to tamoxifen remains a serious clinical problem especially in patients with tumors that also overexpress human epidermal growth factor receptor 2 (HER2). Current preclinical models of HER2 overexpression fail to recapitulate the clinical spectrum of endocrine resistance associated with HER2/ER-positive tumors. Here, we show that ectopic expression of a clinically important oncogenic isoform of HER2, HER2Delta16, which is expressed in >30% of ER-positive breast tumors, promotes tamoxifen resistance and estrogen independence of MCF-7 xenografts. MCF-7/HER2Delta16 cells evade tamoxifen through upregulation of BCL-2, whereas mediated suppression of BCL-2 expression or treatment of MCF-7/HER2Delta16 cells with the BCL-2 family pharmacological inhibitor ABT-737 restores tamoxifen sensitivity. Tamoxifen-resistant MCF-7/HER2Delta16 cells upregulate BCL-2 protein levels in response to suppressed ERalpha signaling mediated by estrogen withdrawal, tamoxifen treatment or fulvestrant treatment. In addition, HER2Delta16 expression results in suppression of BCL-2-targeting microRNAs miR-15a and miR-16. Reintroduction of miR-15a/16 reduced tamoxifen-induced BCL-2 expression and sensitized MCF-7/HER2Delta16 to tamoxifen. Conversely, inhibition of miR-15a/16 in tamoxifen-sensitive cells activated BCL-2 expression and promoted tamoxifen resistance. Our results suggest that HER2Delta16 expression promotes endocrine-resistant HER2/ERalpha-positive breast tumors and in contrast to wild-type HER2, preclinical models of HER2Delta16 overexpression recapitulate multiple phenotypes of endocrine-resistant human breast tumors. The mechanism of HER2Delta16 therapeutic evasion, involving tamoxifen-induced upregulation of BCL-2 and suppression of miR-15a/16, provides a template for unique therapeutic interventions combining tamoxifen with modulation of microRNAs and/or ABT-737-mediated BCL-2 inhibition and apoptosis. |
| The relationship between bcl-2 oncogene expression and clinicopathological criteria in various stages of cervical neoplasia in Egyptian women. | PURPOSE: To assess the degree of bcl-2 expression in the various stages of cervical neoplasia in a sample population of Egyptian women and relate the findings to clinicopathological criteria of invasive cervical cancer. METHODS: Bcl-2 protein expression was assessed by immuno-histochemistry in 40 patients with cervical neoplasia (intraepithelial and invasive) in comparison to 20 patients with benign changes. Patients with invasive disease were followed up 2 years later and the outcome was correlated to the bcl-2 status at the time of diagnosis. RESULTS: Bcl-2 expression increased from 20% in normal cervical tissue to 42.9% in cervical intraepithelial neoplasia grade II then dropped to 33% in invasive disease. Bcl-2 was not expressed (0%) in patients with advanced disease stage and grade nor in patients with lympho-vascular space invasion. CONCLUSION: Bcl-2 expression is reduced along the spectrum from benign towards invasive disease of the cervix. The maximum expression found in CIN II may suggest increased potential of progression to CIN III. |
| The E2A-HLF oncogenic fusion protein acts through Lmo2 and Bcl-2 to immortalize hematopoietic progenitors. | The oncogenic fusion protein E2A-HLF is a chimeric transcription factor that arises from the t(17;19) translocation in childhood B-cell acute lymphoblastic leukemias (B-precursor ALL) and is associated with very poor outcome. We show that retroviral-mediated expression of E2A-HLF alone is sufficient to immortalize primary lymphoid progenitors. We identify Lmo2 and Bcl-2 as direct target genes downstream of E2A-HLF. We use real-time PCR analysis to show that LMO2 and BCL-2 expression is preferentially upregulated both in biopsy material from t(17;19) B-precursor ALL patients and lymphoid cell lines derived from t(17;19) leukemias. Co-expression of Lmo2 and Bcl-2 was sufficient to immortalize lymphoid progenitor cells resulting in a similar phenotype to that induced by E2A-HLF alone. Both shRNA-mediated knockdown of Lmo2 expression and pharmacological inhibition of BCL-2 function in E2A-HLF immortalized cells severely compromised their viability. These data suggest that both Lmo2 and Bcl-2 are required for the action of E2A-HLF in leukemogenesis. |
| Correlation of cell cycle regulatory proteins (p53 and p16(ink)(4)(a)) and bcl-2 oncoprotein with mitotic index and thickness of primary cutaneous malignant melanoma. | The purpose of the study was to determine the frequency of expression p53 and p16INK4a proteins and bcl-2 oncoprotein in malignant skin melanoma and to determine their correlation with the proliferative index and tumor thickness. The study involved 53 patients: 27 (51%) male and 26 (49%) female. Mitotic index showed a correlation with p53 protein expression, a negative correlation with p16INK4a protein expression. Statistically significant correlations were determined between the Breslow tumor thickness, Clark invasion level and p53 protein expression, as well as Breslow tumor thickness and bcl-2 oncoprotein expression (p<0.05), whereas there was no correlation between the p16INK4a protein expression and melanoma thicknes and Clark invasion level. Overexpression p53 protein and bcl-2 oncoprotein, with the loss p16INK4a protein of expression in the nodular melanoma, confirms a frequent loss of function of these tumor suppressor gene and oncogene, and indicates a vertical tumor growth phase. The loss of tumor suppression function the p53 protein and bcl-2 oncoprotein overexpression in cutaneous melanoma correlates with larger tumor thickness, whereas the overexpression of mutated p53 protein and loss p16INK4a protein of expression indicate a higher proliferative tumour potential. Therefore, these evaluated proteins may be the aggressive biological tumour activity markers. |
| Regulation of mitochondrial metabolism: yet another facet in the biology of the oncoprotein Bcl-2. | The Bcl-2 (Bcl is B-cell lymphocytic-leukaemia proto-oncogene) family comprises two groups of proteins with distinct functional biology in cell-fate signalling. Bcl-2 protein was the first member to be discovered and associated with drug resistance in human lymphomas. Since then a host of other proteins such as Bcl-xL, Bcl-2A1 and Mcl-1 with similar anti-apoptotic functions have been identified. In contrast, the pro-apoptotic Bcl-2 proteins contain prototypic effector proteins such as Bax and Bak, and the BH3 (Bcl-2 homology)-only proteins comprising Bak, Bid, Bim, Puma and Noxa. A complex interplay between the association of pro-apoptotic and anti-apoptotic proteins with each other determines the sensitivity of cancer cells to drug-induced apoptosis. The canonical functional of Bcl-2 in terms of apoptosis inhibition is its ability to prevent mitochondrial permeabilization via inhibiting the translocation and oligomerization of pro-apoptotic proteins such as Bax; however, more recent evidence points to a novel mechanism of the anti-apoptotic activity of Bcl-2. Overexpression of Bcl-2 increases mitochondrial oxygen consumption and in doing so generates a slight pro-oxidant intracellular milieu, which promotes genomic instability and blocks death signalling. However, in the wake of overt oxidative stress, Bcl-2 regulates cellular redox status thereby preventing excessive build-up of ROS (reactive oxygen species), which is detrimental to cells and tissues. Taken together, the canonical and non-canonical activities of Bcl-2 imply a critical involvement of this protein in the processes of tumour initiation and progression. In the present paper we review these functionally distinct outcomes of Bcl-2 expression with implications for the chemotherapeutic management of cancers. |
| Detection of somatic mutations of the bcl-2 oncogene in B cell lymphomas with the t(14;18). | The incidence of mutations within the first 582 bp of the open reading frame of the bcl-2 gene, has been investigated in presentation lymph node samples, from 7 cases with follicular non-Hodgkin s lymphoma (NHL), 1 case with centroblactic NHL, the DOHH, cell line derived from the immunoblastic transformation of a follicular NHL and one case with benign follicular hyperplasia. A total number of 43 point mutations within the examined portion of the bcl-2 gene were detected in the cases analysed including the DOHH, cell line. Similar analysis of peripheral blood lymphocytes from 2 normal individuals that lacked the t(14;18), revealed no mutations in one case and a single 101 bp A-->G transition in clone, in the other. Missense mutations were detected in 7/8 NHLs, the DOHH2 cell line and the case of benign follicular hyperplasia. There was a significantly higher frequency of mutations within the region corresponding to the BH1, one of the two known functional domains, of the bcl-2 protein. The same position, 445 bp of the bcl-2 gene, was found to be involved in missense mutations affecting the DOHH2 cell line and 3 cases with follicular NHL. |
| bcl-2 proto-oncogene, apoptosis and oncogenesis. | Cell death has gained considerable interest during the last few years since, along with mitosis, it contributes to the determination of normal or neoplastic state of tissues. Cell death can occur in two ways: necrosis Or accidental death and apoptosis or programmed death. The focus on apoptosis is very recent. Like cell division it involves an interesting set of genetic regulations. The apoptosis-preventing bcl-2 gene, therefore emerges as a key-gene at the crossroad of cell death and cell proliferation: the two facets of the oncogenesis-governing equation. |
| Corrigendum to "Expression of the proto-oncogene bcl-2 is increased in the rat brain following kainate-induced seizures" [Restor. Neurol. Neurosci. 9 (1996) 243]. | We have recently reported inactivation of the tyrosine phosphatase PTPN2 (also known as TC-PTP) through deletion of the entire gene locus in approximately 6% of T-cell acute lymphoblastic leukemia (T-ALL) cases. T-ALL is an aggressive disease of the thymocytes characterized by the stepwise accumulation of chromosomal abnormalities and gene mutations. In the present study, we confirmed the strong association of the PTPN2 deletion with TLX1 and NUP214-ABL1 expression. In addition, we found cooperation between PTPN2 deletion and activating JAK1 gene mutations. Activating mutations in JAK1 kinase occur in approximately 10% of human T-ALL cases, and aberrant kinase activity has been shown to confer proliferation and survival advantages. Our results reveal that some JAK1 mutation-positive T-ALLs harbor deletions of the tyrosine phosphatase PTPN2, a known negative regulator of the JAK/STAT pathway. We provide evidence that down-regulation of Ptpn2 sensitizes lymphoid cells to JAK1-mediated transformation and reduces their sensitivity to JAK inhibition. |
| Expression of the proto-oncogene bcl-2 is increased in the rat brain following kainate-induced seizures. | The proto-oncogene bcl-2 is an important suppressor of apoptotic cell death in development and of both apoptotic and necrotic cell death in mature neurons. We studied expression of bcl-2 and the related gene, bax, which may promote cell death, after seizures induced by systemic kainate injection in rats. expression of bcl-2 mRNA was studied by in situ hybridization. Bax and bcl-2 protein expression was studied by immunocytochemistry. Histologic analysis of cresyl violet-stained paraffin sections was performed at 72 h. bcl-2 protein was expressed in CA1 neurons, a region that is injured, yet survives after seizures. Bcl-2 mRNA was expressed in CA3, a region where there is extensive neuronal death at 72 h, but the bcl-2 protein was not translated. However, bax protein expression in CA3 was increased at 24 h. These results support a possible role for bcl-2 in promoting survival of CA3 after seizures. |
| 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. |
| Bcl-2 oncogene blocks differentiation and extends viability but does not immortalize normal human keratinocytes. | To ascertain whether the bcl-2 oncogene plays a role in the initial stages of skin carcinogenesis by preventing differentiation of epidermal keratinocytes, we transfected primary human keratinocytes with the human bcl-2 gene and then determined whether these transfectants escape high calcium- and serum-induced differentiation. We found that the bcl-2 oncogene blocked differentiation and extended the life span of human keratinocytes in culture by over 24 weeks compared with cells transfected with pZip-neo DNA, which only grew for 5 weeks in culture. Keratinocytes transfected with the bcl-2 oncogene exhibited apoptotic bodies and telomere-telomere association between chromosomes toward the end of their life-span. These results suggest that die bcl-2 oncogene may be necessary but not sufficient for the immortalization of human keratinocytes. |
| Functional similarity between adenovirus e1b 19k gene and bcl2 oncogene - mutant complementation and suppression of cell-death induced by DNA-damaging agents. | Adenovirus mutants defective in a 19 kD protein (19K gene) encoded by the early region E1B induce DNA fragmentation in a manner similar to the internucleosomal DNA fragmentation observed during programmed cell death (apoptosis) induced by a number of chemical, physical and biological stimuli. Zn++ ions effectively suppressed DNA fragmentation induced by a 19K mutant consistent with their inhibition of DNA fragmentation during apoptosis. Since the cellular proto-oncogene Bcl2 has been shown to suppress DNA fragmentation and the resulting programmed cell death, we have carried out a functional complementation analysis to determine whether the E1B 19 kD protein is functionally similar to the Bcl2 protein. Our results indicate that the DNA fragmentation induced by the 19K mutant can be efficiently suppressed by stable expression of human Bcl2 protein. Further, the 19 kD and Bcl2 proteins also function similarly to suppress DNA fragmentation and cell death induced by the DNA damaging agents cisplatin and UV. |
| Flavopiridol induces BCL-2 expression and represses oncogenic transcription factors in leukemic blasts from adults with refractory acute myeloid leukemia. | Flavopiridol is a cyclin-dependent kinase inhibitor that induces cell cycle arrest, apoptosis, and clinical responses in selected patients with acute myeloid leukemia (AML). A better understanding of the molecular pathways targeted by flavopiridol is needed to design optimal combinatorial therapy. Here, we report that in vivo administration of flavopiridol induced expression of the BCL-2 anti-apoptotic gene in leukemic blasts from adult patients with refractory AML. Moreover, flavopiridol repressed the expression of genes encoding oncogenic transcription factors (HMGA1, STAT3, E2F1) and the major subunit of RNA Polymerase II. Our results provide mechanistic insight into the cellular pathways targeted by flavopiridol. Although further studies are needed, our findings also suggest that blocking anti-apoptotic pathways could enhance cytotoxicity with flavopiridol. |
| Membrane topology of the Bcl-2 proto-oncogenic protein demonstrated in vitro. | The Bcl-2 oncogenic protein was synthesized in vitro and shown to post-translationally integrate asymmetrically into microsomal membranes with no requirement for an amino-terminal signal sequence. Instead, a carboxyl-terminal hydrophobic domain of Bcl-2 served as an insertion sequence essential for membrane assembly since a Bcl-2 mutant lacking this domain completely lost its ability to associate with microsomal membranes. The data demonstrate that Bcl-2 is tightly associated with the lipid bilayer with the nature of an integral membrane protein. The membrane orientation of Bcl-2 was determined using a protease protection assay, which showed that it is predominantly localized to the cytoplasmic face of membranes. A similar type of membrane processing has been shown for cytochrome b5 and also suggested for the viral oncogenic protein polyoma middle-T antigen. |
| Expression of the bcl-2 oncogene protein is not specific for the 14;18 chromosomal translocation. | It has been reported previously that the bcl-2 protooncogene protein is detectable in neoplastic cells from cases of human lymphoma in which the 14;18 chromosomal translocation is present, but not in lymphomas that lack this chromosomal rearrangement or in normal lymphoid tissue. In the present study we confirmed, by immunohistologic labeling with polyclonal and monoclonal antibodies, that bcl-2 protein is strongly expressed in many cases of follicular lymphoma and that these neoplastic follicles differ clearly from their nonmalignant counterpart (reactive germinal centres) in which bcl-2 protein is undetectable. However we also found bcl-2 protein in normal T- and B-lymphoid cells and in a variety of lymphoproliferative disorders in which the 14;18 translocation is not present. It is therefore concluded that expression of bcl-2 protein is not a specific marker for lymphomas bearing the 14;18 chromosomal translocation and that the observations of other investigators may have reflected the inadequate sensitivity of their staining procedure. |
| Role of bcl-2 oncoprotein in oral potentially malignant disorders and squamous cell carcinoma: an immunohistochemical study. | BACKGROUND AND OBJECTIVES: The product of bcl-2 gene, bcl-2 protein, an anti-apoptotic protein, is known to be over-expressed in potentially malignant disorders and squamous cell carcinoma (SCC) of the oral cavity. The aim of this study is to compare the topographical aspect and degree of bcl-2 over-expression in potentially malignant disorders including leukoplakia, oral submucous fibrosis (OSMF), and oral lichen planus (OLP), with that of the oral squamous cell carcinoma (OSCC), and to determine whether bcl-2 protein can be considered as a tumor marker. MATERIALS AND METHODS: A group of 60 histo-pathologically diagnosed, formalin-fixed, paraffin embedded tissue samples was included in the study. The study group was further subdivided into four groups: Group I, consisting of oral leukoplakia; Group II, OSMF; Group III, OLP and Group IV, OSCC. These samples were collected from Government Dental College, Bangalore, and then subjected to immunohistochemical (IHC) staining using indirect immunoenzyme labeled streptavidin biotin (LSAB) method. RESULTS: Out of 30 cases of OSCC: 11 (36.7%) cases showed greater supra-basal keratinocyte staining; 15 (50%) cases showed greater number of positive cells in the basal cell layer, with relatively less number of supra-basal cells showing positive staining; and, rest of the 4 (13.3%) cases did not show convincing staining. Among the total 30 cases of potentially malignant disorders: 10 each of leukoplakia, OSMF and OLP, 2 (20%), 2 (20%), 4 (40%) of the cases showed greater supra-basal cell layer positive staining and 8 (80%), 6 (60%), 6 (60%) of them showed greater basal cell staining, respectively. Two cases of OSMF did not show convincing staining. In the cases that were bcl-2 positive: 2 (6.67%) of the OSCC, 3 (30%) of leukoplakia, 2 (20%) of OSMF and 1 (10%) of OLP, showed more than 50% of the cells positive. 25-50% cells were positive in 21 (70%) of OSCC, 6 (60%) of leukoplakia, 4 (40%) of OSMF and 6 (60%) of OLP cases. 10-25% of cells were positive in 4 (13.3%) of OSCC, 1(10%) of leukoplakia, 2 (20%) of OSMF and 3 (30%) of OLP cases. Less than 10% of cells were positive in 3 (10%) of OSCC and 2 (20%) of OSMF cases. CLINICAL SIGNIFICANCE AND CONCLUSION: As definite number of cases showed bcl-2 over expression in our study, the role of bcl-2 in the development and progression of oral neoplasia needs further investigation along with other oncogenes. |
| 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. |
| Clusterin confers resistance to TNF-alpha-induced apoptosis in breast cancer cells through NF-kappaB activation and Bcl-2 overexpression. | Secretory clusterin (sClu) is an anti-apoptotic protein that plays a role in protecting cells from tumour-necrosis factor (TNF)-alpha-induced apoptosis. The aim of the present study was to investigate the molecular mechanisms underlying the effect of sClu on TNF-alpha-induced apoptosis in breast cancer cells. The wild-type p53 expressing MCF-7 cell line was engineered to overexpress sClu (MCF-7/sClu), whereas the MDA-MB-231 cell line with mutant p53 was transfected with a sClu silencing siRNA (MDA-MB-231/sClu siRNA). The effects of clusterin overexpression and downregulation on apoptosis and sensitivity to TNF-alpha were examined in vitro. Our results showed that TNF-alpha treatment increased Bcl-2 mRNA and protein levels in breast cancer cells, suggesting that Bcl-2 is directly regulated by nuclear factor-kappaB (NF-kappaB) in response to TNF-alpha. The induction of Bcl-2 was mediated by the p65 subunit of NF-kappaB. siRNA-mediated silencing of Bcl-2 led to a significant increase in TNF-alpha-induced apoptosis. Silencing of sClu in MDA-MB-231/sClu siRNA cells abrogated TNF-alpha-mediated NF-kappaB activation and Bcl-2 overexpression, and rendered the MDA-MB-231/sClu siRNA cells significantly more sensitive to TNF-alpha-mediated apoptosis than the parental cells. Furthermore, overexpression of sClu in MCF-7/sClu cells promoted TNF-alpha-mediated NF-kappaB activity and Bcl-2 overexpression, and rendered the MCF-7/Clu cells significantly more resistant to TNF-alpha-mediated apoptosis. Inhibition of NF-kappaB activity or p65 and Bcl-2 expression reversed these effects. The present results suggested that sClu confers breast cancer cells resistance to TNF-alpha-induced apoptosis through NF-kappaB activation and Bcl-2 overexpression. |
| Epigenetic silencing of Bcl-2, CEBPA and p14(ARF) by the AML1-ETO oncoprotein contributing to growth arrest and differentiation block in the U937 cell line. | The AML1-ETO fusion transcription factor generated by the t(8;21) translocation is considered to deregulate the expression of genes that are crucial for normal differentiation and proliferation of hematopoietic progenitors, resulting in acute myelogenous leukemia by recruiting co-repressor complexes to DNA. To investigate the role of AML1-ETO in leukemogenesis, we transfected the cloned AML1-ETO cDNA and expressed the AML1-ETO protein in U937 myelomonocytic leukemia cells. By focusing on the anti-apoptotic gene Bcl-2, the key regulator gene of granulocytic differentiation CCAAT/enhancer-binding protein alpha (CEBPA) and the tumor suppressor gene p14(ARF), we found that both AML1-ETO-expressing cell lines and t(8;21) leukemia samples displayed low levels of these three genes. Chromatin immunoprecipitation assays demonstrated that Bcl-2, CEBPA and p14(ARF) were direct transcriptional targets of AML1-ETO. The universal binding of AML1-ETO to genomic DNA resulted in recruitment of methyl-CpG binding protein 2 (MeCP2), reduction of histone H3 or H4 acetylation and increased trimethylation of histone H3 lysine 9 as well as lysine 27 indicating that AML1-ETO induced heterochromatic silencing of Bcl-2, CEBPA and p14(ARF). These results suggested that the aberrant transcription factor AML1-ETO epigenetically silenced the function of the Bcl-2, CEBPA and p14(ARF) genes by inducing repressed chromatin configurations at their promoters through histone modifications. |
| Oligonucleotide suppression of bcl-2 in LNCaP cells is compensated by increased androgen sensitivity, p53 and oncogene activity, and suppressed caspase-3. | Antisense oligonucleotides (oligos) have been employed against prostate cancer models in both in vivo and in vitro systems. While most target growth factors or their receptors, other oligos are directed against inhibitors of apoptosis or mediators of androgen action. Those which suppress bcl-2 activity (in prostate cancer patients) have even reached clinical trials. We evaluated a set of oligos which targeted and comparably suppressed the expression of bcl-2, an apoptosis inhibitory protein. Our first study reported that LNCaP cells were adapted by suppression of caspase-3 (a promoter of apoptosis). In this study we evaluated additional proteins associated with tumor progression and found the expression of the androgen receptor, its p300 and IL-6 co-activators, as well as v-myc (oncogenic) and (unexpectedly) tumor suppressor p53 genes to be enhanced. We conclude that oligo treatment directed against bcl-2, intended to stimulate apoptosis, can be evaded through compensatory changes in gene activity associated with additional regulators of apoptosis, androgen sensitivity and oncogenesis. This suggests that therapeutic suppression of bcl-2 can promote tumor resistance and transformation to a more aggressive (androgen and oncogene driven) phenotype. |
| Correlation of nuclear morphometry of primary melanoma of the skin with clinicopathological parameters and expression of tumor suppressor proteins (p53 and p16(INK4a)) and bcl-2 oncoprotein. | PURPOSE: To determine the correlation of nuclear morphometry of primary cutaneous malignant melanoma (CMM) with clinicopathological parameters and the expression of p53, p16INK4a, and bcl-2. METHODS: Image analysis and computerized nuclear morphometry were used in a series of 53 primary CMM (nodular melanoma/NM, N=33, and superficially spreading melanoma/SSM, N=20). The clinicopathological parameters determined for each tumor were histological type, maximal tumor diameter, Breslow thickness, Clark level, ulceration, mitotic index (MI) and pathological disease stage. Measured nuclear features included size, shape and optical density (OD). The results were correlated with the expression of p53, p16INK4a and bcl-2. RESULTS: Significant differences between NM and SSM were found for the nuclear area, OD, and perimeter (p<0.05). MI showed significant correlations with nuclear area, perimeter and Feret diameter (p<0.05). In relation to the Clark level, significant differences were found for OD (p<0.01) and circularity of nuclei (p<0.05) between levels II and IV, while the Breslow thickness was not significantly correlated with nuclear morphometric variables. Significantly negative correlations were observed between OD and the expression of p53 and bcl-2, while significant positive correlation was found between the nuclear circularity and p53 immunoreaction intensity. There was no significant correlation between the expression of p16INK4a protein and karyometric variables. CONCLUSION: OD and circularity are significantly correlated with p53 and bcl-2, and nuclear area with MI. These karyometric variables may determine a more aggressive phenotype of melanoma cells. |
| Immunolocalization of Bcl-2 oncoprotein in amlodipine-induced gingival overgrowth. | BACKGROUND: Drug-induced gingival overgrowth (DIGO) is one of the unwanted side effects of amlodipine therapy, but the pathogenesis still remains unclear. Apoptosis, which plays a ubiquitous role in tissue homeostasis, including gingiva, may be involved in the development of gingival enlargement. AIMS AND OBJECTIVES: (i) To study the distribution of Bcl-2 in healthy and overgrown gingival tissues. (ii) To compare and correlate the Bcl-2 expression in gingival samples from subjects on amlodipine therapy to the findings in healthy controls. MATERIALS AND METHODS: A total of 25 subjects were recruited for the study - 15 hypertensive patients and 10 systemically healthy subjects. Both the groups were analyzed for Bcl-2 expression using immunohistochemistry. RESULTS: Few of the control specimens showed weak positivity to Bcl-2 antibody, with the distribution limited to the basal cell layers alone, whereas 10 hyperplastic specimens expressed Bcl-2 and, unlike the control group, the distribution pattern was seen in both basal and suprabasal layers. CONCLUSION: The results indicate that the pathogenesis of amlodipine-induced gingival overgrowth might involve inhibition of apoptosis, especially with morphogenesis of hyperplastic gingival epithelia. |
| Oncogene PKCepsilon controls INrf2-Nrf2 interaction in normal and cancer cells through phosphorylation of INrf2. | The INrf2 (Keap1)-Nrf2 cell sensor complex has a crucial role in protection against chemical- and radiation-induced oxidative stress and cellular transformation. INrf2, in association with Cul3-Rbx1, ubiquitylates and degrades Nrf2. Exposure to stressors leads to stabilization of Nrf2 and the coordinated activation of cytoprotective proteins and cellular protection. However, the molecular signal(s) that regulate control of Nrf2 by INrf2 remain elusive. In this report, we demonstrate that phosphorylation of INrf2 at Ser599 and Ser602 by the oncoprotein PKCepsilon is essential for INrf2-Nrf2 interaction, and the subsequent ubiquitylation and degradation of Nrf2. Inhibition of PKCepsilon, knockdown of PKCepsilon and the INrf2S602A mutant ALL failed to phosphorylate INrf2, leading to loss of the INrf2-Nrf2 interaction, Nrf2 degradation and enhanced cytoprotection and drug resistance. Molecular modeling analyses revealed that phosphorylation of S599 exposes the deeply buried S602 for phosphorylation and enhanced INrf2-Nrf2 interaction. Analysis of human lung and liver tumor protein arrays showed lower PKCepsilon and higher Nrf2 levels, which presumably promoted cancer cell survival and drug resistance. In conclusion, phosphorylation of INrf2 by PKCepsilon leads to regulation of Nrf2, with significant implications for the survival of cancer cells, which often express lower levels of PKCepsilon. |
