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Gene information | Literature | Expression | lncRNA | Mutation | Homolog

Basic Information

Gene ID

5979

Name

RET

Synonymous

ret proto-oncogene;RET;ret proto-oncogene

Definition

RET receptor tyrosine kinase|RET transforming sequence|cadherin family member 12|cadherin-related family member 16|hydroxyaryl-protein kinase|proto-oncogene c-Ret|proto-oncogene tyrosine-protein kinase receptor Ret|rearranged during transfection|receptor

Position

10q11.2

Gene type

protein-coding

Title

Abstract

A codon 891 exon 15 RET proto-oncogene mutation in familial medullary thyroid carcinoma: a detection strategy.

A ser891ala RET proto-oncogene mutation has been previously discovered in a single kindred with familial medullary thyroid carcinoma (FMTC). An additional two probands with this mutation and with medullary thyroid carcinoma (MTC) without any other manifestations of MEN 2 have been identified. In one of thse families, two other individuals also had the mutant sequence and FMTC. Analysis of both cases showed cosegregation of the mutation and MTC. To facilitate detection of this mutation, a primer was engineered which creates a Hha I recognition site in the presence of the mutant sequence. As a result, this codon 891 exon 15 mutation can be identified with a restriction enzyme digestion.

Two germline missense mutations at codons 804 and 806 of the RET proto-oncogene in the same allele in a patient with multiple endocrine neoplasia type 2B without codon 918 mutation.

Multiple endocrine neoplasia (MEN) type 2B is a clinically distinct entity among the autosomal dominant MEN 2 syndromes. Most patients with MEN 2B carry a germline mutation (M918T) of the RET proto-oncogene, while a few carry A883F. We examined a patient with MEN 2B, but without M918T or A883F, and her relatives. Here, we report the presence in this patient of 2 germline mutations, V804M and Y806C in the same allele. While the novel Y806C was inherited from her father, its carriers (her father and brother) was not affected by MEN 2. In contrast, V804M was a de novo mutation, that has been reported in patients with familial medullary thyroid carcinoma. Combinations of mutations of the RET proto-oncogene may cause oncogenic activities different from those of single mutations.

Experimental implication of celiac ganglionotropic invasion of pancreatic-cancer cells bearing c-ret proto-oncogene with reference to glial-cell-line-derived neurotrophic factor (GDNF).

Perineural invasion is a prominent clinical feature of pancreatic cancer which causes difficulty in curative resection. In the present study, the human pancreatic cancer cell lines, PaCa-2, AsPC-1, SW1990 and Capan-2, were ALL found to express abundant c-ret proto-oncogene mRNA and RET protein, a member of the receptor-tyrosine-kinase superfamily, identified as being a receptor for glial-cell-line-derived neurotrophic factor (GDNF). In an invasion assay, the migration of pancreatic cancer cells was markedly induced by co-cultivation with human glioma cells, T98G or A172, capable of producing and secreting GDNF. Anti-GDNF antibody in conditioned media of glioma cells suppressed much of the migratory activity. Checkerboard analysis of the migration showed both chemotactic and chemokinetic activity of GDNF. There was no detectable expression of another GDNF receptor component, a glycosyl-phosphatidylinositol-linked receptor (GFR alpha-1), in pancreatic-cancer cell lines, suggesting that the neural invasion of pancreatic-cancer cells spreads along a concentration gradient of GDNF produced from peripheral ganglions through direct interaction of GDNF with its receptor, the c-ret proto-oncogene product. Immunochemical localization of GDNF in human celiac ganglionic tissue supported this contention.

Multiple endocrine neoplasia type 2A with the identical somatic mutation in medullary thyroid carcinoma and pheochromocytoma without germline mutation at the corresponding site in the RET proto-oncogene.

A germline mutation either in exon 10 or 11 of the RET proto-oncogene is found in the majority of patients with multiple endocrine neoplasia type 2A (MEN 2A). A 41-year-old female patient was referred for further evaluation of incidentally discovered right adrenal tumor. She had bilateral adrenal pheochromocytomas and medullary thyroid carcinomas detected by endocrinological and radiological examination, and diagnosed as MEN 2A. Molecular genetic testing of the RET exons 10 and 11 exhibited the identical somatic missense mutation at codon 634 in both tumors but did not confirm germline mutations in the corresponding sites. Possible mechanisms for tumorigenesis in this patient are discussed.

Early cellular abnormalities induced by RET/PTC1 oncogene in thyroid-targeted transgenic mice.

The RET/PTC1 oncogene, a rearranged form of the RET proto-oncogene, has been reported to be associated with human papillary thyroid carcinomas. We have shown that targeted expression of RET/PTC1 in the thyroid gland leads to the development of thyroid carcinomas in transgenic mice with histologic and cytologic similarities to human papillary thyroid carcinoma. To further investigate how RET/PTC1 expression contributes to the pathogenesis of papillary thyroid tumor, the time of tumor onset and the early phenotypic consequences of RET/PTC1 expression in thyrocytes were determined. ALL high copy transgenic mice developed bilateral thyroid tumors as early as 4 days of age. At embryological days 16-18, increased proliferation rate, distorted thyroid follicle formation and reduced radioiodide concentrating activity were identified in transgenic embryos. The reduced radioiodide concentrating activity was attributed to decreased expression of the sodium-iodide symporter. Our study showed that RET/PTC1 not only increased proliferation of thyrocytes, it also altered morphogenesis and differentiation. These findings provide a model for the role of RET/PTC1 in the formation of abnormal follicles with reduced iodide uptake ability observed in human papillary thyroid carcinoma.

FISH mapping of the mouse Ret oncogene to the junction of G-bands E3/F1 on chromosome 6 indicates a need for reassessment of the physical and consensus maps.

Amplification and overexpression of the c-erbB-2 gene has been demonstrated in several tumors and thought to be important determinants of biologic behaviors of carcinomas. In this study, correlation between c-erbB-2 expression und histopathologic parameters, including proliferative activity of gastric carcinomas was evaluated. Paraffin-embedded tissue sections from 62 patients who underwent curative resection of gastric carcinoma were analyzed immunohistochemically for the expression of c-erbB-2 and Ki-67. Strong membrane staining for c-erbB-2 was detected in 11 of 62 gastric carcinomas (17,7%) and no positive reaction was evident in noncancerous tissue. The incidence of c-erbB-2 positivity in intestinal type carcinomas (24,3%) was higher than that of diffuse type carcinomas (4,76%). Positive staining for c-erbB-2 was present in one of the 9 (11,1%) early gastric carcinomas and 10 of 53 (18, 8%) advanced gastric carcinomas. However, no statistically significant relationships were found between c-erbB-2 expression and histopathologic type, depth on invasion, the tumor size or lymph node metastases. Among the metastatic lymph nodes, 3 were positively stained with c-erbB-2 whereas the primary tumors of two cases had been found to be negative. Additionally, no correlation was found between c-erbB-2 reactivity and proliferative activity of carcinoma cells. The results suggest that expression of c-erbB-2 protein may occur selectively in intestinal type of gastric carcinomas. However, c-erbB-2 expression is not a reliable marker of malignant potential in gastric carcinomas.

RET proto-oncogene in the development of human cancer.

The RET proto-oncogene, located on chromosome subband 10q11.2, encodes a receptor tyrosine kinase expressed in tissues and tumors derived from neural crest. Germline (present in every cell of the body) mutations in RET cause multiple endocrine neoplasia type 2 (MEN 2), an inherited cancer syndrome characterized by medullary thyroid carcinoma (MTC), pheochromocytoma (PC), and hyperparathyroidism (HPT). This knowledge has allowed molecular diagnosis and presymptomatic DNA-based testing to become possible. RET testing is considered the standard of care in MEN 2 families because clinical decisions are made based on the results of such gene testing. There appears to be a correlation between specific RET mutation type and organ-specific tumor development. Such knowledge might be useful in tailoring targeted surveillance in the near future. Somatic (in the tumor only) RET mutations have been found in a proportion of sporadic MTCs and PCs. Whether the presence of somatic RET mutation is associated with a poor prognosis is currently being investigated as another tool for molecular medicine.

Point nucleotidic changes in both the RET proto-oncogene and the endothelin-B receptor gene in a Hirschsprung disease patient associated with Down syndrome.

A short-segment Hirschsprung disease (HSCR) patient associated with 21 trisomy showing point nucleotidic changes in both the receptor tyrosine kinase (RET) proto-oncogene and the endothelin-B receptor (EDNRB) gene is reported. A T to A heterozygous transition at the splicing donor site of the intron 10 in the RET proto-oncogene, and a G to A heterozygous substitution in non-coding region in the exon 1 of the EDNRB gene were observed. The familial analysis with these genes revealed that the origin of the former mutation was de novo and the latter one was maternal. No patient has been reported with two points mutations in different pathogenetically susceptible loci for HSCR. There is genetic evidence that the RET and EDNRB genes may interact in their susceptibility leading to HSCR.

Noncardiogenic pulmonary edema as the chief manifestation of a pheochromocytoma: a case report of MEN 2A with pedigree analysis of the RET proto-oncogene.

Pheochromocytomas are rare neoplasias of the adrenal medulla which generally present with paroxysmal or sustained hypertension. Cardiogenic pulmonary edema is a common feature of these tumors, but few cases have been described with noncardiogenic pulmonary edema. We report a pheochromocytoma with the principle manifestation of noncardiogenic pulmonary edema and characterize a genetic lesion associated with the disorder. A 30-year-old man was admitted with abdominal pain and breathlessness. x-Ray examination of the chest revealed a massive, diffuse infiltration of the left lung without cardiomegaly. No paroxysmal blood pressure fluctuations or heart failure were evident during the entire course, and the infiltrate and dyspnea resolved in three days without inotropic or diuretic agents. Serum norepinephrine and epinephrine levels were elevated twenty and fifty times above normal, respectively. The patient was ultimately diagnosed with multiple endocrine neoplasia type 2A (MEN 2A). mutations in the RET proto-oncogene have been described recently in patients with MEN 2A. mutation analysis of selected RET exonic sequences identified a germline mutation at codon 634 in exon 11 of the RET proto-oncogene. The mutation introduces a transition encoding a non-conservative substitution from TGC (Cys) to CGC (Arg) and creates a novel restriction site recognized by HhaI. We further screened for this mutation among four of the proband s relatives by HhaI restriction analysis. One asymptomatic family member was identified who subsequently elected prophylactic total thyroid removal. Histological examination of this specimen confirmed the presence of medullary thyroid carcinoma.

Specific polymorphisms in the RET proto-oncogene are over-represented in patients with Hirschsprung disease and may represent loci modifying phenotypic expression.

Hirschsprung disease (HSCR) is a common genetic disorder presenting with functional intestinal obstruction secondary to enteric aganglionosis. HSCR can be familial or sporadic. Although five putative susceptibility genes have been identified, only germline mutations in the RET proto-oncogene account for a significant minority (up to 50%) of familial HSCR; 3% of sporadic HSCR in a population based series carry RET mutations. From 1998 to February 1999, we prospectively ascertained 64 cases of sporadic HSCR from the western Andalusia region. To determine if polymorphic sequence variants within RET could act as low penetrance predisposing alleles, we examined allelic frequencies at seven polymorphic loci in this population based series. Whether allele frequencies differed from those in the control population were determined by either chi-squared analysis or Fisher s exact test. For two sequence variants, A45A (c 135G-->A) (exon 2) and L769L (c 2307T-->G) (exon 13), the rarer polymorphic allele was over-represented among HSCR cases versus controls (p<0.0006). In contrast, two other polymorphisms, G691S (c 2071C-->A) (exon 11) and S904S (c 2712C-->G) (exon 15), were under-represented in the HSCR patients compared to controls (p=0.02). Polymorphisms in the RET proto-oncogene appear to predispose to HSCR in a complex, low penetrance fashion and may also modify phenotypic expression.

Mutational analysis of the RET proto-oncogene in a kindred with multiple endocrine neoplasia type 2A and Hirschsprung s disease.

BACKGROUND/PURPOSE: Germline mutations of the RET proto-oncogene (RET; 10q11.2) have been reported in multiple endocrine neoplasia type 2A (MEN 2A) and Hirschsprung s disease. The authors investigated a Japanese kindred in which MEN 2A and Hirschsprung s disease frequently have been found. METHODS: The pedigree consisted of 28 members (11 boys and 17 girls) spanning 4 generations, of whom, 8 were affected with MEN 2A or Hirschsprung s disease. RESULTS: Direct sequence DNA analysis of the RET proto-oncogene showed a heterozygosity for a G to C transition at the second nucleotide of codon 620 (exon 10) in the patients, resulting in the replacement of cysteine by a serine residue in the affected Ret protein. This family added a novel RET missense mutation (C620S) predisposing to the association of MEN 2A and Hirschsprung s disease. CONCLUSION: Detection of the mutated RET gene carriers may be used for genetic counseling of potential risk for Hirschsprung s disease as well as MEN 2A in the affected families.

Ret proto-oncogene rearrangement in thyroid cancer around Semipalatinsk nuclear testing site.

About 50 years ago, on August 29, 1949, the first nuclear device was exploded at the Semipalatinsk nuclear testing site located in the northern part of the Republic of Kazakhstan in the former USSR. Here we describe the first evidence of ret proto-oncogene rearrangement of thyroid cancer tissues around the site.

De novo RET proto-oncogene mutation in a patient with multiple endocrine neoplasia type 2B.

We report a case of multiple endocrine neoplasia type 2B (MEN 2B) with de novo RET proto-oncogene mutation. The patient, a 23-year-old Taiwanese woman, was admitted for treatment of recurrent medullary thyroid cancer (MTC) 7 years after a total thyroidectomy. Mucosal neuromas and marfanoid appearance were also noted. Because MEN 2B was suspected, the patient and her family members underwent genetic analysis. A heterozygous germline mutation at codon 918 (ATG-->ACG) of the proto-oncogene RET was detected in the patient. This mutation was considered de novo, as it was not detected in either of her parents or her siblings. The patient underwent surgery for removal of the recurrent tumor. Although no pheochromocytoma was noted, regular follow-up is necessary because of persistent hypercalcitoninemia.

Correspondence re: G. Tallini et al., RET/PTC oncogene activation defines a subset of papillary thyroid carcinomas lacking evidence of progression to poorly differentiated or undifferentiated tumor phenotype. Clin. Cancer Res., 4:287-294, 1998.

Deoxyribozymes, or DNA enzymes (DNAzymes), are novel nucleic acids that have the ability to bind to specific sequences of RNA, and to cleave the target site catalytically. DNAzymes are smaller and more efficient enzymatically than ribozymes (RZs), which are catalytic nucleic acids synthesized from ribonucleotides. We have designed three DNAzymes that specifically target the two variants of the p210 bcr-abl gene (splice 1, b3a2; splice 2, b2a2) and the p190 variant (ela2). The cleavage sites for these DNAzymes are located 5 nucleotides (nt) 5 from the fusion site for b3a2, and only 1 nt 5 from the fusion sites for b2a2 and e1a2. We have shown in cell-free in vitro cleavage assays that these DNAzymes efficiently cleave their respective substrates. Mutated DNAzymes, in which only one critical base has been altered, do not cleave these targets. We have used a serum-resistant cytofectin (GS 2888; Gilead) to transfect the DNAzymes into target K562 cells, which express p210bcr-abl. In short-term transfection assays, the DNAzymes specifically inhibited p210bcr-abl protein expression by K562 cells by about 40%, and inhibited cell growth by more than 50% in a 6-day liquid culture assay. We have also transfected freshly isolated CD34+ bone marrow cells from patients with CML with the DNAzymes, which specifically inhibited the growth of bcr-abl-positive CFU-Mix colonies by 53-80%. The potential advantages of anti-bcr-abl DNAzymes over RZs include the following: DNAzymes are much less expensive to synthesize; they are more resistant to serum; and the anti-b2a2 DNAzyme cleaves at a site only 1 nt away from the fusion site, whereas its hammerhead RZ counterpart cleaves this target at a site 8 nt 3 to the fusion site, well within abl exon 2. DNAzymes are novel RNA-cleaving molecules that may significantly improve our ability to inhibit bcr-abl oncogene expression in Ph-positive target cells.

Expression of RET proto-oncogene and GDNF deficit in Hirschsprung s disease.

PURPOSE: The aim of this study was to investigate GDNF (glial cell line-derived neurotrophic factor) protein expression and RNA expression level of the RET proto-oncogene in human aganglionic (AG) bowel in Hirschsprung s disease (HD) and to further understand the pathophysiology of HD. METHODS: To evaluate the possible implication of the RET gene and GDNF for the development of HD, mRNA expression level of the RETgene was examined by using the reverse transcription-polymerase chain reaction (RT-PCR) technique and protein expression level of the GDNF using an immunohistochemical technique in the bowel specimens of 15 HD patients. RESULTS: A significantly less intense signal for RETmRNA was found in the AG bowel compared with the ganglionic bowel. In different age groups of patients, the intensities of RET level had similar results. In the same patients, there was strong GDNF immunoreactivity in the myenteric plexuse in ganglionic bowel. In the myenteron in AG bowel, the number of GDNF immunoreactive neuron cells was reduced significantly compared with normal ganglionic bowel. CONCLUSIONS: From these preliminary data we conclude that the decreased RET expression in the AG bowel may suggest mal development of neural crest-derived cells in HD. The reduced level of GDNF in AG bowel may suggest a GDNF expression deficit interrupting the faithful signaling via RET, and both are implicated in the pathogenesis of HD.

A new germline mutation, R600Q, within the coding region of RET proto-oncogene: a rare polymorphism or a MEN 2 causing mutation?.

Analyzing the pathways by which retinoic acid (RA) induces promyelocytic leukemia/retinoic acid receptor alpha (PML/RARalpha) catabolism in acute promyelocytic leukemia (APL), we found that, in addition to caspase-mediated PML/RARalpha cleavage, RA triggers degradation of both PML/RARalpha and RARalpha. Similarly, in non-APL cells, RA directly targeted RARalpha and RARalpha fusions to the proteasome degradation pathway. Activation of either RARalpha or RXRalpha by specific agonists induced degradation of both proteins. Conversely, a mutation in RARalpha that abolishes heterodimer formation and DNA binding, blocked both RARalpha and RXRalpha degradation. mutations in the RARalpha DNA-binding domain or AF-2 transcriptional activation region also impaired RARalpha catabolism. Hence, our results link transcriptional activation to receptor catabolism and suggest that transcriptional up-regulation of nuclear receptors by their ligands may be a feedback mechanism allowing sustained target-gene activation.

Ultraviolet light induces redox reaction-mediated dimerization and superactivation of oncogenic Ret tyrosine kinases.

The c-RET proto-oncogene encodes a receptor-type tyrosine kinase, and its mutations in the germ line are responsible for the inheritance of multiple endocrine neoplasia type 2A (MEN2A) and 2B (MEN2B). Ret kinases are constitutively activated as a result of MEN2A mutations (Ret-MEN2A) or MEN2B mutations (Ret-MEN2B). Here we demonstrate that UV light (UV) irradiation induces superactivation of the constitutively activated Ret-MEN2A and Ret-MEN2B as well as activation of c-Ret. Before UV irradiation, small percentages of c-Ret (3-4%) and Ret-MEN2B (1-2%) and large percentages of Ret-MEN2A (30-40%) were dimerized through disulfide bonds. These dimerized Ret proteins were preferentially autophosphorylated, suggesting a close relation between up-regulated kinase activity and disulfide bond-mediated dimerization of Ret proteins. We found that UV irradiation promotes the disulfide bond-mediated dimerization of the Ret proteins, in close association with activation and superactivation of Ret kinases. UV irradiation also induced dimerization and activation of the extracellular domain-deleted mutant Ret (Ret-PTC-1). Interestingly, the levels of basic kinase activity and dimerization of Ret-PTC-1-C376A, in which cysteine 376 in the tyrosine kinase domain of Ret-PTC-1 was replaced by alanine, were low and were not increased by UV irradiation. These results suggest that Ret-PTC-1 cysteine 376 is one of possibly multiple critical target amino acids of UV for Ret kinase activation. Overexpression of Cu/Zn superoxide dismutase in cells as a result of gene transfection prevented both the UV-mediated promotion of dimerization and the superactivation of Ret-MEN2A kinase. These results suggest that the UV-induced free radicals in cells attack intracellular domains of Ret to dimerize the kinase proteins for superactivation.

Detection of RET/PTC oncogene rearrangements in Korean papillary thyroid carcinomas.

The prevalence of RET/PTC rearrangement in papillary thyroid carcinomas has been found to vary widely in different populations. Recent studies, however, have reported no significant geographical difference between Asian and Western countries. In addition, there are some disagreements about the correlation of RET/PTC expression with clinical aggressiveness. We have performed this study in order to examine the prevalence of RET/PTC-1, RET/PTC-2, and RET/PTC-3 rearrangements in Korean papillary thyroid carcinomas, and to ascertain its clinical relevance. Thyroid tumors from 31 patients histologically confirmed to be papillary carcinomas were included in this study. To find rearrangements, we utilized reverse transcription-polymerase chain reaction (RT-PCR) and automated direct sequencing. Initial and follow-up clinical data were obtained from the patients medical records. We identified two tumors containing RET/PTC-1 (2/31, 6.5%) and two containing RET/PTC-2 (2/31, 6.5%). However, we could not find RET/PTC-3 rearrangement in any patients (0/31). In conclusion, we report RET/PTC rearrangements in 4 of 31, (12.9%) Korean patients with papillary thyroid carcinomas, a higher prevalence than previously reported in this population.

Somatic trinucleotide change encompassing codons 882 and 883 of the RET proto-oncogene in a patient with sporadic medullary thyroid carcinoma.

OBJECTIVE: Restriction analysis is a straightforward procedure for mutational analysis. It is commonly used for screening RET mutations. Incomplete digestion is a well-known cause of false results. Herein, we report another limitation of the method. DESIGN AND METHODS: Screening for somatic mutations in RET exons 16, 13 and 15 was performed in a patient with a sporadic medullary thyroid carcinoma. Genetic study was carried out by both restriction analysis and direct sequencing. RESULTS: A somatic trinucleotide change encompassing codons 882 and 883 of the RET proto-oncogene (GTA GCT to GTT TTT) was documented. Particular to this case is the silent mutation (GTA-->GTT) at codon 882. Independently, both the novel silent mutation and the missense mutation at codon 883 may disrupt the same AluI restriction site. Based on the restriction pattern we were able to say that both mutations occurred in the same allele. CONCLUSIONS: Restriction analysis is an easy approach for screening RET mutations; however, it is not enough to assign a final diagnosis.

Translocation t(10;14)(q11.2:q22.1) fusing the kinetin to the RET gene creates a novel rearranged form (PTC8) of the RET proto-oncogene in radiation-induced childhood papillary thyroid carcinoma.

Evaluation of 20 cases of radiation-induced childhood papillary thyroid carcinoma using fluorescence in situ hybridization demonstrated the presence of clonal translocations affecting the RET locus. Semiquantitative reverse transcription-PCR indicated overexpression of the RET tyrosine kinase (TK) domain in four cases. In two cases, the RET rearrangements PTC6 and PTC7 were identified and assigned to balanced translocations t(7;10)(q32;q11.2) and t(1;10)(p13;q11.2), respectively. In one case with a balanced translocation t(10;14)(q11.2;q22.1), 5 rapid amplification of cDNA ends revealed a novel type of RET oncogenic activation (PTC8), arising from a fusion of the 5 part of the kinectin (KTN1) gene to the TK domain of the RET gene. The presence of coiled-coil domains in the resulting ktn1/ret fusion protein suggests ligand-independent dimerization and thus constitutive activation of the ret TK domain.

Idiopathic slow-transit constipation is not associated with mutations of the RET proto-oncogene or GDNF.

PURPOSE: Idiopathic slow-transit constipation is a severe disorder of unknown cause. The onset in early childhood and history of constipation or Hirschsprung s disease in close family relatives suggest that slow-transit constipation could have a genetic basis. Several germline mutations have been described in Hirschsprung s disease, including mutations of RET and the gene encoding its ligand glial cell-derived neurotrophic factor. The aim of this study was to screen a panel of 16 cases of familial idiopathic slow-transit constipation, including 4 families in which there were relatives with Hirschsprung s disease, for RET and glial cell-derived neurotrophic factor mutations previously identified in Hirschsprung s disease. METHODS: Genomic DNA from 16 patients with slow-transit constipation and four relatives with Hirschsprung s disease was analyzed using single strand and heteroduplex conformation polymorphism analysis at two conditions and by direct DNA sequencing using the fluorescent dideoxy terminator method. RESULTS: Although common sequence polymorphisms were demonstrated with a frequency comparable with published data, no published or new mutation was seen in any of the exons of RET or glial cell-derived neurotrophic factor. CONCLUSIONS: mutation of RET or glial cell-derived neurotrophic factor is not a frequent cause of idiopathic slow-transit constipation.

Multiple endocrine neoplasia type 2B mutation in human RET oncogene induces medullary thyroid carcinoma in transgenic mice.

Multiple endocrine neoplasia type 2B (MEN 2B) is a familial cancer syndrome, in which the cardinal feature is medullary thyroid carcinoma (MTC), a malignant tumor arising from the calcitonin producing thyroid C-cells. MEN 2B is associated with a germline point mutation in the RET proto-oncogene, leading to a Met-->Thr substitution at codon 918 in the kinase domain, which alters the substrate specificity of the protein. We used the human calcitonin gene (CALC-I) promoter to generate transgenic mice expressing either the human RET oncogene with the MEN2B-specific 918 Met-->Thr mutation (CALC-MEN2B-RET) or the human non-mutated RET proto-oncogene (CALC-WT-RET) in the C-cells. At 20 - 22 months of age three out of eight CALC-MEN2B-RET transgenic founders presented with macroscopic bilateral MTC. In two founders nodular C-cell hyperplasia (CCH) was observed. Thyroid abnormalities were never observed in CALC-WT-RET transgenic mice or control non-transgenic mice analysed at this age. In some mice from established CALC-MEN2B-RET transgenic lines nodular CCH was observed from 8 months on whereas MTC was detected in 13% of mice from one CALC-MEN2B-RET line, from the age of 11 months on. These results show for the first time that the MEN2B mutation in the RET oncogene predisposes mice for MTC.

RET proto-oncogene mutations in thyroid carcinomas: clinical relevance.

Different forms of RET mutations are found in papillary and medullary thyroid carcinomas. Rearrangements with other genes (RET/PTC oncogene) play a causative role in a significant proportion of papillary thyroid carcinomas. In this case, several factors influence the frequency and the type of RET/PTC, such as exposure to radiation, age and histological variant of the papillary tumor. On the other hand, the presence of the mutation does not seem to influence the biological behavior of the tumor or its response to conventional treatment modalities. In the setting of medullary thyroid cancer, germline RET point-mutations are implicated in the pathogenesis of virtually ALL hereditary forms and somatic point-mutations in nearly half of the sporadic forms. The clinical impact of this finding is that family members at-risk of hereditary MTC may be screened by genetic analysis, to distinguish those carrying or not-carrying the mutation. The last can be reassured on their status and relieved from further follow-up. Those with the mutation may be treated at a pre-clinical stage of the disease or even before the disease is started. The present review is focused on the clinical implication of RET gene mutations in thyroid cancer patients.

The RET proto-oncogene induces apoptosis: a novel mechanism for Hirschsprung disease.

The RET (rearranged during transfection) proto-oncogene encodes a tyrosine kinase receptor involved in both multiple endocrine neoplasia type 2 (MEN 2), an inherited cancer syndrome, and Hirschsprung disease (HSCR), a developmental defect of enteric neurons. We report here that the expression of RET receptor induces apoptosis. This pro-apoptotic effect of RET is inhibited in the presence of its ligand glial cell line-derived neurotrophic factor (GDNF). Furthermore, we present evidence that RET induces apoptosis via its own cleavage by caspases, a phenomenon allowing the liberation/exposure of a pro-apoptotic domain of RET. In addition, we report that Hirschsprung-associated RET mutations impair GDNF control of RET pro-apoptotic activity. These results indicate that HSCR may result from apoptosis of RET-expressing enteric neuroblasts.

Glucocorticoids differentially inhibit expression of the RET proto-oncogene.

The RET proto-oncogene encodes a receptor tyrosine kinase activated by the binding of factors from the glial cell line-derived neurotrophic factor (GDNF) family to receptor-alpha components such as GDNF family receptor alpha-1 (GFR alpha-1). mutations within the sequence of the RET proto-oncogene are associated with multiple endocrine neoplasia type 2 (MEN 2), an inherited tumor syndrome characterized by the development of medullary thyroid carcinoma (MTC) and other neuroendocrine tumors. Despite Northern analysis showing that RET is expressed in the majority of MTCs, the factors regulating this expression are poorly understood. To address this issue we examined RET expression in response to glucocorticoids in the TT cell line, derived from a metastatic MTC. The synthetic glucocorticoid dexamethasone was found to reduce RET expression at both mRNA and protein levels. This effect was dose responsive and maximal at 24 h. The reduction in RET mRNA was shown to be specific to glucocorticoids and was also seen in a primary MTC culture. Nuclear run-on studies revealed the reduction in steady-state RNA to be due to a decrease in RET mRNA transcription and the effect was shown to be independent of new protein synthesis or RNA stability. Dexamethasone was also found to exert an inhibitory effect upon cell growth, suggesting a potential use for glucocorticoids in the treatment of medullary carcinoma and MEN 2.

Incidence and clinical relevance of RET proto-oncogene germline mutations in pheochromocytoma patients.

BACKGROUND: Autosomal dominant cancer syndrome--multiple endocrine neoplasia type 2 (MEN 2), may exist more often than expected in patients with pheochromocytoma. Germline mutations identified recently in MEN 2 can be revealed by genetic screening. OBJECTIVE: To evaluate the frequency of RET (rearranged during transfection) mutations in patients with pheochromocytoma. DESIGN AND METHODS: We genetically screened germline mutations in the RET proto-oncogene and clinically re-evaluated patients with pheochromocytoma. A pentagastrin test and other biochemical studies were performed in ALL patients. SETTING: Department of Internal Medicine and Hypertension, The Medical University of Warsaw, Warsaw, Poland and the Department of Nephrology and Hypertension, Albert Ludwigs University, Freiburg, Germany. PARTICIPANTS: Seventy seven unselected patients with pheochromocytoma (19 men, 58 women, mean age: 51.55 +/- 1.5 years; pheochromocytoma confirmed histopathologically) out of 162 diagnosed and treated in the years 1957-1998 in the Department of Internal Medicine and Hypertension in Warsaw, Poland. The other 85 patients did not respond to the written invitation. MAIN OUTCOME MEASURES: The finding of RET mutations and diagnosis of MEN 2 in patients with pheochromocytoma. RESULTS: Genetic testing revealed germline mutations in the RET proto-oncogene in six patients (7.8%). ALL carriers had mutation of exon 11, codon 634: TGC to CGC. In four patients with this mutation, medullary thyroid carcinoma (MIC) was diagnosed and in three cases, surgically treated. Biochemical parameters: parathormone 31.88 +/- 2.87 pg/ml, calcitonin: 0 min 0.23 +/- 0.14 ng/ml; 2 min 0.49 +/- 0.21 ng/ml; 5 min 0.48 +/- 0.21 ng/ml, metoxycatecholamines: 601.62 +/- 42.71 microg/24h, epinephrine: 1.94 +/- 0.17 microg/24h, norepinephrine 13.96 +/- 1.3 microg/24h, carcinoembryonic antigen (CEA) 9.94 +/- 4.3 ng/ml. Ambulatory blood pressure monitoring (ABPM): systolic blood pressure (SBP): 116 +/- 1.9 mmHg, diastolic blood pressure (DBP): 73.7 +/- 0.9 mmHg. Clinical, biochemical and imaging procedures did not reveal any recurrence of pheochromocytoma in the 77 patients studied. CONCLUSIONS: Patients with pheochromocytoma should be genetically screened for mutations of the RET proto-oncogene. These patients should undergo clinical screening for MEN 2. In addition, genetic studies can be useful for the screening of the families of the carriers.

A single-nucleotide polymorphic variant of the RET proto-oncogene is underrepresented in sporadic Hirschsprung disease.

Hirschsprung disease (HSCR) is an inherited disorder characterised by absence of intrinsic ganglion cells in the distal gastrointestinal tract. Different susceptibility genes, involved in either the Ret-tyrosine kinase or the endothelin signalling pathways, contribute to HSCR phenotype. Interestingly, alterations of these genes are detected in only 30-50% of ALL HSCR patients, suggesting the involvement of modifier genes and/or additional genetic or environmental risk factors. In complex disorders common polymorphic variants can be associated with the disease phenotype, thus modifying the risk of recurrence. To investigate whether sequence variants of the RET proto-oncogene may be associated with the development of the HSCR phenotype, we analysed 92 Italian patients for the 2508C > T synonymous substitution in exon 14 (S836S) finding that the T allele is clearly less frequent than in control individuals (Fisher exact test P = 0.0002). On the other hand, this RET variant allele is overrepresented in patients affected with medullary thyroid carcinoma. Assuming a direct effect of this single-nucleotide polymorphism in predisposing to RET associated pathologies, we have performed functional tests which excluded any possible involvement of the C and T alleles in DNA-protein binding, transcript stability and RNA splicing and editing.

Familial form of hirschsprung disease: nucleotide sequence studies reveal point mutations in the RET proto-oncogene in two of six families but not in other candidate genes.

Hirschsprung disease (HSCR; McKusick 142623) or aganglionic megacolon is a frequent (1 in 5,000 live births) heritable disorder of the enteric nervous system. By haplotyping with a variety of microsatellite markers, by amplifying ALL 20 exons of the RET proto-oncogene and by applying a direct DNA sequencing protocol, we have analyzed the DNA from HSCR patients in 6 different families. In one family with a joint occurrence of HSCR and FMTC (follicular medullary thyroid carcinoma), we have identified a mutation in codon 609 in one out of 6 cysteine residues encoded in exon 10 of the RET gene. This C609R point mutation has not previously been reported to cause HSCR. In 2 of the HSCR patients described here from different families, we have found a mutation in exon 2 (R77C) and a silent mutation in exon 3 (Y204Y), respectively, in the extracellular part of the RET proto-oncogene. In introns 2 and 17 of the RET proto-oncogene in 2 families, we have detected single nucleotide exchanges that are probably polymorphisms with unknown, if any, relations to HSCR. The DNA sequences of 5 further genes (GDNF, GDNFRalpha, EDN3, EDNRB, and NTN), that may contribute to the development of HSCR, have not shown mutations in the patients analyzed so far. In 2 of the reported families with several affected children and one grandchild, sequence analyses revealed no mutations in the coding regions of any of the candidate genes analyzed.

Ret oncogene signal transduction via a IRS-2/PI 3-kinase/PKB and a SHC/Grb-2 dependent pathway: possible implication for transforming activity in NIH3T3 cells.

Multiple endocrine neoplasia 2A (MEN 2A) is an inherited disease caused by mutations of the Ret proto-oncogene. Although many different Ret mutations have been described, little is known about the signaling pathways triggered by the Ret oncogene. In this study, we have determined the signaling properties of a Ret-9bp duplication encoding amino acids 634-636, which was recently identified in a patient with ALL clinical features of the MEN 2A syndrome. The Ret-9bp duplication leads to constitutive activation of the Ret tyrosine kinase. Furthermore, Ret-9bp increased mitogenic and transforming activity demonstrated by thymidine incorporation as well as colony formation in soft agar. Studying intracellular signaling pathways, which may be involved in malignant transformation of Ret-9bp expressing NIH3T3 cells, we could demonstrate Ret-9bp dependent phosphorylation of insulin receptor substrate-2 (IRS-2) with consecutive activation of phosphatidylinositol 3-kinase (PI 3-kinase) and protein kinase B (PKB/AKT). Moreover, Ret-9bp induces phosphorylation of SHC resulting in growth factor receptor binding protein-2 (Grb-2) binding and activation of the mitogen activating protein (MAP) kinase pathway. In addition to these postreceptor cytoplasmic signaling events, we have studied nuclear signal by Ret-9bp and found activation of c-jun and jun-D, two members of the jun/AP-1 family of transcription factors. In summary, an oncogenic 9bp duplication of Ret causes Ret dimer formation and ligand independent activation of the tyrosine kinase. Besides the signaling steps leading to MAPK activation, we could demonstrate that Ret-9bp induced constitutive activation of a signaling pathway involving IRS-2, PI 3-kinase and PKB/AKT which could transduce the oncogenic Ret signal to increased gene transcription via activation of the jun/AP-1 transcription factor family.

Tissue-specific carcinogenesis in transgenic mice expressing the RET proto-oncogene with a multiple endocrine neoplasia type 2A mutation.

Germ line mutations of the RET proto-oncogene are responsible for the development of multiple endocrine neoplasia type 2A (MEN 2A), an inherited cancer syndrome characterized by medullary thyroid carcinoma, pheochromocytoma, and parathyroid hyperplasia. To study the mechanism of tissue-specific tumor development by RET with a MEN2A (cysteine 634-->arginine) mutation, we generated transgenic mice by introducing the RET-MEN2A gene fused to Moloney murine leukemia virus long terminal repeat. expression of the transgene and its product was detected at variable levels in a variety of tissues including thyroid, heart, liver, colon, parotid gland, and brain. ALL of 29 mice analyzed developed thyroid C-cell hyperplasia or medullary carcinoma, accompanying high levels of serum calcitonin. In addition, development of mammary or parotid gland adenocarcinoma was observed in one-half of the transgenic mice. RET dimerization and its complex formation with Shc and Grb2 adaptor proteins were detected in tumor tissues. Unexpectedly, no tumor formation was found in other tissues despite RET-MEN2A expression where RET dimerization was undetectable. Because these tissues but not tumors expressed glial cell line-derived neurotrophic factor family receptor alpha (GFR alpha) at high levels, this suggested that GFR alpha expression may interfere in the dimerization of the RET-MEN2A mutant proteins, leading to tissue-specific tumor development in vivo.

Unilateral surgery supported by germline RET oncogene mutation analysis in patients with sporadic medullary thyroid carcinoma.

Compared to hereditary medullary thyroid carcinoma (MTC), sporadic MTC tends to be unicentric and confined to one lobe. Patients with sporadic MTC usually undergo total thyroidectomy because of a possible hereditary or bilateral process. We evaluated the usefulness of germline RET oncogene mutation analysis in surgery for apparently sporadic MTC and performed unilateral surgery on patients without detectable mutation. In 36 patients with a preoperative diagnosis of apparently sporadic MTC, we performed germline RET oncogene mutation analyses: before surgery in 8 recent patients and after surgery in 28 who had been treated before 1996. Of the latter, 5 had bilateral MTC. DNA samples were extracted from their peripheral blood, and the polymerase chain reaction products of the RET proto-oncogene were analyzed using single-strand conformation polymorphism analysis and the direct sequencing methods. Before 1996 we often performed total thyroidectomy but changed to hemithyroidectomy thereafter, except in one patient with associated Graves ophthalmopathy. Our minimal standard practice included systematic central and ipsilateral neck dissection. The outcome was assessed in terms of gastrin- and calcium-stimulated plasma calcitonin levels. Germline RET mutations were found in six patients. Five of these patients had bilateral MTC, whereas ALL 30 patients without mutation had unilateral disease. Hemithyroidectomy in seven of our recent patients resulted in normalization of plasma calcitonin levels in all, although four were found to have microscopic lymph node involvement. In conclusion, hemithyroidectomy with systematic central and ipsilateral neck dissection is an appropriate procedure for patients with sporadic MTC without detectable germline RET mutations.

Sp1 and Sp3 transactivate the RET proto-oncogene promoter.

The RET proto-oncogene plays an important role in the initiation and progression of tumors derived from the neural crest. The cis-regulatory elements responsible for RET basal promoter activity have not been identified. To characterize these elements, a RET promoter DNA fragment (-453 to +227bp) was fused to a luciferase reporter and introduced into TT, a neural crest-derived cell line. Sequential 5 deletions of the promoter revealed that optimal expression of the RET promoter in TT cells required only 70bp of sequence upstream of the transcription start site, and contains two Sp1 binding sites. DNase I footprinting, electrophoretic mobility shift analysis (EMSA), and supershift assays revealed that this region binds both Sp1 and its related protein, Sp3. Additionally, RET basal promoter activity was abrogated by removal of these Sp1/Sp3 binding sites. The proximal two GC boxes were sufficient to allow transactivation of the RET promoter in Drosophila SL2 cells. Sp3 expression in these cells caused an additional activation of the promoter. These results demonstrate that the transactivation of the RET promoter within a neural crest-derived cell line is dependent on Sp1 and Sp3.