| MicroRNA-30b functions as a tumour suppressor in human colorectal cancer by targeting KRAS, PIK3CD and BCL2. | Colorectal cancer (CRC) is the third most common cancer in the USA. MicroRNAs play important roles in the pathogenesis of CRC. In this study, we investigated the role of miR-30b in CRC and found that its expression was significantly lower in CRC tissues than that in normal tissues. We showed that a low expression level of miR-30b was closely related to poor differentiation, advanced TNM stage and poor prognosis of CRC. Further experiments showed that over-expression of miR-30b suppressed CRC cell proliferation in vitro and tumour growth in vivo. Specifically, miR-30b promoted G1 arrest and induced apoptosis. Moreover, KRAS, PIK3CD and BCL2 were identified as direct and functional targets of miR-30b. MiR-30b directly targeted the 3 -untranslated regions of their mRNAs and repressed their expression. This study revealed functional and mechanistic links between miRNA-30b and oncogene KRAS, PIK3CD and BCL2 in the pathogenesis of CRC. MiR-30b not only plays important roles in the regulation of cell proliferation and tumour growth in CRC, but is also a potential prognostic marker or therapeutic target for CRC. Restoration of miR-30b expression may represent a promising therapeutic approach for targeting malignant CRC. |
| Recurrent salivary pleomorphic adenoma shows increased immunohistologic expression of bcl-2 oncoprotein. | BACKGROUND: Internal cell biology, including apoptotic regulation, is presumed to play a key role in the development of recurrent pleomorphic adenoma (PA). AIM: The aim of our study was to determine the relevance of B-cell lymphoma 2 (bcl-2) oncoprotein immunoexpression and distribution in primary PA, and its recurrence. METHODS: Ten primary-non-recurrent, 14 primary-to-recur, and 28 recurrences of parotid PA patients aged 19-73 (mean 40.7+/-16.7) years were enrolled. The bcl-2 expression was compared between groups using a semi-quantitative histoscore, defined as the multiple of the percentage of cells by the intensity of immunostaining. RESULTS: Widely varying bcl-2 immunoreaction was found in the epithelial areas of 91.7% of primary and 85.2% of recurrent PA. Similarly varying but much less, immunopositivity was found in the myxoid areas of 62.5% of primary and 71.4% of recurrent tumours. No obvious differences in the bcl-2 staining intensity or pattern of specific epithelial morphologic structures in either the primary-non-recurrent, primary-to-recur or recurrent tumours were found. In both the mesenchymal and epithelial areas of PA, the differences in bcl-2 immunohistoscore between the primary-non-recurrent and primary-to-recur groups were not statistically significant (P=0.62, respectively 0.51). In the mesenchymal areas, the study revealed a significantly increased histoscore in recurrent tumours compared to their corresponding primaries (P=0.01). Increased bcl-2 expression in recurrent PA suggests an exaggerated aggressiveness of that tumor. CONCLUSION: The fact that a significant difference in the histoscore was found exclusively in the myxoid component seems to accord with the reported prevalence of the latter in recurrent and metastatic PA. |
| Loss of MIR15A and MIR16-1 at 13q14 is associated with increased TP53 mRNA, de-repression of BCL2 and adverse outcome in chronic lymphocytic leukaemia. | This study was conducted to investigate the possibility that TP53 mRNA is variably expressed in chronic lymphocytic leukaemia (CLL) and that under-expression is associated with TP53 dysfunction and adverse outcome. Although TP53 mRNA levels did indeed vary among the 104 CLL samples examined, this variability resulted primarily from over-expression of TP53 mRNA in 18 samples, ALL of which lacked TP53 deletion/mutation. These patients had higher lymphocyte counts and shorter overall and treatment-free survival times compared to cases with low TP53 mRNA expression and no TP53 deletion/mutation. Furthermore, TP53 mRNA levels did not correlate with levels of TP53 protein or its transcriptional target CDKN1A. We speculated that the adverse outcome associated with TP53 mRNA over-expression might reflect variation in levels of MIR15A and MIR16-1, which are encoded on chromosome 13q14 and target TP53 and some oncogenes including BCL2. In keeping with our hypothesis, 13q14 copy number and levels of MIR15A/MIR16-1 correlated positively with one another but negatively with levels of TP53 mRNA and BCL2 mRNA. Our findings support a model in which loss of MIR15A/MIR16-1 at chromosome 13q14 results in adverse outcome due to de-repression of oncogenes such as BCL2, and up-regulation of TP53 mRNA as a bystander effect. |
| Apoptosis and cell proliferation: correlation with BCL-2 and P53 oncoprotein expression in human hepatocellular carcinoma. | BACKGROUND/AIM: Occurrence and biological characteristics of tumors are related not only to over-proliferation of carcinoma cells but also to decrease of apoptosis. The present study was suggested to evaluate the correlation between P53 and Bcl-2 oncoprotein expression with apoptosis and cell proliferative activity in HCC patients. METHODOLOGY: P53 and Bcl-2 protein expression were estimated in the sera and in liver tissues of 45 HCC cases using ELISA and immunohistochemistry. Apoptosis was estimated as apoptotic index (AI) and cell proliferative activity was detected using AgNORs. RESULTS: Serum p53 antigen in HCC patients (0.46+/-0.331ng/ml) showed significant elevation than healthy individuals (0.24+/-0.11ng/ml, p<0.05). P53 protein was immunostained in 41% of HCC; 37.5% of these positive cases were in diffuse pattern representing the mutant p53. Serum Bcl-2 was elevated in HCC cases (50.28+/-25.83u/ ml) than healthy individuals (26.65+/-8.63u/ml, p<0.05). Bcl-2 was immunohistochemically localized in 35.9% of HCC and the positivity was inversely proportional with the histological grade (47.4%, 25%, 25% in grade I,II,III respectively). Bcl-2 showed a positive linear correlation with p53 in the sera of carcinoma patients (p<0.05). CONCLUSION: Bcl-2 may play a role in hepatocarcinogenesis as an inhibitor of apoptosis. However, a positive linear correlation was found between bcl-2 and p53 suggesting that bcl-2/p53 co-expression pattern may be of value in the development of more effective medical therapies in HCC. |
| Apoptosis and cell proliferation: correlation with BCL-2 and P53 oncoprotein expression in human hepatocellular carcinoma. | BACKGROUND/AIM: Occurrence and biological characteristics of tumors are related not only to over-proliferation of carcinoma cells but also to decrease of apoptosis. The present study was suggested to evaluate the correlation between P53 and Bcl-2 oncoprotein expression with apoptosis and cell proliferative activity in HCC patients. METHODOLOGY: P53 and Bcl-2 protein expression were estimated in the sera and in liver tissues of 45 HCC cases using ELISA and immunohistochemistry. Apoptosis was estimated as apoptotic index (AI) and cell proliferative activity was detected using AgNORs. RESULTS: Serum p53 antigen in HCC patients (0.46+/-0.331ng/ml) showed significant elevation than healthy individuals (0.24+/-0.11ng/ml, p<0.05). P53 protein was immunostained in 41% of HCC; 37.5% of these positive cases were in diffuse pattern representing the mutant p53. Serum Bcl-2 was elevated in HCC cases (50.28+/-25.83u/ ml) than healthy individuals (26.65+/-8.63u/ml, p<0.05). Bcl-2 was immunohistochemically localized in 35.9% of HCC and the positivity was inversely proportional with the histological grade (47.4%, 25%, 25% in grade I,II,III respectively). Bcl-2 showed a positive linear correlation with p53 in the sera of carcinoma patients (p<0.05). CONCLUSION: Bcl-2 may play a role in hepatocarcinogenesis as an inhibitor of apoptosis. However, a positive linear correlation was found between bcl-2 and p53 suggesting that bcl-2/p53 co-expression pattern may be of value in the development of more effective medical therapies in HCC. |
| Inhibition of Pro-apoptotic BAX by a noncanonical interaction mechanism. | BCL-2 is a negative regulator of apoptosis implicated in homeostatic and pathologic cell survival. The canonical anti-apoptotic mechanism involves entrapment of activated BAX by a groove on BCL-2, preventing BAX homo-oligomerization and mitochondrial membrane poration. The BCL-2 BH4 domain also confers anti-apoptotic functionality, but the mechanism is unknown. We find that a synthetic alpha-helical BH4 domain binds to BAX with nanomolar affinity and independently inhibits the conformational activation of BAX. Hydrogen-deuterium exchange mass spectrometry demonstrated that the N-terminal conformational changes in BAX induced by a triggering BIM BH3 helix were suppressed by the BCL-2 BH4 helix. Structural analyses localized the BH4 interaction site to a groove formed by residues of alpha1, alpha1-alpha2 loop, and alpha2-alpha3 and alpha5-alpha6 hairpins on the BAX surface. These data reveal a previously unappreciated binding site for targeted inhibition of BAX and suggest that the BCL-2 BH4 domain may participate in apoptosis blockade by a noncanonical interaction mechanism. |
| Targeting Bcl-2 stability to sensitize cells harboring oncogenic ras. | The pro-survival factor Bcl-2 and its family members are critical determinants of the threshold of the susceptibility of cells to apoptosis. Studies are shown that cells harboring an oncogenic ras were extremely sensitive to the inhibition of protein kinase C (PKC) and Bcl-2 could antagonize this apoptotic process. However, it remains unrevealed how Bcl-2 is being regulated in this apoptotic process. In this study, we investigate the role of Bcl-2 stability in sensitizing the cells harboring oncogenic K-ras to apoptosis triggered by PKC inhibitor GO6976. We demonstrated that Bcl-2 in Swiss3T3 cells ectopically expressing or murine lung cancer LKR cells harboring K-ras rapidly underwent ubiquitin-dependent proteasome pathway after the treatment of GO6976, accompanied with induction of apoptosis. In this process, Bcl-2 formed the complex with Keap-1 and Cul3. The mutation of serine-17 and deletion of BH-2 or 4 was required for Bcl-2 ubiquitination and degradation, which elevate the signal threshold for the induction of apoptosis in the cells following PKC inhibition. Thus, Bcl-2 appears an attractive target for the induction of apoptosis by PKC inhibition in cancer cells expressing oncogenic K-ras. |
| Niclosamide, an anti-helminthic molecule, downregulates the retroviral oncoprotein Tax and pro-survival Bcl-2 proteins in HTLV-1-transformed T lymphocytes. | Adult T cell leukemia and lymphoma (ATL) is a highly aggressive form of hematological malignancy and is caused by chronic infection of human T cell leukemia virus type 1 (HTLV-1). The viral genome encodes an oncogenic protein, Tax, which plays a key role in transactivating viral gene transcription and in deregulating cellular oncogenic signaling to promote survival, proliferation and transformation of virally infected T cells. Hence, Tax is a desirable therapeutic target, particularly at early stage of HTLV-1-mediated oncogenesis. We here show that niclosamide, an anti-helminthic molecule, induced apoptosis of HTLV-1-transformed T cells. Niclosamide facilitated degradation of the Tax protein in proteasome. Consistent with niclosamide-mediated Tax degradation, this compound inhibited activities of MAPK/ERK1/2 and IkappaB kinases. In addition, niclosamide downregulated Stat3 and pro-survival Bcl-2 family members such as Mcl-1 and repressed the viral gene transcription of HTLV-1 through induction of Tax degradation. Since Tax, Stat3 and Mcl-1 are crucial molecules for promoting survival and growth of HTLV-1-transformed T cells, our findings demonstrate a novel mechanism of niclosamide in inducing Tax degradation and downregulating various cellular pro-survival molecules, thereby promoting apoptosis of HTLV-1-associated leukemia cells. |
| 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. |
| The bcl-2 candidate proto-oncogene product is a 24-kilodalton integral-membrane protein highly expressed in lymphoid cell lines and lymphomas carrying the t(14;18) translocation. | We have identified a 24-kilodalton protein that is the product of the human bcl-2 gene, implicated as an oncogene because of its presence at the site of t(14;18) translocation breakpoints. The Bcl-2 protein was detected by specific, highly sensitive rabbit antibodies and was shown to be present in a number of human lymphoid cell lines and tissues, as well as in mouse B cells transfected with a bcl-2 cDNA construct. Characterization of the Bcl-2 protein demonstrated that it has a lipophilic nature and is associated with membrane structures, probably by means of its hydrophobic carboxy-terminal membrane-spanning domain. In t(14;18)-carrying cell lines, the protein is predominantly localized to the perinuclear endoplasmic reticulum, with a minor fraction in the plasma membrane. These properties, together with the observations that Bcl-2 does not have a characteristic signal peptide and is not glycosylated, suggest that it is an integral-membrane protein that spans the bilayer at its C-terminal hydrophobic region but is exposed only at the cytoplasmic surface. The relative abundance of the Bcl-2 protein in various human lymphoid cell lines correlated with transcription of the bcl-2 gene. The protein was abundant in ALL t(14;18)-carrying cell lines and lymphomas and was also found at lower levels in pre-B-cell lines and nonmalignant lymphoid tissues that do not carry t(14;18) translocations. These results suggest that the Bcl-2 protein is functional in normal B lymphocytes and that a quantitative difference in its expression may play a role in the pathogenesis of lymphomas carrying the t(14;18) translocation. |
| Oncogenic potential of bcl-2 demonstrated by gene transfer. | Follicular lymphoma is the most common human B-cell malignancy in the United States and Western Europe. Most of the tumours contain t(14;18) chromosome translocations involving the human bcl-2 gene. Translocation of bcl-2 sequences from chromosome 18 into the transcriptionally active immunoglobulin locus at chromosome band 14q32 in B cells deregulates bcl-2 gene expression, resulting in the accumulation of high levels of bcl-2 messenger. Human bcl-2 transcripts generate two proteins, p26 bcl-2-alpha and p22 bcl-2-beta, by virtue of alternative splice-site selection. Both proteins have in common their first 196 NH2-terminal amino acids but share little similarity with other sequences in a data bank. Although the biological and biochemical functions of bcl-2 are unknown, recent subcellular localization studies indicate that p26 bcl-2-alpha associates with cellular membranes, consistent with a stretch of hydrophobic amino acids in its carboxy terminus. The bcl-2 gene may represent a novel oncogene having no known retroviral counterpart. Here we demonstrate the oncogenic potential of bcl-2 through a gene transfer approach. |
| Mapping of the bcl-2 oncogene on mouse chromosome 1. | Two bcl-2 alleles have been identified in inbred strains of mice by restriction fragment length polymorphism (RFLP). Analysis of a bcl-2 RFLP in a series of bilineal congenic strains (C.D2), developed as a tool for chromosomal mapping studies, revealed linkage of bcl-2 to the Idh-1/Pep-3 region of murine chromosome 1. The co-segregation of bcl-2 alleles with allelic forms of two other chromosome 1 loci, Ren-1,2 and Spna-1, in a set of back-cross progeny, positions bcl-2 7.8 cM centromeric from Ren-1,2. |
| Expression of the murine proto-oncogene bcl-2 is stage specific and cell-type specific. | The human ets-2 gene is a homolog of the v-ets oncogene of the E26 virus and codes for a 56-kilodalton nuclear protein. The ets-2 protein is phosphorylated and has a rapid turnover, with a half-life of 20 min. When human lymphocytic CEM cells were treated with the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA), the level of the ets-2 protein was quickly elevated 5- to 20-fold. This effect of TPA was mimicked by a synthetic diacylglycerol, 1-oleoyl-2-acetyl glycerol, and was blocked by the protein kinase C inhibitor H7, indicating that protein kinase C is involved in the induction. The increase in the ets-2 protein was due to stabilization of the protein, because the protein had a half-life of more than 2 h in the presence of TPA and the ets-2 mRNA level did not increase significantly upon TPA treatment. The protein synthesis inhibitor cycloheximide enhanced the effect of TPA on the ets-2 protein and could itself slow turnover of the protein. Properties of the ets-2 protein, such as nuclear localization, phosphorylation, rapid turnover, and response to protein kinase C, indicate that this protein belongs to a group of oncogene proteins which are generally thought to have regulatory functions in the nucleus (e.g., myc, fos, myb, and p53). Our results suggest that protein kinase C, either directly or indirectly, regulates the level of the ets-2 protein by posttranslational mechanisms. |
| Regulation of bcl-2 proto-oncogene expression during normal human lymphocyte proliferation. | The bcl-2 and c-myc proto-oncogenes are brought into juxtaposition with the immunoglobulin heavy chain locus in particular B-cell lymphomas, resulting in high levels of constitutive accumulation of their messenger RNAs. Precisely how the products of the bcl-2 and c-myc genes contribute to tumorigenesis is unknown, but observations that c-myc expression is rapidly induced in nonneoplastic lymphocytes upon stimulation of proliferation raise the possibility that this proto-oncogene is involved in the control of normal cellular growth. In addition to c-myc, the bcl-2 proto-oncogene also was expressed in normal human B and T lymphocytes after stimulation with appropriate mitogens. Comparison of the regulation of the expression of these proto-oncogenes demonstrated marked differences and provided evidence that, in contrast to c-myc, levels of bcl-2 messenger RNA are regulated primarily through transcriptional mechanisms. |
| Bcl-2 oncoprotein is widespread in lymphoid tissue and lymphomas but its differential expression in benign versus malignant follicles and monocytoid B-cell proliferations is of diagnostic value. | The distribution of Bcl-2 oncoprotein was studied immunohistochemically in formaldehyde-fixed and paraffin-embedded reactive and neoplastic lymphoid tissue. The potential of Bcl-2 for the differential diagnosis of follicular lesions was emphasized, and the results on follicular lesions were correlated with those of polymerase chain reaction (PCR) assay of the immunoglobulin heavy chain gene rearrangement. In hyperplastic lymphoid tissue, Bcl-2 reactivity was widespread, including germinal center surroundings, scattered cells within the germinal centers, and the T-cell areas in general. Distinctively negative lymphoid populations included the majority of germinal center cells, and the negative staining pattern was maintained in cases of florid hyperplasia. In contrast, follicular lymphoma cells were consistently Bcl-2 positive. The immunohistochemical Bcl-2 reactivity of lymphoma follicles correlated with the clonal PCR amplification pattern of the immunoglobulin heavy chain gene; ALL Bcl-2-negative hyperplasias revealed a non-clonal pattern. Clusters of monocytoid B cells were Bcl-2 negative, whereas monocytoid B-cell lymphomas and closely related MALT lymphomas were positive. ALL other small cell non-Hodgkin s lymphomas of B-cell types showed nearly uniform Bcl-2 reactivity, whereas large cell B-cell lymphomas were variably positive (74%). In Hodgkin s cells, Bcl-2 reactivity was seen in the neoplastic populations of most cases of nodular sclerosis and mixed cellularity types, whereas the L&H and Reed-Sternberg cells in lymphocyte predominance Hodgkin s disease were negative in most cases. Bcl-2 immunohistochemistry thus appears very valuable in the differential diagnosis of follicular hyperplasia and neoplasia, and it may help to distinguish between reactive and neoplastic monocytoid B cells. However, Bcl-2 immunohistochemistry is not useful in the subtyping of B-cell lymphomas. |
| Expression of bcl-2 oncogene protein is prevalent in small cell lung carcinomas. | To investigate the frequency of bcl-2 oncogene protein expression in small cell lung carcinoma (SCLC), immunohistochemical staining with a mouse-anti-human monoclonal antibody, bcl-2/124, was carried out on 60 formalin-fixed, paraffin-embedded SCLC samples obtained from surgical biopsy, and autopsy cases. bcl-2 protein was detected in 54 out of the 60 SCLCs. In 47 cases, more than half of the tumour cells stained positively. The staining intensity of the tumour cells was comparable to that of infiltrating lymphocytes in 37 cases, but varied from area to area and even from cell to cell. Negative data in six cases were found to be due to unsuitable fixation or embedding procedures rather than the absence of the antigen. bcl-2 oncogene protein may thus be expressed in most if not ALL SCLCs. bcl-2 may have potential diagnostic and therapeutic importance in SCLCs and non-SCLCs. Previous cytogenetic and molecular genetic analyses indicate that SCLCs carry a number of chromosomal abnormalities and it would follow from the present results that the abnormal expression of bcl-2 may also play a role in the pathogenesis of SCLC, by increasing tumour mass through inhibition of apoptosis as previously proposed. The diagnostic, prognostic, and therapeutic implications of these findings should be studied in greater detail. |
| Apoptosis and expression of the bcl-2 proto-oncogene in the fetal and adult human kidney: evidence for the contribution of bcl-2 expression to renal carcinogenesis. | bcl-2 was identified as a transcript associated with the t(14;18) and imparts resistance to apoptotic cell death. bcl-2 is normally expressed in many tissues and exhibits remarkable structural and functional conservation. Using immunohistochemical and in situ DNA labeling techniques we examined the localization of bcl-2 in the developing human kidney. bcl-2 expression was rapidly upregulated in the induced metanephrogenic mesenchymal cells that differentiate into renal vesicles and nephrons. bcl-2 expression was undetectable in uninduced mesenchyme and in the renal ampullae and associated collecting system. The distribution of apoptotic cells within the developing kidney was inversely correlated with expression of bcl-2. The localization of bcl-2 protein in the adult human kidney also was examined. bcl-2 was expressed at high levels in ALL renal neoplasms examined providing a potential basis for the deregulation of apoptosis in the development and progression of these tumors. |
| Bcl-2 oncogene protein is preferentially expressed in Reed-Sternberg cells in Hodgkin s disease of the nodular sclerosis subtype. | One hundred three cases of nodular sclerosis (NS) and mixed-cellularity Hodgkin s disease were evaluated for expression of bcl-2 oncogene protein, because previous studies have revealed expression of bcl-2 in these subtypes but only rarely in the nodular lymphocyte-predominance subtype. Reed-Sternberg (RS) cells and lacunar variants were positive for bcl-2 in 51 of 86 NS cases and 4 of 17 mixed-cellularity cases. In individual cases of NS, the percentage of RS cells and lacunar variants positive for bcl-2 ranged from minimal (in 5 cases) to 100% positive (mean, 34%). By univariate analysis, expression of the bcl-2 gene product in RS cells was observed in a significantly greater proportion of NS Hodgkin s disease cases than MC cases (P < .009), a finding that may have implications on the pathogenesis of this disorder. |
| High levels of p26BCL-2 oncoprotein retard taxol-induced apoptosis in human pre-B leukemia cells. | In human leukemic cells clinically relevant concentrations of taxol have been demonstrated to induce the biochemical and morphologic hallmarks of apoptosis (Leukemia 1993;7:563-568). Since overexpression of the bcl-2 gene has been reported to retard apoptosis due to a variety of anticancer agents, we examined and compared taxol-induced intracellular microtubular bundling and apoptosis in pre-B human leukemia 697 cells and their counterparts which have been transfected with and overexpress cDNA derived from the bcl-2 gene. Treatment with 0.1 or 1.0 mumol/l taxol for 24 h resulted in internucleosomal DNA fragmentation and morphologic features of apoptosis in 697 cells, but not in 697/BCL-2 cells. However, indirect immunofluorescent staining with anti-tubulin antibody revealed that taxol treatment produces stable microtubule bundles resistant to calcium-mediated disassembly in 697, as well as 697/BCL-2 cells. In addition, taxol-induced microtubule bundling was associated with a marked accumulation of the two cell types in the G2/M phase of the cell cycle. Following exposure to taxol, when 697 cells were washed and kept in drug-free medium, they showed rapid onset of apoptosis followed by loss of cell viability and a decline in cell numbers. In contrast, identically treated 697/BCL-2 cells kept in drug-free medium remained in a growth arrested state, but showed little evidence of apoptosis for up to 4 days. They eventually demonstrated features of apoptotic cell death and loss of viability between 5 and 7 days. This was not accompanied by a decrease in p26BCL-2 levels. Anti-phosphotyrosine or anti-MAP kinase immunoblot analyses of proteins isolated from taxol-treated 697 and 697/BCL-2 cells failed to show any difference in tyrosine phosphorylation of cellular proteins. Therefore, our findings indicate that in 697/BCL-2 cells, high levels of p26BCL-2 significantly delay taxol-induced endonucleolytic internucleosomal DNA fragmentation and apoptosis, but do not affect taxol-induced microtubule bundling or cell cycle growth arrest. The delayed onset of taxol-induced DNA fragmentation and apoptosis in 697/BCL-2 cells without down-regulation of p26BCL-2 levels suggests that an alternative mechanism of taxol-mediated apoptosis might be triggered which is unimpeded by high p26BCL-2 levels, or taxol-induced prolongation of mitotic arrest may lead to the inactivation or inhibition of that mechanism by which p26BCL-2 is able to block apoptosis. |
| Increase in bcl-2 oncoprotein and the tolerance to ischemia-induced neuronal death in the gerbil hippocampus. | We studied the expression of bcl-2 oncoprotein in the gerbil hippocampus after transient ischemia. Immunostaining using monoclonal antibody raised against bcl-2 oncoprotein revealed intense immunoreactivity in the CA1 area following 2 min of ischemia, which induced tolerance to subsequent ischemia and prevented delayed neuronal death (DND). Following ischemia for 5 min, however, bcl-2 oncoprotein immunoreactivity was decreased, reflecting neuronal death in the CA1 area. However, pretreatment with ischemia of 2 min that prevented DND due to subsequent ischemia for 5 min, showed increased immunoreactivity. On the other hand, following 1 min of ischemia which failed to induce tolerance, no increase in the bcl-2 oncoprotein was observed. The results evidenced that expression of bcl-2 oncoprotein in the CA1 area following brief ischemia is closely related to the acquisition of resistance to DND. |