Perspective on RET proto-oncogene and thyroid cancer.

Much is yet to be learned about cancer and its genetic basis. The discovery of the RET proto-oncogene and its role in tumorigenesis have improved our understanding of thyroid cancer. It is clear that RET is responsible for MEN 2A, MEN 2B, FMTC, and PTC. Although the physical and genetic map of the RET proto-oncogene has been elucidated, the precise mechanism of neoplastic transformation and how it affects phenotypic variability is not completely understood. From the precise mapping of RET arose a highly reliable method of DNA analysis for presymptomatic detection of disease allele carriers. The understanding of the role of the RET proto-oncogene in MEN syndromes has led to a new paradigm in surgical practice: the recommendation for surgery based solely on genetic testing.

The RET proto-oncogene in human cancers.

The activation of the RET proto-oncogene contributes to the development of human cancers in two different ways. Somatic rearrangements of RET with a variety of activating genes, which contribute to unscheduled expression and constitutive dimerization of the chimeric RET/PTC oncoproteins in thyroid follicular cells, are frequently found in radiation-induced papillary thyroid carcinomas. Germ-line mutations, mainly point mutations, that lead to constitutive activation of RET tyrosine kinase activity are responsible for the development of the inherited cancer syndrome, multiple endocrine neoplasia type 2. There appears to be a correlation between specific types of RET mutation and clinical phenotypes of the cancers involved. The biological effects and the signaling pathways induced by different forms of RET activation have been investigated in a variety of cultured cells as well as in genetically engineered animal models. The identification of RET mutations in most MEN 2 families (95%) has translated into improved care for MEN 2 patients. However, further investigation of the signaling pathways contributing to tumorigenesis in relevant tissues will eventually help us to develop novel strategies to prevent or to treat human papillary thyroid carcinomas, MEN 2 disease, as well as the sporadic cancers relevant to MEN 2 disease.

[Prophylactic thyroidectomy in carriers of RET oncogene mutation carriers].

BACKGROUND: Medullary thyroid cancer may be inherited dominantly. Germline mutations in the RET oncogene which code for a receptor tyrosine kinase cause MEN2. Thyroidectomy is recommended in family members who carry a mutation. MATERIAL AND METHODS: We have thyroidectomized four children from three families, 12, 10, 7 and 6 years old, because of germline mutations. RESULTS: The 12-year-old had developed a minimal medullary cancer with microscopic lymph node metastases; the others showed variable degrees of C-cell hyperplasia. The mutations were located on exon 10 (C620F) in the two patients from one family, on exon 11 (C634R) in the second family and on exon 14 (V804M) in the third family. In the families with the codon 620 and codon 634 mutations, only medullary thyroid cancer has been diagnosed. In the family with the codon 804 mutation, the index patient has been operated for a pheochromocytoma. The longterm clinical course seems more favorable in the family with the codon 620 mutation than in the two other families. With knowledge of the family mutations, we found that two out of nine family members we previously have thyroidectomized following calcitonin testing did not carry the family mutation. INTERPRETATION: Genetic diagnostic is a safe and reliable predictive test for familial medullary thyroid cancer and should be carried out in any individual with this cancer. Thyroidectomy is recommended in gene carriers at the age of six.

RET proto-oncogene mutation in a mixed medullary-follicular thyroid carcinoma.

A case of a patient with an uncommon thyroid carcinoma, showing histological and immunohistochemical features of both follicular and parafollicular cells is described. Somatic point mutation (ATG to ACG heterozygotic mutation at codon 918) of the RET proto-oncogene was detected in tumor tissue, as confirmed by immunohistochemical expression of RET oncoprotein. Our findings suggest that constitutive RET proto-oncogene activation may be involved in the development of mixed medullary-follicular thyroid carcinoma.

Prognostic value of codon 918 (ATG-->ACG) RET proto-oncogene mutations in sporadic medullary thyroid carcinoma.

We have determined the frequency of 918 RET proto-oncogene mutations (ATG-->ACG) in primary MTC tumors and metastases and correlated the presence or absence of this mutation with the clinical outcome of patients suffering from sporadic medullary thyroid carcinoma (MTC). A total of 197 samples, consisting of both primary tumors and lymph node metastases from 34 patients with sporadic MTC, were collected for PCR analysis of the RET 918 mutation. In 75 of the samples (38%), codon 918 (ATG-->ACG) mutations could be detected. The mutations showed a heterogeneous distribution: 21/34 patients (62%) had mutations in at least 1 tumor sample, and in 13 patients (38%) the mutation was present in ALL examined samples. Patients were considered 918mt when at least 1 tumor sample showed the RET 918 mutation. These 918mt and 918 wild-type (918wt) patients did not differ significantly concerning sex, age at diagnosis, TNM stage at diagnosis, number of examined tumor samples or follow-up time. However, 918mt patients showed more aggressive development of distant metastases during follow-up (p = 0.032, Fisher s exact test) with decreased metastases-free survival (p < 0.005, log-rank test). Furthermore, 918mt patients had a significantly lower survival rate than 918wt patients (p = 0.048, log-rank test). These data show that the RET codon 918 mutation has a prognostic impact on patients with sporadic MTC which may influence follow-up treatment.

[Usefulness of RET proto-oncogene in the diagnosis of hereditary-type medullary carcinoma of the thyroid. Correlation with surgical findings].

In about 25% of cases medullary thyroid carcinoma (MTC) is hereditary. In this group is possible to detect germline point mutations of the RET proto-oncogene in about 95% of the studied cases. The purpose of the present paper is to confirm the value of the RET in the screening of the hereditary MTC. We studied 43 subjects at risk for a Multiple Endocrine Neoplasia Type 2A Syndrome. RET analysis was positive for MEN 2A in 22 subjects. Fifteen of the 22 have undergone a total thyroidectomy at our facility. Histopathological study of the surgical specimens confirmed the presence of a MTC in ALL the cases. According with our experience. RET analysis is a 100% sensitive and specific method of hereditary MTC screening, and we think it has obvious advantages over the calcitonin tests in technical, economic and ethic aspects.

Diagnosis of papillary thyroid carcinoma is facilitated by using an RT-PCR approach on laser-microdissected archival material to detect RET oncogene activation.

OBJECTIVE: The purpose of this study was to investigate the value of the expression of the RET oncogene (rearranged during transfection) in papillary thyroid carcinomas (PTC) and its variants in the differential diagnosis of thyroid neoplasias. According to the literature RET oncogene activation by chromosomal rearrangements has been exclusively implicated in PTCs. METHODS: To establish the incidence of RET activation in PTCs we used 5- to 10-microm sections from archival paraffin blocks. Either parts of the tissue slices were manually dissected or a few distinct cells were microdissected by laser-mediated manipulation with the Robot-MicroBeam system. RNA was extracted from paraffin-embedded thyroid tumors and the corresponding normal tissue. RT and nested PCR were performed using primers for RET/PTC1, PTC2 and PTC3, or for RET exons 12 and 13. PCR products were resolved by gel electrophoresis. RESULTS: We detected RET transcription in approximately 85% of the PTCs including follicular variants and in isolated cells of the same tissues, but not in nonmalignant thyroid tissue. CONCLUSIONS: Our method may serve as an additional diagnostic tool to characterize ambiguous neoplasias and to identify especially nonpapillary, i.e. follicular tumors, as papillary carcinomas. Additionally, this study has demonstrated that expressed genes can be analyzed from routine histopathological tissue slides or pooled single cells. Large retrospective studies can also be performed with this method.

A rare variant, I852M, of the RET proto-oncogene in a patient with medullary thyroid carcinoma at age 20 years.

Polycyclic aromatic hydrocarbons (PAH) and N-heterocyclic aromatic hydrocarbons (NHA) are environmental pollutants formed during the incomplete combustion of organic materials. Benzo(a)pyrene (BaP) and 7H-dibenzo(c,g)carbazole (DBC) are well-characterized representatives of the PAH and NHA classes of compunds, respectively. Both are demonstrated carcinogens that frequently co-occur in environmental mixtures. This preliminary study was conducted to investigate the effects of a binary mixture of BaP and DBC on lung carcinogenicity in the strain A/J mouse as manifested by tumor development and mutations in the K-ras gene. Male A/J mice were administered the following single intraperitoneal dose (mg/kg) combinations of BaP and DBC dissolved in a 0.2-mL volume of tricaprylin--10 DBC:10 BaP; 2 DBC:10 BaP; 2 DBC:100 BaP; and 10 DBC: 100 BaP, and each of the compounds alone at the same doses. Mice were sacrificed 8 months after carcinogen treatment and lung tumor multiplicity and K-ras mutations determined (high-dose combination). The combination of DBC and BaP produced fewer tumors than the sum of ALL tumors produced by each compound acting alone. The frequency of tumors with K-ras mutations was also less in a sample of the 10 DBC:100 BaP treatment group than in the same-dose, single compound-treated animals. The dominant mutations produced by BaP and DBC were expressed in tumors from animals treated with the mixture.

Expression of the RET proto-oncogene in papillary thyroid carcinoma and its correlation with clinical outcome.

BACKGROUND: In papillary thyroid carcinoma (PTC), presence of the oncogenes RET/PTC has been described, but their correlation with prognosis is debated. The aim of this study was to investigate the expression of the RET proto-oncogene (RET) and correlate it with clinical outcome. METHODS: Sixty-one PTCs were analysed for expression of RET and the oncogenes RET/PTC1-4 by polymerase chain reaction of complementary DNA. RESULTS: Twenty-nine PTCs (48 per cent) expressed the RET tyrosine kinase domain (RET-TK). Twelve expressed wild-type RET (WT-RET). One tumour expressed RET/PTC3, one a variant of RET/PTC3, and one RET/PTC1 and WT-RET simultaneously. The remaining 14 expressed RET-TK only. WT-RET expression was detected more frequently in poorly differentiated PTCs (P < 0.05) and in PTCs from patients with aggressive disease (P < 0.01). WT-RET expression remained an independently significant risk factor for aggressive disease when analysed together with other recognized risk factors using a stepwise multiple logistic regression model. CONCLUSION: Almost half of the PTCs showed RET-TK expression; in only three was this explained by expression of a RET/PTC rearrangement. Instead, expression of WT-RET was detected in 45 per cent of the RET-TK-positive tumours and this expression was an independently significant risk factor for aggressive PTC. Presented in abstract form to the Millennium Meeting of Endocrine Surgeons held by the American Association of Endocrine Surgeons, British Association of Endocrine Surgeons and Swedish Association of Endocrine Surgeons, London, UK, May 2000FAU - Kjellman, P

The RFG oligomerization domain mediates kinase activation and re-localization of the RET/PTC3 oncoprotein to the plasma membrane.

The RET/PTC3 oncogene arises from the fusion between the N-terminal encoding domain of the RFG gene and the tyrosine kinase encoding domain of RET receptor. RET/PTC3 is very frequent in papillary thyroid carcinomas, especially in children exposed to the Chernobyl accident. We have studied the functional consequences of the RFG-RET fusion. Here we show that the N-terminal coiled-coil domain of RGF mediates oligomerization and activation of the kinase and of the transforming capability of RET/PTC3. In addition, the RFG coiled-coil domain mediates a physical association between RET/PTC3 and RGF proteins, rendering RFG a bona fide substrate of RET/PTC3 kinase. Finally, we show that the coiled-coil domain of RGF is essential for the distribution of the RET/PTC3 protein at the membrane/particulate cell compartment level, where also most of the RFG protein is localized. We propose that fusion to the RFG coiled-coil domain provides RET kinase with a scaffold that mediates oligomerization and re-localization of the RET/PTC3 protein, a process that may be crucial for the signalling of this specific RET/PTC variant.

A homozygous missense mutation in the tyrosine E kinase domain of the RET proto-oncogene in an infant with total intestinal aganglionosis.

Germline mutations of the RET proto-oncogene (RET), its ligand glial cell-derived neurotrophic factor (GDNF), and neurturin (NTN) gene have been reported in patients with Hirschsprung s disease. A targeted mutation in the tyrosine kinase domain of RET produced total intestinal aganglionosis and renal agenesis in homozygous transgenic mice. Here we describe a homozygous mutation of the human gene for the RET tyrosine kinase domain that was present in a male neonate with total intestinal aganglionosis. Gut wall biopsy specimens from the stomach to the anorectum showed no ganglion cells. No urinary tract abnormalities were detected. Genomic DNAs were isolated from peripheral blood lymphocytes of the infant and his parents. DNA sequences of ALL the RET/GDNF/NTN coding regions were determined using a direct DyeDeoxy Terminator Cycle method. A homozygous missense mutation (CGG-to-TGG) at RET codon 969 was identified in this patient, which resulted in an amino acid change from arginine to tryptophan. No germline RET/GDNF/NTN mutations were found in his parents. In this case, the homozygous RET mutation seemed to cause a critical alteration of the Ret tyrosine kinase activity, which resulted in total intestinal aganglionosis but not renal agenesis. Discrepancies in phenotypic expression between humans and mice suggest differing threshold values for RET signal transduction in species or organs.

cDNA sequence and genomic structure of the rat RET proto-oncogene.

The RET proto-oncogene, a member of the Receptor Tyrosine Kinase family, plays a crucial role during the development of the excretory system and the enteric nervous system, as demonstrated by in vivo animal studies and by its involvement in the pathogenesis of several human neurocristopathies like Hirschsprung disease and Multiple Endocrine Neoplasia type 2. Using a multistep RT-PCR approach we have isolated and sequenced the cDNA of the whole rat RET proto-oncogene, reporting the deduced amino acid sequence in comparison with the human and mouse counterparts. Moreover, two different isoforms (RET9 and RET51) have been confirmed in the rat, while a third RET isoform demonstrated in human (RET43) has not resulted to be conserved in this species. Finally, we have determined the genomic structure of the rat RET proto-oncogene comparing the exon-intron boundaries and intron sizes with the known structure of the human homologous gene. Our findings will facilitate the molecular study of appropriate rat models of RET related human diseases.

Presentation of a kindred with familial medullary thyroid carcinoma and Cys611Phe mutation of the RET proto-oncogene demonstrating low grade malignancy.

OBJECTIVE: Both multiple endocrine neoplasia type 2A (MEN 2A) and familial medullary thyroid carcinoma (FMTC) are caused by germline mutations of the RET proto-oncogene. A broad spectrum of malignancy within and between families has been described with no clear genotype-phenotype correlation due to a scarcity of available data of large kindreds. DESIGN: Here we present the only known family with a germline mutation of codon 611 TGC to TTC (exon 10) in the RET proto-oncogene leading to a replacement of cysteine by phenylalanine (Cys611Phe or C611F). RESULTS: Twenty family members of this large kindred are gene carriers (GCs) and seven (5-13 years old) are potential carriers but have yet to be analysed. The clinical course of medullary thyroid carcinoma (MTC) in this family is characterized by a very slow evolution and progression of the tumour with no MTC-related death to date. Of 11 patients (30-69 years old) having undergone thyroidectomy six were classified as pT1, four as pT2 and one as C-cell hyperplasia according to the TNM system of the International Union Against cancer. Due to cervical and mediastinal lymph node metastasis one patient (44 years old) had to be operated on a second time. The seven non-operated GCs of the fourth and fifth generation (17-26 years old) are yearly monitored with pentagastrin stimulation tests; one non-operated GC (43 years old) has refused any further investigations. Screening for primary hyperparathyroidism and phaeochromocytoma was negative in ALL cases. CONCLUSION: We suggest from these experiences that the general advice for thyroidectomy in early childhood should be modified in certain families, depending on genotype.

A family of multiple endocrine neoplasia type 2A with the RET proto-oncogene mutation in codon 618 (Cys-->Arg).

Multiple endocrine neoplasia type 2 (MEN-2) is a hereditary syndrome characterized by medullary thyroid carcinoma (MTC), pheochromocytoma and hyperplasia or adenoma of the parathyroid gland with hyperparathyroidism. Recent genetic studies have identified the presence of germline missense mutations in the RET proto-oncogene in almost 100% of MEN-2 patients. We report here three generations of one MEN-2 family with rare missense mutation at codon 618 (Cys-->Arg) of the RET proto-oncogene. The first patient was surgically treated at the age of 63 years but died of bone metastasis. His two children (29-year-old daughter and 25-year-old son) were treated surgically for MTC and neck lymph node metastasis. Germline mutations of the RET proto-oncogene of these three MTC patients and two children of the 29-year-old daughter (9-year-old female and 7-year-old male) were examined. Three MTC patients and the 9-year-old female possessed the mutation. The phenotype of the family with this rare point mutation of the RET proto-oncogene is reported.

Key role of Shc signaling in the transforming pathway triggered by Ret/ptc2 oncoprotein.

The RET/PTC oncogenes, generated by chromosomal rearrangements in papillary thyroid carcinomas, are constitutively activated versions of protoRET, a gene encoding two protein isoforms of a transmembrane tyrosine kinase receptor. By using Ret/ptc2 short isoform (iso9), we have previously demonstrated that Tyr586 (Tyr1062 of protoRet) is the docking site for both the PTB and the SH2 domains of Shc. To determine the relevance of this interaction for the transforming activity of Ret/ptc oncogenes, we have generated and characterized novel Ret/ptc mutants unable to activate Shc: Ret/ptc2 long isoform (iso51)-Y586F and both isoforms of Ret/ptc2-N583A. These mutants neither activate Shc nor transform NIH3T3 cells. Since Tyr1062 shows features of a multifunctional docking site, we have used a Shc mutant (Shc Y317F) to directly assess Shc role. We have demonstrated that in our cell system Shc Y317F behaves like a dominant interfering mutant on the activation of the Grb2-Sos pathway by endogenous Shc triggered by Ret/ptc2. A strong reduction of the transforming activity of Ret/ptc2 in presence of this mutant was also demonstrated. Our data suggest that Shc activation play a key role in the transforming pathways triggered by Ret/ptc oncoproteins. Moreover, we have shown that coexpression of the Shc-Y317F mutant with Ret/ptc2 specifically causes apoptosis, and that the surviving cells lose the long-term expression of one of the two genes.

Ret oncogene protein expression in papillary thyroid carcinoma and related lesions.

BACKGROUND: Activation of Ret oncogenes, particularly Ret/PTC, has been identified in papillary thyroid carcinoma (PTC). The purpose of this study was to investigate the immunostaining pattern of Ret oncogene protein in PTC and nodular non-PTC lesions with a fine chromatin pattern. MATERIALS AND METHODS: Ninety-three PTC and 139 nodular non-PTC lesions were microscopically reviewed to identify the nuclear changes of "limited nuclear features of PTC" (focal nuclear grooves, nuclear inclusions or optically clear nuclei) and areas of infiltrating carcinoma (IC) and were submitted for immunostaining with Ret oncogene protein antiserum. RESULTS: Immunoreactivity for Ret protein ranged from negative in follicular adenoma (FA) with a coarse chromatin pattern, to negative or weak reactivity in FA with a fine chromatin pattern, to strong reactivity in PTC with areas of infiltrating carcinoma (IC). In FA with fine chromatin, FA and follicular carcinoma (FC) containing an admixture of areas of coarse and fine chromatin, areas with nuclear changes with "limited nuclear features of PTC" displayed varying degrees of immunoreactivity. The intensity of immunostaining varied with the degree of nuclear change. The noninvasive component of PTC with IC usually showed more extensive and stronger reactivity than PTC without IC. PTCs with and without IC were associated with a rate of lymph node metastasis of 48% and 3%, respectively. CONCLUSIONS: The expression of Ret oncogenes (Ret/PTC, other unknown variants or wild type) is focally or extensively present in ALL PTC with IC. The degree of immunoreactivity is likely to be proportional to the potential for lymph node metastasis of PTC. In the context of this study and due to the specificity of Ret oncogenes, it is likely that nodular non-PTC lesions with a fine chromatin pattern and focal positive reactivity for Ret oncogene represent PTC-related lesions.

[Germline mutations of the ret proto-oncogene in Chilean patients with hereditary and sporadic medullary thyroid carcinoma].