| Apoptosis of vascular smooth muscle cells. Protein kinase C and oncoprotein Bcl-2 are involved in regulation of apoptosis in non-transformed rat vascular smooth muscle cells. | We examined the effect of several inhibitors/activators of various protein kinases on the proliferation and apoptosis of nontransformed rat coronary vascular smooth muscle cells (SMC). As expected, ALL the compounds (calphostin C, KT5720, KT5823, verapamil, W7, and dibutyryl-cAMP) inhibited SMC proliferation, as judged by [3H]thymidine incorporation. Three (calphostin C, verapamil and dibutyryl-cAMP) of the six compounds caused occurrence of the classical apoptotic morphology in SMC. The effect of calphostin C, an inhibitor of protein kinase C, was examined in more detail due to the known involvement of this kinase in regulation of apoptosis in a variety of cell types. In SMC cultures exposed for 1, 2, and 3 days to 0.1 mumol/L calphostin C, 7 +/- 1%, 32 +/- 3%, and 29 +/- 3% of cells underwent apoptosis, respectively, as assessed by cell morphology (control cultures had 1 to 3% of apoptotic cells). The effect of calphostin C was transient in that on day 6 following exposure to this compound the number of apoptotic cells declined to control values. Simultaneous with the induction of apoptotic morphology in SMC, a decline was seen (within 24 hours) in expression of the oncoprotein Bcl-2 in morphologically nonapoptotic SMC. An altered distribution of Bcl-2 was seen in the apoptotic cells. The calphostin C-induced generation of apoptotic cells in SMC cultures and the decline/alteration of Bcl-2 expression were not accompanied by degradation of DNA into nucleosomal fragments. In conclusion, normal, nontransformed rat coronary artery vascular SMC undergo apoptosis when exposed to an inhibitor of protein kinase C (calphostin C), to a calcium channel blocker (verapamil), and to a stimulator of cAMP-dependent protein kinase (dibutyryl-cAMP). The induction of apoptosis by the inhibitor of protein kinase C is accompanied by alterations in the Bcl-2 expression but not by DNA fragmentation. |
| Site and menstrual cycle-dependent expression of proteins of the tumour necrosis factor (TNF) receptor family, and BCL-2 oncoprotein and phase-specific production of TNF alpha in human endometrium. | Apoptosis in human endometrial epithelium progressively increases from early to late secretory/menstrual phases and remains consistently more prominent in the basalis. It has been suggested that tumour necrosis factor (TNF) alpha secreted during the secretory/menstrual phases plays a role in induction of programmed cell death in these cells. In the present study, we characterized expression of receptors of TNF alpha, Fas antigen and BCL-2 in endometrial cells to gain insight as to whether this type of cell death in endometrium may be related to differential or preferential expression of these proteins at specific phases of the menstrual cycle. In addition, to relate production of TNF alpha to the development of apoptosis, the amount of TNF alpha released by human endometrium was measured. Immunostaining demonstrated that the TNF receptor (TNFr; p55/60)-I, TNFr-II (p75/80) as well as Fas protein were expressed in endometrial epithelium throughout the entire menstrual cycle. This expression was progressively diminished from the basalis towards the upper functionalis. In the proliferative phase, the expression of BCL-2 was prominent in the endometrial glands particularly in those residing in the basalis. This expression became weak as early as the third post-ovulatory day and remained low during the remaining phases of the menstrual cycle. The amount of TNF alpha released by endometrial fragments obtained from various phases of the menstrual cycle was determined. The amount of TNF alpha released into the culture medium by the endometrium was low in the proliferative phase. However, the amount of released TNF alpha progressively increased in the secretory phase and peaked in the menstrual phase. TNFr-I, TNFr-II, Fas, BCL-2 and TNF alpha could be identified by Western blot analysis of proteins extracted from endometrium. Therefore, endometrial epithelium by virtue of expression of receptors of TNF alpha as well as Fas protein is properly poised to respond to ligand signals that regulate apoptosis. Induction of apoptosis in endometrial epithelium and menstrual shedding may be related to loss of the protective effect of BCL-2 as well as to the amount of TNF alpha. |
| Functional similarity between adenovirus E1B 19-kDa protein and proteins encoded by Bcl-2 proto-oncogene and Epstein-Barr virus BHRF1 gene. | Biological function of the BCR-ABL oncogene is dependent on its activated tyrosine kinase. mutations that inactivate the SRC homology 2 (SH2) domain, the GRB2-binding site in BCR, or the major autophosphorylation site of the kinase domain selectively disrupt downstream signaling but not tyrosine kinase activity. Despite a loss of fibroblast transformation activity, ALL three mutants retain the ability to render hematopoietic cell lines growth factor independent and transform primary bone marrow cells in vitro. In vivo tests of malignant potential reveal a most critical role for signals dependent on the BCR-ABL SH2 domain. The efficiency of both fibroblast and hematopoietic transformation by BCR-ABL is strongly affected by increased dosage of the SHC adapter protein, which can connect tyrosine kinase signals to RAS. The BCR-ABL oncogene activates multiple alternative pathways to RAS for hematopoietic transformation. |
| Response to interferon therapy in patients with multiple myeloma correlates with expression of the Bcl-2 oncoprotein. | The expression of the Bcl-2 oncoprotein was studied in pre-treatment bone-marrow samples from 63 patients with multiple myeloma, using an immunohistochemistry technique. A variable expression of the Bcl-2 protein was found in myeloma cells. 43% of the patients had strong expression of the Bcl-2 protein in the malignant cells. Forty patients received alpha-interferon, whereas 23 patients received melphalan/prednisone therapy. A significant association (p = 0.012) was found between high levels of Bcl-2 expression in myeloma cells and resistance to interferon therapy. No such correlation was found in the melphalan/prednisone treated patients. The data indicate that over-expression of Bcl-2 may be a cause for resistance to interferon therapy in myeloma and that staining for Bcl-2 expression in myeloma cells may have a predictive value for this treatment. |
| High expression of latent membrane protein 1 of Epstein-Barr virus and BCL-2 oncoprotein in acquired immunodeficiency syndrome-related primary brain lymphomas. | Nearly ALL primary brain lymphomas in acquired immunodeficiency syndrome (AIDS) patients are associated withEpstein-Barr virus (EBV). The role of EBV in lymphomagenesis is not totally elucidated. One possible mechanism is the overexpression of the BCL-2 oncoprotein, because the latent membrane protein 1 (LMP1) has been reported to transactivate the bcl-2 gene in vitro. To study the interrelationship beetween LMP1 and BCL-2 in vivo, we have analyzed and compared their expression in 11 AIDS-related primary brain lymphomas and 57 AIDS-related systemic lymphomas by immunoperoxidase technique on frozen sections. In AIDS-related primary brain lymphoma, LMP1 and BCL-2 were expressed in ALL cases but 1. ALL positive cases exhibited morphologic immunoblastic features. In contrast, the only negative case was histologically close to Burkitt s lymphoma. In systemic lymphomas, LMP1 was expressed in 21 cases, whereas BCL-2 was positive in only 3 cases, ALL of which were extranodal. These results indicate that, in addition to the histologic type, the role of EBV genes and BCL-2 expression in lymphomatous cells differ as a function of their localization. In AIDS-related primary brain lymphomas, this correlation between LMP1 and BCL-2 overexpression may have a major implication in lymphomagenesis. |
| Bcl-2 oncoprotein expression in acute myeloid leukemia. | BACKGROUND: In lymphoproliferative diseases the expression of Bcl-2, a mitochondrial oncoprotein capable of blocking apoptosis, is well-documented, while little research has been carried out on its distribution in myeloproliferative conditions. METHODS: Using immunocytochemical methods, 63 cases of acute myeloid leukemia (AML) at onset and 10 relapses were studied to investigate Bcl-2 expression and any possible correlations with subtypes of the FAB classification, sex, age or white cell peripheral blood count at onset. RESULTS: Bcl-2 is present in 87.3% of AML cases at onset and in 100% of relapses. In 68.3% of cases at onset and in 90% of relapses the protein is present in more than 20% of the blasts. Relapses always show higher percentages of positive expression than those seen at onset. Our results demonstrate no statistical correlations between the expression of the oncoprotein Bcl-2 and FAB subtypes, sex, age, or white cell peripheral blood count. CONCLUSIONS: The majority of blasts from AML patients express the oncoprotein Bcl-2, which is able to protect leukemic cells from apoptosis. Since numerous chemotherapies are cytotoxic in that they induce apoptosis, we feel that in vitro studies of cells from AML patients are necessary in order to broaden our knowledge about the effects of the most common therapeutic drugs and of those substances which, alone or in association, can modulate Bcl-2 expression. |
| Transformation of follicular lymphoma. Expression of p53 and bcl-2 oncoprotein, apoptosis and cell proliferation. | Transformation in follicular lymphoma represents an abrupt transition in tumor biology. The protein product of the bcl-2 oncogene is overexpressed in most follicular lymphomas and inhibits apoptosis. The protein product of the p53 oncogene prevents cell proliferation and induces apoptosis and is overexpressed in the dysfunctional (mutated) form. We studied 15 transformed lymphomas (large cell type), 7 follicular lymphomas before transformation and 2 control groups of follicular center cell lymphomas with no evidence of transformation (9 small cleaved cell and 10 de novo large cell lymphomas). High p53 expression (> or = 45% cells) was detected by immunostaining in 9/15 transformed lymphomas as compared with 0/10 de novo large cell lymphomas and 1/7 follicular lymphomas. Overexpression of bcl-2 (> or = 50% cells) was similar in transformed (11/15) and de novo large cell lymphomas (6/10). The apoptotic index was high (> or = 2%) in ALL transformed and large cell lymphomas and low in ALL follicular lymphomas and in the control group of small cleaved cell lymphomas. The apoptotic index in the transformed lymphomas appeared to be independent of bcl-2 expression and was sometimes paradoxically high in the presence of both p53 and bcl-2 overexpression. The apoptotic index was weakly associated with bcl-2 expression in de novo large cell lymphomas. expression of p53 did not correlate with proliferation index. Our results indicate that p53 overexpression is a specific step associated with transformation and may occur shortly before it. This is not seen in de novo large cell lymphoma. Furthermore, the high apoptotic index in transformed lymphomas often occurs despite overexpression of bcl-2 and p53, implying that other factors may induce apoptosis in these tumors. |
| Estrogen promotes chemotherapeutic drug resistance by a mechanism involving Bcl-2 proto-oncogene expression in human breast cancer cells. | Recent studies have shown that the Bcl-2 protein suppresses programmed cell death or apoptosis induced by a variety of stimuli including chemotherapeutic drugs. Because estrogen promotes the survival of estrogen-dependent breast cancer cells in vivo, we investigated whether estrogen might regulate levels of Bcl-2 gene expression in an estrogen-responsive human breast cancer cell line. Estrogen receptor-positive MCF-7 human breast cancer cells cultured in the presence of estrogen express the 8.5-kb Bcl-2 mRNA transcript. Depletion of estrogen from the medium results in loss of expression of the mRNA, whereas reexposure to estrogen markedly induces the Bcl-2 transcript. The changes in Bcl-2 mRNA are paralleled by changes in Bcl-2 protein levels. Estrogen-induced increases in Bcl-2 are significantly inhibited by inclusion of the pure antiestrogen ICI 164,384 in the medium. The Bax protein that heterodimerizes with Bcl-2 and promotes cell death is expressed in MCF-7 cells grown in the presence of estrogen and is unaffected by culture in estrogen-free medium. Estrogen depletion doubles the sensitivity of MCF-7 cells to the cytotoxic effects of Adriamycin compared with cells cultured in medium supplemented with estrogen, consistent with a decrease in the Bcl-2 levels. MCF-7 cells treated simultaneously with estrogen and ICI 164,384 exhibit markedly lower resistance to Adriamycin compared with cells treated with estrogen alone. In the absence of estrogen, MCF-7 cells transfected with Bcl-2 expression plasmids display a marked increase in resistance to Adriamycin. In the presence of estrogen, MCF-7 cells expressing Bcl-2 antisense transcripts are rendered twice as sensitive to acute Adriamycin cytotoxicity as a control clone. We conclude that estrogen can promote resistance of estrogen receptor bearing human breast cancer cells to chemotherapeutic drugs through a mechanism that involves regulation of the Bcl-2 proto-oncogene. |
| Antiapoptosis potential of bcl-2 oncogene by dephosphorylation. | The antiapoptosis potential of bcl-2 has now been well established. But the biochemical mechanism of bcl-2 action is still poorly understood. Using the phosphatase inhibitor okadaic acid (OA) or chemotherapeutic agents such as Taxol and 5 -fluorouracil, we found that bcl-2 can be phosphorylated. Since OA or Taxol treatment leads to apoptosis, it seems that phosphorylation of bcl-2 leads to its inactivation. Exposure of several lymphoid cell lines expressing differential amounts of bcl-2 protein to OA resulted in apoptosis of the cells and hyperphosphorylation of bcl-2. Interestingly, the lymphoblastoid cell lines that did not phosphorylate bcl-2 following OA exposure did not undergo apoptosis. Moreover, pro-B cells isolated from patients with acute lymphoblastic leukemias exhibited endogenous phosphorylated forms of bcl-2 and a large number of apoptotic cells, even without OA treatment. Treatment with the phosphatase inhibitor or with chemotherapeutic agents (Taxol, 5 -fluorouracil) led to severe apoptosis of these cells, along with hyperphosphorylation of bcl-2. Phosphoamino acid analysis reveals that bcl-2 is phosphorylated at a serine residue. In summary, our investigation indicates that the phosphorylation pathway involving bcl-2 can be the determinant of cell death in lymphocytes. |
| Bcl-2 oncoprotein expression and apoptosis in neuroblastoma. | Bcl-2 protooncogene, originally discovered at the chromosomal breakpoint of the t(14;18) in follicular lymphoma, is known to regulate the process of programmed cell death or apoptosis. The inhibition of apoptosis is thought to be one of the mechanisms involved in the development of tumors. To investigate the possible association of bcl-2 protooncogene with the tumorigenesis of neuroblastomas, the authors examined bcl-2 expression by immunohistochemistry in 49 neuroblastomas and 7 ganglioneuromas. The distribution of apoptotic cells was also examined by the TUNEL method (terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling). Bcl-2 oncoprotein was detected in the cytoplasm in 40 of 49 neuroblastomas (81.6%). There was no correlation between bcl-2 oncoprotein expression and the clinical features of neuroblastoma. The incidence of bcl-2-positive tumors in ganglioneuroma was significantly lower than that in neuroblastoma (28.6%) (P < .01). TUNEL stained the nuclei of tumor cells in 11 of 34 (32.4%) neuroblastomas. TUNEL-positive cells tended to be located around calcifications in neuroblastomas in patients less than 1 year old. Examination of serial sections showed that apoptotic cells were distributed in the area where bcl-2 oncoprotein was not expressed. What we have observed indicates that apoptosis of neuroblastoma cells may be regulated by bcl-2 expression. Our observations suggest that the survival of neuroblastoma cells might be promoted by bcl-2 expression and that bcl-2 might be associated with the tumorigenesis of neuroblastomas. |
| APO-1 mediated apoptosis or proliferation in human chronic B lymphocytic leukemia: correlation with bcl-2 oncogene expression. | We studied induction of apoptosis in several human malignant B cells from chronic lymphocytic leukemias (BCLL) by triggering the APO-1 antigen. The APO-1 antigen was found to be expressed on the surface of malignant B cells. In BCLL cells from most patients, APO-1 antigen expression increased following in vitro activation by Staphylococcus aureus Cowan I (SAC) or interleukin-2 (IL-2). In certain cases of BCLL co-stimulation with SAC plus IL-2 resulted in a synergistic up-regulation of the APO-1 antigen on the cell surface and prepared BCLL cells for monoclonal antibody anti-APO-1 mediated apoptosis. Interestingly, bcl-2 mRNA expression decreased upon stimulation with SAC plus IL-2, whereas SAC or IL-2 alone did not affect the level of bcl-2 expression. Thus, in these BCLL cells induction of anti-APO-1-mediated apoptosis appeared to be correlated with bcl-2 mRNA down-regulation. One informative BCLL, however, with a similar pattern of APO-1-antigen expression, did not show SAC plus IL-2-dependent bcl-2 down-regulation. Surprisingly, these cells proliferated in response to anti-APO-1 only when cells were co-stimulated with SAC plus IL-2. Our data suggest that down-regulation of bcl-2 prepares BCLL cells for induction of APO-1-mediated apoptosis. In addition they demonstrate that triggering of the APO-1 antigen may also lead to the induction of proliferation in special cases of BCLL. |
| Occurrence of bcl-2 oncogene translocation with increased frequency in the peripheral blood of heavy smokers. | The roles of activated ras and src oncogene products in the acquisition of fully neoplastic phenotype by human gallbladder adenocarcinoma cells were investigated by co-transfecting non-tumorigenic HAG-I human gallbladder carcinoma cells with the pSV2neo plasmid and a plasmid carrying either activated c-H-ras or v-src oncogene. G418-resistant clones were isolated and assessed for the acquisition of anchorage-independent growth potential. Neither the 10 established clones transfected with pSV2neo alone nor the 17 clones transfected with activated c-H-ras, including 4 clones expressing the mutated p21H-ras protein, could form colonies in soft agar. By contrast, out of 10 clones transfected with v-src, 2 formed colonies in soft agar and produced tumors in athymic nude mice, the resulting progressive neoplasms being poorly differentiated adenocarcinomas. These tumorigenic clones were shown to have v-src DNA and mRNA levels with p60v-src protein, but there were no significant chromosomal alterations following tumorigenic conversion. Moreover, herbimycin A, a selective src-kinase inhibitor, markedly reduced clonogenic growth of these cells in soft agar rather than monolayer growth, suggesting that anchorage-independent growth of the v-src-transformed HAG-I cells might be driven directly by p60v-src kinase activity. Taken together, our data suggest that the fully neoplastic conversion of HAG-I cells depends on src-related tyrosine-kinase activity, but not solely on the function mediated by activated ras, thus providing evidence of an src-related signaling pathway for the acquisition of tumorigenic potential by human gallbladder adenocarcinoma cells. |
| BCL-2 oncoprotein in neuroblastoma. | mutations in the receptor for the epidermal growth factor provide valuable insight into mechanisms of growth control. Oncogenic mutants of this receptor tyrosine kinase cause erythroid leukemia, fibrosarcoma, angiosarcoma, glioblastoma, and melanoma. mutations in the avian protooncogene occur by retroviral mechanisms. Deletion of the ligand-binding domain results in erythroblastosis, while additional mutations in cytoplasmic structures broaden the disease potential to other cell types. A carboxyl-terminal structure of erbB oncogenes modulates growth responses in a complex, cell-specific manner; this tissue-specificity region appears to promote growth in erythroblasts and to produce trans-dominant inhibition in fibroblasts. Human glioblastoma multiforme frequently contains receptor mutations that are reminiscent of avian oncogenes. In hereditary melanoma of Xiphophorus, aberrant regulation of transcription by a recombinant promoter determines tissue-specific tumorigenesis. The diversity of oncogenic mutations raises important questions concerning the roles of several receptor structures. The extracellular domain inhibits the receptor when unoccupied by ligand, for example, through a mechanism that is unknown. The auto-phosphorylation sites are dispensable for transformation, so their function in neoplastic growth is unclear. The carboxyl-terminal region promotes or blocks transformation in different tissues, suggesting complex regulation by unknown cellular factors. These issues are critical to understanding of the mechanisms of receptor activation and tissue tropism for this family of oncogenes. |
| bcl-2 oncoprotein in colorectal hyperplastic polyps, adenomas, and adenocarcinomas. | The bcl-2 gene is an oncogene that inhibits programmed cell death (apoptosis). We investigated by immunocytochemistry bcl-2 expression in normal colonic mucosa, hyperplastic polyps, adenomas, and adenocarcinomas of the large bowel. The purpose of the investigation was twofold; to assess the possible role of bcl-2 in colorectal tumorigenesis and to evaluate its clinical significance. The cases studied included 24 hyperplastic polyps, 49 adenomas, and 205 colorectal carcinomas. In both normal mucosa and hyperplastic polyps bcl-2 immunoreactivity was detected only in the proliferative cells of the colonic crypts. Conversely, bcl-2 immunoreactivity was noted in ALL adenomas irrespective of the degree of dysplastic change; it was diffuse in 84% of adenomas and focal in the remaining cases. In colorectal carcinomas bcl-2 expression was undetectable in 50% and focal (less than 50% immunostained neoplastic cells) in 38% of tumors. The remaining 12% of the carcinomas displayed diffuse (more than 50% immunostained neoplastic cells) bcl-2 immunoreactivity. In colorectal carcinomas bcl-2 expression was not correlated with relevant clinicopathologic parameters, including disease stage, tumor location and growth fraction, DNA ploidy, and p53 protein accumulation, and had no prognostic significance by univariate or multivariate analysis. These results suggest that bcl-2 oncoprotein may play a role in colorectal tumorigenesis, probably in the early phases of the adenoma-carcinoma sequence. bcl-2 expression in established tumors has no prognostic significance. |
| High prevalence of bcl-2 oncoprotein expression in small cell lung cancer. | Bcl-2 oncoprotein, a member of a new category of oncogenes associated with the regulation of programmed cell death (apoptosis), has been considered to be involved in biological processes such as tumorigenesis and tumor development. To determine the role of bcl-2 oncoprotein in lung cancer, we preliminarily examined the expression of this protein in various histological types. Immunohistochemical staining using monoclonal bcl-2 oncoprotein antibody was performed in surgically resected frozen specimens. Bcl-2 staining was seen in nine of 13 small cell lung cancers (69%), while only 18 out of 69 non-small cell lung cancers (26%) expressed bcl-2 oncoprotein, showing a significantly increased incidence of bcl-2 oncoprotein expression in the former histological type. Considering the greater aggressiveness of small cell lung cancer compared to non-small cell lung cancer, the possibility exists that the high prevalence of bcl-2 oncoprotein expression in small cell lung cancer is closely associated with tumorigenesis and tumor development. |
| Evolutionary conservation of function among mammalian, avian, and viral homologs of the Bcl-2 oncoprotein. | The bcl-2 gene was originally cloned because of its involvement in B-cell lymphomas and encodes a 25-kD integral membrane protein that has been shown to inhibit programmed cell death (also termed apoptosis) in a wide variety of circumstances. The Epstein-Barr Virus (EBV) also has been implicated in B-cell malignancies and interestingly contains an open reading frame (BHRF-1) predicting a 19-kD protein with 22% homology to Bcl-2. To compare the functions of p26-Bcl-2 and p19-BHRF-1, we stably introduced expression plasmids encoding these proteins into a murine interleukin-3 (IL-3)-dependent hemopoietic cell line, 32D. Removal of IL-3 from cultures of control-transfected 32D cells resulted in internucleosomal DNA cleavage (a hallmark of programmed cell death) and loss of cell survival. In contrast, 32D cells containing high levels of p26-Bcl-2 or p19-BHRF-2 proteins exhibited prolonged survival and markedly delayed DNA degradation under the same conditions of IL-3 deprivation. As a first attempt to determine the functional importance of amino acid sequences that are conserved between the Bcl-2 and BHRF-1 proteins, we used site-specific mutagenesis to replace two conserved cysteine residues with alanines (positions 158 and 219) in the human Bcl-2 protein. Comparisons of the wild-type and cysteine-minus human Bcl-2 proteins in S49 lymphoma cells revealed equivalent ability to block glucocorticoid-induced cell death and DNA fragmentation, indicating that these two conserved cysteines are not critical for Bcl-2 oncoprotein function. Investigations in 32D cells of an avian homolog of Bcl-2 cloned from the chicken also revealed conservation of function with the human Bcl-2 protein, despite the presence of a 48-amino-acid region of divergent sequence. Taken together, these data demonstrate that despite marked differences in their predicted amino-acid sequences, the human, chicken, and EBV versions of Bcl-2 have retained the structural characteristics necessary to interface with pathways involved in the regulation of programmed cell death in murine cells. The findings thus contribute to the mapping of functional domains in Bcl-2 proteins, and raise the possibility that the EBV-encoded p19-BHRF-1 protein may be able to substitute for p26-Bcl-2 in the development of some types of cancer. |
| Regulation of Bcl-2 expression by oncogenic Ras protein in hematopoietic cells. | Interleukin 3 (IL-3) and granulocyte-macrophage colony stimulating factor (GM-CSF) induce DNA synthesis and suppress apoptosis of hematopoietic cells. IL-3/GM-CSF exert pleiotropic functions by activating multiple signaling cascades through distinct domains of the common receptor subunit. As we previously reported, the Ras signaling pathway plays a pivotal role in suppressing apoptotic death rather than stimulating DNA synthesis in IL-3 dependent hematopoietic cells. In order to clarify the molecular basis of Ras-induced cell survival, we investigated the effect of Ras activation on the expression of Bcl-2 and its related molecules. Activation of the Ras pathway by using an inducible oncogenic Ras resulted in the rapid up-regulation of bcl-2 and bcl-xL, and the level of expression was nearly equivalent to that observed in growing cells. On the other hand, expression of bax, an antagonistic bcl-2 homologue, was not affected by oncogenic Ras or IL-3-deprivation. Thus, the Ras pathway regulates the expression of Bcl-2 and its related survival protein, and this appears to underlie the mechanism by which IL-3/GM-CSF inhibit apoptosis through activation of the Ras pathway. |
| [Detection of the apoptosis-suppressing oncoprotein bcl-2 in ameloblastomas]. | The product of apoptosis-suppressing oncoprotein bcl-2 can block apoptosis and result in the development of tumors. In this study, the expression of bcl-2 was observed in 40 cases of ameloblastomas by immunohistochemical staining. The results showed that the epithelium and reduced enamel epithelium of the enamel organ, the odontoblasts, basal cells of odontogenic cysts, normal oral epithelium and 90% (36/40) of ameloblastomas were positive for bcl-2, indicating that the expression of bcl-2 in odontogenic epithelium may be related to the degree of differentiation and proliferation of cells, the overexpression of bcl-2 may be associated with the development of ameloblastoma. |
| bcl-2 and p53 oncoprotein expression during colorectal tumorigenesis. | Apoptosis or programmed cell death represents a mechanism by which cells possessing DNA damage can be deleted. The bcl-2 proto-oncogene is a known inhibitor of apoptosis that may allow the accumulation and propagation of cells containing genetic alterations. To determine if and when the bcl-2 gene is activated during colorectal tumorigenesis and its relationship to p53, we analyzed normal mucosa, hyperplastic and dysplastic epithelial polyps, and carcinomas for the expression of these markers using immunohistochemistry. Whereas bcl-2 staining was restricted to basal epithelial cells in normal and hyperplastic mucosa, bcl-2 expression was detected in parabasal and superficial regions in dysplastic polyps and carcinomas. An inverse correlation was found between bcl-2 and p53 expression in adenomas, suggesting that these markers may regulate a common cell death pathway. Furthermore, carcinomas with a high percentage of bcl-2-positive cells were significantly more likely to have low rates of spontaneous apoptosis, as determined histologically, than those cancers with low or absent bcl-2 expression. Abnormal activation of the bcl-2 gene appears to be an early event in colorectal tumorigenesis that can inhibit apoptosis in vivo and may facilitate tumor progression. |
| BHRF1, a viral homologue of the Bcl-2 oncogene, disturbs epithelial cell differentiation. | Epstein-Barr virus (EBV) is associated with tumours of both lymphoid and epithelial origin. Whilst a role for EBV latent genes in the development of these malignancies is accepted, it is also possible that viral proteins involved in EBV replication may influence the oncogenic process. BHRF1 is an immediate early protein which has homology with the Bcl-2 oncogene and can protect B cells from apoptosis. In vivo this protein is most abundantly expressed in the upper layers of oral hairy leukoplakia (HL), a benign hyperparakeratotic tongue lesion which represents a focus EBV replication. We have transfected BHRF1 into the human squamous cell carcinoma line SCC12F which retains several features of normal keratinocytes behaviour in vitro. BHRF1 expression in these epithelial cells is associated with a delay in the commitment of cells to terminal differentiation, increased resistance to the DNA damaging drug, cis-platin and enhanced survival under conditions of serum deprivation. As the differentiation of epithelial cells is an apoptotic process, this data strongly suggests that BHRF1 expression delays the terminal differentiation of epithelial cells through the prevention of apoptosis. This effect of BHRF1, which may normally function to promote productive EBV infection, could contribute to the development of EBV-associated tumours. |
| 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. |
| The bcl-2 proto-oncogene is overexpressed in systemic lupus erythematosus. | Systemic Lupus Erythematosus (SLE) is a disease in which lymphoid hyper-reactivity occurs. Whether this is primary or secondary is not always clear. SLE occurs on a well defined genetic background including genes associated with the major histocompatibility complex (MHC) although family studies demonstrate that other genes must be involved as well. Other potential genes include those involved in intrinsic lymphoid hyper-reactivity, for example by preventing programmed cell death. Such examples exist in murine models of SLE, and in this study we provide evidence that one such controlling protein, bcl-2, is expressed in an increased proportion of both B and T cells in SLE patients. The increased expression was not readily related to disease activity measured by the SIS, nor by routine serological markers. This raises the possibility that the increased expression of bcl-2 seen in lymphoid cells from SLE patients may be of intrinsic genetic origin rather than being secondary to the auto-reactive process. Such increased expression could be expected to interfere with programmed cell death, to produce lymphoid hyper-reactivity and to contribute to the induction and maintenance of this prototypic systemic autoimmune disease. |
| The bcl-2 proto-oncogene and the gastrointestinal epithelial tumor progression model. | We report overexpression of the proto-oncogene bcl-2 in gastrointestinal adenocarcinoma and its precursor lesions. The bcl-2 proto-oncogene is centrally involved in the oncogenesis of human follicular lymphoma via a chromosomal translocation t(14;18)(q32;q21) and is also expressed in the epithelial regenerative compartment or the basal crypts of the normal colon and small intestine. We describe an immunohistochemical analysis of fixed, paraffin-embedded tissue using both a polyclonal rabbit and a monoclonal mouse antibody to the Bcl-2 protein. In addition to confirming bcl-2 expression in normal colonic and small intestinal crypts, we also observed expression in the gastric epithelial regenerative compartment, the mucous neck region. No increased expression was found in nonneoplastic or inflammatory gastrointestinal conditions, including ulcerative colitis, Crohn s disease, or inflammatory or hamartomatous polyps. Increased bcl-2 expression, however, was present in hyperplastic colonic polyps and in the majority of dysplastic lesions, from the earliest precursors through large adenomas, high grade flat dysplasia, and adenocarcinoma, ALL in comparison with adjacent internal control normal epithelium. Increased expression was present in dysplastic glandular lesions from ALL gastrointestinal sites, including colon, small bowel, and stomach. Furthermore, bcl-2 expression was frequently abnormal in nondysplastic epithelium surrounding dysplastic lesions, suggesting that altered expression occurred before the development of morphological dysplasia. Specifically, directly contiguous morphologically nondysplastic epithelium often showed abnormal bcl-2 expression throughout the full length of the crypt-villus axis. This expression pattern gradually diminished to involve only the crypt base (the normal pattern of expression), proceeding away from malignant or dysplastic lesions. Abnormal bcl-2 immunoreactivity in 1), the earliest precursor dysplastic lesions and its persistence throughout neoplastic progression and 2), contiguous morphologically unaltered nondysplastic epithelium suggests that bcl-2 alterations occur early during the morphological and molecular sequence of events leading to gastrointestinal epithelial neoplasia. |
| Mercuric chloride-induced programmed cell death of a murine T cell hybridoma. I. Effect of the proto-oncogene Bcl-2. | Mercuric chloride (HgCl2) as well as several drugs can induce T cell activation leading to systemic immune-mediated diseases in genetically susceptible individuals or rodents. T cell hybridomas represent a well-characterized model system for in vivo mechanisms of various stimuli-induced cell death. The cellular response to HgCl2 was examined using various T cell lines and particularly the murine T cell hybridoma 2B4.11. Exposure to HgCl2 induced both necrosis and apoptosis in a dose- and time-dependent way as demonstrated by DNA fragmentation analysis, flow cytometry of the whole cells and of isolated nuclei, and morphological examination. HgCl2-induced cell death was partly inhibited by cycloheximide. The expression of human Bcl-2 in 2B4.11 cells after transfection significantly prevented HgCl2-induced cell death but did not affect the susceptibility to apoptosis induced by an anti-CD3 epsilon mAb. Subcytotoxic doses of HgCl2 enhanced metabolic activity of Bcl-2 transfectants in contrast with mock-transfected cell line. Thus, we conclude that apoptosis is part of the cell death process induced by HgCl2 and that the ability of Bcl-2 to prevent the death of one particular cell line is stimulus-dependent suggesting the existence of different pathways leading to cell death. |
| The Bcl-2 oncoprotein functions as a pro-oxidant. | The mechanism by which the bcl-2 oncogene exerts its anti-apoptotic and antioxidant action is unknown. We found that expression of bcl-2 in superoxide dismutase-deficient (SOD-) Escherichia coli resulted in increased transcription of the KatG catalase-peroxidase, a 13-fold increase in KatG activity and a 100-fold increase in resistance to hydrogen peroxide. In addition, mutation rate was increased 3-fold, and katG and oxyR, a transcriptional regulator of katG induction, were required for aerobic survival. These data indicate that Bcl-2 acts as a pro-oxidant in E. coli, i.e. Bcl-2 generates reactive oxygen intermediates. In support of a pro-oxidant mechanism in eukaryotic cells, we found a 73% increase in superoxide dismutase activity in a murine B-cell line overexpressing Bcl-2. Increases in reduced glutathione and in oxyradical damage to DNA, previously observed in other overexpressing cell lines, are additional evidence for a pro-oxidant mechanism. Thus, Bcl-2 does not appear to be an antioxidant. Instead, Bcl-2 appears to influence levels of reactive oxygen intermediates that induce endogenous cellular antioxidants. This activity of Bcl-2 may control entry into apoptosis. |
| Human melanocytes and melanoma cells constitutively express the Bcl-2 proto-oncogene in situ and in cell culture. | The Bcl-2 proto-oncogene regulates cell survival by antagonizing events that lead to apoptotic cell death and has been reported to be expressed in situ in lymphoid tissues, glandular epithelium, neurons, and basal epidermal cells. When we performed immunostaining on cryostat sections of normal skin, anti-Bcl-2 reactivity was confined to scattered dendritic cells in the basal epidermal layer. Double-staining experiments showed that the Bcl-2+ cells were positive for vimentin but negative for cytokeratins, CD1a, and CD45 antigens, excluding keratinocytes and Langerhans cells as possible candidates for constitutive Bcl-2 expression. Bcl-2+ epidermal cells also reacted with the monoclonal anti-melanocyte antibody NKI/beteb, and were absent from lesional skin in vitiligo, confirming that they represented epidermal melanocytes. Western blot analysis of cultured melanocytes and melanoma cell lines revealed a 26-kd protein specifically reacting with the anti-Bcl-2 monoclonal antibody. Immunostaining of pigmented lesions revealed strong expression of Bcl-2 by five of five nevocellular nevi and seven of seven melanomas. Our observations demonstrate that, within normal human epidermis, melanocytes are the only cells that express Bcl-2 constitutively and that Bcl-2 is expressed in benign and malignant pigmented tumors of the skin in situ. |
| C. elegans cell survival gene ced-9 encodes a functional homolog of the mammalian proto-oncogene bcl-2. | The activity of the C. elegans gene ced-9 is required to protect cells that normally survive from undergoing programmed cell death. Here we describe the cloning and molecular characterization of this gene. ced-9 is an element of a polycistronic locus that also contains the gene cyt-1, which encodes a protein similar to cytochrome b560 of complex II of the mitochondrial respiratory chain. ced-9 encodes a 280 amino acid protein showing sequence and structural similarities to the mammalian proto-oncogene bcl-2. Overexpression of bcl-2 can mimic the protective effect of ced-9 on C. elegans cell death and can prevent the ectopic cell deaths that occur in ced-9 loss-of-function mutants. These results suggest that ced-9 and bcl-2 are homologs and that the molecular mechanism of programmed cell death has been conserved from nematodes to mammals. |
| Transient mitotic phase localization of bcl-2 oncoprotein in human carcinoma cells and its possible role in prevention of apoptosis. | We used a monoclonal antibody and fluorescence immunocytochemistry to localize the product of the bcl-2 gene in two cultured human carcinoma cell lines, KB and OVCAR-3. These cells show little or no localization of bcl-2 oncoprotein in interphase cells but demonstrate a dramatic appearance of bcl-2 in early prophase or late G2, which persists through-out mitosis, rapidly disappearing at telophase. The pattern of bcl-2 localization shows a diffuse nuclear distribution before chromosome condensation, followed by a specific concentration of bcl-2 at the margins of condensed chromosomes in prophase, metaphase, and anaphase. Treatment of these cells with taxol, an agent that interfers with formation of the mitotic spindle, causes mitotic arrest and apoptosis after a prolonged incubation period. During mitotic arrest due to taxol, bcl-2 remains associated with condensed chromosomes but is lost after > 2 days at approximately the same time as the appearance of apoptotic features in these cells. Western blotting indicates that the only extractable protein reactive with this monoclonal antibody under these conditions is a approximately 28 KD form of bcl-2. These results suggest a model for the role of bcl-2 in protection from apoptosis and a potentially common mechanism by which the final step of apoptosis might be mediated. |
| Use of archival and fresh cytologic material for the polymerase chain reaction. Detection of the bcl-2 oncogene in lymphoid tissue obtained by fine needle biopsy. | A technique for extracting DNA from archival and fresh tissue from fine needle biopsy (FNB) samples for the polymerase chain reaction (PCR) is described. The method was used to detect the bcl-2 oncogene in various cytologic lymphoid preparations. The DNA was amplified with primers specific for the major break point region of the t(14;18) translocation, and the presence of the bcl-2 oncogene was correlated with clinical, cytomorphologic, histologic and immunologic findings. Thirty patients who had FNB of lymphoid tissue were randomly selected, 18 retrospectively and 12 prospectively. Bcl-2 was present in 3 of 8 cases of reactive lymphadenopathy and 9 of 22 cases of non-Hodgkin s lymphoma. Of these, seven had follicular small cleaved cell lymphoma, and two had large cell lymphoma. Smears, both archival and fresh, and cell suspensions provided sufficient DNA for PCR amplification. The technique has potential applications in several areas of cytologic and hematologic practice. |
| bcl-2 proto-oncogene and Epstein-Barr virus latent membrane protein-1 expression in AIDS-related lymphoma. | The expression of bcl-2 protein and Epstein-Barr virus (EBV) latent membrane protein 1 (LMP-1) was investigated in 18 cases of lymphoma occurring in the acquired immunodeficiency syndrome (AIDS). EBV small RNAs were detectable in tumour cells in ALL cases by in situ hybridization with EBER oligonucleotides. LMP-1 expression was detected in 61% of the cases, and 55% were positive for bcl-2. Dual expression of LMP-1 and bcl-2 was found in 8/18 (44%) cases, while five cases (28%) expressed either LMP-1 or bcl-2 and five expressed neither. Thus, there was an inconsistent relationship between the presence of EBV and the expression of bcl-2. One LMP-1 negative case was found to express bcl-2 in reactive lymphocytes but not in lymphoma cells. No clinical features were found to correlate statistically with LMP-1 or bcl-2 expression in the tumour cells. However, CD4 counts at diagnosis were significantly lower in bcl-2 positive cases (P < 0.05). The respective roles of EBV LMP-1 and the expression of bcl-2 in lymphogenesis in AIDS patients remains complex and is not yet fully understood. |
| The protein product of the oncogene bcl-2 is a component of the nuclear envelope, the endoplasmic reticulum, and the outer mitochondrial membrane. | 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. |
| Bcl-2 proto-oncogene protein immunoreactivity in normally developing and axotomised rat retinas. | This study demonstrates immunocytochemically that bcl-2 (B cell lymphoma) proto-oncogene protein is expressed by two populations of retinal cells, one in the inner retina representing developing neurons or glia at perinatal stages, and the other identified as Muller cells from postnatal day 10 onward. An increase in bcl-2 immunoreactivity was detected in the Muller cell processes after neonatal optic tract lesion or optic nerve transection in adult rats. These results suggest that bcl-2 protein may function on cellular differentiation, maturation and homeostasis in the inner retina, and its expression by Muller cells can be up-regulated by the degeneration of ganglion cells. |
| Lack of correlation between expression of Epstein-Barr virus (EBV) latent membrane protein and bcl-2 oncoprotein in vivo. | AIMS: To evaluate whether there is any correlation between the expression of Epstein-Barr virus (EBV) latent membrane protein (LMP) and oncoprotein bcl-2 in the lymph node biopsy specimens of a Chinese patient with EBV-related reactive lymphoproliferation who later developed T cell lymphoma after a short period of time. METHODS: Immunohistochemistry, with a standard alkaline phosphatase antialkaline phosphatase (APAAP) method and New Fuchsin as a chromogen, was used for single staining of bcl-2 or LMP. Double immunostaining combining APAAP and indirect immunofluorescence was performed for dual labelling of LMP and bcl-2. RESULTS: bcl-2 was expressed in 10-30% of cells in the first lymph node biopsy specimen (EBV-associated lymphoproliferative disorder) and 30-50% of cells in the second lymph node biopsy specimen (T cell lymphoma). LMP was expressed in the first biopsy specimen but not in the second. Double immunostaining results showed that around 78% of LMP positive cells were bcl-2 negative and 94% bcl-2 positive cells were LMP negative. Among the very small fraction of LMP and bcl-2 double positive cells, the intensity of bcl-2 staining was heterogeneous and was not always stronger than that observed in LMP negative bcl-2 positive cells. CONCLUSIONS: The expression of bcl-2 protein is independent of LMP protein status in vivo. Several mechanisms may be involved in EBV associated lymphomagenesis, and bcl-2 induction may occur independently of LMP expression. |
| Regulation of chemoresistance by the bcl-2 oncoprotein in non-Hodgkin s lymphoma and lymphocytic leukemia cell lines. | BACKGROUND: The bcl-2 gene becomes activated by 14;18 chromosomal translocations in the majority of low-grade non-Hodgkin s lymphomas (NHLs) and is expressed at high levels in the absence of gene rearrangements in a high proportion of B-cell chronic lymphocytic leukemias (B-CLLs). The protein encoded by bcl-2 contributes to neoplastic cell expansion by prolonging cell survival through its ability to block programmed cell death (apoptosis). Because many chemotherapeutic drugs have been shown ultimately to kill tumor cells through mechanisms consistent with programmed cell death, we tested whether the relative levels of bcl-2 oncoprotein influence the sensitivity of lymphoma and leukemia cell lines to killing by conventional cytotoxic drugs commonly used in the treatment of cancer. METHODS: Leukemia cell lines with low levels of bcl-2 expression were stably infected with recombinant bcl-2 retroviruses to achieve elevations in bcl-2 protein levels. Lymphoma cell lines with high levels of bcl-2 expression as the result of 14;18 translocations were either stably transfected with inducible bcl-2 antisense expression plasmids or treated with bcl-2 antisense oligonucleotides to achieve reductions in bcl-2 protein levels. The sensitivity of these genetically modified cells to killing by various antineoplastic drugs was then determined. RESULTS: Gene transfer-mediated elevations in bcl-2 protein levels in lymphocytic leukemia cell lines was correlated with markedly elevated resistance to killing by ALL cytotoxic drugs tested. Conversely, antisense-mediated reductions in bcl-2 protein levels in t(14;18)-containing NHL cell lines resulted in enhanced sensitivity to ALL anticancer drugs. CONCLUSIONS: The relative levels of bcl-2 oncoprotein represent one of the key determinants of the sensitivity of lymphocytic cells to killing by essentially ALL drugs currently available for the treatment of cancer. |
| Detection and quantitation of low numbers of chromosomes containing bcl-2 oncogene translocations using semi-nested PCR. | A PCR assay has been optimized for the detection of one or a few molecules of a translocation-containing human DNA sequence in the presence of a vast excess (7 micrograms) of the normal human genome. This procedure avoids blot hybridization by the use of two rounds of PCR with 20-22 cycles of amplification per round and by the replacement of one of the two primers from the first round of PCR with a different primer in the second round (semi-nested PCR). We demonstrate that very low numbers of the target DNA molecules can be quantitated by this semi-nested PCR. This method can be used to detect a single DNA molecule from one mutant cell displaying a translocation between the bcl-2 proto-oncogene region and a JH immunoglobulin gene sequence [t(14;18)] in a background of normal human DNA from 10(6) cells. |
| BCL-2 proto-oncogene expression in prostate cancer and its relationship to the prostatic neuroendocrine cell. | Prostatic adenocarcinoma has a divergent response to androgen ablation and a varied long-term prognosis. BCL-2 is a proto-oncogene that prevents programmed cell death. Since androgen withdrawal induces apoptosis, it has been postulated that BCL-2 may play a role in androgen resistance. Neuroendocrine cells have been demonstrated in prostate cancer and have an adverse influence on long-term prognosis. This study demonstrates a proportional relationship between the tissue levels of BCL-2 and the neuroendocrine marker, neuron-specific enolase in 11 of 13 cases of primary prostate cancer. This relationship does not appear to exist in metastatic prostate cancer or in most nonprostate cancers. Direct immunohistochemical staining confirmed BCL-2 in six of the primary tumors, and these BCL-2-containing cells appeared to be intimately associated with tumor neuroendocrine cells. |
| Role of the bcl-2 oncogene in Hodgkin s disease. | The c-MET proto-oncogene product is a transmembrane tyrosine kinase receptor which was recently shown to transmit an array of important cellular responses induced by Hepatocyte Growth Factor (HGF). These biological effects include induction of mitogenesis, motogenesis, morphogenesis, metastogenesis and anti-tumor activity on a variety of epithelial cells. ALL of these processes are known to be associated with normal and abnormal tissue growth and development. The 190 kDa c-MET protein is encoded by a major transcript of 8 kilobases (kb), which is reported to be expressed predominantly in epithelial tissues. The expression pattern of c-MET mRNA and protein are drastically modified in many tumor tissues and cell lines. Currently, no information is available on the molecular mechanisms that regulate c-MET mRNA level. In the present communication, we report for the first time that the inflammatory cytokines such as IL-1 alpha, IL-6 and TNF-alpha, as well as TGF-beta 1, EGF, HGF and the steroidal hormones (estrogen, progesterone, tamoxifen and dexamethasone) markedly influence the steady-state levels of the 8 kb c-MET mRNA in human carcinoma cell lines derived from human tissues such as ovary, breast and endometrium. We demonstrate that c-MET receptor protein is present at high levels in primary tumors of human ovaries (clear cell carcinomas). We present evidence that the 8 kb c-MET mRNA undergoes rapid degradation with a half-life of less than 30 min and that this decay can be quickly inhibited by cycloheximide. Our results suggest that the expression of the c-met proto-oncogene resembles that of an immediate early response gene. |
| Epstein-Barr virus infection and bcl-2 proto-oncogene expression. Separate events in the pathogenesis of Hodgkin s disease?. | The present study was undertaken to investigate whether Epstein-Barr virus-(EBV) encoded latent membrane protein (LMP) induces the expression of BCL-2 in Hodgkin and Reed-Sternberg (HRS) cells of Hodgkin s disease (HD) and thereby provide a possible mechanism for the role of EBV in the pathogenesis of this disease. Fifty-three cases of HD were studied for the presence of EBV using EBV-encoded RNA in situ hybridization and LMP immunohistochemistry. Immunostaining for BCL-2 on paraffin material was performed using microwave treatment of tissue sections before the application of the primary monoclonal antibody. EBV was located in HRS cells in 16 cases (30%). ALL cases that were EBV-encoded RNA in situ hybridization positive, also expressed LMP. BCL-2 expression in HRS cells was detected in 16 cases (30%), but only two of these were also EBV-positive. In both of these cases, only occasional HRS cells expressed BCL-2, in contrast to LMP, which was detected in nearly ALL such cells. BCL-2 staining was predominantly cytoplasmic with some membrane pattern. These results demonstrate that BCL-2 expression can be detected in HRS cells in routinely processed HD tissue and that whereas EBV does not induce the expression of BCL-2 in HD, BCL-2 may have a role in the pathogenesis of EBV-negative cases of HD. |
| The bcl-2 oncogene in Hodgkin s disease arising in the setting of follicular non-Hodgkin s lymphoma. | expression of the bcl-2 proto-oncogene on chromosome 18 is deregulated by the 14; 18 chromosomal translocation, an abnormality that is consistently associated with follicular non-Hodgkin s lymphomas (NHL). Because bcl-2 is believed to function by prolonging cell survival rather than by increasing proliferation, the presence of t(14; 18) in Hodgkin s disease (HD) would have profound implications for the pathogenesis of this neoplasm. We evaluated 32 cases of HD for t(14; 18) by polymerase chain reaction (PCR). These results were correlated with expression of bcl-2 oncogenic protein by Hodgkin cells and with the presence of Epstein-Barr virus (EBV), as determined by immunohistochemistry or in situ hybridization. PCR provided evidence of t(14; 18) in only 2 HD cases (6%), both of which were associated with a prior history of follicular lymphoma, and both of which were among the 7 cases (22%) with strong bcl-2 expression in Hodgkin cells. In at least 1 of the cases, the translocation involved identical chromosomal breakpoints in both types of lymphoma. Furthermore, 7 additional cases of combined follicular NHL and HD showed strong bcl-2 staining in Hodgkin cells. Although EBV was detected in 6 of 30 cases, it was not associated with t(14; 18) and usually not with strong bcl-2 expression. These results suggest that a small proportion of HD cases might evolve from follicular NHL, possibly through molecular events superimposed on the t(14; 18). High-level bcl-2 expression in Hodgkin cells is a potentially useful but not definitive marker for these cases. |
| The bcl-2 oncogene: apoptosis and neoplasia. | Cloning of the t(14;18) translocation breakpoint resulted in the identification of a new putative oncogene, which mapped to 18q21, termed bcl-2. The t(14;18) resulted in inappropriately high levels of bcl-2 expression in follicular lymphoma. Prospective studies using mice transgenic for a human bcl-2-immunoglobulin minigene, intended to recreate the molecular features of the t(14;18), demonstrated that bcl-2 gene deregulation was oncogenic. Interestingly, overexpression of bcl-2 showed no demonstrable influence on rates of cellular proliferation. Rather, bcl-2 was found to extend cellular viability by blocking apoptosis. Recent studies with other oncogenes and tumor suppressor genes, such as c-myc and p53, have demonstrated that the deregulation of apoptosis may be of general significance in the development of multiple types of cancer and appears to be a critical event during multistep carcinogenesis. The selective induction of apoptosis in tumor cell populations is now being considered in the design of novel therapeutic interventions. |
| bcl-2 proto-oncogene expression during human T cell development. Evidence for biphasic regulation. | To ensure that the mature T cell repertoire is MHC-restricted yet not autoreactive, cortical thymocytes that express low levels of the TCR/CD3 complex along with CD4 and CD8 (double positive cells) are subjected to positive and negative selection. Surviving cells lose either CD4 or CD8 (single positive cells) and are located primarily in the thymic medulla. bcl-2, a novel proto-oncogene that promotes cell survival by inhibiting programmed cell death (apoptosis), may be an important protein in regulating cell survival during thymocyte development. We have examined the expression of bcl-2 during T cell development by using human thymocytes. Consistent with previous studies, human thymic tissue sections stained for bcl-2 revealed occasional bcl-2+ cells within the thymic cortex and intense staining of virtually ALL medullary thymocytes. More quantitative western blot analysis and S1 nuclease protection assay revealed that single positive thymocytes contained approximately 2 to 3 times the level of bcl-2 protein and 3 to 4 times the level of bcl-2 mRNA as double positive thymocytes. Flow cytometric analysis of purified double positive thymocytes revealed that minimal amounts of bcl-2 protein was in fact detectable in most cells, although a small subpopulation (10-20%) contained higher levels. In contrast, brighter staining for bcl-2 was observed in virtually ALL single positive thymocytes. Surprisingly, CD4-CD8- thymocytes (both CD3- and CD3+) expressed the same amount of bcl-2 as did the single positive thymocytes. Because a large percentage of CD3-CD4-CD8- cells are cycling, we examined the effect of mitogenic stimulation on bcl-2 expression by double positive thymocytes by using western blot analysis. bcl-2 expression in double positive thymocytes could not be induced by cell cycle entry following stimulation with PMA and ionomycin. Our data demonstrate that bcl-2 expression is biphasic during T cell development. Both CD3-CD4-CD8- and CD3+CD4+ and CD3+CD8+ thymocytes express high levels of bcl-2. Therefore, diminished bcl-2 expression in double positive thymocytes seems to be the result of specific down-regulation in order to facilitate the selection CD4+CD8+ thymocytes. |