BACKGROUND: Medullary thyroid carcinoma (MTC) may occur either as a sporadic or familial disease. Multiple endocrine neoplasia (MEN) type 2, inherited as an autosomal dominant disease, is characterized by MTC only (FMTC) or coexistence of MTC with other endocrine neoplasia (NEM 2A, 2B). Germline mutations of the RET proto-oncogene (cRet) are found in the inherited forms and in some apparently sporadic MTC cases. AIM: To study RET mutations in 8 families with MEN 2. MATERIAL AND METHODS: RET mutations were screened in peripheral blood DNA from 18 patients and 87 high risk carriers belonging to 8 MEN 2 families and 52 sporadic MTC. Exons 10, 11, 13, 14, 15 and 16 of the c-Ret were amplified by polymerase chain reaction (PCR) and examined by direct sequencing of PCR products and/or restriction enzyme analysis. RESULTS: Five MEN 2A and one FMTC families with a germline mutation at codon 634, one MEN 2A and one FMTC family carrying a mutation at codon 620 were identified. mutations were found in 23 out of 87 high risk carriers. In addition, we detected a S891A (exon 15) germline mutation in a sporadic MTC patient and in one out of her three sons and V804M (exon 14) in another sporadic MTC case and in one out of his six relatives, indicating in both cases the presence of a sporadic misclassified familial disease. CONCLUSIONS: These results underscore the importance of routine application of c-Ret testing in ALL cases of MTC either familial or sporadic.

Inhibition of Ret oncogene activity by the protein tyrosine phosphatase SHP1.

Germline mutations in the Ret protooncogene give rise to the inherited endocrine cancer syndromes MEN types 2A and 2B and familiar medullary thyroid carcinoma. Although it is well accepted that the constitutive active tyrosine kinase of Ret oncogenes ultimately leads to malignant transformation, it is not clear whether a decrease in the autophosphorylation of oncogenic Ret forms can affect the mitogenic and transforming activities of Ret. Potential modulators of the tyrosine kinase activity of Ret could be tyrosine phosphatases that are expressed in human thyroid tissue. Therefore, we investigated the impact of the tyrosine phosphatases SHP1 and SHP2 on the intrinsic tyrosine kinase activity and oncogenic potency of Ret with a 9-bp duplication in the cysteine-rich domain (codons 634-636), which was described in a patient with MEN type 2A recently. SHP1 and SHP2 were stably overexpressed in NIH3T3 fibroblasts together with Ret-9bp. Coexpression of SHP1 with Ret-9bp reduced the autophosphorylation of Ret-9bp by 19 +/- 7% (P = 0.01, n = 4), whereas no effect was seen with SHP2. Furthermore, Ret-9bp could be coimmunoprecipitated with SHP1 but not with SHP2 antibodies. Suppression of the Ret-9bp tyrosine kinase activity by SHP1 caused a decrease in activation of Erk2 (extracellular signal-regulated kinase) and abolished PKB/Akt (protein kinase B) phosphorylation. In addition, diminished Ret-9bp autophosphorylation led to reduced phosphorylation of the transcription factor jun-D. Finally, the inhibitory effect on Ret-9bp signaling resulted in a 40-60% reduction of [(3)H]thymidine incorporation and in reduced ability of NIH3T3 cells to form colonies in soft agar. In conclusion, the data suggest that SHP1 caused a moderate reduction of Ret autophosphorylation, which led to a strong suppression of the Ret oncogene activity.

Human papilloma virus 16 E7 oncogene does not cooperate with RET/PTC 3 oncogene in the neoplastic transformation of thyroid cells in transgenic mice.

We have previously reported that the thyroid-targeted expression of the RET/PTC3 oncogene (Tg-RET/PTC3) in transgenic mice induces follicular hyperplasia with papillary architecture, resulting in a modest increase of the thyroid gland volume, followed by the appearance of papillary carcinomas in approximately 1-year-old animals. In order to analyze the genetic alterations that may cooperate with RET/PTC3 in the development or progression of thyroid tumors, we interbred Tg-RET/PTC3 mice with Tg-E7 transgenic mice, which express the E7 oncogene of the human papilloma virus 16 in thyroid cells. Tg-E7 mice develop large colloid goiters with small papillae and well-differentiated thyroid carcinomas in older animals. Here we show that thyroid lesions in Tg-RET/PTC3-Tg-E7 double transgenics were morphologically different from those occurring in Tg-RET/PTC3 mice, while they were virtually indistinguishable from those occurring in Tg-E7 mice. In addition, the coexpression of RET/PTC3 and E7 oncogenes neither enhanced the malignant phenotype nor reduced the latency period of thyroid lesions with respect to parental transgenic lines. We conclude that the coexpression of RET/PTC3 and E7 lacks any cooperative effect in the neoplastic transformation of thyroid cells and that the E7-induced thyroid phenotype is dominant with respect to the RET/PTC3 one.

Germline sequence variant S836S in the RET proto-oncogene is associated with low level predisposition to sporadic medullary thyroid carcinoma in the Spanish population.

OBJECTIVE: The molecular basis of sporadic medullary thyroid carcinoma (MTC) remains elusive. While germline gain-of-function mutations in the RET proto-oncogene cause hereditary MTC, somatic activating RET mutations and loss of heterozygosity of markers in various chromosomal regions representing deletions of tumour suppressor genes, have been described in a variable number of sporadic MTC. A previous report suggested that the presence of a germline variant at RET codon 836 (S836S) was associated with the development of sporadic MTC and, furthermore, that the presence of S836S was highly correlated with somatic RET M918T mutation in the MTC. Thus, we sought to determine if the S836S variant would be associated with sporadic MTC from a completely different population base, that of Andalucia. DESIGN: This is a case-control study to determine whether the presence of RET germline S836S is correlated with sporadic MTC in Andalucia. PATIENTS: Thirty-two patients with sporadic MTC from the Andalucia region of Spain, serviced by our University Hospital, were ascertained throughout the period 1995-99. Sporadic MTC was defined as a lack of personal or family history suggestive of multiple endocrine neoplasia type 2 (MEN 2) and lack of germline RET mutations which define any MEN 2 subtype. A region and race matched cohort of 250 controls was also obtained. MEASUREMENTS: The frequency of the S836S allele was determined in cases and controls and compared using the standard chi-squared statistic and Fisher s exact test. RESULTS: The polymorphic allele frequency at codon 836 in the control population (18/500 chromosomes, 3.6%) differed significantly from the MTC case cohort, 9.3% of case chromosomes (six of 64 alleles, Fisher s exact test, two-tailed, P = 0.043). CONCLUSIONS: Germline RET S836S variant is associated with a two- to three-fold risk of sporadic MTC in the Spanish population, in accordance with a previous study based on German cases. Our observations suggest that this phenomenon might be universal and not limited to Germany.

Three novel mutations in the RET proto-oncogene.

Medullary thyroid carcinoma (MTC) occurs as a sporadic tumor or in connection with inherited cancer syndromes of multiple endocrine neoplasia type 2 and familial MTC. Missense RET proto-oncogene mutations and small in-frame deletions are found in most of the cases. In a significant amount of sporadic MTC cases somatic mutation at codon 918 (exon 16), or at codons 609, 611, 618, 620 (exon 10), or codons 630, 634 (exon 11) appear. We report here on three new somatic cell missense mutations of the RET proto-oncogene associated with sporadic MTC. In one tumor mutation at codon 922 TCC(Ser)-->TTC(Phe) in exon 16 was found. In another tumor two mutations at codons 639 GCA(Ala)-->GGA(Gly) and 641 GCT(Ala)-->CGT(Arg) in the exon 11 were observed. Allele-specific PCR followed by sequencing demonstrated the presence of both mutations at the same allele.

Genomic organisation of the mouse Ret proto-oncogene.

The RET proto-oncogene is involved in the development of both kidney and neural crests derived tissues. RET deleterious mutations cause hereditary neuroendocrine tumours and congenital intestinal aganglionosis. Ongoing efforts aimed at elucidating the function of this gene include expression studies in different species and in transgenic mice. As first step in the study of Ret expression in mouse, we obtained the mouse Ret genomic structure. Intron-exon boundaries were determined and sequenced, ALL introns but the first one were amplified and cloned, and exons positioned in a restriction map. Mouse and human genes comparison indicates a highly conserved genomic organisation, except for exon 21 which is not conserved in mouse. A region extending 386 bp 5 to the first exon was sequenced and compared with its human counterpart. Some features, reported for the human promoter, like the absence of TATA or CAAT boxes and a high GC content, are conserved.

RET/PTC1 oncogene signaling in PC Cl 3 thyroid cells requires the small GTP-binding protein Rho.

Thyroid papillary carcinomas are characterized by RET/PTC rearrangements that cause the tyrosine kinase domain of the RET receptor to fuse with N-terminal sequences encoded by heterologous genes. This results in the aberrant expression of a ligand-independent and constitutively active RET kinase. We analysed actin reorganization induced by the RET/PTC1 oncogene in PC Cl 3 rat thyroid epithelial cells. Differently from oncogenes Src, Ras and Raf, RET/PTC1 caused actin filaments to form prominent stress fibers. Moreover, stress fibers were identified in human thyroid papillary carcinoma cell lines harboring RET/PTC1 rearrangements but not in thyroid carcinoma cells negative for RET/PTC rearrangements. RET/MEN 2A, a constitutively active but unrearranged membrane-bound RET oncoprotein, did not induce stress fibers in PC Cl 3 cells. Induction of stress fibers by RET/PTC1 was restricted to thyroid cells; it did not occur in NIH3T3 fibroblasts or MCF7 mammary cells. RET/PTC1-mediated stress fiber formation depended on Rho but not Rac small GTPase activity. In addition, inhibition of Rho, but not of Rac, caused apoptosis of RET/PTC1-expressing thyroid cells. We conclude that Rho is implicated in the actin reorganization and cell survival mediated by the chimeric RET/PTC1 oncogene in thyroid epithelial cells, both phenotypes being cell type- and oncogene type-specific.

RET oncogene activation in papillary thyroid carcinoma.

The RET proto-oncogene encodes a cell membrane tyrosine-kinase receptor protein whose ligands belong to the glial cell line-derived neurotrophic factor. RET functions as a multicompetent receptor complex that includes alphaGFRs and RET. Somatic rearrangements of RET designated as RET/PTC (from papillary thyroid carcinoma) were identified in papillary thyroid carcinoma before RET was recognized as the susceptibility gene for MEN2. There are now at least at least 15 types of RET/PTC rearrangements involving RET and 10 different genes. RET/PTC1 and RET/PTC3 are by far the most common rearrangements. ALL of the rearrangements are due to DNA damage and result in the fusion of the RET tyrosine-kinase (RET-TK) domain to the 5 -terminal region of heterologous genes. RET/PTC rearrangements are very common in radiation-induced tumors but have been detected in variable proportions of sporadic (i.e., non-radiation associated) papillary carcinomas. It is estimated that up to approximately half the papillary thyroid carcinomas in the United States and Canada harbor RET/PTC rearrangements, most commonly RET/PTC-1, followed by RET/PTC-3 and occasionally RET/PTC-2. The cause of these rearrangements in sporadic papillary carcinomas is not known, but the close association between their presence and the papillary carcinoma phenotype indicates that they play a causative role in tumor development. The proposed mechanisms of RET/PTC-induced tumorigenesis and the clinical and pathologic implications of RET/PTC activation are discussed.

The RET/PTC oncogene is frequently activated in oncocytic thyroid tumors (Hurthle cell adenomas and carcinomas), but not in oncocytic hyperplastic lesions.

Hurthle cell adenomas and carcinomas, characterized by the presence of oncocytic cells, are unusual thyroid neoplasms, the treatment of which is still controversial. We analyzed specimens from 49 patients with oncocytic cell nodular lesions including 20 adenomas, 19 carcinomas, and 10 hyperplasias for RET/PTC (papillary thyroid carcinoma) activation, which is the most frequent genetic alteration in PTCs. RET/PTC activation was detected in a significant number of cases of Hurthle cell adenomas and carcinomas, but in 0 of 10 patients with hyperplastic nodules. In particular, the RET/PTC1 isoform was found in 7 of 12 adenomas and 4 of 7 carcinomas. These results would indicate that RET/PTC is a genetic event common to papillary carcinomas and to Hurthle cell neoplasias.

Cancers connected with mutations in RET proto-oncogene.

Germline mutations of RET proto-oncogene are connected with inherited cancer syndrome multiple endocrine neoplasia type 2. The syndrome is characterized by incidence of medullary thyroid carcinoma frequently associated with pheochromocytoma and hyperparathyroidism. Genetic testing of family members at risk significantly contributed to diagnosis and management of MEN 2. Early genetic screening for RET mutations allow to detect people who have inherited the MEN2 specific RET mutation with subsequent possibility to of prophylactic thyroidectomy. On the other hand those family members at risk of MEN 2 who had not inherited the mutation do not require further testing. The involvement of RET proto-oncogene in tumorigenesis is reviewed.

The finding of a somaticdeletion in RET exon 15 clarified the sporadic nature of amedullary thyroid carcinoma suspected to be familial.

Medullary thyroid carcinoma (MTC) occurs both sporadically and in the autosomal dominantly inherited multiple endocrine neoplasia (MEN) type 2 syndromes. The distinction between both is important for future clinical management. We report a family initially described as a familial MTC by pentagastrin stimulation test and clinical outcome, in which we found a 12 bp deletion within the catalytic domain of the protooncogene RET in the index case tumor alone. Linkage study suggests that it is a sporadic MTC. Therefore, in view of these results, in kindred with just one MTC case, borderline pentagastrin test values must be carefully assessed. In addition, this and other mutations can help us to understand some features about domains that play an important role in the normal function of this tyrosine kinase receptor and involved in MTC.

Very early detection of RET proto-oncogene mutation is crucial for preventive thyroidectomy in multiple endocrine neoplasia type 2 children: presence of C-cell malignant disease in asymptomatic carriers.

BACKGROUND: Multiple endocrine neoplasia type 2 (MEN 2) is an inherited disease caused by germline mutations in the RET proto-oncogene, and is responsible for the development of endocrine neoplasia. Its prognosis is dependent on the appearance and spread of medullary thyroid carcinoma (MTC). Relatives at risk can be identified before clinical or biochemical signs of the disease become evident. METHODS: Twenty-one families with MEN 2 (16 families with MEN 2A and 5 families with MEN 2B) were studied. Peripheral blood DNA was amplified by polymerase chain reaction. DNA sequence or restriction enzyme analysis was performed to detect mutations of RET proto-oncogene exons 10, 11, and 16. Molecular analysis was carried out in ALL index patients as well as in 98 relatives of MEN 2A patients (60 juveniles, ages 6 months to 21 years, and 38 adults, ages 22 to 81 years) and in 13 relatives (6 juveniles ages 10 to 21 years, and 7 adults ages 41 to 66 years) from MEN 2B families. RESULTS: Molecular studies showed a mutation at codon 634, exon 11 in ALL MEN 2A patients. ALL MEN 2B patients showed an ATG to ACG (Met918Thr) mutation. In MEN 2A families, 42 out of 98 relatives were affected. Total thyroidectomy was performed in 18 juvenile carriers ages 17 months to 21 years. Histopathologic studies of the glands revealed parafollicular cell (C-cell) hyperplasia in ALL of these carriers, medullary thyroid carcinoma in 15 carriers, and only one carrier with lymph node metastases. CONCLUSIONS: The consistent finding of C-cell disease in ALL the juvenile carriers who underwent preventive thyroidectomy emphasizes the relevance of early screening in children at risk of developing MTC. The presence of MTC in the specimen of prophylactic thyroidectomy from a 17 month old girl highlights the importance of thyroidectomy as soon as the molecular diagnosis is confirmed.

Germline mutation of the RET proto-oncogene in members of Slovak families with multiple endocrine neoplasia 2.

Detection of mutations in RET proto-oncogene in Slovak families from different localities and of different ethnic origin with MEN 2 syndrome is reported. Despite the fact that the same mutation of RET oncogene was found in different family members, the latency period of tumor appearance and their pathogenicity differed substantially. In addition, also different phenotypes of the disease were expressed in various family members having the same RET gene mutation. The data indicate that the mechanism of MEN2 syndrome is not only due to the RET gene mutation, and strongly support the conclusion that additional genetic events are involved in the disease formation.

Specific haplotypes of the RET proto-oncogene are over-represented in patients with sporadic papillary thyroid carcinoma.

BACKGROUND: Papillary thyroid carcinoma (PTC), which may be sporadic (95%) or familial (5%), has a prevalence adjusted for age in the general population of 1:100 000. Somatic rearrangements of the RET proto-oncogene are present in up to 66% of sporadic tumours, while they are rarely found in familial cases. PURPOSE: In order to determine if some variants of this gene, or a combination of them, might predispose to PTC, we looked for an association of RET haplotype(s) in PTC cases and in controls from four countries matched for sex, age, and population. METHODS: Four single nucleotide polymorphisms (SNPs) across the RET coding sequence were typed and haplotype frequencies were estimated. Genotype and haplotype distributions were compared among these cases and controls. RESULTS: Ten haplotypes were observed, the seven most frequent of which have been previously described in sporadic Hirschsprung patients and controls. The single locus analyses suggested association of exon 2 and exon 13 SNPs with sporadic PTC. The haplotype analysis showed over-representation of one haplotype in French and Italian sporadic PTC, whereas a different haplotype was significantly under-represented in French familial PTC. CONCLUSIONS: Our data suggest that some variants of RET and some specific haplotypes may act as low penetrance alleles in the predisposition to PTC.

Association between c135G/A genotype and RET proto-oncogene germline mutations and phenotype of Hirschsprung s disease.

BACKGROUND: Several genes, including the major susceptibility gene RET, have roles in development of Hirschsprung s disease. Results of genetic-linkage analysis of patients with familial disease with both long-segment and short-segment phenotypes have shown close linkage with the RET locus. We aimed to investigate whether both RET mutations and polymorphisms contribute to phenotype of Hirschsprung s disease. METHODS: We looked at the coding region of ALL 21 exons of the RET proto-oncogene, including the flanking intronic sequences, by direct DNA sequencing in 76 caucasians from Germany with Hirschsprung s disease. FINDINGS: 20 different mutations were detected in 18 patients. mutations were under-represented in patients with a homozygous RET c135A/A genotype in association with short-segment phenotype. Short-segment phenotype also arose if the RET mutation was on the c135A allele; conversely, a RET germline mutation on the c135G allele resulted in long-segment phenotype, particularly in heterozygous c135G/A patients. INTERPRETATION: These observations lend support to the idea that both RET alleles have a role in pathogenesis of Hirschsprung s disease, in a dose-dependent fashion. We also showed that the c135G/A polymorphism modifies the phenotype by a within-gene interaction between the c135A variant and a mutation.

A PCR-mutagenesis strategy for rapid detection of mutations in codon 634 of the ret proto-oncogene related to MEN 2A.

BACKGROUND: Multiple endocrine neoplasias type 2A (MEN 2A) is a dominantly inherited cancer syndrome. Missence mutations in the codon encoding cysteine 634 of the ret proto-oncogene have been found in 85% of the MEN 2A families. The main tumour type always present in MEN 2A is medullar thyroid carcinoma (MTC). Only 25% of ALL MTC are hereditary, and generally they are identified by a careful family history. However, some familial MTCs are not easily detected by this means and underdiagnosis of MEN 2A is suspected. METHODS: DNA samples from MEN 2A patients were amplified by PCR. The products were incubated with the restriction enzyme Bst ApI or Bgl I. The samples were loaded in non-denaturing 10% Polyacrilamyde Gel and run at 120 volts for 40 min. The gels were stained with 10 microg/ml ethidium bromide, and the bands were visualized under a UV lamp. RESULTS: We developed a PCR-mutagenic method to check the integrity of the three bases of the cysteine 634 codon. CONCLUSION: The method can be used to detect inherited mutations in MTC patients without a clear family history. The method is relatively simple to use as a routine test in these patients to decrease the underdiagnosis of MEN 2A. In addition, the assay can be used to screen affected families with any mutation in cysteine 634.

Occurrence of pheochromocytoma in a MEN2A family with codon 609 mutation of the RET proto-oncogene.