| Bcl-2 oncogene protects a bone marrow-derived pre-B-cell line from 5 -fluor,2 -deoxyuridine-induced apoptosis. | The bcl-2 protooncogene has been shown to protect haemopoietic precursors from programmed cell death after the removal of interleukin-3 (IL3). In the present report we show evidence that overexpression of bcl-2 in the pre-B-cell line BAF3 protects cells from apoptosis induced by treatment with the thymydilate synthase inhibitor 5 -fluor,2 -deoxyuridine (FDUR) in the presence of IL-3. Dose-response experiments analyzing the dependence of cell death on drug concentration indicated a marked resistance of BAF3bcl-2 to FDUR treatment. Cleavage of DNA into oligonucleosome-length fragments, a characteristic of apoptosis, was observed in BAF3 cells and inhibited in the cells overexpressing bcl-2. We have determined variations in the dATP and dTTP pools after FDUR treatment. Interestingly, no differences were found between both cells in the kinetics of changes in dNTP pools. Therefore, the protective effect of the Bcl-2 protein on apoptosis induced by dNTP unbalance must be ascribed to a step downstream of perturbations in the synthesis of DNA precursors and before activation of endonucleolytic cleavage of chromatin. |
| Detection of bcl-2 oncogene rearrangement in follicular lymphoma: nucleic acid hybridization and polymerase chain reaction compared. | The activation of FOS proto-oncogene protein has been used as an anatomical marker of activated brain areas. Immunocytochemical detection of FOS can provide information about the sites of action of extracellular stimuli, in spite of the relative absence of specific receptors, at the level of single cell resolution. Following the intracerebroventricular (i.c.v.) injection of recombinant human interleukin-1 (alpha) the c-fos mRNA levels isolated from rat hypothalamus were activated rapidly. In association with c-fos mRNA activation, the i.c.v. injection of interleukin-1 (alpha and beta) markedly induced the FOS immunoreactivity in the hypothalamus including periventricular (PE), paraventricular (PVN), supraoptic (SON), arcuate (ARC), and supramammillary (SuM) nuclei. Within the magnocellular neurons of the SON and PVN, activation of FOS by IL-1 appeared to be greater in areas known to have a high proportion of oxytocin-containing cells than in those of vasopressin-containing cells. Parvocellular neurons were also activated in the PVN. These data suggest sites of action of interleukin-1 in the rat hypothalamic areas reported to have relative absence of interleukin-1 receptor expression. |
| Bcl-2 proto-oncogene expression in Epstein-Barr-virus-associated nasopharyngeal carcinoma. | The bcl-2 proto-oncogene product inhibits apoptosis. Increased levels of bcl-2 protein are associated with prolonged B-cell survival and have been demonstrated in a high proportion of follicular B-cell lymphoma. Recent studies have shown that bcl-2 protein expression in B cells immortalized by Epstein-Barr virus (EBV) in vitro is up-regulated by the EBV-latency-associated antigen, latent membrane protein (LMP) 1. The epithelial malignancy, undifferentiated nasopharyngeal carcinoma (UNPC), has a well-established association with EBV and the tumour cells characteristically display a restricted latent viral phenotype including LMP 1. This study has investigated the relationship between the presence of EBV DNA, EBV phenotypic profiles and bcl-2 protein expression in conventionally processed and cryopreserved samples of NPC using in situ hybridization, immunocytochemical and immunoblotting techniques. bcl-2 was detected in most (80%) samples of UNPC as well as in 1/3 samples of keratinizing NPC and 2/2 samples of nasopharyngeal adenocarcinoma. However, no close correlation was found between the presence of EBV DNA, and profiles for LMP 1 and bcl-2 protein expression in 45 UNPC. In addition, bcl-2 protein was shown to be selectively expressed in the basal compartment of normal nasopharyngeal epithelia. bcl-2 protein expression has not been reported previously in malignant tumours of epithelial origin. The findings in this study implicate a role for bcl-2 both in normal keratinocyte differentiation and in the pathogenesis of epithelial malignancy. |
| Expression of c-myc and bcl-2 oncogene products in Reed-Sternberg cells independent of presence of Epstein-Barr virus. | AIMS: To evaluate the expression of c-myc and bcl-2 oncogene products in Reed-Sternberg cells in Hodgkin s disease, especially in relation to Epstein-Barr virus infection and expression of EBV encoded latent membrane protein (LMP). METHODS: Tissues from 33 cases of Hodgkin s disease were studied for the presence of EBV DNA by polymerase chain reaction (PCR) and DNA in situ hybridisation (DISH), for the presence of EBER-1 and EBER-2 EBV RNA by RNA in situ hybridisation (RISH); and for the presence of LMP, bcl-2, and c-myc proteins by immunohistochemical staining. RESULTS: A substantial number of Reed-Sternberg cells expressed bcl-2 in 20 of 29 (69%) and c-myc in 30 of 32 (94%) Hodgkin s disease samples. In 18 of the 25 (72%) cases Reed-Sternberg cells expressed both oncogene products. Of these 18 cases, 10 (56%) were EBV-PCR positive; eight (44%) were EBV-PCR negative. CONCLUSIONS: Reed-Sternberg cells in Hodgkin s disease frequently express both bcl-2 and c-myc oncogene products, suggesting that these oncogenes may act in concert in the pathogenesis of the disease. Moreover, the expression of c-myc and bcl-2 proteins in Reed-Sternberg cells is independent of EBV and LMP status. |
| An African swine fever virus gene with similarity to the proto-oncogene bcl-2 and the Epstein-Barr virus gene BHRF1. | An open reading frame, LMW5-HL, in the African swine fever virus genome displays a high degree of similarity to the proto-oncogene bcl-2 and, to a lesser degree, the Epstein-Barr virus gene BHRF1. A highly conserved central region is found in ALL three proteins. LMW5-HL encodes a protein of 18 kDa that is present in infected porcine macrophages at both early and late times postinfection. The similarity of LMW5-HL to bcl-2 and BHRF1 suggests a role for it in cell maintenance during productive or persistent viral infection. |
| Investigation of the subcellular distribution of the bcl-2 oncoprotein: residence in the nuclear envelope, endoplasmic reticulum, and outer mitochondrial membranes. | A multidisciplinary approach was taken to investigate the intracellular locations of the 26-kDa integral membrane protein encoded by the bcl-2 gene. Subcellular fractionation analysis of a t(14;18)-containing lymphoma cell line revealed the presence of Bcl-2 protein in nuclear, heavy-membrane, and light-membrane fractions but not in cytosol. Sedimentation of heavy-membrane fractions in Nycodenz and Percoll continuous gradients demonstrated comigration of p26-Bcl-2 with mitochondrial but not other organelle-associated proteins. Fractionation of light-membrane fractions using discontinuous sucrose-gradients revealed association of Bcl-2 protein primarily with lighter-density microsomes (smooth endoplasmic reticulum) as opposed to heavy-density microsomes (rough endoplasmic reticulum). Immune microscopy studies using laser-scanning microscopy, pre- and postembedding electron microscopic methods, and six different anti-Bcl-2 antibodies demonstrated Bcl-2 immunoreactivity in the nuclear envelope and outer mitochondrial membrane in a patchy distribution. Furthermore, anti-Bcl-2 antibody immunoreactivity generally appeared to directly overlie the nuclear envelope in high magnification electron microscopic studies, reminiscent of nuclear pore complexes. Addition of in vitro translated p26-Bcl-2 to isolated translocation-competent mitochondria revealed transmembrane domain-dependent association of Bcl-2 protein with mitochondria but provided no evidence for import into a protease-resistant compartment, consistent with immunomicroscopic localization to the outer mitochondrial membrane. Taken together, the findings demonstrate that p26-Bcl-2 resides primarily in the nuclear envelope, endoplasmic reticulum, and outer mitochondrial membrane in a nonuniform distribution suggestive of participation in protein complexes perhaps involved in some aspect of transport. |
| Regulation of Bcl-2 oncoprotein levels with differentiation of human neuroblastoma cells. | When established in culture, human neuroblastoma cell lines typically are comprised of heterogeneous cellular subpopulations, including neuroblastic (N-type), substrate-adherent (S-type), and intermediate (I-type) cells that can be distinguished by their characteristic morphologies and expression of differentiation-associated antigens. Here we examined the relative levels of the Bcl-2 oncoprotein in 15 clones derived from four different neuroblastoma cell lines. Among six clones isolated from the SK-N-SH line, levels of p26-Bcl-2 correlated with morphology and differentiation markers with the hierarchy of bcl-2 expression being: N-type cells > N/I-type > I-type > S-type. Furthermore, stimulation of one of the N-type clones, SH-SY5Y, with the phorbol ester, 12-O-tetradecanoylphorbol-13-acetate, induced differentiation toward a more neuronal-like phenotype and resulted in a 5- to 10-fold elevation in the relative levels of Bcl-2 protein. High relative amounts of p26-Bcl-2 protein were also found in an N-type clone derived from the SMS-KCN line. In two N-type clones derived from the LA-N-1 line, however, levels of Bcl-2 protein were only moderately elevated, and in one N-type clone from the SK-N-BE(2) line the levels of Bcl-2 protein were low. Thus, high relative levels of Bcl-2 oncoprotein are not a universal feature of N-type cells (three of six clones tested). In contrast, ALL 5 of the S-type clones evaluated contained relatively low levels of Bcl-2 protein, suggesting that these cells (which may represent embryonic precursors of Schwann, glial, and melanocytic cells) do not typically express the bcl-2 gene at high levels. Consistent with this inverse correlation between Bcl-2 protein levels and S-type characteristics, stimulation of an I-type clone derived from the SK-N-BE(2) line with 5-bromodeoxyuridine was accompanied by an accumulation of S-type cells in these cultures, decreased Bcl-2 protein, diminutions in the neuronal markers neurofilament-M and neuron-specific enolase, and an increase in the relative levels of the S-type marker proteins vimentin and beta-2-microglobulin. Conversely, stimulation of this I-type clone with retinoic acid resulted in an accumulation of N-type cells (which are thought to represent embryonic precursors of sympathetic neurons), decreased vimentin and beta-2-microglobulin, increased neurofilament-M, and a marked elevation in p26-Bcl-2.(ABSTRACT TRUNCATED AT 400 WORDS)FAU - Hanada, M |
| Correction: location of bcl-2 oncogene. | 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. |
| Bcl-2 oncoprotein blocks chemotherapy-induced apoptosis in a human leukemia cell line. | Previous studies have shown that the bcl-2 gene encodes a mitochondrial protein that contributes to neoplastic cell expansion primarily by promoting cell survival through interference with "programmed cell death" (PCD), also termed "apoptosis." Because many chemotherapeutic drugs are capable of initiating pathways leading to apoptosis, we determined whether deregulated bcl-2 expression could render cells resistant to several drugs commonly used in the treatment of non-Hodgkin s lymphomas, including dexamethasone (DEX), methotrexate (MTX), 1-beta-D-arabinofuranosyl-cytosine (Ara-C), etoposide (VP-16), vincristine (VC), cisplatin (CP), and hydroperoxycyclophosphamide (4-HC). For these experiments, we achieved high levels of p26-Bcl-2 protein production in a human pre-B-cell leukemia line 697 by stable infection with a recombinant bcl-2-containing retrovirus and then compared these cells with control virus-infected 697 cells. Control 697 cells were induced to undergo apoptosis by ALL drugs tested as defined by DNA degradation into oligonucleosomal-length fragments, cell shrinkage, and subsequent cell death. In contrast, 697 cells with elevated Bcl-2 protein levels exhibited strikingly prolonged cell survival and markedly reduced DNA fragmentation when cultured in the presence of these antineoplastic agents. Although high levels of Bcl-2 protein protected 697 cells from the acute cytotoxic effects of DEX and the other drugs tested, Bcl-2 did not prevent these drugs from suppressing the proliferation of 697 cells. However, when 697 cells were treated with DEX or MTX for 3 days, then washed and cultured in semisolid media without drugs, bcl-2-virus-infected cells gave rise to colonies at much higher frequencies than 697 cells stably infected with control virus. These results indicate that by protecting 697 leukemic cells from the acute cytotoxicity of DEX and some other chemotherapeutic drugs, high levels of p26-Bcl-2 can create the opportunity for re-initiation of cell growth when drugs are withdrawn. The findings may be relevant to clinical correlative studies of non-Hodgkin s lymphoma patients that have found an association between worse prognosis and bcl-2 gene rearrangements or t[14;18] translocations. |
| Conversion of lytic to persistent alphavirus infection by the bcl-2 cellular oncogene. | Little is known about virus-host cell interactions that regulate the lytic potential of viruses during productive replication. Sindbis virus (SV), a single-stranded positive-sense RNA virus in the alphavirus genus (family Togaviridae), results in lytic infection in most vertebrate cell lines, but persistent productive infection in post-mitotic neurons. The cellular oncogene bcl-2, which encodes an inner mitochondrial membrane protein of M(r) 26,000 (ref. 2), blocks programmed cell death (apoptosis) in neurons. We therefore investigated whether SV infection induces programmed cell death in non-neuronal cells, and if so, whether virus-induced programmed cell death can be blocked by transfection with bcl-2. We demonstrate that SV infection of baby hamster kidney (BHK-2), mouse neuroblastoma (N18), and rat prostatic adenocarcinoma (AT-3) cells results in programmed cell death, whereas SV infection of bcl-2-transfected AT-3 cells results in long-term persistent productive infection. Thus cellular bcl-2 oncogene expression plays a role in the establishment of persistent viral infection by blocking virus-induced programmed cell death. |
| Effect of bcl-2 proto-oncogene expression on cellular sensitivity to tumor necrosis factor-mediated cytotoxicity. | Introduction and expression of the proto-oncogene bcl-2 (B-cell lymphoma/leukemia 2) has been shown to extend the survival of certain hematopoietic cell lines after growth factor deprivation, by blocking apoptosis or programmed cell death. We investigated the effect of bcl-2 expression on cellular sensitivity to lysis by tumor necrosis factor (TNF), a cytokine capable of inducing apoptosis in several tumor cell lines. Introduction of the human bcl-2 gene in the highly TNF-sensitive L929 mouse fibrosarcoma cell line did not result in altered TNF sensitivity. Likewise, NIH3T3 and REF cells, which are resistant to TNF cytotoxicity but become TNF sensitive upon cotreatment with actinomycin D or upon expression of the adenovirus E1A gene, did not show altered TNF sensitivity upon bcl-2 transfection. Despite constitutive expression of the endogenous bcl-2 gene, human MCF7 breast carcinoma cells, as well as HL60 promyelocytic leukemia and U937 histiocytic lymphoma cell lines were found to be TNF sensitive. bcl-2-overexpressing derivatives of these cell lines did not acquire reduced TNF sensitivity and still exhibited the characteristic pattern of internucleosomal DNA fragmentation of TNF-induced apoptosis. Moreover, bcl-2 expression in the interleukin 3 (IL-3)-dependent myeloid cell line 32D protected these cells from apoptosis resulting from growth factor deprivation, but not from apoptosis induced by TNF. These data clearly establish the absence of a correlation between bcl-2 gene expression and cellular sensitivity to TNF-induced cell lysis. These findings are discussed in the context of the hypothesis of different pathways for induction of apoptosis, only some of which are affected by bcl-2 expression. |
| The proto-oncogene bcl-2 can selectively rescue neurotrophic factor-dependent neurons from apoptosis. | Apoptosis plays an important role in regulating cell numbers in a wide variety of tissues during development. The product of the bcl-2 gene inhibits apoptosis in certain cells of the myeloid and lymphoid lineages and is expressed in many cells that have an extended life span. To assess the role of bcl-2 in neuronal apoptosis, we microinjected a bcl-2 expression vector into neurotrophic factor-deprived embryonic neurons. Sensory neurons that depend for survival on one or more members of the nerve growth factor family of neurotrophic factors (nerve growth factor, brain-derived neurotrophic factor, and neurotrophin-3) were rescued by bcl-2, whereas ciliary neurotrophic factor (CNTF)-dependent ciliary neurons were not. Sensory neurons, however, became refractory to bcl-2 after exposure to CNTF. These findings indicate that at least two death pathways operate in neurons that are distinguished by their susceptibility to bcl-2. Neurons may die by either pathway, depending on the factors to which they have been exposed. |
| Structure-function analysis of the Bcl-2 oncoprotein. Addition of a heterologous transmembrane domain to portions of the Bcl-2 beta protein restores function as a regulator of cell survival. | The bcl-2 gene can potentially encode 26- and 22-kDa proteins that differ only in their carboxyl tails because of an alternative splicing mechanism. The larger of these proteins contains a hydrophobic transmembrane domain within its carboxyl terminus, resides (at least in part) in mitochondrial membranes and has been shown to prolong cell survival by blocking programmed cell death (also termed "apoptosis"). To explore the function of the shorter 22-kDa Bcl-2 protein that lacks a transmembrane domain, DNAs encoding p26-Bcl-2-alpha or p22-Bcl-2-beta were expressed in an interleukin-3 (IL-3)-dependent hematopoietic cell line 32D. In contrast to p26-Bcl-2 alpha that markedly prolonged cell survival, p22-Bcl-2-beta did not extend the survival of 32D cells when cultured in the absence of IL-3. expression in 32D cells of a chimeric DNA that fused portions of the open reading frame common to Bcl-2-alpha and Bcl-2-beta (amino-acids 1-195) with sequences encoding the transmembrane and cytosolic domains of the IL-2 receptor-alpha protein resulted in production of a Bcl-2/IL-2R fusion protein that was capable of prolonging 32D cell survival in the setting of IL-3 withdrawal. Based on fractionation of cells to produce crude heavy membrane, light membrane, nuclei, and cytosolic preparations, much of the p22-Bcl-2-beta protein appeared to reside in the cytosol, whereas Bcl-2-alpha and the Bcl-2/IL-2R chimeric proteins were found exclusively in fractions that also contained the inner mitochondrial membrane protein F1-beta-ATPase. Taken together, these findings demonstrate the importance of membrane association for the function and intracellular targeting of the apoptosis-blocking Bcl-2 protein. Furthermore, despite the strong evolutionary conservation of the carboxyl regions of Bcl-2-alpha proteins observed previously for mammalian and avian species, these data suggest that a heterologous transmembrane domain can be substituted without loss of function. |
| Expression of the proto-oncogene bcl-2 in uterine cervical squamous cell carcinoma: its relationship to clinical outcome. | We studied bcl-2 expression in patients with uterine cervical squamous cell carcinoma and correlated this phenomenon with survival. Immunohistochemical analysis with a monoclonal antibody specific for bcl-2 was used to detect the protein in tumor samples from 259 patients undergoing surgery for squamous cell carcinoma of the uterine cervix. Of the total, 67% (174) of the tumors were bcl-2 negative, and 33% (85) were positive. No significant difference in survival at five years was noted between patients with negative (78%) and positive (82%) tumors. However, when bcl-2 positive tumors were divided into partially stained (62 of 85, 73%), and diffusely stained (23 of 85, 27%) groups, the patients with partial staining had a better prognosis than those with diffused or negative (p < 0.01), staining (p < 0.05) (5 year survivals, respectively; 92%, 61%, and 78%). Though detection of bcl-2 positivity may itself not have clinical value for uterine cervical squamous cell carcinoma, the staining characters may add to predicting prognosis. |
| Expression of bcl-2 oncoprotein in renal cell tumours. | expression of bcl-2 is associated with inhibition of apoptosis and extension of cell survival. The importance of apoptosis in relation to the development and progression of renal cell neoplasia remains undefined so far. In order to determine the expression of bcl-2 oncoprotein in normal and neoplastic renal cells, 37 renal tumours were investigated by immunolabelling, including 13 clear cell carcinomas, ten tubulopapillary carcinomas, four chromophobic renal cell carcinomas, and ten oncocytomas. Twenty-six samples of adjacent normal renal tissue served as controls. bcl-2 expression was correlated with cell proliferation activity as estimated by Ki67 antigen expression, and p53 protein expression in the tumour samples. The results demonstrate that in the normal kidney, positive bcl-2 immunostaining was present in glomerular parietal epithelial cells, in distal tubular cells, and in sparse proximal tubule cells. Renal cell tumours showed heterogeneous bcl-2 expression according to the tumour cell type. While the majority of carcinomas of clear cell type were usually negative or contained sparsely distributed positive cells, ALL tubulopapillary carcinomas were consistently positive for bcl-2. In oncocytomas and chromophobic carcinomas, there was a low percentage of bcl-2 immunoreactive tumour cells; some nuclear bcl-2 positivity was detected in one chromophobic tumour. These findings indicate variable bcl-2 oncoprotein expression in different types of renal cell tumours, with the highest level of expression in tubulopapillary carcinomas. No clear relationship was found between nuclear grade, cell proliferation activity, and level of bcl-2 expression. p53 protein was detected in only one tubulopapillary carcinoma. |
| Molecular evolution and secondary structural conservation in the B-cell lymphoma leukemia 2 (bcl-2) family of proto-oncogene products. | The nature of the bcl-2 family of proto-oncogenes was analyzed by sequence alignment, secondary structure prediction, and phylogenetic techniques. Phylogenies were inferred from both the nucleic acid and amino acid sequences of the human, murine, rat, and chicken sequences for BCL-2 and BCL-X, human MCL1, murine A1, the nematode Caenorhabditis elegans and Caenorhabditis briggsiae ced-9 proteins, and the sequences BHRF1 from Epstein-Barr and LMW5-HL from African swine fever viruses. Both sequence alignment and secondary structure prediction techniques supported the conservation of both the overall secondary structure and the carboxy-terminal transmembrane domain in ALL members of the family. ALL the treeing methods employed (distance matrix, maximum likelihood, and parsimony) supported a tree in which the proapoptotic proteins BCL-2 and BCL-X represent the most recent additions to the group. ALL the trees also indicated that the viral proteins BHRF1 and LMW-HL arose from a common ancestor, an ancestor they shared in common with the pro-apoptotic control protein BAX, indicating that this function of BAX evolved only recently. The most ancient branches are represented by the nematode ced-9 protein and by the control genes MCL1 and A1, which in the treeing methods employed represent separate lineages within the most ancient grouping. These results demonstrate the evolution of a highly conserved family of developmental control genes from nematode to man--genes that encode proteins essential for normal development but which are highly conserved in terms of predicted structure and possible cellular localization. The evolutionary analysis also indicates that the family may be even larger than originally predicted and that other members are waiting to be discovered. |
| BCL2 oncogene protein expression in human hematopoietic precursors during fetal life. | BCL2 proto-oncogene encodes a 25-kD protein that is characteristically localized in the inner mitochondrial membrane of the cell. It has been reported that BCL2 protein has the unique functional role of blocking programmed cells death without affecting proliferation. We have analyzed the expression of the BCL2 protein in fetal hematopoietic tissues from the 10th week of gestational age onward. Fetal thymus, liver, and bone marrow and cord blood were investigated. The experiments were performed by the alkaline-antialkaline phosphatase (APAAP) technique by staining air-dried acetone-fixed cytospins and by dual-color immunofluorescent assay by staining mononuclear cell suspensions with monoclonal antibodies detecting BCL2 protein and antigens expressed by different hematopoietic subsets. Flow cytometric analyses were performed on FACSort s Comsort 32 (Becton Dickinson, San Jose, CA). The results have shown that the BCL2 protein is expressed in human fetal ontogenesis at the earliest stages examined. The major conceptual aspects of the results are 1) BCL2 is largely expressed in the hematopoietic cells during ontogenesis. BCL2+ cells include both immature and more differentiated subsets. Moreover, the 25-kD protein is expression in cell subsets well known to be high proliferating. This behavior suggests that BCL2 could have more complex functions than those previously described. 2) The expression in the major part of CD34+ cells suggests that BCL2 could play a role in stem cell survival. 3) BCL2 is expressed in not only medullary but also cortical thymocytes, where it could cooperate in positive selection processes. 4) The involvement of BCL2 in the immunosurveillance is indicated not only by its role in B and T cell lineages but also by its expression in particular subsets like that of the cytoplasmic CD3+ fetal liver NK cells. 5) The discrepancy observed between the results of transgenic mice analysis and in vitro inhibition experiments by antisense oligonucleotides performed for understanding BCL2 functions must stress the importance of the direct immunologic analysis of BCL2 in human hematopoietic cells. |
| Involvement of BCL-2 oncoprotein in the development of enterochromaffin-like cell gastric carcinoids. | To evaluate the involvement of the apoptosis-suppressing protein BCL-2 in the gastrin-dependent mechanism of induction of gastric enterochromaffin-like (ECL) cell carcinoids, the endocrine cell of the oxyntic mucosa were immunohistochemically investigated in (a) 10 normogastrinemic subjects with histologically normal gastric mucosa; (b) 22 patients with endocrine cell hyperplasia and affected by hypergastrinemic conditions with different risk of gastric carcinoid development, such as sporadic Zollinger-Ellison syndrome (sZES; n = 9), ZES associated with multiple endocrine neoplasia-1 (MEN-1; n = 4), and atrophic fundal gastritis (AFG; n = 9); (c) 14 patients with ECL gastric carcinoids accounting for a total of 31 tumors investigated. In the normal oxyntic mucosa, BCL-2 was consistently expressed by a subset of endocrine cells accounting for 50.0% (median; range, 24.6-74.0%) of the total number of endocrine cells immunostained for chromogranin A (CgA) in consecutive sections. BCL-2 immunoreactive cells were located mostly in the middle mucosal layer, suggesting a role for the protein during downward migration of maturing endocrine cells. No BCL-2 immunoreactivity was found in other specialized gastric epithelial cells. expression of BCL-2 by hyperplastic oxyntic endocrine cells (mostly ECL cells) varied in parallel with the risk of carcinoid development. In fact, the ratio of BCL-2- to CgA-immunoreactive cells was reduced (median, 4.6%; p less than 0.0001; range, 0.9-42.0%) in sZES, a condition showing virtually no risk, unchanged (median, 55.6%; range 29.4-83.8 %) in cases of MEN-1/ZES with intermediate risk, and increased (median 87.6%; p less than 0.014; range, 48.8-199.4%) in cases of AFG, a condition at the highest risk of carcinoid. In ECL cell carcinoids, BCL-2 expression varied markedly from one tumor to another even in the same patient and was low or absent in most cases. In both hyperplastic and neoplastic ECL cells, an inverse relation between BCL-2 expression and CgA immunoreactivity, that is, the cell granule content, was found. These results suggest that BCL-2 expression by hyperplastic ECL cells is independent of the influence of serum gastrin and may contribute to the development of ECL cell carcinoid tumors by extending cell exposure to oncogenic factors. Once a carcinoid tumor is established, BCL-2 expression becomes inconsistent. |
| Differential expression of the bcl-2 oncogene in human basal cell carcinoma. | The bcl-2 protein increases cell longevity and reduces apoptosis. expression of the bcl-2 oncogene is reported in certain low grade neoplasms including basal cell carcinomas (BCCs). The authors postulated that the indolent variants of BCC, namely, the superficial and circumscribed subtypes, might exhibit greater bcl-2 expression than their aggressive counterparts, and used a monoclonal antibody to identify its protein product in formalin-fixed tissue from 30 BCCs. expression of bcl-2, observed in 28 to 30 BCCs, was greatest in indolent-growth BCCs and weakest in the aggressive-growth variants (P = .005). Variable bcl-2 expression is seen in BCC and may be integral to both its pathogenesis and its biological behavior. |
| Axotomized neonatal motoneurons overexpressing the bcl2 proto-oncogene retain functional electrophysiological properties. | Bcl2 overexpression prevents axotomy-induced neuronal death of neonatal facial motoneurons, as defined by morphological criteria. However, the functional properties of these surviving lesioned transgenic neurons are unknown. Using transgenic mice overexpressing the protein Bcl2, we have investigated the bioelectrical properties of transgenic facial motoneurons from 7 to 20 days after neonatal unilateral axotomy using brain-stem slices and whole cell patch-clamp recording. Nonaxotomized facial motoneurons from wild-type and transgenic mice had similar properties; they had an input resistance of 38 +/- 6 M omega and fired repetitively after injection of positive current pulses. When cells were voltage-clamped at or near their resting membrane potential, alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA), N-methyl-D-aspartic acid (NMDA), or vasopressin generated sustained inward currents. In transgenic axotomized mice, facial motoneurons could be found located ipsilaterally to the lesion; they had an input resistance of 150 +/- 30 M omega, indicating that they were smaller in size, fired repetitively, and were also responsive to AMPA, NMDA, and vasopressin. Morphological measurements achieved 1 week after the lesion have shown that application of brain-derived neurotrophic factor prevented the reduction in size of axotomized transgenic motoneurons. These data indicate that Bcl2 not only prevents morphological apoptotic death of axotomized neonatal transgenic motoneurons but also permits motoneurons to conserve functional electrophysiological properties. |
| Expression of BCL-2 proto-oncogene in adult acute lymphoblastic leukemia. | The products of the BCL-2 gene prolong survival of lymphohematopoietic cells by inhibition of programmed cell death. We studied bcl-2 protein expression in a series of 43 adult acute lymphoblastic leukemia (ALL) at diagnosis, using a specific monoclonal antibody and flow cytometry. ALL samples expressed bcl-2 with a mean percentage of positive cells of 77.9. The level of bcl-2 in positive cells expressed as mean equivalent of soluble fluorescence (MESF) was highly variable ranging from 5 x 10(3) to 552 x 10(3) (mean +/- s.d.: 96.5 +/- 109 x 10(3)). Neither the percentage of positive cells nor bcl-2 MESF levels were correlated with initial characteristics including blood counts, immunological phenotype, or cytogenetics. The survival of leukemic cells maintained in cytokine-free liquid culture was not correlated with bcl-2 expression. However, cells from ALL with higher white blood cell (WBC) counts, with t(9;22) translocation, or expressing myeloid surface antigens exhibited significantly longer survival in this culture system. The outcome after intensive chemotherapy did not differ according to bcl-2 expression. Factors associated with poor outcome included WBC counts, presence of t(9;22) translocation, presence of myeloid antigens and prolonged survival of cultured cells. These results indicate that high levels of bcl-2 are not associated with distinct clinical or biological characteristics in ALL. |
| Quantitation of bcl-2 oncogene in cultured lymphoma/leukemia cell lines and in primary leukemia B-cells by a highly sensitive RT-PCR method. | BACKGROUND: The bcl-2 gene, isolated from the t(14;18) chromosomal translocation breakpoint, is able to prevent apoptotic death induced by various stimuli in different tissues. Therefore bcl-2 oncogene expression could be a key parameter for investigating the molecular mechanisms involved in the apoptosis of normal and neoplastic hematopoietic cells. METHODS: In order to evaluate bcl-2 expression in both follicular B-lymphomas carrying or not carrying the 14;18 translocation and in lymphatic leukemias, we optimized an internal standard-based method of reverse transcriptase-polymerase chain reaction (RT-PCR) for the rapid quantitation of bcl-2 mRNA cellular levels. A simple purification of the reverse transcription products resulted in very high PCR efficiency, so that radioactive labelling of the amplification products was avoided. RESULTS: bcl-2 mRNA levels proved to be higher in t(14;18) than in t(14;18) negative cell lines, and higher in primary leukemia pre-B cells than in early-B cells. Tested for sensitivity by identifying minimal residual t(14;18) B cells expressing the bcl-2/IgH gene, this RT-PCR method was able to detect bcl-2/IgH mRNA from just one t(14;18) positive cell out of ten million t(14;18) negative cells. CONCLUSIONS: The RT-PCR method we optimized appears to be suitable for clinical use in both leukemia/lymphoma characterization and in lymphomatous disease follow-up. |
| Expression of bcl-2 oncoprotein in various types of glomerulonephritis and renal allografts. | BACKGROUND: Bcl-2 oncogene was identified as a transcript associated with the t (14;18) and exhibits the unique functional role of blocking apoptosis. Apoptosis as a remodelling mechanism has been reported to embryonic and adult kidney. The aim of this study was to investigate the expression of bcl-2 protein in normal and diseased renal tissue and to define any correlation with the type of renal injury. MATERIALS AND METHODS: Our material comprised of 10 normal adult kidneys, 31 renal allografts with acute (22) and chronic (9) rejection, and 70 renal biopsies with various types of primary (49) (31 proliferative and 18 non-proliferative) and secondary (21) glomerulonephritis. The immunohistochemical strept.ABC method was performed on paraffin sections for the detection of bcl-2 protein with a monoclonal antibody after microwave pretreatment. RESULTS: Bcl-2 protein was detected in ALL the cases of normal and diseased renal tissue, showing an analogous expression. The antigen was expressed in a few parietal epithelial cells, and in the majority of distal and collecting tubular epithelial cells, but not in the glomerular capillary tuft. No difference was found in bcl-2 expression between cases of proliferative and non-proliferative glomerulonephritis as a whole, or between primary and secondary glomerulonephritis. Bcl-2 expression in acute and chronic rejection demonstrated a similar cytoarchitectural expression to the one observed in normal kidneys and glomerulonephritis. Bcl-2 was detected in podocytes near intraglomerular fibrotic lesions and in epithelial cells of early adhesions and cellular crescents, wherever observed in cases of glomerulonephritis. However, bcl-2 expression in proximal tubular epithelial cells was significantly higher in cases of proliferative glomerulonephritis than in non-proliferative glomerulonephritis (P<0.01), while bcl-2 expression in parietal epithelial cells in cases of chronic rejection was higher than in cases of acute rejection (P<0.08). CONCLUSIONS: The absence of bcl-2 expression in normal and diseased glomeruli suggests and supports the reported notion that the mechanism of apoptosis may be available in the injured glomerulus. Moreover, bcl-2 expression in podocytes near intraglomerular fibrotic lesions and in epithelial cells of early adhesions and cellular crescents indicates the deregulation of apoptosis and its possible role in the progression of glomerular scarring. Key words: apoptosis; bcl-2 oncoprotein; glomerulonephritis; immunohistochemical; renal rejection. |
| Expression of bcl-2 oncogene product in primary non-Hodgkin s malignant lymphoma of the oral cavity. | The B-cell leukemia/lymphoma-2 (bcl-2) proto-oncogene is peculiar, as its product appears to provide survival advantage to B cells by blocking apoptosis. expression of bcl-2 protein was analyzed in 54 cases of primary non-Hodgkin s malignant lymphomas of the oral cavity by immunohistologic staining of paraffin-embedded tissue. The immunophenotype of each tumor was established with the use of a panel of monoclonal and polyclonal antibodies to lymphoid cell differentiation antigens. The cases in the present study were 42 B-cell lymphomas, 7 T-cell lymphomas and 5-lymphomas revealing histiocytic markers. Sixteen of the 42 B-cell lymphomas were positive for bcl-2 protein, and were composed of 7 low-grade B-cell lymphomas and 9 high-grade B-cell lymphomas. Seven low-grade B-cell lymphomas were composed of one mucosa-associated lymphoid tissue type, three centrocytic types and three centroblastic-centrocytic types. Nine high-grade B-cell lymphomas comprised four centroblastic types, one immunoblastic type and four lymphoblastic types. Enhanced expression of the bcl-2 oncogenic protein was detectable in lymphoma cells in 2 cases for the T-cell lymphoma, and one case for the true histiocytic lymphoma. In contrast to the previous reports of American node-based lymphomas, Japanese primary oral lymphomas in our series expressed a lower frequency of bcl-2 protein. Furthermore, the present study indicated that bcl-2 protein was expressed on a wide variety of B-cell lymphomas, T-cell lymphomas and true histiocytic lymphoma, and that differences in bcl-2 protein expression may be useful in the diagnostic separation of lymphoblastic lymphoma with B-cell marker from Burkitt s lymphoma. |
| Histochemical detection of intranuclear DNA fragmentation and its relation to the expression of bcl-2 oncoprotein in human prostatic cancer. | OBJECTIVE: To assess the incidence of intranuclear DNA fragmentation and the expression of the bcl-2 oncoprotein in prostatic carcinoma, both of which are related to programmed cell death. PATIENTS, MATERIALS AND METHODS: Specimens of tumour obtained from 17 patients with newly diagnosed prostatic carcinoma and 16 with hormone-treated prostatic carcinoma undergoing total prostatectomy were evaluated. DNA fragmentation was detected using the terminal-labelling method (d-uridine triphosphate conjugated with digoxigenin) and the expression of bcl-2 was detected immunohistochemically. RESULTS: There was a high incidence of intranuclear DNA fragmentation in 14 of 17 untreated tumours and 15 of 16 hormone-treated tumours. There were no differences between the positive cases in hormone-treated tumours and untreated tumours. There was significantly greater expression of bcl-2 in tumours treated with non-steroidal anti-androgen drugs (eight of nine were positive) than in those untreated (seven of 17) or treated with other drugs (one of seven) (P < 0.05). There was a consistent and marked dissociation between DNA fragmentation and bcl-2 positivity; most of the cells positive for bcl-2 showed no DNA fragmentation. CONCLUSION: The results indicated that cells positive for bcl-2 might potentially be hormone resistant and that the administration of non-steroidal anti-androgen drugs might have a role in the induction of hormone-resistant cells. |
| Regulation of B cell survival in xid mice by the proto-oncogene bcl-2. | CBA/N mice carry an X-linked immunodeficiency (xid) due to a point mutation in the Bruton s tyrosine kinase (btk) gene. xid mice have a smaller peripheral B cell pool than normal animals, lack CD5+ B cells (B1), and are hyporesponsive to mitogenic anti-Igs and thymus-independent type 2 Ags. The proto-oncogene bcl-2 affects B cell homeostasis by suppressing programmed cell death. We hypothesized that reduced bcl-2 expression could enhance programmed cell death in xid B cells, directly causing poor peripheral B cell survival and indirectly affecting Ag responsiveness. We measured and compared levels of endogenous Bcl-2 protein and spontaneous apoptosis in xid and normal B cells, and determined the effect of a human bcl-2/Ig minigene on B cell survival and Ag responsiveness in bcl-2 transgenics. The amount of endogenous Bcl-2 was reduced fivefold in freshly isolated xid B cells compared with that in normal cells, but was equal in xid and normal T cells. Attrition by spontaneous apoptosis was significantly higher in cultured xid B cells. expression of the bcl-2 transgene suppressed apoptosis equally in normal and xid B cells, prolonged in vitro survival, and markedly expanded in vivo the follicular B cell population normally reduced in xid mice. However, most xid defects persisted; xid/bcl-2 mice remained deficient in B1 cells and hyporesponsive to anti-Igs, thymus-independent type 1 Ags, and thymus-independent type 2 Ags. The data suggest that signal transduction pathways using Btk independently regulate B cell survival and Ag responsiveness. |
| [Clinicopathological study on primary lung cancer--immunohistochemical expression of p53 suppressor gene and bcl-2 oncogene in relation to prognosis]. | Two hundred and eleven surgically resected primary lung tumors were studied immunohistochemically. According to histologic type, they were 129 adenocarcinomas, 56 squamous cell carcinomas, 4 small cell carcinomas, 8 large cell carcinomas, 8 adenosquamous cell carcinomas, 5 so-called carcinosarcomas and 2 other tumors. Immunohistochemical expression of p53 and bcl-2 was studied in relation to the disease-free survival. Among the 211 patients with lung cancer, 109 were positive for p53 expression, and there was no significant relationship between p53 expression and sex, or clinicopathological stage and size of the tumor, although the patients with squamous cell carcinoma had a significantly higher frequency of p53 expression than those with adenocarcinomas. The frequency of p53 expression was significantly higher in the patients with poorly differentiated adenocarcinomas than in those with other histologic types. Seventy four of the 211 patients were positive for bcl-2 expression and bcl-2 expression was higher in the stage I patients and patients with small lung tumors 2cm or less in diameter than in the other patients. The patients with adenocarcinoma had a higher frequency of expression than those with squamous cell carcinoma but no difference was found in the histological differentiation of the tumor. The 5-year survival of patients positive for p53 expression was poorer than that of those with negative expression and the survival rate was higher in the patients positive for bcl-2 expression than in those with negative expression. These findings suggested that the expression of p53 and bcl-2 is a useful marker of follow-up and prognosis, but will require more data concerning the mechanism of carcinogenesis. Seven cases of primary lung cancer were examined for genetic abnormality of the p53 gene. cDNA was synthesized from total RNA of primary tissues of lung cancer using oligo (dT) primer and reverse transcriptase and polymerase chain reaction (RT-PCR), and PCR-single strand conformation polymorphism (SSCP) analysis were performed. Five patients gave a positive result upon PCR-SSCP analysis of the p53 gene. To confirm the results of PCR-SSCP analysis, their nucleotide sequences were further analyzed and four of them had point mutations at different codons (154, 176, 207, 236) and one had deletion of one nucleotide (245) in exon 5 and 8. Fifteen percent of 26 patients with small peripheral lung adenocarcinomas less than 2cm in diameter were already advanced in stage and various factors such as vascular invasion, pleural involvement and degree of scar grade were higher than in patients with clinicopathological stage I. In advanced cases, the frequencies of p53 expression was higher than in stage I cases. Concerning the relationship of the degree of scar grade to PDGF-B expression, we demonstrated the production of PDGF-B protein immunohistochemically and the expression of PDGF-B-mRNA by In situ hybridization in the adenocarcinoma cells and macrophages of the lung tumors. However, no significant correlation was observed between the degree of PDGF-B expression and collagen production in the fibrotic focus. |
| [Bcl-2 proto-oncogene expression in neoplastic and non neoplastic thyroid tissue]. | bcl-2 protein which protects cells from apoptosis is found to be expressed in several neoplastic and non neoplastic tissues. bcl-2 is consistently expressed in normal thyroid tissue but the regulation of its expression in thyroid tumors derived from the follicular cells remains to be discovered. In this study, we have assessed bcl-2 expression in different samples of non neoplastic and neoplastic thyroid tissues. Sixteen papillary carcinomas (including four papillary carcinomas of follicular variant), eight follicular carcinomas and five undifferentiated carcinomas were selected for this study. The tissues were routinely fixed and paraffin embedded. Four cases of normal thyroid tissue, four cases of Hashimoto s thyroiditis and five cases of thyroid tissue with Graves disease were also investigated. Immunohistochemistry was performed with an anti-bcl-2 monoclonal antibody on paraffin sections. bcl-2 was highly expressed in normal follicular cells but also in follicles of Hashimoto s thyroiditis and Graves disease while its expression appeared to be downregulated in papillary (14 cases on 16), in follicular (five cases on eight) and undifferentiated (five cases on five) carcinomas. However, in five carcinoma cases (one papillary, one papillary follicular variant, three of follicular type), bcl-2 expression was similar or higher than in normal tissue. The highest expression of bcl-2 was observed in one case of follicular carcinoma with large amounts of atypical cells. bcl-2 protein seems to play a more important role in non-neoplastic thyroid cells rather than in carcinoma cells. The heterogeneity of its expression in thyroid neoplasms opens the question as to whether bcl-2 detection could serve as a prognostic factor in such tumors. This question could be answered on large series of cases with concomitant analysis of clinical data. |
| Merkel cells and Merkel cell carcinoma express the BCL-2 proto-oncogene. | The bcl-2 proto-oncogene, which is involved in the regulation of apoptosis, is expressed in a wide variety of fetal and adult tissues. We and others have demonstrated recently that in the human skin melanocytes, nervus cells and melanoma cells express bcl-2 constitutively. In the present study, we have analysed the expression of bcl-2 in Merkel cells and in Merkel cell carcinomas. In 2 colour immunofluorescence staining, normal human Merkel cells as identified by the expression of cytokeratins 8, 18 and 20, were also anti-bcl-2 positive. Staining of paraffin sections of Merkel cell carcinomas with an anti-bcl-2 monoclonal antibody revealed strong bcl-2 protein immunoreactivity in ALL 5 tumors tested. Serial sections of Merkel cell carcinomas stained with the monoclonal antibodies CK 20, CAM 5.2, anti-neuron-specific enolase and anti-bcl-2 showed that the anti-bcl-2 reactive cells were indeed tumor cells. Our data demonstrate for the first time, that normal human Merkel cells and Merkel cell carcinomas express bcl-2 constitutively. Considering the biological function of the bcl-2 proto-oncogene, i.e., its anti-apoptotic effect, it is conceivable that in the near future, modulations of the expression of this protein may offer a new strategy in the therapy of bcl-2 expressing tumors such as Merkel cell carcinoma. |
| Overexpression of proto-oncogene bcl-2 in rheumatoid synovium. | The p53 tumor suppressor limits cellular proliferation by inducing either G1 arrest or apoptosis, depending on the cellular context. To determine if these pathways are mechanistically distinct, we have examined the effects of different p53 mutants in p53 null primary mouse embryo fibroblasts. We chose this system as it is highly physiological and ensures that the interpretation of the results will not be confounded by the presence of endogenous p53 or oncoproteins which target p53. Using single cell microinjection assays for both G1 arrest and apoptosis, with loss-of-function and chimeric gain-of-function mutants, we have demonstrated that transcriptional activation is critical for both processes. Replacement of the p53 activation domain with that of VP16, or replacement of the p53 oligomerization domain with that of GCN4, reconstituted both G1 arrest and apoptosis activities. However, despite the importance of transcriptional activation in both processes, the target gene requirements are different. The p21 cyclin-dependent kinase inhibitor, which has been shown to be a direct target of p53 and a component of the radiation-induced G1 arrest response, is dispensable for oncogene-induced apoptosis, suggesting that these two p53-dependent transcriptional pathways are distinct. |
| Merkel cells and Merkel cell carcinoma express the BCL-2 proto-oncogene. | The bel-2 proto-oncogene, which is involved in the regulation of apoptosis, is expressed in a wide variety of fetal and adult tissues. We and others have demonstrated recently that in the human skin melanocytes, nevus cells and melanoma cells express bcl-2 constitutively. In the present study, we have analysed the expression of bcl-2 in Merkel cells and in Merkel cell carcinomas. In 2 colour immunofluorescence staining, normal human Merkel cells as identified by the expression of cytokeratins 8, 18 and 20, were also anti-bcl-2 positive. Staining of paraffin sections of Merkel cell carcinomas with an anti-bcl-2 monoclonal antibody revealed strong bcl-2 protein immunoreactivity in ALL 5 tumors tested. Serial sections of Merkel cell carcinomas stained with the monoclonal antibodies CK 20, CAM 5.2, anti-neuron-specific enolase and anti-bcl-2 showed that the anti-bcl-2 reactive cells were indeed tumor cells. Our data demonstrate for the first time, that normal human Merkel cells and Merkel cel carcinomas express bcl-2 constitutively. Considering the biological function of the bcl-2 proto-oncogene, i.e., its anti-apoptotic effect, it is conceivable that in the near future, modulations of the expression of this protein may offer a new strategy in the therapy of bcl-2 expressing tumors such as Merkel cell carcinoma. |
| Differential expression of BCL-2 oncoprotein and Fas antigen on normal peripheral blood and leukemic bone marrow cells. A flow cytometric analysis. | BACKGROUND: Fas antigen (Ag) has recently been identified as the putative surface molecule capable of transducing apoptotic signals into cells. Alterations in the expression of proto-oncogene bcl-2 have been implicated in the regulation of apoptosis. MATERIALS AND METHODS: By employing a monoclonal antibody to bcl-2 protein (124 clone) and to Fas Ag (UB2 clone) the expression of these molecules was analyzed at flow cytometry on bone marrow (BM) and peripheral blood (PB) samples from patients suffering from different lymphoid and myeloid leukemic diseases (27 acute non-lymphocytic leukemia [ANLL]; 14 acute lymphocytic leukemia [ALL]; 19 B-cell chronic lymphocytic leukemia [CLL]; 2 Ph1+ chronic myeloid leukemia [CML]; one CD8+ T-cell chronic lymphoproliferative disorders). Results were compared with those observed on normal PB leukocytes and BM B-cell precursors from patients with non-neoplastic hematological disorders. RESULTS: Fas Ag was constitutively expressed by both monocytes and neutrophils, while lymphocytes expressed bcl-2 with no difference between B and T cell subsets. Interestingly, bcl-2 expression was always absent on neutrophils. When dealing with ANLL patients, a relatively low bcl-2 and high Fas Ag phenotype characterized subtypes with granulocytic (M2) or promyelocytic (M3) differentiation. This observation was confirmed in a small number of patients for whom bcl-2 levels were quantified as antibody binding capacity (ABC) in molecules/cell. Leukemic cells from patients with ALL constitutively expressed bcl-2, the pattern of this expression being quantitatively lower than that of immature B-cell precursors. Finally, high bcl-2 and low Fas Ag expression represented a crucial part of the B-cell CLL immunophenotype. CONCLUSIONS: Although based on a small number of patient and control samples, our results suggest that bcl-2 and Fas Ag are coordinately expressed on normal PB leukocytes. Fas Ag is expressed at low levels on B-CLL cells, generally considered long-surviving cells. The relatively lower bcl-2-expression detected in both M2 and M3 subtypes may explain, at least in part, the higher remission rates obtained in these forms of ANLL than in other less differentiated morphological variants. |
| The Epstein-Barr virus gene BHRF1, a homologue of the cellular oncogene Bcl-2, inhibits apoptosis induced by gamma radiation and chemotherapeutic drugs. | Analysis of apoptosis, active and controllable cell death, has demonstrated that the size of a cell population can be regulated by changes in the cell death rate as well as in the rates of proliferation and differentiation. Factors which alter the rate of cell death, such as expression of the proto-oncogene bcl-2, can therefore directly affect the number of cells within a population. Bcl-2 has been shown to suppress apoptosis in response to a variety of stimuli and to act as a complementary survival signal for the random acquisition of other oncogenic mutations, such as deregulated c-myc. The Epstein Barr virus (EBV) gene BHRF1 was the first of a family of bcl-2 homologues now being identified. BHRF1 and bcl-2 share 25% primary amino acid sequence homology. Here we show that gamma radiation and several cytotoxic anticancer agents induce apoptosis in Burkitt s lymphoma (BL) cell lines, as has been found in several other systems. Using gene transfection studies we have also shown that expression of either BHRF1 or bcl-2 in BL cell lines significantly suppresses apoptosis in response to a variety of anticancer treatment. This has confirmed that BHRF1 is functionally homologous to bcl-2 in B-cells and suggests that BHRF1 may act to prevent apoptosis during EBV infection, maximising virus particle production, as has been suggested for other human and insect viral genes. Suppression of chemotherapeutic drug induced cell death by bcl-2 and BHRF1 as demonstrated in this cell system, results in resistance to a variety of different agents and may represent an alternative mechanism by which multidrug resistance arises during chemotherapy. |
| Expression of the bcl-2 oncoprotein in meningiomas. | The purpose of this study was to assess the expression of the bcl-2 oncoprotein in meningiomas and to compare it with the phenotype, the Ki-67 proliferative index and the sex hormone receptor status of the tumors. The expression of the bcl-2 oncoprotein was studied by Western blotting and immunohistochemistry. A quantitative study of the Ki-67 proliferative index and the expression of estrogen and progesterone receptors was performed. Western blot detected the bcl-2 oncoprotein in nearly ALL meningiomas. Immunohistochemistry detected the oncogene in only 43.5% of the cases. expression of bcl-2 was essentially by spindle cells of transitional and fibrous meningiomas expressing neural cell adhesion molecule. There was neither correlation between the expression of bcl-2 and Ki-67 proliferative index of meningiomas nor statistical concordance between the expression of bcl-2 oncoprotein by meningiomas and their sex hormone receptor protein status. Inhibition of apoptosis could be involved in the growth of meningiomas with a mesenchymal differentiation. |
| Bcl-2 oncoprotein expression is increased especially in the portion of small cell carcinoma within the combined type of small cell lung cancer. | Immunohistochemical analysis of Bcl-2 oncoprotein, one of the oncogenes associated with the regulation of programmed cell death, was performed on 12 surgically resected tumors of the combined type of small-cell lung cancer. Ten cases (83%) expressed Bcl-2 oncoprotein within the tumor tissues. Two of them showed its expression in both the small cell carcinoma and non-small cell carcinoma types, and 7 cases exhibited Bcl-2 expression only in the portion of the small cell carcinoma. Considering previous reports indicating a high prevalence of Bcl-2 oncoprotein expression in small cell lung cancer, it is suggested that Bcl-2 oncoprotein even in the combined type of lung cancer may play an important role in tumorigenesis and tumor development and ensuing histological alterations between small cell carcinoma and non-small cell carcinoma types. |