The EWS/TEC fusion protein encoded by the t(9:22) chromosomal translocation in human extraskeletal myxoid chondrosarcoma tumors is thought to participate in the tumoral process at least in part by deregulating the expression of specific target genes involved in the control of cell proliferation. In this work we show that the activation function-2 (AF2) domain of TEC is essential for the transcriptional activity of the EWS/TEC fusion protein. Significantly, deleting only the last 15 amino acids of the fusion protein, which contains 949 amino acids in its full form, results in a loss of over 70% of its transcriptional activity in transfected human chondrocyte cell lines. Point mutation analyses indicate that within the AF2 domain, amino acid residues I939, D940 and F943 ALL play a crucial role in the activity of EWS/TEC. Comparable results were obtained with the native TEC receptor. These results suggest that EWS/TEC interacts at least in part with the same transcriptional coactivators as the native TEC receptor, and that these coactivators may be involved in the tumoral process leading to human chondrosarcoma tumors.

Assessment of RET/PTC oncogene activation and clonality in thyroid nodules with incomplete morphological evidence of papillary carcinoma: a search for the early precursors of papillary cancer.

Noninvasive thyroid nodules that exhibit borderline morphological signs of papillary cancer are difficult to diagnose and we do not know if they represent papillary carcinoma precursor lesions. Forty-six such nodules were analyzed for RET activation by immunohistochemistry and, in selected cases, by reverse transcriptase-polymerase chain reaction performed on RNA extracted after laser capture microdissection (LCM) of the tumor foci with and without papillary carcinoma features and positive RET immunoreactivity. RET immunoreactivity was identified, at least focally, in 30 of 46 (65.2%) of the nodules where it closely paralleled the morphological changes. Enough RNA was obtained after LCM in seven samples. RET/PTC1 or RET/PTC3 were detected in microscopic foci with papillary carcinoma features in most of the thyroid nodules (five of seven cases). No RET/PTC1 or RET/PTC3 rearrangements were detected in areas of the same tumors that lacked the cytological alterations. Analysis of clonality in the same nodules selected for LCM demonstrated that two were monoclonal and six were polyclonal. We conclude that RET activation closely parallels the morphological changes, that it is restricted to those areas of the tumor with the cytological alterations and that it is detectable in both mono- and polyclonal tumors. Although the finding of microscopic foci indicative of papillary carcinoma in a hyperplastic or adenomatous nodule does not justify the interpretation of the entire lesion as papillary carcinoma, it is possible that such foci may precede the development of invasive papillary cancer.

Conservation of RET proto-oncogene splicing variants and implications for RET isoform function.

The RET proto-oncogene encodes a receptor tyrosine kinase required for development of the kidney and neural crest-derived cell types. Alternative splicing of the 3 exons of human RET results in three protein isoforms with distinct C-termini: RET9, RET51, and RET43. These RET isoforms show differential binding to downstream adapter molecules, suggesting they may have distinct signaling functions. We have characterized Ret 3 sequences in mouse and investigated alternative splicing of this region. We found that the organization of Ret 3 sequences is very similar to human RET. The mouse locus also has alternatively spliced C-terminal coding regions, and the sequences corresponding to RET9 and RET51 are highly conserved in both position and sequence with the human locus. Further, we compared the predicted C-terminal amino acids of RET9 and RET51 in seven vertebrate species, and found that they are well conserved. We have identified sequence encoding a putative ret43 isoform in mouse, however the predicted amino acid sequence showed low homology to human RET43. Our data suggest that RET isoforms are evolutionarily highly conserved over a broad range of species, which may indicate that each isoform has a distinct role in normal RET function.

A new identified germline mutation of the RET proto-oncogene responsible for familial medullary thyroid carcinoma in co-existence with a hyperfunctioning autonomous nodule.

Progression through the early G(1) phase of the cell cycle requires mitogenic stimulation, which ultimately leads to the activation of cyclin-dependent kinases 4 and 6 (Cdk4/6). Cdk4/6 activity is promoted by D-type cyclins and opposed by Cdk inhibitor proteins. Loss of c-myc proto-oncogene function results in a defect in the activation of Cdk4/6. c-myc(-/-) cells express elevated levels of the Cdk inhibitor p27(Kip1) and reduced levels of Cdk7, the catalytic subunit of Cdk-activating kinase. We show here that in normal (c-myc(+/+)) cells, the majority of cyclin D-Cdk4/6 complexes are assembled with p27 and remain inactive during cell cycle progression; their function is presumably to sequester p27 from Cdk2 complexes. A small fraction of Cdk4/6 protein was found in lower molecular mass catalytically active complexes. Conditional overexpression of p27 in c-myc(+/+) cells caused inhibition of Cdk4/6 activity and elicited defects in G(0)-to-S phase progression very similar to those seen in c-myc(-/-) cells. Overexpression of cyclin D1 in c-myc(-/-) cells rescued the defect in Cdk4/6 activity, indicating that the limiting factor is the number of cyclin D-Cdk4/6 complexes. Cdk-activating kinase did not rescue Cdk4/6 activity. We propose that the defect in Cdk4/6 activity in c-myc(-/-) cells is caused by the elevated levels of p27, which convert the low abundance activable cyclin D-Cdk4/6 complexes into unactivable complexes containing higher stoichiometries of p27. These observations establish p27 as a physiologically relevant regulator of cyclin D-Cdk4/6 activity as well as mechanistically a target of c-Myc action and provide a model by which c-Myc influences the early-to-mid G(1) phase transition.

Molecular Screening for RET Proto-Oncogene Mutations in a German MEN2A Pedigree.

Multiple endocrine neoplasia type 2A (MEN2A), a dominantly inherited cancer syndrome, is defined by the presence of medullary thyroid carcinoma (MTC), pheochromocytoma (pheo), and primary hyperparathyroidism (p-HPT). Along with multiple endocrine neoplasia type 2B (MEN2B) and familial medullary thyroid carcinoma (FMTC), it is associated with germline mutations of the RETproto-oncogene localized in 10q11.2. In FMTC and MEN2A, point mutations result in the substitution of one of five Cys residues in the extracellular domain of RET. In a larger pedigree from Saarland, several individuals were observed with C-cell thyroid carcinoma. We screened 16 members of this extended family by single-strand conformation polymorphism analysis (SSCP), polymerase chain reaction (PCR), followed by restriction enzyme analysis, and by sequencing the mutated regions. In 7 family members, ALL of whom had been earlier operated on because of MTC, a DNA transition from T to C was observed, causing an amino acid substitution Cys(634)Arg. Nine members of the kindred did not carry the mutation and may be excluded from yearly biochemical testing. One of these persons seems to have been unnecessarily operated on owing to a borderline pentagastrin test.

RET Proto-Oncogene and Thyroid Cancer.

The RET proto-oncogene has not only conclusively been identified as responsible for the three subtypes of the inherited cancer syndrome multiple endocrine neoplasia type 2 (MEN-2) but also shown to be involved in the molecular evolution of sporadic medullary and papillary thyroid carcinoma as well as Hirschsprung s disease. A variety of recent studies have elucidated the pathophysiological mechanisms leading to neoplastic disease and we now understand that dominant activating germline mutations lead to MEN-2A, MEN-2B, and familial MTC; somatic mutations to sporadic medullary thyroid carcinoma; RET rearrangements to papillary thyroid carcinoma; and inactivating alterations to Hirschsprung s disease. The clinical significance, however, of RET alterations especially in sporadic thyroid tumors is still controversial and therapeutic concepts in MEN-2 gene carriers only start to emerge. This article is a short summary of the recent findings on the structure and physiology of the RET proto-oncogene and its role in familial and sporadic thyroid cancer.

A novel germline point mutation, c.2304 G-->T, in codon 768 of the RET proto-oncogene in a patient with medullary thyroid carcinoma.

The RET proto-oncogene has not only conclusively been identified as responsible for the three subtypes of the inherited cancer syndrome multiple endocrine neoplasia type 2 (MEN-2) but also shown to be involved in the molecular evolution of sporadic medullary and papillary thyroid carcinoma as well as Hirschsprung s disease. A variety of recent studies have elucidated the pathophysiological mechanisms leading to neoplastic disease and we now understand that dominant activating germline mutations lead to MEN-2A, MEN-2B, and familial MTC; somatic mutations to sporadic medullary thyroid carcinoma; RET rearrangements to papillary thyroid carcinoma; and inactivating alterations to Hirschsprung s disease. The clinical significance, however, of RET alterations especially in sporadic thyroid tumors is still controversial and therapeutic concepts in MEN-2 gene carriers only start to emerge. This article is a short summary of the recent findings on the structure and physiology of the RET proto-oncogene and its role in familial and sporadic thyroid cancer.

Cell-line specific chromatin acetylation at the Sox10-Pax3 enhancer site modulates the RET proto-oncogene expression.

The RET gene is expressed with high tissue and stage specificity during development. Understanding its transcriptional regulation might provide new clues to clarify developmental mechanisms. Here we show that the histone deacetylase inhibitor sodium butyrate (NaB) increases RET transcription in cells displaying low levels of its mRNA, while it has no effect in cells expressing at high levels. Chromatin immunoprecipitation (ChIP) experiments showed increased histone acetylation within the 5 flanking [corrected] region, in particular the Sox10-Pax3 enhancer site, due to NaB. Accordingly, ChIP showed different acetylation levels at the Sox10-Pax3 site associated with cell-line specific RET transcription rates. Concluding, chromatin acetylation targeted to functional sequences in the RET regulatory region may control its transcription.

[Consequences of clinical genetic analysis of RET proto-oncogene].

Preliminary results of treatment of inherited medullary thyroid carcinoma, diagnosed primarily with genetic analysis of mutation of protooncogene RET are presented. Among 16 carriers of mutation identical with mutation diagnosed earlier in proband, there were 4 patients with clinically obvious medullary thyroid carcinoma and 12 asymptomatic carriers. In ALL patients, in whom calcitonin level was increased preoperatively, its normalization was obtained. The paper summarizes these aspects of cooperation between geneticians and physicians in which diagnostic results influence clinical decisions (indication and time of thyroid and lymph nodes surgery and it s spectrum, range of diagnostic procedures towards pheochromocytoma and parathyroid hyperplasia in relation to the found mutation).

[Proto-oncogene RET somatic mutations in medullary thyroid carcinoma].

Somatic mutations of the RET protooncogene are present in 23-68% cases of sporadic medullary thyroid carcinoma (MTC). The aim of the study was to introduce the RET somatic mutations analysis in tumor tissue as well as to evaluate their types and frequencies in postoperative specimens of MTC patients treated in the Center of Oncology in Gliwice. MATERIAL: 14 tumor tissues obtained from sporadic MTC patients and two control groups--six and four specimens from patients with MEN 2A and MEN 2B syndrome respectively. METHODS: tumor tissue DNA isolation followed by PCR amplification of RET exons 10, 11, 13, 14, 16 and automated, fluorescent sequencing of PCR products. We identified somatic mutation ATG > ACG in codon 918, exon 16 in 7 of 14 (50%) of analyzed sporadic MTC cases. We also found one deletion/insertion mutation in RET exon 11 that encompasses cysteine codon 634 and has not been published so far. The types and frequencies of found RET gene mutations were similar to previously reported. The analysis of RET somatic mutations supports the differentiation between the sporadic and inherited MTC. The presence of somatic mutation and its simultaneous absence in the germline proves sporadic type of cancer.

Papillary thyroid carcinoma in patients with RET proto-oncogene germline mutation.

The occurrence of papillary thyroid carcinoma in patients with RET germline mutations has been described in only eight cases since 1993. We report three women with a RET germline mutation in exon 13 and 14, affecting codon 790, 791, and 804, respectively, who underwent prophylactic thyroidectomy at the age of 29, 39, and 24 years, respectively. Histologic examination revealed C-cell hyperplasia and a small medullary thyroid carcinoma in the first patient and no pathologic changes of the C-cells in either of the other patients. However, ALL patients had papillary thyroid carcinoma (PTC). Concerning the frequency of PTC in patients with RET germline mutations who underwent surgery at our center (n = 104), it was found in 9.1% of ALL patients with RET mutation in codon 790, 791, and 804 (n = 33) but in none of the 104 patients with RET germline mutations not affecting codon 790, 791, or 804 (p = 0.0015). Our data and the data from the literature suggest a possible pathogenesis of PTC caused by exon 13 and 14 RET mutations that affect the intracellular domain of the encoded protein. Further investigation is necessary to confirm a potential pathogenetic role of exon 13 and 14 RET mutations with regard to the development of PTC.

A rare haplotype of the RET proto-oncogene is a risk-modifying allele in hirschsprung disease.

Hirschsprung disease (HSCR) is a common genetic disorder characterized by intestinal obstruction secondary to enteric aganglionosis. HSCR demonstrates a complex pattern of inheritance, with the RET proto-oncogene acting as a major gene and with several additional susceptibility loci related to the Ret-signaling pathway or to other developmental programs of neural crest cells. To test how the HSCR phenotype may be affected by the presence of genetic variants, we investigated the role of a single-nucleotide polymorphism (SNP), 2508C-->T (S836S), in exon 14 of the RET gene, characterized by low frequency among patients with HSCR and overrepresentation in individuals affected by sporadic medullary thyroid carcinoma. Typing of several different markers across the RET gene demonstrated that a whole conserved haplotype displayed anomalous distribution and nonrandom segregation in families with HSCR. We provide genetic evidence about a protective role of this low-penetrant haplotype in the pathogenesis of HSCR and demonstrate a possible functional effect linked to RET messenger RNA expression.

Transcriptional repression of the RET proto-oncogene by a mitogen activated protein kinase-dependent signalling pathway.

Transcription factors play important roles in regulating cell growth and differentiation. In this study, treatment of the MTC cell line, TT, with phorbol 12-myristate 13-acetate (PMA) was shown to reduce neurite outgrowth which may be associated with de-differentiation and loss of the transformed phenotype. Northern blotting revealed that PMA transiently induced early growth response gene 1 (Egr-1) expression and decreased RET expression. Transient transfection analyses using 5 -deletion constructs of the basal RET promoter, demonstrated the requirement of a region between -70 and -33 bp for PMA-inducible expression. Gel shift and supershift studies demonstrated that PMA induced Egr-1 formed part of a complex capable of binding to the RET minimal promoter. Overexpression of Egr-1 displaced both sephacryl and phosphocellulose protein 1 (Sp1) and Sp3 from a GC-box element previously found to be important for RET basal expression. Furthermore, use of a raf-1 inducible TT cell line, that has been previously shown to downregulate RET expression, revealed that this downregulation may be linked to the induction of Egr-1. Our data suggest that regulation of RET expression during development and in medullary thyroid carcinoma may be determined, at least in part, by this complex of Sp and Egr-1 proteins.

Mutation of RET gene in Chinese patients with Hirschsprung s disease.

AIM: To investigate the pathogenic mechanism of Hirschsprung s disease (HD) at the molecular level and to elucidate the relationship between RET oncogene and Chinese patients with HD. METHODS: Exon 13 of RET oncogene from 20 unrelated HD patients was analyzed with polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP). The positive amplifying products were then sequenced. According to the results of SSCP and DNA sequence, SSCP was done as well for the samples from the family other members of some cases with mutated RET gene. RESULTS: SSCP analysis indicated that mobility abnormality existed in 4 unrelated HD patients. Direct DNA sequence analysis identified a missense mutation, T to G at the nucleotide 18 888 and a frameshift mutation at the nucleotide 18 926 insG. In a HD family, the sicked child and his father were the same heterozygous missense mutation (T to G at nucleotide 18 888). CONCLUSION: Among Chinese HD patients, RET gene mutations may exist in considerable proportion with different patterns. These new discoveries indicate that RET mutations may play an important role in the pathogenesis of unrelated HD in the Chinese population. PCR-SSCP combined with DNA sequence can be used as a tool in the genetic diagnosis of HD.

High prevalence of RET proto-oncogene activation (RET/PTC) in papillary thyroid carcinomas.

OBJECTIVE: The activation of RET proto-oncogene, through different types of chromosomal translocation and inversion, is unique to papillary thyroid carcinomas (PTC) and its frequency is variable in different populations. The aim of this study was to investigate the frequency and types of PTC genetic rearrangements in papillary carcinoma in a population of Hong Kong Chinese. METHODS: The presence of RET/PTC1, RET/PTC2 and RET/PTC3 activation was analyzed by RT-PCR in twenty PTC from adult patients (age range 24-63 years), one PTC from a 12-year-old boy and anaplastic carcinomas in two adult patients. RESULTS: RET/PTC3 was the only activation of RET proto-oncogene identified in the samples. Seventeen PTC from adult patients (85%t) were positive for RET/PTC3. RET/PTC3 was also identified in PTC from the child and one of the two patients with anaplastic thyroid carcinoma. CONCLUSIONS: The prevalence of RET/PTC activation in PTC is high and RET/PTC3 is the only type of activation identified in Hong Kong Chinese and is an important genetic event underlying the development of PTC in the population.

A novel Val648Ile substitution in RET protooncogene observed in a Cys634Arg multiple endocrine neoplasia type 2A kindred presenting with an adrenocorticotropin-producing pheochromocytoma.

Multiple endocrine neoplasia type 2 (MEN 2) comprises a heterogeneous group of neoplasic disorders that most commonly have a single missense substitution of the RET protooncogene (RET) involving exons 10 and 11. It was previously reported a MEN 2A kindred in which the father presented with a rare phenotype consisting of bilateral ACTH-producing pheochromocytoma and medullary thyroid carcinoma. We recently performed mutational analysis of the father and his 4 children using a denaturing gradient gel electrophoresis approach and PCR-amplified genomic DNA, followed by direct sequencing or restriction fragment length polymorphism testing. ALL 4 children showed a RET sequence variation. The common exon 11 Cys(634)Arg RET mutation was present in 2 of the 4 children who had undergone thyroidectomy for C cell disease. The remaining 2 children, who did not harbor the Cys(634)Arg mutation and are negative for C cell and adrenal disease, carry a previously unreported Val(648)Ile missense change in RET exon 11. This novel substitution was not found in the unaffected mother or in 200 control alleles. Both RET variants were present in the father affected with MEN 2A and the unusual ACTH-producing pheochromocytoma. We speculate that the double RET mutation may have modified and contributed to the rare MEN 2A phenotype in the father.

A founding locus within the RET proto-oncogene may account for a large proportion of apparently sporadic Hirschsprung disease and a subset of cases of sporadic medullary thyroid carcinoma.

Hirschsprung disease (HSCR) is a common congenital disorder characterized by aganglionosis of the gut. The seemingly unrelated multiple endocrine neoplasia type 2 (MEN 2) is an autosomal dominant disorder characterized by medullary thyroid carcinoma (MTC), pheochromocytoma, and hyperparathyroidism. Yet, germline mutations in the RET proto-oncogene are associated with both MEN 2 and HSCR. In the former, gain-of-function mutations in a limited set of codons is found, whereas, in the latter, loss-of-function mutations are found. However, germline RET mutation is associated with only 3% of a population-based series of isolated HSCR, and little is known about susceptibility to sporadic MTC. We have found previously that specific haplotypes comprising RET coding single-nucleotide polymorphisms (SNPs) comprising exon 2 SNP A45A were strongly associated with HSCR, whereas haplotypes associated with exon 14 SNP S836S were associated with MTC. In this study, we describe three novel intron 1 SNPs, and, together with the coding SNP haplotypes, the data suggest the presence of distinct ancestral haplotypes for HSCR and sporadic MTC in linkage disequilibrium with a putative founding susceptibility locus/loci. The data are consistent with the presence of a very ancient, low-penetrance founder locus approximately 20-30 kb upstream of SNP A45A, but the failure of the SNPs to span the locus presents challenges in modeling mode of transmission or ancestry. We postulate that this founding locus is germane to both isolated HSCR and MTC but also that different mutations in this locus would predispose to one or the other.

RET proto-oncogene mutations affecting codon 790/791: A mild form of multiple endocrine neoplasia type 2A syndrome?.