| 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. |
| Expression of bcl-2 oncoprotein and p53 protein accumulation in bone marrow metastases of androgen independent prostate cancer. | PURPOSE: We correlated the expression of bcl-2 with accumulation of p53 protein in bone marrow metastases from patients with androgen independent prostate cancer and a history of hormonal ablation therapy. These results were correlated with clinical parameters, including the extent of bone marrow metastases and patient survival. MATERIALS AND METHODS: ALL 43 patients studied had evidence of prostate cancer progression following androgen deprivation therapy and histologically confirmed bone marrow metastases. Decalcified tissue sections were used for immunohistochemical evaluation of bcl-2 protein and p53 protein accumulation. RESULTS: We previously established that p53 protein accumulation as detected by immunohistochemistry is a reliable indicator of p53 gene mutation in prostate cancer. Immunoreactivity was demonstrated for p53 protein in 22 of 43 cases and for bcl-2 protein in 14. A total of 28 cases (65%) exhibited immunohistochemical evidence of p53 and/or bcl-2 expression, and 15 (35%) were negative for p53 and bcl-2. The expression of bcl-2 and accumulation of p53 were independent events (p < 0.01). The expression of bcl-2 or accumulation of p53 protein in prostate cancer metastases did not significantly influence patient survival or the extent of metastatic disease. CONCLUSIONS: The presence or absence of p53 protein accumulation and/or bcl-2 expression did not correlate with tumor burden or patient survival in stage D androgen independent prostate cancer bone marrow metastases. The expression of bcl-2 protein occurs independently of and is inversely correlated with p53 mutations in advanced prostate cancer. |
| Methamphetamine induces apoptosis in immortalized neural cells: protection by the proto-oncogene, bcl-2. | Methamphetamine (METH) is an amphetamine analog that produces degeneration of the dopaminergic system in mammals. The neurotoxic effects of the drug are thought to be mediated by oxygen-based free radicals. In the present report, we have used immortalized neural cells obtained from rat mesencephalon in order to further assess the role of oxidative stress in METH-induced neurotoxicity. We thus tested if the anti-death proto-oncogene, bcl-2 could protect against METH-induced cytotoxicity. METH caused dose-dependent loss of cellular viability in control cells while bcl-2-expressing cells were protected against these deleterious effects. Using flow cytometry, immunofluorescent staining, and DNA electrophoresis, we also show that METH exposure can cause DNA strand breaks, chromatin condensation, nuclear fragmentation, and DNA laddering. ALL these changes were prevented by bcl-2 expression. These observations provide further support for the involvement of oxidative stress in the toxic effects of amphetamine analogs. They also document that METH-induced cytotoxicity is secondary to apoptosis. These findings may be of relevance to the cause(s) of Parkinson s disease which involves degeneration of the nigrostriatal dopaminergic pathway. |
| bcl-2 oncoprotein in surgically resected non-small cell lung cancer: possibly favorable prognostic factor in association with low incidence of distant metastasis. | BACKGROUND: The bcl-2 oncoprotein serves a regulatory function in permitting several cell types to die in an apoptotic process. Its overexpression probably plays a role in tumorigenesis and tumor development. The aim of this study was to determine the clinicopathological and prognostic significance of the bcl-2 oncoprotein in patients with nonsmall cell lung cancer (NSCLC). METHODS: Immunostaining for bcl-2 oncoprotein was performed on 182 operable NSCLCs. RESULTS: Thirty-six patients (19.8%) showed a positive immunostaining for bcl-2 oncoprotein. Histologically, its incidence was higher in squamous cell carcinomas (29.6%). Its expression status was inversely correlated with tumor development-associated parameters such as tumor stage in NSCLCs, especially in squamous cell carcinomas, bcl-2 positive patients with NSCLCs, especially squamous cell carcinomas, showed better overall survival and disease-free survival (DFS). In a multivariate analysis, this oncoprotein status had prognostic value in DFS for NSCLCs and in overall survival for squamous cell carcinomas. The recurrence of bcl-2 positive NSCLCs was significantly uncommon in distant extrathoracic organs. CONCLUSIONS: The expression of bcl-2 oncoprotein in NSCLCs may be an early event of tumor development, especially in squamous cell carcinomas, and may be of importance in determining tumor progression and prognosis. |
| Expression of bcl-2 oncoprotein in gastrointestinal and uterine carcinomas and their premalignant lesions. | expression of bcl-2 oncoprotein (Bcl-2) in carcinomas and their precursor lesions in the colon, stomach, uterine cervix (squamous and glandular epithelium), and endometrium was examined immunohistochemically using clone 124 monoclonal antibody. Most cases of premalignant lesions in the colon (adenoma, 80.6%), stomach (metaplastic gastritis, 77.1%, mainly positive in the proliferative zone), endocervix (glandular dysplasia, 87.5%) and endometrium (endometrial hyperplasia, 65.4%) showed intense immunoreactivity for Bcl-2, whereas fewer than 30% of adenocarcinomas in these tissues had no or weak Bcl-2 expression. In the stomach, adenomas with definite Bcl-2 expression were 37.5% of the cases examined. Conversely, most of both squamous intraepithelial neoplasia and squamous cell carcinoma of the uterine cervix showed weak or no Bcl-2 expression. These results suggest that upregulation of Bcl-2 in premalignant lesions and downregulation after malignant change is, to some extent, a common event in the glandular system, but not in the squamous epithelium of the uterine cervix. Bcl-2 may play an important role in keeping the transformed cells alive at the early stage of multistep carcinogenesis in the glandular tissue by an escape from a regulatory mechanism of apoptosis for further accumulation of gene abnormalities. |
| Immunohistochemical expression of Bcl-2 oncoprotein in EBV-associated nasopharyngeal carcinoma correlated to histological type and survival. | expression of Bcl-2 is associated with inhibition of apoptosis and extension of cell survival. In vitro Bcl-2 protein expression is up-regulated by the EBV-latency associated antigen latent membrane protein (LMP-1). We have investigated the relationship between the presence of EBV-DNA screened by means of sensitive nested-PCR, nasopharyngeal carcinoma (NPC) histological types according to two different schemata (WHO and Micheau classifications) and Bcl-2-124 immunohistochemical expression in 55 biopsy samples of NPC. EBV genome was detected in 100% of samples with sufficient DNA quality to support the previous view that ALL types of NPC are variants of EBV-infected neoplasia. Bcl-2 was observed in the basal layer of normal nasopharyngeal mucosa and also at cytoplasmic level in 42 of 55 (76.4%) NPC cases. Mitotic neoplastic cells usually showed strong cytoplasmic and chromosomal staining, a finding not well referred to previously. Bcl-2 expression was significantly associated (p<0.05) to undifferentiated NPC (UNPC) when a histological classification with only two major microscopical types was applied. No close correlations were found between the presence of EBV-DNA, NPC location, clinical stage and age or sex of the patients in relation to Bcl-2 positive expression. However, when comparing Bcl-2 expression and known survival mean of the patients, significant differences were observed (p<0.001) so that mean survivals were 31.1, 24.4, 52.2 and 54.1 months respectively for NPC patients with -, +, ++ and Bcl-2 immunoreactivity. Nevertheless this better clinical outcome in Bcl-2 NPC positive cases may depend on the histological type due to close relationship with UNPC. Only studies of larger series with long-term follow-up and multivariate analyses may document whether Bcl-2 expression is an independent prognostic marker in the evolution of NPC patients. |
| Herpesvirus saimiri encodes a functional homolog of the human bcl-2 oncogene. | Here we demonstrate that open reading frame 16 (ORF16) of the oncogenic herpesvirus saimiri protects cells from heterologous virus-induced apoptosis. The BH1 and BH2 homology domains are highly conserved in ORF16, and ORF16 heterodimerizes with Bcl-2 family members Bax and Bak. However, ORF16 lacks the core sequence of the conserved BH3 homology domain, suggesting that this region is not essential for anti-apoptotic activity. Conservation of a functional bcl-2 homolog among gammaherpesviruses suggests that inhibition of programmed cell death is important in the biology of these viruses. |
| [Quantitative flow cytometric determination of cytoplasmic bcl-2 oncoprotein in peripheral blood lymphocyte subsets]. | We measured serial changes of cytoplasmic bcl-2 oncoprotein in peripheral blood lymphocyte subsets after preparation of cell samples or cultivation with mitogen or interleukin-2 (IL-2) by two-color flow cytometry using monoclonal antibodies to lymphocyte subsets and human bcl-2. The bcl-2 levels determined by mean fluorescence intensity were diminished in most lymphocyte subsets when the samples were preserved at 4 degrees C for 6 hours or more without 1% paraformaldehyde (PFA) fixation. However, the bcl-2 levels were kept constant for a week or more in the samples preserved at 4 degrees C after immediate staining of cell surface markers and subsequent fixation with PFA. The percentages of CD4+ cells, CD8+, CD19+ cells and Fas+ cells became high when lymphocytes were cultured with concanavalin-A, and bcl-2 levels were also enhanced in these subsets. In addition, the bcl-2 levels were compared between lymphocytes cultured with and those without recombinant IL-2. IL-2 inhibited spontaneous decrease of bcl-2 in cultured lymphocytes. Apoptosis of the cultured lymphocytes was also determined by a flow cytometric method. IL-2 seemed to diminish apoptosis of cultured lymphocytes. |
| [Expression of proto-oncogene bcl-2 in squamous cell carcinoma of the larynx]. | Apoptosis, or programmed cell death, is responsible for deleting cells in normal tissues to maintain homeostasis after DNA damage. Apoptosis has several physiological inhibitors, one of the most important being the proto-oncogene bcl-2. An immunohistochemical study was made of bcl-2 expression in 25 squamous cell carcinomas of the larynx, in laryngeal mucosa distant from the primary neoplasm, and in lymph node metastases. The relationship between bcl-2 expression and various clinical and pathological parameters was investigated. Bcl-2 was detected in 40% of primary tumors and in 71% of lymph node metastases; it seems to be a late event in laryngeal malignant transformation. We found no statistical association between bcl-2 expression and most of the clinical and pathological parameters examined. Only tumor differentiation was related to bcl-2 expression, bcl-2 positive tumors being moderately or poorly differentiated (p < 0.02). |
| Transforming growth factor-beta1 induces apoptosis of rat microglia without relation to bcl-2 oncoprotein expression. | Transforming growth factor-beta (TGF-beta) plays a role as an immunosuppressive cytokine within the central nervous system (CNS). The CNS cells targeted by action of TGF-beta1 have not been defined. In this study, we tested the effect of TGF-beta1 on microglia, astrocytes and oligodendrocytes from newborn rats. TGF-beta1 selectively induced apoptosis of microglia, and not of astrocytes or oligodendrocytes. To study the apoptotic mechanism, bcl-2 oncoprotein expression in microglia, astrocytes and oligodendrocytes was measured. Bcl-2 was mainly expressed in microglia, indicating that microglial bcl-2 does not prevent TGF-beta1-mediated microglial apoptosis. The relative protein expression of bcl-2 in microglia was not related to frequency of microglial apoptosis. Thus, TGF-beta1-induced microglial apoptosis was regulated by a bcl-2-independent mechanism. expression of cytokine (IL-1beta, IL-6, IL-12, IFN-gamma and TNF-alpha) mRNA on microglia was not influenced by treatment with TGF-beta1. |
| Cellular expression of antiapoptotic BCL-2 oncoprotein in newly diagnosed childhood acute lymphoblastic leukemia: a Children s Cancer Group Study. | We found a marked variation in BCL-2 oncoprotein expression levels of primary leukemic cells from 338 children with newly diagnosed acute lymphoblastic leukemia (ALL). None of the high-risk features predictive of poor treatment outcome in childhood ALL, such as older age, high white blood cell (WBC) count, organomegaly, T-lineage immunophenotype, ability of leukemic cells to cause overt leukemia in severe combined immunodeficient (SCID) mice, presence of MLL-AF4, and BCR-ABL fusion transcripts were associated with high levels of BCL-2 expression. Overall, high BCL-2 levels were not associated with slow early response, failure to achieve complete remission, or poor event-free survival. High BCL-2 levels in primary leukemic cells predicted slow early response only in T-lineage ALL patients, which comprised approximately 15% of the total patient population. Even for this small subset of patients, the level of BCL-2 expression did not have a significant impact on the short-term event-free survival. |
| The proto-oncogene Bcl-2 and its role in regulating apoptosis. | The cDNA and genomic clones for the human counterpart of the mouse mammary tumor gene Int3 were isolated and sequenced. We designated this human major histocompatibility complex (MHC) class III gene as NOTCH4, since very recently, by sequencing cDNA clones, the complete form of the mouse proto-oncogene Int3 has been clarified and named Notch4. The present human NOTCH4 sequence is the first example of the genomic sequence for the extracellular portion of the mammalian Notch4, and by comparing it with the mouse Notch4 cDNA sequence, the exon/intron organization was clarified. The comparison of the predicted amino acid sequence of human NOTCH4 with those of other Notch homologues of a wide range of species revealed four subfamilies for mammalian Notch. In the protein coding region of human NOTCH4, we found (CTG)n repeats showing a variable number tandem repeat (VNTR) polymorphism for different human leukocyte antigen (HLA) haplotypes. Ten genes mapped on 6p21.3, including NOTCH4, were found to have counterparts structurally and functionally similar to those mostly mapped on 9q33-q34, indicating segmental chromosome duplication during the course of evolution. Similarity of genes on chromosomes 1, 6, 9 and 19 was also discussed. |
| Chimeric oncoprotein E2a-Pbx1 induces apoptosis of hematopoietic cells by a p53-independent mechanism that is suppressed by Bcl-2. | The chimeric oncoprotein E2a-Pbx1 results from fusion of the E2A and PBX1 genes following t(1;19) chromosomal translocations in B cell precursor acute leukemias. Experimentally B cell progenitors do not tolerate constitutive expression of E2a-Pbx1 which contrasts with transformation of several other cell types following its stable expression both in vitro and in vivo. To further investigate the effects of E2a-Pbx1 on the B cell progenitors, we conditionally expressed E2a-Pbx1 under control of a metal response element in hematopoietic precursor cell lines in vitro. Inducible expression of E2a-Pbx1 resulted in cell death with the morphologic and molecular features of apoptosis. A structure-function analysis demonstrated that induction of apoptosis was not a dominant-negative effect of the E2a moiety but, rather, required the DNA-binding homeodomain of Pbx1. E2a-Pbx1-induced apoptosis proceeded through a BCL2-responsive checkpoint eventuating in PARP inactivation but did require p53. Constitutive expression of E2a-Pbx1 did not induce apoptosis or continued cycling of Rat-1 fibroblasts in low serum conditions. These studies demonstrate that E2a-Pbx1 initiates programmed cell death of hematopoietic precursers by a mechanism that requires its chimeric transcriptional properties, but, unlike other nuclear oncoproteins, is independent of p53. |
| [Expression and significance of bcl-2 oncogene protein in follicular lymphoma and lymphoid follicular hyperplasia]. | In order to distinguish follicular lymphoma (FL) from follicular hyperplasia (FH), immunohistochemical staining method was used to detect the expression of bcl-2 oncogene protein in 22 cases of FL and 14 cases of FH. The results showed that bcl-2 was positive in 19 and negative in 3 of the 22 FLs, but negative in 12 and weakly positive in 2 of the FHs. These findings suggest that bcl-2 can play an important role in the differential diagnosis of FL and FH. |
| BCL-2 oncoprotein (p26) in splenic lymphoma with villous lymphocytes: a comparative study with other chronic B-cell disorders. | We compared the expression of the BCL-2 oncoprotein (p26) on B cells from 24 patients with splenic lymphoma with circulating villous lymphocytes (SLVL) with that observed on normal, mature B lymphocytes and on neoplastic B cells from 91 patients with other chronic B-cell malignancies. SLVL B cells showed levels of p26 intermediate between those found on normal B lymphocytes and on neoplastic B cells from patients with other chronic B-cell lymphoproliferative disorders. |
| Clinical and molecular aspects of motoneurone diseases: animal models, neurotrophic factors and Bcl-2 oncoprotein. | Animal models of motor neurone disease (MND) are being increasingly used for screening molecules with clinical potential. A number of different treatments to decrease the progression of neuronal cell loss have been proposed; these include: Bcl-2 (B-cell leukaemia oncogene-2), neurotrophic factors, glutamate receptor inhibitors and Ca2+ channel antagonists. In this review Yves Sagot, Richard Vejsada and Ann C. Kato focus on the effects of neurotrophic factors and Bcl-2, both of which have been shown to prevent cell death in various experimental paradigms. Studies performed in animal models of MND have confirmed the potential of these molecules to support motoneurone survival. Some of them have been shown to act in synergy and these results are discussed in the context of molecular mechanisms leading to collaborative and synergistic activities, and also with respect to presumptive subpopulations of motoneurones, which express diverse receptors for neurotrophic factors. Finally, the current status of clinical trials for amyotrophic lateral sclerosis using neurotrophic factors will be discussed, as well as recent reports that neurotrophic factors can exert adverse effects on neuronal survival. |
| BHRF1, a viral homologue of the Bcl-2 oncogene, is conserved at both the sequence and functional level in different Epstein-Barr virus isolates. | BHRF 1, a component of the restricted early antigen (EA) complex of the Epstein-Barr virus (EBV) lytic cycle, encodes a 17 kDa putative transmembrane protein with both sequence and functional homology to the Bcl-2 proto-oncogene. To determine whether there was any sequence variation over the BHRF1 open reading frame (ORF), 15 EBV isolates from different geographical regions and from both healthy donors and patients with EBV-associated diseases were sequenced. A small number of base changes which resulted in amino acid substitutions in the BHRF1 protein were found relative to the prototype B95.8 EBV sequence and these were predominantly clustered near the amino terminus of the BHRF1 protein outside conserved domains identified in the Bcl-2 homologues. In transient transfection assays none of the mutations in the BHRF1 ORF from eight different EBV isolates had a significant effect on BHRF1 protein localization compared to the B95.8 BHRF1 protein. However, transient expression of the adenovirus 12 19K protein or Bcl-2 resulted in localization patterns distinct from that observed with BHRF1 protein. Whilst ALL eight EBV isolates and E1B-19K gave comparable levels of protection to the DNA-damaging agent cis-platin, Bcl-2 did not afford significant protection. Thus, despite several amino acid changes in the BHRF1 ORF of some of the EBV isolates studied, the ability of the protein to protect against cis-platin induced apoptosis is conserved. The highly conserved nature of BHRF1 amongst different EBV isolates at both the sequence and functional level supports the proposed important role of BHRF1 in delaying cell death, thereby maximizing the production of progeny virus and facilitating the establishment of virus persistence. |
| Dysregulation of ornithine decarboxylase activity, apoptosis and Bcl-2 oncoprotein in Syrian hamster embryo cells stage-exposed to di(2-ethylhexyl)phthalate and tetradecanoylphorbol acetate. | Perturbations of cell proliferation and death are considered as essential events in the process of carcinogenesis. Thus, two parameters, ornithine decarboxylase (ODC), an enzyme closely related to cell proliferation and transformation, and apoptotic phenomenon are profoundly modified. Using Syrian hamster embryo (SHE) cells, we have examined in the framework of two-stage carcinogenesis (initiation-promotion) the effects of a non-genotoxic [diethylhexylphthalate (DEHP)] or genotoxic [benzo[a]pyrene (BaP)] carcinogen or a non-carcinogenic compound [phthalic anhydride (AP)] on these parameters. Immunoreactive Bcl-2 and Bcl-xL proteins were also investigated following two-stage exposures. Whereas exposures to BaP, DEHP or AP alone did not provoke any modification of ODC activity, the phorbol ester, 12-O-tetradecanoylphorbol-13-acetate (TPA), strongly increased it. Using two-stage exposure protocol (xenobiotics first, then replacement by TPA-promoter), the ODC activity was higher than that obtained with TPA alone. This superinduction of ODC activity was observed only with the carcinogenic compounds DEHP and BaP. Following the same exposure protocol, spontaneous cellular apoptosis was decreased. Furthermore, Bcl-2 oncoprotein was also upregulated approximately 8- and 11-fold for BaP and DEHP respectively; meanwhile Bcl-xL protein rate did not change. The non-carcinogenic compound AP slightly inhibited spontaneous SHE cell death without ODC superinduction. Exogenous polyamines, putrescine, spermidine and spermine diluted in the medium did not inhibit spontaneous apoptosis. Although inhibition of apoptosis was not specific of carcinogenic compound, both superinduction of ODC activity and inhibition of apoptosis via Bcl-2 upregulation, may cooperate during early stages of the carcinogenic process. |
| Comparative flow cytometric evaluation of bcl-2 oncoprotein in CD5+ and CD5- B-cell lymphoid chronic leukemias. | BACKGROUND AND OBJECTIVES: Levels of intracellular bcl-2 oncoprotein have been found to be increased in leukemic cells of CD5+ B-chronic lymphocytic leukemia (CLL) patients. However, it is not clear whether bcl-2 overexpression is a peculiar feature of CD5+ B-CLL. Based on this background we carried out a quantitative flow cytometric evaluation of intracellular bcl-2 levels on leukemic cells of CD5+ and CD5- B-CLL. METHODS: We assessed in flow cytometry levels of bcl-2 protein using a quantitative indirect immunofluorescence assay (QIFI kit) on samples from 46 previously untreated CD5+ B-CLL patients. Results were compared with those obtained on either normal peripheral blood B-lymphocytes or leukemic cells from 7 CD5- B-CLL patients intentionally selected for statistical comparison. RESULTS: A relatively homogeneous amount of bcl-2 protein which did not reflect either clinical-biological features at the time of diagnosis nor in vivo response to therapy was found. Results expressed as antibody binding capacity (ABC) accounted for a mean value of 12.2 +/- 1.5 x 10(3) molecules/cell (range, 6.4-13 x 10(3) molecules/cell). Levels of bcl-2 detected on CD5+ B-CLL leukemic cells were significantly lower than those of B peripheral blood lymphocytes from healthy donors (p = 0.0001). The same applied when comparing CD5+ and CD5- B-CLL patients (bcl-2 ABC, 8.07 +/- 0.26 x 10(3) molecules/cell vs. 12.2 +/- 1.5 x 10(9) molecules/cell; p = 0.0001). INTERPRETATION AND CONCLUSIONS: According to the role of bcl-2 in preventing apoptosis, our results indicate that differences in the pattern of expression of such an oncoprotein, might, at least in part, explain the more aggressive clinical course of CD5- B-CLL forms. |
| Differentiation-dependent expression of the BCL-2 proto-oncogene in the human trophoblast lineage. | OBJECTIVE: We explored the role of the BCL-2 proto-oncogene in the life cycle of trophoblast cells by examining: 1) the patterns of BCL-2 expression in normal placenta at various gestational ages and in specimens of hydatidiform moles and choriocarcinomas, and 2) the effects of cyclic adenosine monophosphate (cAMP) treatment of JEG-3 choriocarcinoma cells, which induces differentiated functions, on BCL-2. METHODS: BCL-2 protein was localized by indirect immunofluorescence and immunoperoxidase staining of tissue sections and cells using monoclonal and polyclonal antibodies. Western and Northern blotting were used to assess BCL-2 and p53 protein and mRNA levels, respectively. JEG-3 cells were transfected with a BCL-2 expression plasmid to establish that BCL-2 protein could be expressed at high levels in this cell type. RESULTS: BCL-2 immunostaining was most prominent in the syncytiotrophoblast of normal placenta. It was found in syncytiotrophoblast of complete and partial hydatidiform moles, whereas cytotrophoblast staining was weak. BCL-2 immunostaining was also barely detectable in choriocarcinoma cells (JEG-3 cells) and a primary choriocarcinoma. However, BCL-2 protein could be transiently overexpressed in JEG-3 cells by transfection with an expression plasmid. Western blot analysis revealed low levels of BCL-2 in JEG-3 cells and a rise in BCL-2 protein in placental extracts from 10 weeks gestation to term. In contrast, p53 protein was abundant in JEG-3 cells and normal placenta at 10 weeks gestation, but low at term, BCL-2 transcripts were substantially more abundant in term placenta than in JEG-3 cells. Treatment of JEG-3 cells with 8-Br-cAMP, which induces genes characteristic of the syncytiotrophoblast, raised BCL-2 protein approximately twofold, whereas p53 mRNA declined. CONCLUSIONS: We conclude that: 1) There is a differentiation-dependent pattern of BCL-2 expression in the placenta, with the protein being most abundant in terminally differentiated trophoblast cells; 2) there appears to be an inverse relation between BCL-2 and p53 expression in trophoblast; and 3) cAMP regulates BCL-2 protein in trophoblast cells. We speculate that the expression of BCL-2 in terminally differentiated trophoblast cells, and hence resistance to apoptotic cell death, may be one mechanism by which trophoblast mass is preserved during pregnancy. Conversely, the relatively low expression of BCL-2 in choriocarcinoma cells may render them more susceptible to apoptosis. |
| The anti-apoptosis bcl-2 proto-oncogene is preferentially expressed in limbic structures of the primate brain. | By virtue of its capacity to prevent apoptosis the protooncogene bcl-2 is believed to play a crucial role in CNS development. Studies in rodents have shown that the anti-apoptosis Bcl-2 protein is widely expressed during CNS development, but undergoes a marked down-regulation during maturation and is present only at low concentrations in adult CNS. In contrast, current data suggest that Bcl-2 protein in adult monkey brain results from microglial expression. In the present immunohistochemical study, however, numerous subsets of Bcl-2-immunoreactive neurons were encountered in the amygdala, hippocampus, hypothalamus, limbic cortices and striatum of squirrel monkeys. Of particular interest was the presence in the basal portion of the amygdala and adjoining piriform cortex of numerous intensely immunoreactive cells with long and thick immunopositive processes that ran into the ventral amygdalofugal pathway. At striatal level Bcl-2-positive neurons were strictly confined to calbindin-poor striosomes, which are specifically innervated by limbic cortices. This study has provided the first evidence for the occurrence of Bcl-2 in mature monkey brain. It has further shown that this protein is preferentially expressed in limbic structures in primate forebrain. The sustained expression of this anti-apoptosis protein may protect limbic system neurons from various injuries or neurodegeneration. It may also be involved in the functional and structural changes that occur throughout adulthood in some regions of the primate limbic system. |
| Interferon-alpha induces bcl-2 proto-oncogene in patients with neuroendocrine gut tumor responding to its antitumor action. | We have studied the expression of apoptosis regulating genes bcl-2 and bax in neuroendocrine gut tumors. The expression pattern of these genes was compared with the clinical response (changes in the tumor markers and changes of the tumor size determined by radiology) after treatment with interferon-alpha (IFN-alpha, n = 13), somatostatin analog (octreotide, n = 3; lanreotide, n = 2) or a combination of both (n = 5). Immunohistochemistry and in situ RT-PCR were performed and expressions were scored from 0 (no staining) to 6 (strong and wide-spread staining). With regard to clinical outcome, the scores (mean +/- SEM) of immunohistochemical staining of bcl-2 and bax were 1.77 +/- 0.25 and 4 +/- 0.22 for patients with stable disease and, 0.54 +/- 0.28 and 4.68 +/- 0.21 for patients with progressive disease. The scores of bcl-2 and bax staining for IFN-alpha-treated patients were 1.96 +/- 0.35 and 4.12 +/- 0.31 and for untreated patients were 0.5 +/- 0.25 and 4.5 +/- 0.21, respectively. expression of bcl-2 was observed in ALL IFN-alpha-treated patients who responded to the drug but not in nonresponsive patients (p = 0.0027). In contrast, bax, a promotor of apoptosis was expressed in ALL patients with higher degree of expression seen in patients with progressive disease (p = 0.0364). We have also detected bcl-2 expression by western blot analysis in neuroendocrine tumor tissue grown in nude mice, which were treated with IFN-alpha for 28 days. Our results indicate that, IFN-alpha can induce bcl-2. Thus, we, propose that bcl-2 may be used as a prognostic marker for IFN-alpha sensitivity of neuroendocrine tumors. |
| Immunohistochemical and mutational analysis of the p53 tumour suppressor gene and the bcl-2 oncogene in primary testicular germ cell tumours. | The role of p53 in testicular germ cell tumours is still contradictory based on the finding of immunohistochemical overexpression at the protein level, but lack of mutations at the DNA level. In addition, p53 wild-type activity has been demonstrated in cell culture experiments. Overexpression of the proto-oncogene bcl-2 might block p53-induced apoptosis and might inhibit p53 functional activity. To clarify the apparent paradox with respect to p53 overexpression and lack of mutations, an immunohistochemical and mutational analysis of p53 and bcl-2 in TGCT was performed. Ten normal testes, 52 CIS and 151 clinical stage I nonseminomatous GCTs were included in our study. A commercially available anti-p53 polyclonal rabbit antibody and an anti-bcl-2-mouse monoclonal antibody were used to stain the 5pm sections. Staining was assessed by counting at least 500 cells from the area of the most intense staining in each tumour cell type, and this was scored semiquantitatively for intensity of staining on a 4 point scale. In addition, 30 primary GCTs were included in the mutational analysis: areas with p53 overexpression were identified and microdissected prior to DNA extraction. p53 exons 5-8 were amplified by polymerase chain reaction (PCR) followed by single strand conformation polymorphism analysis. Templates demonstrating band shifts on SSCP were subjected to direct DNA sequence analysis. None of the normal testes, 32/52 (62%) CIS, and 142/151 (94%) germ cell tumours exhibited p53 overexpression. p53 expression was significantly lower in mature teratomas (0.8 +/- 0.2) than in other germ cell tumour components (2.8 +/- 1.2, p > 0.001). PCR-SSCP did not reveal any missense mutations or deletions for the p53 gene. Bcl-2 protein expression was observed in none of the normal testes, in none of the CIS, and in 14/151 (9.3%) germ cell tumours. 13/14 germ cell tumours demonstrated bcl-2 expression only in the glandular and stromal elements of their teratomatous components whereas ALL other components were negative for bcl-2. Our results--p53 overexpression, lack of p53 mutations, undetectable bcl-2--are consistent with recent in vitro studies. High susceptibility of testicular cancer to drug-induced apoptosis appears to be the result of wild-type p53 and lack of bcl-2. Radiation and chemotherapeutic insensitivity of mature teratomas might be the result of bcl-2 overexpression and lack of p53 overexpression. Therefore, chemoresistance to DNA damaging agents might be reflected by the expression of p53 and bcl-2 and it might be useful to evaluate p53 and bcl-2 in primary tumours and metastatic lesions in order to identify patients early with primary or secondary chemoresistance. |
| In vivo Bcl-2 oncogene neuronal expression in the rat spinal cord. | STUDY DESIGN: An acute mechanical rat spinal cord injury model was used to investigate in vivo Bcl-2 oncogene overexpression in neuronal tissue. OBJECTIVES: To introduce the Bcl-2 oncogene in vivo by a recombinant adenovirus vector into rat spinal cord tissue, and to investigate any potential protective effect on neural tissue in the zone of injury in a rat spinal cord model. SUMMARY OF BACKGROUND DATA: The Bcl-2 oncogene inhibits apoptotic and necrotic neural cell death in vitro by regulating an antioxidant pathway at sites of free radical generation. Thus, overexpression of the Bcl-2 oncogene may have a role in limiting the secondary injury cascade of spinal cord injury through its regulation of antioxidants. METHODS: After confirmation of Bcl-2 gene expression in vitro and in vivo in the rat spinal cord, a weight-drop spinal cord injury model was performed on seven rats with prior Bcl-2 inoculation, and on seven rats with prior B-gal inoculation (controls). RESULTS: In vivo Bcl-2 expression was documented by immunostaining. After spinal cord harvest, quantification of percentage preserved tissue at the spinal cord injury site suggested that Bcl-2 overexpression confers neuroprotection. CONCLUSIONS: In vivo Bcl-2 oncogene overexpression was successfully induced in neuronal tissue. After Bcl-2 oncogene expression in the rat spinal cord, the zone of microscopic injury was diminished. Further investigation of the Bcl-2 oncogene for potentially enhancing neuronal survival after spinal cord injury appears indicated. |
| Constitutive expression of the promyelocytic leukemia-associated oncogene PML-RARalpha in TF1 cells: isoform-specific and retinoic acid-dependent effects on growth, bcl-2 expression, and apoptosis. | Two major isoforms of PML-RARalpha are associated with (15;17)-positive acute promyelocytic leukemia (APL); however, functional differences between these isoforms have been difficult to define, and the molecular mechanism by which each isoform contributes to the pathogenesis of APL is not fully understood. To address these issues, the short (S) and long (L) isoforms of PML-RARalpha were constitutively expressed in the factor-dependent human erythroleukemia cell line, TF1. expression of the L, but not the S, isoform inhibited growth of these cells in the presence of granulocyte-macrophage colony-stimulating factor (GM-CSF). In the absence of GM-CSF, the S isoform partially protected against apoptosis, while the L isoform accelerated cell death. Treatment with all-trans retinoic acid (ATRA) inhibited cell growth and caused apoptosis only in PML-RARalpha-expressing cells, and these effects of ATRA were more marked in cells expressing the L isoform. ATRA treatment also led to downregulation of bcl-2 and endogenous RARalpha in PML-RARalpha-expressing cells, but had little effect on the level of exogenously expressed PML-RARalpha. We conclude that (1) subtle differences exist in the biologic activities of the L and S isoforms of PML-RARalpha, and (2) both isoforms are capable of transducing an ATRA-mediated signal that leads to downregulation of bcl-2 and induction of programmed cell death. |
| Detection of the apoptosis-suppressing oncoprotein bcl-2 in salivary gland lymphoma. | The bcl-2 proto-oncogene encodes an inner mitochondrial membrane protein that blocks apoptosis and programmed cell death in human lymphoid tissue. In this study a monospecific anti-human bcl-2 antibody that is reactive in formalin-fixed tissues was used with an avidin-biotin complex immunoperoxidase method to evaluate 41 cases of lymphoproliferative disorders of the salivary gland. The study cases were 26 primary salivary gland lymphomas (including 21 B-cell lymphomas four T-cell lymphomas and one true histiocytic lymphoma) and 15 cases of myoepithelial sialadenitis. Bcl-2 expression is restricted to the mantle zone and interfollicular lymphocytes around reactive germinal centers of myoepithelial sialadenitis. Seventeen of the 21 B-cell lymphomas were positive for bcl-2, and were composed of mucosa-associated lymphoid tissue (MALT), centrocytic, centroblastic-centrocytic and centroblastic lymphomas. Noticeably, ALL 11 cases of MALT lymphoma were bcl-2 positive. In contrast, staining for bcl-2 was present in only one of four cases of T-cell lymphomas and was negative in one true histiocytic lymphoma. The expression of bcl-2 protein was also investigated in the ductal systems and epimyoepithelial islands of salivary glands from patients with malignant lymphoma and myoepithelial sialadenitis. While salivary ducts in eight of 15 cases of myoepithelial sialadenitis immunostained for bcl-2, epimyoepithelial islands showed bcl-2 expression in only five cases of myoepithelial sialadenitis. We found that ductal cells in the salivary gland from patients with primary non-Hodgkin s lymphomas expressed bcl-2 protein. It was of interest that epimyoepithelial islands in ALL cases of MALT lymphoma displayed bcl-2 expression whereas other subtypes of B-cell lymphoma, T-cell lymphoma and true histiocytic lymphoma were invariably negative. These results indicate that bcl-2 is expressed in a wide variety of non-Hodgkin s lymphomas, especially when ALL 11 cases of MALT lymphoma are bcl-2 positive. Epimyoepithelial islands in MALT lymphoma express this oncoprotein, and their ability to induce bcl-2 synthesis resulted in the prevention of apoptosis and prolonged cell survival. Furthermore, the expression of bcl-2 protein in the lymphoma cells may be responsible for the induction of bcl-2 expression in the adjacent epimyoepithelial islands through a lymphocyte chemical mediator. |
| Nuclear overexpression of bcl-2 oncoprotein during the progression of human stomach cancer. | We unexpectedly observed strong nuclear overexpression of bcl-2 protein in advanced stomach cancer. As far as we know, such expression has not yet been reported. To investigate the significance of nuclear expression of bcl-2 protein in gastric carcinoma, we immunohistochemically analyzed bcl-2 overexpression in a gastric carcinogenic sequence, including 19 tubular adenomas (TA), 20 early carcinomas (EGC), and 20 advanced carcinomas (AGC). While TA displayed a specific granular and supranuclear cytoplasmic staining pattern, adenocarcinomas showed a strong nuclear staining pattern. Nuclear staining of bcl-2 was observed in 50% of AGC, 30% of EGC, and 10% of TA; cytoplasmic staining, on the other hand, was observed in ALL TA, 5% of EGC, and 10% of AGC. Nuclear bcl-2 overexpression differed according to the histologic type of AGC, occurring in 67% of the diffuse type and 25% of the moderately-to-well differentiated type. In the diffuse type, nuclear bcl-2 positive AGC predominated. In metastatic lesions, the pattern of bcl-2 immunostaining was almost identical to that seen in primary tumor. These results suggest that nuclear expression of bcl-2 may be related to malignant transformation in the stomach and is frequently associated with diffuse type advanced gastric adenocarcinomas. |
| Immunohistochemical evaluation of bcl-2 oncoprotein in oral dysplasia and carcinoma. | The proto-oncogene bcl-2 is associated with follicular lymphoma involving translocation t(14;18)(q32;q21) and is also overexpressed in various neoplasms. We report deregulation of bcl-2 expression during progression from oral epithelial dysplasia to squamous cell carcinoma. Immunohistochemical analysis with monoclonal antibodies to bcl-2 oncoprotein in formalin-fixed paraffin-embedded tissue sections revealed that severe epithelial dysplasias had a higher percentage of immunoreactivity than did mild and moderate dysplasias and squamous cell carcinomas. expression of this oncoprotein was directly proportional to the degree of epithelial dysplasia, and nondysplastic basal cells contiguous to neoplastic lesions also expressed bcl-2. These findings, along with down-regulation of bcl-2 in differentiating carcinomas, suggest a role for this oncoprotein in relatively early stages of oral tumor progression. Differentiating neoplastic cells with marginal or no bcl-2 reactivity showed heterogeneous cell labeling of varying intensity for differentiation-associated cytokeratin (CK13), indicating their inverse topographic relationship. |
| Expression of bcl-2 oncoprotein in transitional cell carcinoma of the upper urinary tract. | We investigated the immunoreactivity for bcl-2 oncoprotein in 154 cases of transitional cell carcinoma of the upper urinary tract (TCC-UUT) and its relation with the immunoreactivity for p53 oncoprotein and proliferating cell nuclear antigen (PCNA) immunoreactivity. Immunohistochemically, bcl-2 oncoprotein was recognized as positive in 29.2% of the samples. The immunoreactivity for bcl-2 oncoprotein was significantly (P < 0.05) correlated only with stage, though there was a borderline correlation (P = 0.050) with PCNA immunoreactivity. Furthermore, in invasive TCC the immunoreactivity for bcl-2 oncoprotein was associated with PCNA immunoreactivity (P < 0.041). The 5-year disease-free and overall survival rates were 55.7% and 71.5%, respectively. A univariate analysis of survival revealed that stage, grade, pattern of growth, immunoreactivity for p53 oncoprotein, and PCNA immunoreactivity each had a significant effect on disease-free and overall survival rates, whereas the immunoreactivity for bcl-2 oncoprotein had no significant effect on either rate. In the final models of the multivariate analysis, stage was found to be the only prognostic factor for disease-free survival and for overall survival. Detection of immunoreactivity for bcl-2 oncoprotein appears to be of no real value in deciding the prognosis of TCC-UUT. |
| Expression of bcl-2 oncoprotein in benign and malignant spindle cell tumors of soft tissue, skin, serosal surfaces, and gastrointestinal tract. | An immunohistochemical study to determine the pattern of immunoreactivity for bcl-2 oncoprotein was performed in 380 spindle cell tumors of soft tissue, skin, serosal surfaces, and gastrointestinal tract. The cases studied included examples of benign, reactive spindle cell proliferations to benign and malignant spindle cell neoplasms, including nodular fasciitis (10), fibromatosis (5), dermatofibroma (10), dermatofibrosarcoma protuberans (18), Kaposi s sarcoma (15), spindle cell lipomatous tumors (24), benign and malignant smooth muscle tumors (35), neural/peripheral nerve sheath neoplasms (53), synovial sarcomas (70) solitary fibrous tumors of serosal surfaces and other sites (56), gastrointestinal stromal tumors (GIST) (47), and malignant undifferentiated fibroblastic spindle cell proliferations of soft tissue (37 cases). The results of bcl-2 staining was additionally correlated with CD34 immunoreactivity. Bcl-2 was uniformly negative in ALL cases of nodular fasciitis, fibromatosis, and dermatofibroma, as well as in benign and malignant smooth muscle proliferations. Strong positivity for bcl-2 was observed in ALL cases of spindle cell lipoma, dendritic fibromyxolipoma, Kaposi s sarcoma, solitary fibrous tumors, gastrointestinal stromal tumors, and in the spindle cell component of synovial sarcoma. With the exception of the last, there appeared to be a close correlation between the expression of bcl-2 and CD34 in these tumors. Strong bcl-2 positivity also was found, at least focally, in approximately one third of benign and malignant peripheral nerve sheath tumors, particularly in the better-differentiated (Antoni type A) areas. Sarcomas of fibroblastic type, including low-grade myxofibrosarcoma, malignant fibrous histiocytoma, and fibrosarcoma, showed variable expression of bcl-2 in the tumor cells. Our results appear to indicate that bcl-2 may have a wide distribution among benign and malignant spindle cell neoplasms. Strong expression of this marker in some of these conditions, particularly solitary fibrous tumor, gastrointestinal stromal tumors, and synovial sarcoma, may be of aid for differential diagnosis. |
| Functional dissection of Bfl-1, a Bcl-2 homolog: anti-apoptosis, oncogene-cooperation and cell proliferation activities. | The human Bfl-1 gene codes for a 175-amino acid BCL-2 family protein that has an anti-apoptosis activity and is overexpressed in certain human epithelial and hematopoietic malignancies. Bfl-1 efficiently suppresses apoptosis induced by the p53 tumor suppressor protein and cooperates with a dominant nuclear oncogene, E1A, in transformation of primary epithelial cells in vitro. Unlike other BCL-2 family proteins, expression of BFL-1 permits limited cell proliferation over an extended period of time when cells are induced to undergo apoptosis. We have carried out mutational analysis to dissect the various activities encoded by Bfl-1 and to determine the sequence requirements for these activities. BFL-1 shares four conserved domains, BH1, BH2, BH3 and BH4 with other BCL-2 family proteins. mutations within BH1, BH2 and BH4 domains abolish or greatly attenuate the anti-apoptotic, oncogene cooperation and proliferation facilitating activities of BFL-1. In contrast, a mutation within the BH3 domain (which is essential for the activity of pro-apoptotic members of the BCL-2 family) does not significantly affect the BFL-1 functions. Although BFL-1 does not contain a well-defined C-terminal transmembrane domain, deletion of the C-terminal 24 amino acid region (corresponding to the transmembrane domain of other BCL-2 family proteins) partially reduces the various activities of BFL-1. ALL the mutants defective in the anti-apoptosis activity are also defective in the oncogene cooperation activity suggesting that these two activities may be linked. A unique feature of BFL-1 is the presence of a Gln-rich N-terminal region that overlaps with the BH4 domain. The Gln residues appear to be essential for the proliferation permitting activity of BFL-1. Since mutations of the Gln residues located within the BH4 domain appear to confer an extended cell survival activity in the absence of cell proliferation, our results suggest that BFL-1 communicates with both cell proliferation and apoptosis machineries and suggest a link between these two activities. |
| Overexpression of the anti-apoptotic oncogene, bcl-2, in the thymus does not prevent thymic atrophy induced by estradiol or 2,3,7, 8-tetrachlorodibenzo-p-dioxin. | Dexamethasone (Dex), estradiol (E2), and 2,3,7, 8-tetrachlorodibenzo-p-dioxin (TCDD) ALL affect the immune system, causing immunosuppression and thymic atrophy. It is still uncertain how and where these compounds act to induce thymic atrophy. However, it has been suggested that these compounds may have similar actions and targets, i.e., apoptosis of immature thymocytes for Dex and TCDD and preferential targeting of double-positive cells by Dex and E2. The lckpr-bcl-2 transgenic mouse has been shown to be protected against Dex-induced thymic atrophy. We used this murine model to determine if bcl-2 expression would also protect against E2- and TCDD-induced thymic atrophy. Our results indicate that, although the bcl-2 transgenic (TG+) mice were fully protected from atrophy induced by a single dose of Dex, atrophy was still induced in these mice following treatment with E2 or TCDD. Phenotypic analysis of thymocytes from TG- and TG+ mice also showed distinct consequences of atrophy induced by Dex, E2, and TCDD. Finally, since there are alternative pathways for apoptosis that are bcl-2 independent, both TG- and TG+ thymocytes were examined directly for indications of apoptosis using the TUNEL assay. After TCDD and E2 treatment there were no detectable signs of apoptosis in either TG- or TG+ mice even at early time points and at elevated dose levels. These results indicate that there are distinct mechanisms for the actions of Dex, E2, and TCDD in the thymus and that apoptosis is not a key mechanism of E2- and TCDD-induced thymic atrophy. |
| Bcl-2 oncoprotein positivity and high MIB-1 (Ki-67) proliferative rate are independent predictive markers for recurrence in prostate carcinoma. | Predicting the clinical behavior of prostate carcinoma can be difficult; one approach is to identify molecular prognostic markers. We evaluated proliferative rate (MIB-1 antibody) and expression of bcl-2, p53, and retinoblastoma (pRB) proteins, which have cell cycle-related functions, in 208 consecutive radical prostatectomy specimens. Values were correlated with histopathologic parameters (Gleason tumor score, tumor amount, capsule invasion, and involvement of surgical margins, seminal vesicles, or lymph nodes) and with recurrence-free survival (4-year median follow-up). A high MIB-1 proliferative rate was associated with ALL of the measured histopathologic parameters, p53 overexpression with tumor amount, and pRB expression with positive lymph nodes. pRB and p53 expression levels were not associated with differences in recurrence-free survival. A high MIB-1 proliferative rate and bcl-2 positivity were associated with increased recurrence, both considered individually, and also independently and additively when examined together and with the most predictive histopathologic factors (Gleason tumor score and seminal vesicle involvement). MIB-1 proliferative rate and bcl-2 positivity may prove to be useful markers for poor prognosis in prostate carcinoma. |
| Apoptosis and Bcl-2 oncoprotein expression in the human fetal central nervous system. | Apoptosis and the apoptosis-regulatory gene bcl-2 have been suggested from animal studies to be important during the development of the central nervous system (CNS), but information on apoptotic activities of the developing human CNS has been scarce. To establish spatial and temporal distributions of apoptotic cells and Bcl-2 oncoprotein expression, we examined sections taken from cerebral cortex, hippocampus and brainstem at weeks 14, 18, 27, and 32 of gestation. Terminal transferase-mediated nick end labelling (TUNEL), histological analyses, and immunocytochemical staining using monoclonal antibodies were employed. Except for layer I of the motor cortex and the molecular layer of the hippocampus, both at week 14 of gestation, TUNEL-positive cells with typical apoptotic appearance and apoptotic indices, ranging from 0.08 to 2.85, were found in ALL other brain regions examined including visual, sensory, frontal and motor cortices, hippocampus, dorsal raphe, locus coeruleus, and periaqueductal grey of the brainstem. No specific spatial or temporal distribution patterns of apoptotic cells were found in the cortices. However, the apoptotic index of the molecular layer of the hippocampus increased with the gestation age. The periaqueductal grey of the brainstem showed high apoptotic indices (ranging from 0.37 to 2.85) at ALL the gestation ages studied. An inverse correlation between apoptosis and Bcl-2 oncoprotein expression was found in visual, sensory, and motor cortices but not in the frontal cortex and hippocampus. Apoptosis and Bcl-2 oncoproteins are important for CNS development and, apart from being an apoptosis regulator, Bcl-2 oncoproteins may also have other roles to play during neural development. |
| Correlation of proliferation indices, apoptosis, and related oncogene expression (bcl-2 and c-erbB-2) and p53 in proliferative, hyperplastic, and malignant endometrium. | BACKGROUND: The various morphological groupings of endometrial pathology are often difficult to distinguish from each other. The endometrium is an actively proliferating tissue and there is an overlap in cell proliferation fraction (CPF) between benign proliferative endometrium (BPE) and endometrial carcinoma (EC). Apoptosis in benign cycling endometrium is related to the menstrual cycle. In this study we evaluated CPF, apoptosis, and oncogenes that relate to cell turnover (bcl-2, p53, and c-erbB-2) in the spectrum of endometrial pathology. METHODS: We examined a total of 64 cases consisting of 10 cases of BPE, 18 cases of simple endometrial hyperplasia (SEH), 18 cases of complex hyperplasia (CEH; including eight cases with atypical hyperplasia), and 18 cases of EC, FIGO grade 1. CPF was measured by the mitotic index (MI) and by the percentage of Ki-67 positive nuclei (Ki-67 index). Apoptotic index (AI) was determined on hematoxylin and eosin sections. RESULTS: MI was 2.48% in BPE, 0.65% in SEH, 0.6% in CEH, and 0.91% in EC (P < .00001). Ki-67 index was 38.44%, 16.4%, 23.25%, and 31.7% respectively (P < .00001). AI was 1.17%, 2.2%, 2.57%, and 3.31% respectively (P = .02). The AI/MI and AI/Ki-67 ratios were lowest in BPE and highest in SEH (P = .007). ALL cases of BPE, 84% of SEH cases, 77% of CEH cases, and 88% of EC cases displayed cytoplasmic and/or nuclear bcl-2 expression. Cytoplasmic bcl-2 expression increased from BPE to SEH, whereas it decreased in CEH and EC with emergence of only nuclear expression. Of the EC cases, 38.8% showed intense nuclear bcl-2 reactivity and a significantly higher Ki-67 index than cases with cytoplasmic expression (P = .01). No p53 or c-erbB-2 expression was seen in either BPE or EH. Of the EC cases, 50% were positive for p53 whereas 30% were positive for c-erbB-2. C-erbB-2-positive cases had a significantly higher Ki-67 index and AI than negative cases (P = .02). Cases of EC with p53 expression also had significantly higher AI (P = .01). CONCLUSIONS: In actively proliferating tissues like endometrium, CPF does not correlate with progression to malignancy. In contrast, AI and derived AI/CPF ratios are better indicators of progression. The expression of p53, c-erbB-2, and nuclear bcl-2 in EC correlate with higher cell turnover indices (CPF and AI). |
| Prognostic value of bcl-2 oncoprotein expression in stage II colon carcinoma. | The bcl-2 proto-oncogene encodes a Mr 25,000 protein that has been shown to prevent apoptosis or programmed cell death. The bcl-2 protein is detectable in basal cells of normal colonic epithelium, and an altered topographic distribution of this protein is found in colonic neoplasms. However, the clinical significance of abnormal bcl-2 expression in colon carcinomas remains unknown. We examined the prognostic value of the bcl-2 protein in TNM stage II colon carcinomas and its relationship to DNA ploidy, cell proliferation indices, p53 expression, and clinicopathological features. We analyzed 119 resected and otherwise untreated, paraffin-embedded stage II colon carcinomas for bcl-2 and p53 protein expression using immunohistochemistry. DNA ploidy and proliferative index (% S-phase + % G2-M) were determined by flow cytometry, and tumor grade and vascular microinvasion were assessed on histological sections. Cytoplasmic expression of the bcl-2 protein was detected in 72 (66%) of 110 carcinomas, and a high level of expression was significantly correlated with diploid DNA content (P = 0.02) and low proliferative activity (P = 0.005). bcl-2 was not associated with nuclear p53 expression. In a univariate analysis, a higher fraction of bcl-2-positive tumor cells was associated with better relapse-free survival (P = 0.02) and overall survival (P = 0.05) rates. Moreover, a high level of bcl-2 expression was an independent predictor of better relapse-free survival (P = 0.04), but not overall survival (P = 0.14), after adjustment for other variables, including proliferative index, DNA ploidy, and race. In conclusion, bcl-2 overexpression is associated with favorable prognostic features and may predict clinical outcome in stage II colon carcinomas. |
| Expression of bcl-2 oncoprotein in Indian oral squamous cell carcinomas. | Thirty-nine oral squamous cell carcinomas were assessed for bcl-2 protein expression by immunostaining of tumour sections. Twenty-three per cent of these tumours showed strong nuclear staining for bcl-2 protein. tumours of the cheek and tongue together accounted for 77% of overexpression of this protein. When bcl-2 expression was compared with p53 expression, they were found to be non-overlapping. These results suggest that overexpression of either of these genes may substitute each other in the development of oral carcinomas of Indians. |