BACKGROUND: In patients with multiple endocrine neoplasia type 2A syndrome, prophylactic thyroidectomy is generally recommended at the age of 5 to 6 years. Whether this recommendation is justified for exon 13 mutations is unknown. METHODS: We analyzed the clinical data from 40 patients harboring RET codon 790/791 mutations (exon 13) who had been treated in 4 specialized centers. RESULTS: Mean age was 35.2 +/- 21.6 years (range, 5.1-69.0 years). Thirteen patients were index patients (mean age, 57.7 +/- 11.3 years), 27 patients were screening patients (mean age, 24.4 +/- 16.5 years). In the index group, pT-category was: T0, n = 2; T1, n = 6; T2, n = 2; T3, n = 1; and T4, n = 2. Lymph node metastases were found in 5 patients and distant metastases in 1 patient. Postoperatively, 69% of index patients were biochemically cured. In the screening group, pT-category was: T0, n = 19; T1, n = 7; and T2, n = 1. Lymph node metastases were found in 2 patients. Postoperatively, 93% of screening patients were biochemically cured. The youngest patient with medullary thyroid carcinoma was 13.8 years, the youngest patient with lymph node metastases was 46.4 years. CONCLUSIONS: Patients with RET codon 790/791 mutations seemed to have a less aggressive clinical course compared with patients with classic multiple endocrine neoplasia type 2A syndrome. Still, index patients had a lower biochemic cure rate in comparison with screening patients. Timely total thyroidectomy including lymph node dissection is warranted.

A new therapeutic approach in medullary thyroid cancer treatment: inhibition of oncogenic RET signaling by adenoviral vector-mediated expression of a dominant-negative RET mutant.

BACKGROUND: mutations in the RET proto-oncogene that result in constitutive tyrosine kinase activity are the underlying cause for the development of medullary thyroid cancer (MTC). To investigate an alternative strategy in MTC treatment, we took advantage of a dominant-negative RET (dn-RET) mutant, Ret(51)HSCR32, which inhibits oncogenic signal transduction by retaining the oncogenic RET protein in the endoplasmic reticulum, thereby reducing the amount of oncogenic RET protein from the cell surface. METHODS; We constructed an adenoviral (Ad) vector expressing dn-RET under control of the C-cell specific synthetic calcitonin promoter TSE2.CP1 (AdTSE2.CP1-RET(51)HSCR32) and investigated the effect of dn-RET on cell growth of MTC-derived TT cells. RESULTS: Analysis of the subcellular localization of endogenous oncogenic RET protein showed a significant dominant-negative effect of Ad vector-delivered dn-RET in TT cells, resulting in a strong inhibition of cell viability. The observed effect is partially dependent on growth inhibition and possibly apoptosis induction. CONCLUSIONS: In the present study, growth of human MTC cells was successfully inhibited by Ad vector-mediated delivery of RET(51)HSCR32, suggesting that inhibition of oncogenic RET receptor tyrosine kinase expression by a dn-RET mutant might be a powerful approach for in vivo therapy of MTC.

ZD6474, an orally available inhibitor of KDR tyrosine kinase activity, efficiently blocks oncogenic RET kinases.

RET/papillary thyroid carcinoma (PTC) oncogenes, generated by recombination of the tyrosine kinase-encoding domain of RET with different heterologous genes, are prevalent in papillary carcinomas of the thyroid. Point mutations of RET cause multiple endocrine neoplasia type 2 (MEN2) familial cancer syndrome and are found in sporadic medullary thyroid carcinomas. Here, we show that ZD6474, a low molecular weight tyrosine kinase inhibitor, blocks the enzymatic activity of RET-derived oncoproteins at a one-half maximal inhibitory concentration of 100 nM. ZD6474 blocked in vivo phosphorylation and signaling of the RET/PTC3 and RET/MEN2B oncoproteins and of an epidermal growth factor (EGF)-activated EGF-receptor/RET chimeric receptor. RET/PTC3-transformed cells-treated ZD6474 lost proliferative autonomy and showed morphological reversion. ZD6474 prevented the growth of two human PTC cell lines that carry spontaneous RET/PTC1 rearrangements. Finally, it blocked anchorage-independent growth of RET/PTC3-transformed NIH3T3 fibroblasts and the formation of tumors after injection of NIH-RET/PTC3 cells into nude mice. Thus, targeting RET oncogenes with ZD6474 might offer a potential treatment strategy for carcinomas sustaining oncogenic activation of RET.

Association of germline mutations and polymorphisms of the RET proto-oncogene with idiopathic congenital central hypoventilation syndrome in 33 patients.

Translocation t(11;22) is a karyotypic abnormality detected in over 90% of Ewing s family tumors. This translocation results in the EWS-Fli1 fusion gene, which has been shown to be a potent, single-step transforming gene. We reported previously that suppression of the EWS-Fli1 fusion protein altered the expression of G(1) regulatory cyclins and cyclin-dependent kinase inhibitors both at mRNA and protein levels, resulting in G(1) growth arrest in Ewing s family tumor cell lines. These data suggest that the G(1) regulatory molecules may be targets of the EWS-Fli1 fusion protein, which functions as an aberrant transcription factor. By using electrophoretic mobility shift assays, we show here the direct association of EWS-Fli1 fusion protein with ETS consensus sequences, which are in the promoter of the p21(WAF1/CIP1) gene. Reporter gene assays revealed that the activity of the p21(WAF1/CIP1) promoter is negatively regulated by EWS-Fli1 fusion protein through at least two ETS-binding sites in the promoter. EWS-Fli1 interacted with p300 cotransactivator and suppressed its histone acetyltransferase activity, which may explain the down-regulation of p21(WAF1/CIP1) by EWS-Fli1. In the presence of a histone deacetylase inhibitor, the histone acetyltransferase activity of the Ewing s family tumor cell was recovered resulting in the induction of p21, and the cell growth was dramatically inhibited. These results demonstrated that p21(WAF1/CIP1) might be one of the direct targets of EWS-Fli1, and that p21(WAF1/CIP1) could serve as a target for a molecularly based therapy for Ewing s family tumors.

[Genetic tests in oncology practice with emphasis on the RET oncogene and VHL tumor suppressor gene].

Molecular oncogenetics is the study of two distinct gene classes participating in the pathogenesis of malignant diseases: proto-oncogenes and tumour suppressors genes. Stepwise alterations in their structure are the basis of malignancy. Structural abnormalities range widely: gross genetic rearrangements including insertions, deletions, gene amplifications and single nucleotide deleotide deletions and substitutions. These gene alterations are determined by gene testing that increasingly are part of clinical diagnosis. Among many applications of oncogene testing is detection of hereditary forms of malignant disease with outstanding prophylactic and therapeutic importance. Along this line, gene testing provided for effective prevention of specific hereditary tumour types. Analysis of hereditary pheochromocytoma two gene tests are established: detection of multiple endocrine neoplasia type 2 (MEN 2) using mutational analysis of RET gene and detection of von Hippel-Lindau syndrome using mutational analysis of VHL gene. These genes were characterized about a decade ago and their structure determined in detail. Numerous studies focus on expression of these genes in different tissues and the function of respective proteins. In extensive epidemiology the following facts are established: hereditary mutations in the RET gene in > 92% of cases with MEN 2 syndrome while in patients with von Hippel-Lindau syndrome hereditary mutations were detected in VHL gene in > 95% of cases. Such a high genotype--phenotype correlation forms the basis for clinical applications. Gene testing in oncology offers numerous advantages. If a patient with pheochromocytoma presents with hereditary mutation in the RET or VHL gene, family gene testing is recommended. Family member with hereditary gene mutation is indicative of the risk level of nearly 100% for MEN 2 or von Hippel-Lindau syndrome. In such cases surgery is warranted (e.g. in MEN 2 total thyroidectomy by the age of (6). Negative findings in this type of gene testing relive family members from enormous psychological tension and provide them with normal family planning. There are many reasons to believe that this type of gene testing is the foundation of diagnosis for the 3rd millennium. Namely, results of gene testing may provide basis for effective prevention: mutations causative for a disease may be detected, presymptomatically and prenatally; the analysis requires only couple of mL of blood, and mutational status is determined only once in a lifetime.

RET oncogene mutations in medullary thyroid carcinoma in Mexican families.

BACKGROUND: Different RET oncogene mutations have been found to be associated with inherited medullary thyroid carcinoma (MTC) in the context of three different syndromes including multiple endocrine neoplasia types 2A (MEN 2A) and 2B (MEN 2B) and familial medullary thyroid carcinoma (FMTC). These mutations have been recorded in different populations, but to date there is no corresponding study in Mexican families. Our purpose was identification of RET mutations in Mexican families with inherited or sporadic MTC (SMTC) and search for RET protein expression as prognostic marker in MTC tumors. METHODS: Nine unrelated families with MTC corresponding either to two MEN 2A, three MEN 2B, or four SMTC were studied. Screening of exons 10, 11, and 13-16 of RET oncogene in DNA from circulating lymphocytes and tumor samples were analyzed. Immuno- staining for RET was performed in the corresponding tumor. RESULTS: Germline 918 ATG-->ACG RET mutation was present in three unrelated MEN 2B individuals and corresponding somatic mutation in one individual with SMTC; 634 TGC-->TTC RET mutation was detected in two related patients in an MEN 2A family and the 634 TGC-->TAC RET mutation was detected in 12 related individuals from a second MEN 2A family. RET protein expression was detected in ALL MTC tumors showing different staining intensity. CONCLUSIONS: RET mutations found in Mexican patients with MTC are similar to those previously reported in several MTC families worldwide. This indicates that RET mutations are highly conserved and that MTC etiology does not depend to a great extent on environmental factors or ethnic differences. Detection of RET protein in MTC tissue sections is not useful as prognostic marker.

Expression of RET in follicular cell-derived tumors of the thyroid gland: prevalence and implication of morphological type.

expression of the wild-type RET proto-oncogene has been observed in non-medullary, follicular cell-derived tumors (FCDT), but the relation with the histopathological features has not been fully demonstrated. To assess the expression of RET and protein products in relation to morphological types of FCDT, including follicular adenoma (FA), papillary carcinoma (PTC), follicular carcinoma (FTC) and anaplastic carcinoma (AnC), 58 non-neoplastic and neoplastic samples using pathological paraffin sections by immunohistochemistry (IHC), reverse transcriptase-polymerase chain reaction (RT-PCR) and laser capture microdissection (LCM) methods were analyzed. expression of RET proto-oncogene was detected in 27.3% of FCDT by IHC and 25.5% by RT-PCR using a primer set at a regular break point. The present study also found higher expression ratios of RET in FA (50.0%) and the follicular variant of PTC (50.0%), in contrast to FTC (20.0%), ordinary PTC (20.0%) and poorly differentiated or AnC (14.3%) by RT-PCR. One patient with PTC showed a discrepancy in the results by RT-PCR using a different primer set at the C-terminus of RET. The study found that the RET proto-oncogene is often stimulated in FCDT, not only in PTC but also in follicular tumors (FA and FTC), and may contribute to tumorigenesis of these tumors.

Pediatric medullary carcinoma of the thyroid with point mutation of RET proto-oncogene associated with multiple endocrine neoplasia and initially diagnosed by fine-needle aspiration biopsy.

A 7-year-old girl presented with a thyroid mass, elevated serum levels of calcitonin and carcinoembryonic antigen, as well as multiple mucosal nodules in the upper lip and tongue. Cytologic material obtained by fine-needle aspiration biopsy from the thyroid mass was diagnosed as medullary carcinoma and confirmed by immunohistochemical studies in the cell-block sections. Subsequent histopathologic examination showed involvement of both thyroid lobes by medullary carcinoma, and electron microscopic studies further confirmed the diagnosis. Molecular studies showed a point mutation in amino acid 918 in exon 16 of the RET proto-oncogene. Biopsies from the upper lip and tongue showed mucosal neuromas. Fine-needle aspiration biopsy is frequently used in the initial evaluation of thyroid nodules. This case illustrates the value of fine-needle aspiration biopsy as a safe and accurate diagnostic modality in the workup of pediatric thyroid nodules. Fine-needle aspiration biopsy should always be considered for the investigation of thyroid nodules in pediatric patients.

Efficient inhibition of RET/papillary thyroid carcinoma oncogenic kinases by 4-amino-5-(4-chloro-phenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine (PP2).

Inappropriate activation of the RET receptor tyrosine kinase causes development of papillary and medullary thyroid cancer. We have previously shown that pyrazolopyrimidine is a potent inhibitor of the RET kinase. Here, we show that 4-amino-5-(4-chloro-phenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine) (PP2), another pyrazolopyrimidine, blocks the enzymatic activity of the isolated RET kinase and RET/PTC1 oncoprotein at IC(50) in the nanomolar range. PP2 blocked in vivo phosphorylation and signaling of the RET/PTC1 oncoprotein. PP2 prevented serum-independent growth of RET/PTC1-transformed NIH3T3 fibroblasts and of TPC1 and FB2, two human papillary thyroid carcinoma cell lines that carry spontaneous RET/PTC1 rearrangements. Finally, PP2 blocked invasion of type I collagen matrix by TPC1 cells. Thus, pyrazolopirimidines hold promise for the treatment of human cancers sustaining oncogenic activation of RET.

Conditional expression of RET/PTC induces a weak oncogenic drive in thyroid PCCL3 cells and inhibits thyrotropin action at multiple levels.

Chromosomal rearrangements linking the promoter(s) and N-terminal domain of unrelated gene(s) to the C terminus of RET result in constitutively activated chimeric forms of the receptor in thyroid cells (RET/PTC). RET/PTC rearrangements are thought to be tumor-initiating events; however, the early biological consequences of RET/PTC activation are unknown. To explore this, we generated clonal lines derived from well-differentiated rat thyroid PCCL3 cells with doxycycline-inducible expression of either RET/PTC1 or RET/PTC3. As previously shown in other cell types, RET/PTC1 and RET/PTC3 oligomerized and displayed constitutive tyrosine kinase activity. Neither RET/PTC1 nor RET/PTC3 conferred cells with the ability to grow in the absence of TSH, likely because of concomitant stimulation of both DNA synthesis and apoptosis, resulting in no net growth in the cell population. Effects of RET/PTC on DNA synthesis and apoptosis did not require direct interaction of the oncoprotein with either Shc or phospholipase Cgamma. Acute expression of the oncoprotein decreased TSH-mediated growth stimulation due to interference of TSH signaling by RET/PTC at multiple levels. Taken together, these data indicate that RET/PTC is a weak tumor-initiating event and that TSH action is disrupted by this oncoprotein at several points, and also predict that secondary genetic or epigenetic changes are required for clonal expansion.

Prophylactic thyroidectomy in multiple endocrine neoplasia: the impact of molecular mechanisms of RET proto-oncogene.

BACKGROUND: Multiple endocrine neoplasia (MEN) type 2, a cancer syndrome inherited in the dominant fashion, is defined by the occurrence of medullary thyroid carcinoma (MTC), either as a singular lesion (familial medullary thyroid carcinoma, FMTC) or with the variable expression of pheochromocytoma, hyperparathyroidism (MEN 2A), ganglioneuromas, buccal neuromas and Marfanoid-like phenotype (MEN 2B). DISCUSSION: Germline mutations of the RET proto-oncogene, localized on chromosome 10q11.2, have been identified as the underlying genetic cause of the disorder. In the majority of patients with MEN 2A/FMTC missense mutations at exon 10 or exon 11 are identifiable. Cysteine to arginine exchange at codon 634 is the mutation most frequently found. In MEN 2B approximately 95% of patients present with a mutation at codon 918 (exon 16). Additionally, less frequent mutations in other codons have been found in both syndromes. The DNA-based genotype analysis enables the identification of gene carriers at risk of developing MTC and offer them prophylactic thyroidectomy prior to development of any thyroid pathologies. Prophylactic surgery is generally recommended for MEN 2A/FMTC gene carriers at the age of 4-6 years. Due to the aggressiveness of the MEN 2B syndrome gene carriers should be operated by the age of 1 year. Presumably some less virulent mutations allow postponement of the prophylactic treatment to the second to fourth decade of life. CONCLUSIONS: Compared to standard presymptomatic biochemical screening, genetic testing and consecutive prophylactic treatment contribute to better outcome of individuals at risk for MTC.

Cys611Ser mutation in RET proto-oncogene in a kindred with medullary thyroid carcinoma and Hirschsprung s disease.

Germline mutations in the RET proto-oncogene are responsible for the development of human hereditary diseases, including multiple endocrine neoplasia (MEN) type 2A and 2B, familial medullary thyroid carcinoma (FMTC), and Hirschsprung s disease (HSCR). It has been reported that some families developed both MEN 2A/FMTC and HSCR, in which a mutation in a cysteine residue at codon 609, 618, or 620 in the RET gene was present. Here we report a novel RET mutation detected in a Japanese family with medullary thyroid carcinoma and HSCR. A germline mutation in cysteine 611 of the RET gene was identified in this family, which introduced an amino-acid change from cysteine to serine. By biological and biochemical analyses of mutant RET proteins, we previously predicted the potentiality that amino-acid substitution for cysteine 611 as well as cysteines 609, 618, and 620 would promote the development of MEN 2A/FMTC and HSCR. This clinical case substantiates our suggestion for the mechanism of the development of both the diseases.

[A case report and pedigree study of a single point mutation in RET proto-oncogene and type 2B multiple endocrine neoplasia].

OBJECTIVE: To determine the relationship between a single point mutation in RET proto-oncogene and the occurrence of multiple endocrine neoplasia type 2B (MEN-2B) in a Chinese pedigree. METHODS: We used the methods of polymerase chain reaction (PCR), reverse transcriptase polymerase chain reaction (RT-PCR) and direct gene sequencing of PCR products by an automated DNA sequencer to scan the entire exon 16 of RET proto-oncogene in the tumor (c)DNA from one patient with MEN-2B and the leukocyte DNA from this patient and both of his parents. RESULTS: We found the same mutation Met(ATG)-->Thr(ACG) at codon 918 in exon 16 of RET proto-oncogene in both the tumor (c)DNA and leukocyte DNA of the MEN-2B patient in the form of homozygous missense mutation, but there was no corresponding mutation in leukocytes DNA of his parents. CONCLUSION: We propose that in Chinese population, the point mutation M918T is also associated with the onset of MEN-2B and this case of MEN-2B is sporadic. Thus it may provide a genetic basis for the early diagnosis and treatment of patients suffering from MEN-2B and their at-risk family members in Chinese population.

Allelic loss of DNA locus of the RET proto-oncogene in small cell lung cancer.

We analyzed ALL 21 exons of the RET proto-oncogene of paired genomic DNA from tumors and normal tissues in 12 small cell lung cancer (SCLC) patients for the presence of genetic alteration. Polymerase chain reaction single-strand conformation polymorphism analysis and direct sequencing revealed that heterozygosity of the RET proto-oncogene was lost in the tumor tissues of six patients out of eight informative SCLC patients, although point mutation was not evident in any tumors. These results suggest that a deletion of the chromosomal region including the RET proto-oncogene is involved in the pathogenesis of SCLC.

Antitumor capacity of a dominant-negative RET proto-oncogene mutant in a medullary thyroid carcinoma model.

Gain-of-function mutations in the RET proto-oncogene resulting in a constitutively active receptor tyrosine kinase have been identified as responsible for three subtypes of multiple endocrine neoplasia type 2 (MEN-2) and the development of sporadic medullary and papillary thyroid carcinoma. An important strategy in cancer gene therapy is the inhibition of oncogenic signal transduction by interfering with the molecular mechanisms of activation. In the present study, we tested the therapeutic capacity of an adenovirus expressing a dominant-negative (dn) RET mutant, RET(51).flag, under the control of a synthetic C cell-selective calcitonin promoter (TSE2.CP1) against human medullary thyroid cancer (MTC). Infection of human MTC-derived TT cells with Ad-TSE2.CP1-dn-RET(51).flag resulted in the accumulation of immature RET protein in the endoplasmic reticulum and a strong reduction of oncogenic RET receptor on the cell surface, indicating that RET(51).flag exhibits a dominant-negative effect over endogenous oncogenic protein. Analysis of potential downstream mechanisms associated with the inhibition of oncogenic RET signaling by overexpression of mutant RET(51).flag revealed a significant loss of cell viability in TT cells due to the induction of apoptosis. Finally, we examined the antitumor activity of the dominant-negative RET approach in vivo. Inoculation of Ad-TSE2.CP1- dn-RET(51).flag-expressing MTC cells into nude mice led to complete suppression of tumor growth. Moreover, a single intratumoral injection of Ad-TSE2.CP1-dn-RET(51).flag into established thyroid tumors resulted in prolonged survival of treated mice compared with the controls. Our data suggest that adenoviral delivery of dn-RET(51).flag may be a reliable strategy of effective molecular intervention for RET oncogene-related MTC.

The Ret proto-oncogene in the WAG/Rij rat strain: an animal model for inherited C-cell carcinoma?.

WAG/Rij rat strain has been suggested as an animal model for the study of inherited human medullary thyroid carcinoma (MTC), due to its high incidence of spontaneous C-cell thyroid tumours. Although the role of the Ret proto-oncogene mutations, as responsible for human MTC, is well established, nothing has been published concerning this putative animal model. Based upon the previously reported rat Ret sequence, exons 10, 11, 13, 14, 15, and 16, known to carry activating mutations in humans, have been analysed in the WAG/Rij rat by PCR, single strand conformational polymorphism (SSCP) and direct sequencing. Neither the germline nor MTC samples showed any Ret sequence difference in the exons when analysed in comparison to a non-MTC-susceptible rat strain. Our results indicate that Ret exons relevant in humans are not involved in WAG/Rij rat MTC, as expected, and this questions the validity of this strain as a model for the human disease, and suggests there must be additional mechanisms for the genesis and progression of rat MTC.

Novel intronic polymorphisms in the RET proto-oncogene and their association with Hirschsprung disease.

Germline mutations of the RET proto-oncogene have been found in familial and sporadic forms of Hirschsprung disease (HSCR), but also in the autosomal dominantly inherited multiple endocrine neoplasia type 2 (MEN2) syndromes, which comprise the medullary thyroid carcinoma (MTC) as an obligatory feature. Besides mutations various polymorphisms of the RET proto-oncogene are associated with the HSCR. In this study, we have characterized seven intronic RET polymorphisms (IVS2+9G>A, IVS4+48A>G, IVS12+47C>T, IVS14-24G>A, IVS19+47T>C, IVS20+96C>T, 3 UTR+124A>G) and investigated these variants by DNA sequencing in populations of 76 HSCR patients and 40 sporadic MTC patients as well as in a control population. Variants of four of these seven polymorphisms have a strong association with the HSCR phenotype. In contrast, none of the investigated polymorphisms show a significant difference in the genotype distribution and the allele frequencies in patients with sporadic MTC when compared to controls. These findings support the hypothesis that specific RET haplotypes cause or modify the HSCR phenotype.

Tyrosine kinase oncoprotein, RET/PTC3, induces the secretion of myeloid growth and chemotactic factors.

Differentiated thyroid carcinomas are the most frequent endocrine neoplasms, but account for few cancer-related deaths. Although the indolent growth of these cancers correlates well with longevity, the biological basis for this good prognosis is not known. In contrast, two of the most frequent autoimmune diseases involve the thyroid suggesting a high propensity for this organ to invoke destructive immunity. Unfortunately, the mechanism linking malignancy and autoimmunity is not clear, although the expression of the oncogenic fusion protein RET/PTC3 (RP3) in both of these disorders may provide a clue. Interestingly, the signaling caused by activated RET kinase involves overlapping pathways and some common to the inflammatory response. Accordingly, we analyzed the function of RP3 and a mutant RP3 molecule to induce proinflammatory pathways in thyroid epithelial cells. Indeed, we find that RP3 alone causes increases in nuclear NF-kappaB activity and secretion of MCP-1 and GM-CSF. Finally, transfer of RP3-expressing thyrocytes into mice in vivo attracted dense macrophage infiltrates, which lead to rapid thyroid cell death. Further, cytokine synthesis and inflammation was largely abrogated by mutation of RP3 Tyr588; an important protein-binding site for downstream signaling. Together, these studies implicate oncogene-induced cytokine-signaling pathways in a new mechanism linking inflammation with cancer.

[Analysis of mutations in the RET proto-oncogene in patients with medullary thyroid tumor].

The spectrum of mutations of the RET protooncogene was analyzed in Russian patients with inherited or sporadic medullary thyroid carcinoma (MTC). Four RET exons (11, 13, 15, and 16) were subjected to molecular analysis, and mutations were revealed and identified in 47.4% (9/19) patients with sporadic MTC. In total, six mutations (including three new ones) were observed. The most common mutation affected codon 918 to cause substitution of methionine with threonine and accounted for 31.6% alleles. Analysis of exons 11 and 16 revealed four mutations in patients with inherited multiple endocrine neoplasia type 2 (MEN 2). mutations were found in each patient. Thyroidectomy was performed in four asymptomatic carriers of RET mutations from three MET 2A families (in two families, affected relatives had bilateral pheochromocytoma). In two patients, analysis of the surgery material revealed MTC microfoci in both lobes of the thyroid gland. The results provide the ground for constructing a bank of genetic information on Russian MTC patients with the clinically verified diagnosis.

Within-gene interaction between c.135 G/A genotypes and RET proto-oncogene germline mutations in HSCR families.

Hirschsprung disease (HSCR) is considered a model for a complex inheritance disorder. Several genes, including the major HSCR-susceptibility RET proto-oncogene, play an aetiological role in the development of HSCR. Genetic linkage analysis in familial HSCR with both long- and short-segment phenotypes has demonstrated a tight linkage to the RET locus, while the phenotype within a HSCR family is characterised by an incomplete penetrance or a variable extension of the aganglionosis. Therefore, additional genetic alterations of RET are postulated in the aetiology or modification of the HSCR phenotype. In this study, the coding region of ALL 21 exons of the RET proto-oncogene, including the flanking intronic sequences, were investigated by direct DNA sequencing in a HSCR population. We genotyped the c.135 G/A polymorphism and resolved haplotypes comprising the mutation locus and the c.135 G/A polymorphism. Twenty different mutations were detected in 18 of 76 HSCR patients. In ten families the mutations were inherited from the parents, while only four patients had a positive family history for the disease. Moreover, in ALL ten families an incomplete penetrance of the HSCR phenotype was observed. We have investigated the effect of the non-mutated wild-type allele as well as the c.135 G/A polymorphism on the phenotype within the HSCR families. Our findings support the notion that both RET alleles are involved in the pathogenesis of a subgroup of HSCR patients in a dose-dependent fashion. Additionally, we have shown a modifying effect of the c.135 G/A polymorphism on the HSCR phenotype within HSCR families.

Inactivation of Ret/Ptc1 oncoprotein and inhibition of papillary thyroid carcinoma cell proliferation by indolinone RPI-1.

Genetic alterations causing oncogenic activation of the RET gene are recognized as pathogenic events in papillary and medullary thyroid carcinomas. Inhibition of Ret oncoprotein functions could thereby represent a specific therapeutic approach. We previously described the inhibitory activity of the 2-indolinone derivative RPI-1 (formerly Cpdl) on the tyrosine kinase activity and transforming ability of the products of the RET/PTC1 oncogene exogenously expressed in murine cells. In the present study, we investigated the effects of RPI-1 in the human papillary thyroid carcinoma cell line TPC-1 spontaneously harboring the RET/PTC1 rearrangement. Treatment with RPI-1 inhibited cell proliferation and induced accumulation of cells at the G2 cell cycle phase. In treated cells, Ret/Ptc1 tyrosine phosphorylation was abolished along with its binding to Shc and phospholipase C(gamma), thereby indicating abrogation of constitutive signaling mediated by the oncoprotein. Activation of JNK2 and AKT was abolished, thus supporting the drug inhibitory efficacy on downstream pathways. In addition, cell growth inhibition was associated with a reduction in telomerase activity by nearly 85%. These findings in a cellular context relevant to the pathological function of RET oncogenes support the role of Ret oncoproteins as useful targets for therapeutic intervention, and suggest RPI-1 as a promising candidate for preclinical development in the treatment of thyroid tumors expressing RET oncogenes.

Single nucleotide polymorphic alleles in the 5 region of the RET proto-oncogene define a risk haplotype in Hirschsprung s disease.

Molecular dynamics simulations of an atomic model of the transmembrane domain of the oncogenic ErbB2 receptor dimer embedded in an explicit dimyristoylphosphatidylcholine (DMPC) bilayer were performed for more than 4 ns. The oncogenic Glu mutation in the membrane spanning segment plays a major role in tyrosine kinase activity and receptor dimerization, and is thought to be partly responsible for the structure of the transmembrane domain of the active receptor. MD results show that the interactions between the two transmembrane helices are characteristic of a left-handed packing as previously demonstrated from in vacuo simulations. Moreover, MD results reveal the absence of persistent hydrogen bonds between the Glu side chains in a membrane environment, which raise the question of the ability for Glu alone to stabilize the TM domain of the ErbB2 receptor. Interestingly the formation of the alpha-pi motif in the two ErbB2 transmembrane helices confirms the concept of intrinsic sequence-induced conformational flexibility. From a careful analysis of our MD results, we suggest that the left-handed helix-helix packing could be the key to correctly orient the intracellular domain of the activated receptor dimer. The prediction of such interactions from computer simulations represents a new step towards the understanding of signaling mechanisms.

Identification and analysis of the ret proto-oncogene promoter region in neuroblastoma cell lines and medullary thyroid carcinomas from MEN2A patients.

The human ret proto-oncogene (proto-ret), encoding a receptor tyrosine kinase, is highly expressed in neuroblastomas, medullary thyroid carcinomas (MTCs) and pheochromocytomas, which are ALL tumors of cells originating from the neural crest. In studies on the transcription mechanism of proto-ret, we identified the transcription start site and the promoter region by chloramphenicol acetyl transferase (CAT) assay. A sequence upstream from the transcription start site (-167 to +98 bp) showed definite promoter activity in both proto-ret mRNA-positive neuroblastoma NB39-nu cells and proto-ret mRNA-negative HeLa cells. The promoter sequence had a high GC content and contained four tandemly repeated GC boxes without a TATA box. Putative binding sequences for SP-1, AP-2 and epidermal growth factor receptor-specific transcription factor (ETF) and also the transcription-suppressing factor, GC factor (GCF), were found in the repeated GC box region. Southern blot analysis of DNAs of neuroblastoma cell lines and primary MTCs showed that the high proto-ret expression in these tumors is not caused by gross genetic changes in the promoter region, suggesting the possible involvement of a region(s) other than the sequence from -167 to +98 bp or a minor genetic change(s) in the promoter region.

Expression of the ret proto-oncogene in human medullary thyroid carcinomas and pheochromocytomas of MEN 2A.

We studied the expression of the ret proto-oncogene (proto-ret) in human medullary thyroid carcinomas (MTCs) and pheochromocytomas of multiple endocrine neoplasia type 2A (MEN 2A) by Northern blot analysis. expression of the normal-sized transcripts was detected in ALL 12 MTCs and in 6 of 8 pheochromocytomas. In situ localization of proto-ret mRNA revealed that the signal was confined to the cytoplasm of MTC cells. By Southern blot analysis neither amplification nor gross genetic changes of proto-ret were found in the tumors. Although no transcripts were detected in the normal portion of the thyroid from one MEN 2A patient, faint signals were detected in normal adrenal glands by Northern blot analysis, probably due to minor populations of C-cells and chromaffin cells in specimens from which MTC and pheochromocytoma might later develop. Proto-ret may play an important role in differentiation of a specific cell lineage from neuroectoderm, and it may be involved in development of MEN 2A tumors.

The ret oncogene can induce melanogenesis and melanocyte development in Wv/Wv mice.

We recently reported the establishment of transgenic mouse lines carrying the mouse metallothionein/ret fusion gene in which severe melanosis and melanocytic tumors developed. In the present study, we demonstrate that a significant number of pigmented hairs developed in Wv/Wv mice crossed to one of the transgenic mouse lines. The pigmented hair of Wv/Wv mice carrying the ret oncogene did not lose color during aging and reappeared after shaving, indicating that the melanocytes in the hair follicle function. The melanocytic tumors also developed in these mice, although the incidence was lower than that in the wild transgenic mice. Furthermore, the neutral tube culture of mouse embryos indicated that neural crest cells of the transgenic mice gave rise to a cell population that autonomously produced melanin even in the absence of melanocyte stimulating hormone. These results strongly suggested that the introduced ret oncogene could compensate for the defect of c-kit in Wv mice during both embryogenesis and postnatal life and induce a high level of melanin synthesis in the process of melanocyte development.

Identification of the product of two oncogenic rearranged forms of the RET proto-oncogene in papillary thyroid carcinomas.

In papillary thyroid carcinomas, we have identified two tumor-specific rearrangements of the RET proto-oncogene leading to the formation of different transforming fusion products sharing the tyrosine kinase (tk) domain of the proto-oncogene and designated ptc-1 and ptc-2. We have analysed ptc-1 and ptc-2 products by immunoprecipitation with specific anti-RET antibodies followed by immunoblotting with the same reagent or with antibodies specific for phosphotyrosine (P-tyr) residues. The anti-RET antibodies were reactive with 64-kDa (p64ptc-1) and 81-kDa (p81ptc-2) proteins from lysates of ptc-1 and ptc-2 transformed cells, respectively, and identified two proteins of 140 kDa and 160 kDa from extracts of SK-N-SH, a neuroblastoma cell line previously shown to express two differently glycosylated forms of the normal RET product. The anti P-tyr antibodies, while detecting the same p64ptc-1 and p81ptc-2 proteins from ptc-1 and ptc-2 extracts, did not show any specific band in the neuroblastoma lysates. An additional set of experiments led us to conclude that, whereas the normal product of the RET proto-oncogene is a membrane-associated receptor-like molecule not intrinsically phosphorylated on tyrosine, both oncogenic forms of RET, ptc-1 and ptc-2, are constitutively phosphorylated on tyrosine, display an in vitro autophosphorylation activity, are translocated from the membrane to the cytoplasm and are apparently unaffected by protein kinase C modulation.

[Association of deletions of the RET proto-oncogene wtih aggressive course of sporatic C-cell carcinoma].

A growing number of reports describing the association of certain deletions within exon 11 of the RET proto-oncogene with aggressive courses of medullary thyroid carcinoma, point to a potential prognostic relevance of molecular features in the sporadic tumor, analogous to the hereditary variant.

Detection of mutations in RET proto-oncogene codon 634 through double tandem hybridization.

We developed a procedure to detect the 7 point mutations at Cys634 of the proto-oncogene RET, which is responsible for medullary thyroid carcinoma (MTC). Genomic DNA was prepared from blood samples obtained from normal and MTC-affected individuals belonging to a family with a history of the disease. The RET genotype for each individual was first established by performing restriction and sequencing analyses. Single-stranded target DNA was prepared by asymmetric polymerase chain reaction (PCR) amplification of a 93-bp fragment containing Cys634. The target was annealed with pairs of prelabeled stacking oligonucleotides designed to create appropriate 7-nucleotide gaps, which served as the sites of subsequent hybridization with glass-immobilized 7-mer probes. The target-stacking oligonucleotide duplexes were hybridized with DNA chips containing a set of eight 7-mer probes designed to detect the wild-type sequence and the seven point mutations described. We tested two sets of immobilized probes containing internal or 5 -terminal codon-634 single-base variations. Both groups of probes were able to discriminatively identify the mutations. The hybridization patterns indicated that the disease in this family was due to the C634Y mutation, in accord with the original sequence analysis. The hybridization-based mutation assignment was additionally supported by determination of the control homozygous and heterozygous hybridization patterns produced with synthetic targets having the normal or codon 634 mutant sequences. The effects of mismatch type and nearest-neighbor sequences on the occurrence of false-positive (mismatched) hybridizations are discussed.

Detection of RET oncogene activation in human papillary thyroid carcinomas by in situ hybridisation.

We have recently reported the activation of a new oncogene in human papillary thyroid carcinomas. This oncogene, named PTC, is a novel rearranged version of the ret proto-oncogene. In fact PTC is the product of the fusion of the tyrosine kinase domain of the ret proto-oncogene with the 5 -terminal region of another gene that we have named H4. The ret proto-oncogene shows a pattern of expression restricted to neuroendocrine tissue. Its fusion with H4 allows the expression of the activated form in thyroid papillary carcinomas. Therefore the detection of ret transcripts is a tool to investigate ret activation in thyroid neoplasms. Here we show the detection by in situ hybridisation, of activated ret transcripts in human thyroid papillary neoplasms that were positive for PTC activation by Southern blot analysis. We did not find any ret transcripts in papillary carcinomas negative for PTC activation, nor in normal thyroid and in non-papillary thyroid neoplasias.

[The mutation character of the RET proto-oncogene in Chinese patients with Hirschsprung s disease].

To clarify the pathogenesis of Hirschsprung s disease (HD) on molecular level and to reveal the relationship between the RET proto-oncogene and Chinese patients with HD, the mutations of the RET proto-oncogene were studied in 50 Chinese patients with HD and 30 normal children with an obstipation as control. Genomic DNA was extracted from venous blood of the HD patients and the normal children. Polymerase chain reaction (PCR) products, which were amplified using specific primers (RET; exon13), were electrophoresised to analyze the single-strand conformational polymorphism (SSCP) patterns. DNA sequences of exon 13 of the RET proto-oncogene were determined in patients showing abnormal SSCP bands. And then the familial tracking research was done for the patients with Exon 13 mutation. In 50 HD patients, seven cases were found with apparently abnormal SSCP bands. And three point mutations were proved by DNA sequencing. In the parents of seven HD patients with Exon 13 mutation, two patients fathers had the same mutation as their children. The results suggest that the mutation of the RET proto-oncogene may have a high freqency in Chinese patients with HD, especially the heterozygous point mutation. And HD has the heredity tendency.

Concurrent lymph node metastases of medullary and papillary thyroid carcinoma in a case with RET oncogene germline mutation.

We report the case of a 72 yr-old woman who underwent total thyroidectomy and resection of neck lymph nodes because of a firm nodule in the right lobe, which was consistent with medullary thyroid carcinoma (MTC) on cytological examination. Histology showed multifocal bilateral MTC; a 2 mm papillary thyroid carcinoma (PTC) was also detected in the right lobe, next to a focus of MTC; five cervical lymph nodes contained MTC. In one right perithyroidal lymph node, concurrent metastases of MTC and PTC were demonstrated. DNA analysis showed a point mutation in exon 14 at codon 804 of the RET proto-oncogene locus, as frequently found in cases of familial MTC (FMTC). To our knowledge, this case represents the first documented case of concurrent lymph node metastases of MTC and PTC in a patient with RET proto-oncogene germline mutation. We report this unique case, discuss related thyroid malignancies, and suggest possible underlying pathogenetic mechanisms.

Functional haplotypes of the RET proto-oncogene promoter are associated with Hirschsprung disease (HSCR).

The activation of the RET signaling pathway during embryogenesis is a crucial prerequisite for a directional migration of enteric nervous system progenitor cells. Loss-of-function germline mutations of the RET proto-oncogene are reported in familial and sporadic cases of Hirschsprung disease (HSCR) with a variable frequency. Furthermore, variants of several RET polymorphisms are over- or under-represented in HSCR populations. Specifically, the c.135A RET variant has been previously shown to be strongly associated with the HSCR phenotype. We have reported an HSCR-phenotype modifying effect of the RET c.135G>A polymorphism due to a within-gene interaction in patients harboring RET germline mutations, yet the function of the c.135G>A variant is unknown. The basic RET promoter region was investigated by DNA sequencing approach in 80 HSCR patients. Identified polymorphisms were genotyped in the HSCR and in a control population and haplotypes were reconstructed. The dual-luciferase assay was used to evaluate the activity of different RET promoter haplotypes. We demonstrate that variants of two RET promoter polymorphisms -5G>A and -1C>A from the transcription start site are associated with HSCR. Furthermore, the -5G>A polymorphism is in strong linkage disequilibrium with the c.135G>A polymorphism. The promoter haplotype -5/-1AC associated with HSCR has a significantly lower activity in an in vitro dual-luciferase expression assay compared with those haplotypes identified in the majority of normal controls. These data suggest a role for RET haplotypes containing the -5A promoter variant in the etiology of HSCR.

The newly detected mutations in the RET proto-oncogene in exon 16 as a cause of sporadic medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) occurs as a sporadic form or, less frequently, as an autosomal dominant inherited familial disorder. Germline mutations in the RET proto-oncogene in exons 10, 11, 13, 14, 15, and 16 are found in most of the familial cases (nearly 95%). Somatic mutations in sporadic MTC are detected in 23-69% of patients. The most frequent somatic mutation is located in exon 16 at codon 918, and only a small percentage of mutations are found in exons 10, 11, 13, and 15. We have searched for somatic mutations in Czech MTC patients using direct sequencing. We report here two new somatic missense mutations in exon 16 of the RET proto-oncogene associated with the sporadic MTC detected in two Czech men. A homozygous mutation at codon 922 TCC(Ser)-->CCC(Pro) as a result of loss of heterozygosity was revealed in the first patient. In the second one a heterozygous mutation at codon 930 ACG(Thr)-->ATG(Met) was found.

Ret protein expression in adrenal medullary hyperplasia and pheochromocytoma.

Ret is a developmentally regulated tyrosine kinase involved in formation and maintenance of the nervous system. Ret mutations predisposing to pheochromocytomas and medullary thyroid carcinomas occur in multiple endocrine neoplasia (MEN) syndromes 2A and 2B. Biochemical studies have demonstrated overexpression of Ret mRNA and protein in pheochromocytomas compared to normal adrenal medulla. However, the cellular distribution of Ret in the normal human adrenal and in hyperplastic lesions that antecede pheochromocytomas are unclear. The present investigation was undertaken to resolve the histological distribution of Ret in the normal human adrenal, in pheochromocytomas evolving from adrenal medullary hyperplasia in MEN2A and in sporadic pheochromocytomas. Ret expression was studied by immunohistochemistry using both a polyclonal and a monoclonal antibody, with confirmation by immunoblotting of representative cases. Only occasional cells stained for Ret in the normal adrenal, consistent with the distribution in adult adrenals of other species. Heterogeneous, progressively increased Ret expression was observed during the evolution of pheochromocytomas. In both normal and neoplastic adrenal, the most intense immunoreactivity was observed in cells with neuron-like features. Our finding that Ret is not expressed at high levels in the early stages of disease suggests that elucidation of mechanisms that regulate Ret expression is required for understanding the pathobiology of MEN2A. The association of high-level Ret expression with neuronal morphology suggests that the variable overexpression of Ret in pheochromocytomas might in part be an epiphenomenon, reflecting the known phenotypic plasticity of these tumors.

Germline-sequence variants S836S and L769L in the RE arranged during Transfection (RET) proto-oncogene are not associated with predisposition to sporadic medullary carcinoma in the French population.

The activation of oncogenic transcription factors defines distinct molecular subsets of T-cell acute lymphoblastic leukaemia and has prognostic relevance in children. We investigated the prognostic effect of the expression levels of eight oncogenic transcription factors--TLX1 (HOX11), TLX3 (HOX11L2), TAL1, TAL2, LYL1, OLIG2 (BHLHB1), LMO1, and LMO2--in 52 adults with T-cell acute lymphoblastic leukaemia. The leukaemia-specific survival rate for the 16 TLX1-positive patients was 88% (90% CI 73-100%), compared with 56% (42-70%) for ALL other cases (p=0.019). Only the TLX1 oncogene expression subgroup showed difference in leukaemia-specific survival. Our results suggest that overexpression of TLX1 confers a good outlook for adults with T-cell acute lymphoblastic leukaemia. Furthermore, our findings lead to questions about whether stem-cell transplantation in first remission is necessary for effective treatment of patients in the low-risk subgroup of patients with TLX1 oncogene expression.

RET oncogene expression of papillary thyroid carcinoma in Korea.

PURPOSE: To identify the prevalence of RET/PTC oncogene expression in Korea, and to investigate the correlation between RET/PTC oncogene expression and the known prognostic factors of papillary thyroid carcinoma (PTC) in 22 patients. METHODS: We performed reverse transcription-polymerase chain reaction (RT-PCR) for RET/PTC1, RET/PTC2, and RET/PTC3 rearrangements and immunohistochemical staining for the RET gene. Patient information was obtained from medical records. The chi(2) test, independent sample t-test, and logistic regression were used for statistical analysis. RESULTS: The mean age of the patients was 44.4 years. RET/PTC rearrangement by RT-PCR was positive in only 2 (9.1%) of the 22 patients, and RET/PTC1 and RET/PTC3 were positive in 1 patient each (4.5%). Immunohistochemical staining revealed positive RET oncogene expression in 8 patients (36.3%). RET oncogene expression was marginally related to recurrence ( P = 0.05), but without significance by multivariate analysis. CONCLUSION: It is possible that a rare form of rearrangement exists in Korean papillary thyroid carcinoma, but this study failed to prove that RET oncogene expression is associated with alleged prognostic factors.

The RET proto-oncogene: a potential target for molecular cancer therapy.

The inhibition of activated receptor tyrosine kinases has defined a new era of selective cancer therapy. The value of these approaches has been demonstrated for a growing number of tyrosine kinases. Gain-of-function alterations within the RET proto-oncogene are responsible for the development of medullary, as well as papillary, thyroid carcinoma and make it a candidate for the design of targeted therapies. Recently, various strategies have been used to block the activity of RET in pre-clinical models, providing evidence that RET is a potential target for a selective cancer-therapy approach, especially when considering that the inhibition of RET activity is sufficient to revert neoplastic characteristics. Although the ideal clinically useful therapeutic option has yet to be developed, successes with other selective tyrosine kinase inhibitors encourages further effort.

RET oncogene mutations in 75 cases of familial medullary thyroid carcinoma in Japan.

The familial form of medullary thyroid carcinoma (MTC) is caused by mutations of the RET protooncogene. We registered 60 multiple endocrine neoplasia (MEN) 2A patients, 12 familial non-MEN medullary carcinoma (FMTC) patients, and three MEN2B patients with a confirmed RET germline mutation. ALL 60 MEN2A patients had RET mutations in a cysteine-rich domain. Seven of the FMTC patients had a mutation in cysteine-rich domain, and the other five had a mutation in codon 768, which encodes a tyrosine-kinase domain. Two of the MEN2B patients had a mutation in codon 918, and one patient had a double mutation, one in codon 804 and the other in codon 806, both of which are ALL encoded tyrosine-kinase domain. The genotype-phenotype correlations of our data will allow individualized recommendations for the optimal timing of prophylactic surgery.

The oncogenic activity of RET point mutants for follicular thyroid cells may account for the occurrence of papillary thyroid carcinoma in patients affected by familial medullary thyroid carcinoma.

Activating germ-line point mutations in the RET receptor are responsible for multiple endocrine neoplasia type 2-associated medullary thyroid carcinoma (MTC), whereas somatic RET rearrangements are prevalent in papillary thyroid carcinomas (PTCs). Some rare kindreds, carrying point mutations in RET, are affected by both cancer types, suggesting that, under specific circumstances, point mutations in RET can drive the generation of PTC. Here we describe a family whose siblings, affected by both PTC and MTC, carried a germ-line point mutation in the RET extracellular domain, converting cysteine 634 into serine. We tested on thyroid follicular cells the transforming activity of RET(C634S), RET(K603Q), another mutant identified in a kindred with both PTC and MTC, RET(C634R) a commonly isolated allele in MEN2A, RET(M918T) responsible for MEN2B and also identified in kindreds with both PTC and MTC, and RET/PTC1 the rearranged oncogene that characterizes bona fide PTC in patients without MTC. We show that the various RET point mutants, but not wild-type RET, scored constitutive kinase activity and exerted mitogenic effects for thyroid PC Cl 3 cells, albeit at significantly lower levels compared to RET/PTC1. The low mitogenic activity of RET point mutants paralleled their reduced kinase activity compared to RET/PTC. Furthermore, RET point mutants maintained a protein domain, the intracellular juxtamembrane domain, that exerted negative effects on the mitogenic activity. In conclusion, RET point mutants can behave as dominant oncogenes for thyroid follicular cells. Their transforming activity, however, is rather modest, providing a possible explanation for the rare association of MTC with PTC.

Regulation of signal transducer and activator of transcription 1 (STAT1) and STAT1-dependent genes by RET/PTC (rearranged in transformation/papillary thyroid carcinoma) oncogenic tyrosine kinases.

Chimeric RET/PTC (rearranged in transformation/papillary thyroid carcinoma) oncoproteins are constitutively active tyrosine kinases found in thyroid papillary carcinoma and nonneoplastic Hashimoto s thyroiditis. Although several proteins have been identified to be substrates of RET/PTC kinases, the pathogenic roles played by RET/PTC in malignant and benign thyroid diseases and the molecular mechanisms that are involved are not fully understood. We found that RET/PTC expression phosphorylates the Y701 residue of STAT1, a type II interferon (IFN)-responsive protein. RET/PTC-mediated signal transducer and activator of transcription 1 (STAT1) phosphorylation requires RET/PTC kinase activity to be intact but other tyrosine kinases, such as Janus kinases or c-Src, are not involved. RET/PTC-induced STAT1 transcriptional activation was not inhibited by suppressor of cytokine signaling-1 or -3, or protein inhibitors of activated STAT3 [(protein inhibitor of activated STAT (PIAS3)], but PIAS1 strongly repressed the RET/PTC-induced transcriptional activity of STAT1. RET/PTC-induced STAT1 activation caused IFN regulatory factor-1 expression. We found that STAT1 and IFN regulatory factor-1 cooperated to significantly increase transcription from type IV IFN-gamma responsive promoters of class II transactivator genes. Significantly, cells stably expressing RET/PTC expressed class II transactivator and showed enhanced de novo membrane expression of major histocompatibility complex (MHC) class II proteins. Furthermore, RET/PTC1-bearing papillary thyroid carcinoma cells strongly expressed MHC class II (human leukocyte-associated antigen-DR alpha) genes, whereas the surrounding normal tissues did not. Thus, RET/PTC is able to phosphorylate and activate STAT1. This may lead to enhanced MHC class II expression, which may explain why the tissues surrounding RET/PTC-positive cancers are infiltrated with lymphocytes. Such immune response-promoting activity of RET/PTC may also relate to the development of Hashimoto s thyroiditis.

Frequency of RET proto-oncogene mutations in patients with normal and with moderately elevated pentagastrin-stimulated serum concentrations of calcitonin.

The possibility of germline mutations of the RET proto-oncogene (exons 10, 11, 13, 14, and 16) was investigated in 75 patients (57 men, 18 women) with a negative family history for medullary thyroid carcinoma (MTC), elevated (> 10 pg/mL) basal serum concentrations of human calcitonin (hCT) and a pentagastrin (PG)-stimulated serum hCT ranging from 50-100 pg/mL. Seventy patients (50 men, 20 women) with basal serum calcitonin concentrations in the normal range served as controls. Among the 75 patients with elevated basal serum hCT concentrations we identified 1 man with the mutation S649L and 2 patients (1 man and 1 woman) with the mutation Y791F. Among the 70 individuals with normal basal calcitonin 1 man and 1 woman presented with the mutation Y791F. No other mutations (such as those in codons 618 or 634, considered to be of greater clinical relevance) were identified in either group. On the other hand, the RET proto-oncogene mutation Y791F, characterized by a low penetrance, occurs comparatively frequently among patients with normal serum calcitonin concentrations. To preselect patients for RET screening by moderately (50-100 pg/mL) pentagastrin stimulation hCT concentrations does not increase the number of identified cases of familial MTC.

Interleukin 24 is induced by the RET/PTC3 oncoprotein and is an autocrine growth factor for epithelial cells.

Thyroid cancers, like hematological malignancies, are commonly associated with chromosomal translocations leading to the formation of fusion proteins. Through altered signaling by fusion proteins, cell death and survival pathways are disrupted and the physiological balance of cell-cell communication may be lost. A consequence of this disruption is the release of factors by stressed cells that alert the host. One type of host response is leukocytic infiltration that may develop into chronic inflammation or autoimmune disease. Although inflammation can be associated with neoplastic tissue, the mechanism driving this process is largely unknown. Therefore, to address the mechanism of cancer inflammation we investigated the effects of an oncogene in a murine model system. A comprehensive genetic analysis revealed several soluble factors that were induced by RET/papillary thyroid carcinoma (PTC)3 gene expression including several proinflammatory cytokines, chemokines and immunologically relevant costimulatory molecules. Following a large genetic screen using RP3-expressing thyroid cells, we identified a highly abundant transcript and later identified it as interleukin 24 (Il24), a cytokine with diverse tumor suppressor and inflammatory activities. We show that RET/PTC3 induces Il24 expression in rat thyrocytes and that this expression is dependent on the signaling properties of its tyrosine kinase. Likewise, RET/PTC3 induces large amounts of Il24 following expression in murine thyrocytes, but its expression is dramatically reduced in poorly differentiated carcinomas, a finding that parallels the loss of RET/PTC3 expression. Consistent with its behavior as a tumor suppressor, the loss of Il24 coincided with the loss of RET/PTC3 in poorly differentiated mouse tumors. A functional role of Il24 in the autocrine growth/survival of RET/PTC3-expressing thyroid cells was identified helping to support its role in cellular transformation. These data suggest that the induction of Il24 by oncogenes may support tumor growth at the early stages of cancer.

Interaction of RET proto-oncogene codon 609 germline mutations with RET haplotypes characterized by c.135G>A alleles modifying MEN 2A or HSCR phenotypes.

Thyroid cancers, like hematological malignancies, are commonly associated with chromosomal translocations leading to the formation of fusion proteins. Through altered signaling by fusion proteins, cell death and survival pathways are disrupted and the physiological balance of cell-cell communication may be lost. A consequence of this disruption is the release of factors by stressed cells that alert the host. One type of host response is leukocytic infiltration that may develop into chronic inflammation or autoimmune disease. Although inflammation can be associated with neoplastic tissue, the mechanism driving this process is largely unknown. Therefore, to address the mechanism of cancer inflammation we investigated the effects of an oncogene in a murine model system. A comprehensive genetic analysis revealed several soluble factors that were induced by RET/papillary thyroid carcinoma (PTC)3 gene expression including several proinflammatory cytokines, chemokines and immunologically relevant costimulatory molecules. Following a large genetic screen using RP3-expressing thyroid cells, we identified a highly abundant transcript and later identified it as interleukin 24 (Il24), a cytokine with diverse tumor suppressor and inflammatory activities. We show that RET/PTC3 induces Il24 expression in rat thyrocytes and that this expression is dependent on the signaling properties of its tyrosine kinase. Likewise, RET/PTC3 induces large amounts of Il24 following expression in murine thyrocytes, but its expression is dramatically reduced in poorly differentiated carcinomas, a finding that parallels the loss of RET/PTC3 expression. Consistent with its behavior as a tumor suppressor, the loss of Il24 coincided with the loss of RET/PTC3 in poorly differentiated mouse tumors. A functional role of Il24 in the autocrine growth/survival of RET/PTC3-expressing thyroid cells was identified helping to support its role in cellular transformation. These data suggest that the induction of Il24 by oncogenes may support tumor growth at the early stages of cancer.

Description of the first two seemingly unrelated Greek Cypriot families with a common C618R RET proto-oncogene mutation.

Germ-line mutations of the RET proto-oncogene cause three different cancer syndromes: multiple endocrine neoplasia type 2A (MEN2A), multiple endocrine neoplasia type 2B, and familial medullary thyroid carcinoma (FMTC). The objective of the present study was the clinical and molecular characterization of the first two Greek Cypriot families diagnosed with MEN2A and FMTC. The clinical diagnosis of the probands was based on clinical presentation and supported with laboratory findings (calcitonin and carcinoembryonic antigen tumor marker levels). We screened the RET gene by direct DNA sequencing of exons 10, 11, and 16 using genomic DNA as templates. After identification of the mutation, we also developed the amplification refractory mutation system (ARMS) as an alternative method to direct sequencing for genetic diagnosis of 22 additional individuals from both families. We identified the germ-line missense mutation T --> C of codon 618 of exon 10 (C618R) in the probands of both families. By using ARMS, two members of the MEN2A family and five members of the FMTC family were also found positive for the C618R mutation. These are the first seemingly unrelated families in Cyprus investigated clinically and molecularly in detail and shown to transmit this common RET proto-oncogene mutation.

Cost analysis of DNA-based testing in a large Canadian family with multiple endocrine neoplasia type 2.

One of the major goals of genetic testing is the reduction of morbidity and mortality. Given the appropriate circumstances, this can result in reduction in health care costs. Such savings can be demonstrated most effectively in large families with mutations in well characterized, dominantly acting genes. In our large family, a point mutation TGC>CGC in exon 10 of the RET proto-oncogene, which results in a missense mutation (Cys620Arg), was identified in two individuals. The proband has medullary thyroid carcinoma (MTC), as did her deceased mother. One son has MTC and Hirschsprung s disease. The proband s mother had nine siblings; the proband has three siblings, another son, and 69 maternal cousins. Genetic testing has been performed on the closest relatives and has identified four individuals with, and 54 individuals without, a familial RET mutation. Significant cost savings have been realized in both genetic testing and clinical surveillance. In this family, for every at-risk individual identified as a true-negative, the minimum yearly savings in clinical surveillance is 508 dollars per person. As demonstrated by this case, economic costs of genetic diagnostics should take into account the potential saved monies in tests, both molecular and clinical.

Multiple endocrine neoplasia type 2B caused by a single point mutation in RET proto-oncogene in a Chinese patient.

Lung cancer, a leading cause of cancer deaths, consists of two major groups: small cell lung cancer (SCLC) and nonsmall cell lung cancer (NSCLC) with the NSCLC accounting for approximately 75% cases of lung cancers. It has been suggested that molecular changes including overexpression of oncogenes and decreased expression of tumor suppressor genes are responsible for lung carcinogenesis. In this study, we analyzed protein profiles of four different human NSCLC cell lines compared with normal human bronchial epithelial cells using two-dimensional PAGE and MALDI-TOF mass spectrometry. We identified 12 protein spots with different expressions between the normal and cancer cells. Of these proteins, vimentin, cytokeratin 8, YB-1, PCNA, Nm23, hnRNP A2/B1, and HSP90beta were known to be up-regulated in lung cancers, which is consistent with the current study. We also found that the expression of M-type pyruvate kinase is altered in NSCLC likely due to changes in translational control and/or differential phosphorylation of the protein. Interestingly, the expression of the tumor suppressor gene 14-3-3sigma is down-regulated while that of the proto-oncogene TEF1delta is up-regulated in NSCLC cells. On the basis of these observations and previous studies, we propose that the altered expression of 14-3-3sigma and TEF1delta may be involved in lung carcinogenesis.

[Advances of RET oncogene activation in papillary thyroid carcinoma].

Lung cancer, a leading cause of cancer deaths, consists of two major groups: small cell lung cancer (SCLC) and nonsmall cell lung cancer (NSCLC) with the NSCLC accounting for approximately 75% cases of lung cancers. It has been suggested that molecular changes including overexpression of oncogenes and decreased expression of tumor suppressor genes are responsible for lung carcinogenesis. In this study, we analyzed protein profiles of four different human NSCLC cell lines compared with normal human bronchial epithelial cells using two-dimensional PAGE and MALDI-TOF mass spectrometry. We identified 12 protein spots with different expressions between the normal and cancer cells. Of these proteins, vimentin, cytokeratin 8, YB-1, PCNA, Nm23, hnRNP A2/B1, and HSP90beta were known to be up-regulated in lung cancers, which is consistent with the current study. We also found that the expression of M-type pyruvate kinase is altered in NSCLC likely due to changes in translational control and/or differential phosphorylation of the protein. Interestingly, the expression of the tumor suppressor gene 14-3-3sigma is down-regulated while that of the proto-oncogene TEF1delta is up-regulated in NSCLC cells. On the basis of these observations and previous studies, we propose that the altered expression of 14-3-3sigma and TEF1delta may be involved in lung carcinogenesis.

Characterization of an inversion on the long arm of chromosome 10 juxtaposing D10S170 and RET and creating the oncogenic sequence RET/PTC.

RET/PTC is a transforming sequence created by the fusion of the tyrosine kinase domain of the RET protooncogene with the 5 end of the locus D10S170 designated by probe H4 and is frequently found activated in human papillary thyroid carcinomas. RET and D10S170 have been mapped to contiguous regions of the long arm of chromosome 10: q11.2 and q21, respectively. To identify the mechanism leading to the generation of the oncogenic sequence RET/PTC, a combined cytogenetic and molecular analysis of several cases of papillary thyroid carcinomas was done. In four cases the results indicated that these tumors had RET/PTC activation and a paracentric inversion of the long arm of chromosome 10, inv(10)(q11.2q21), with breakpoints coincident with the regions where RET and D10S170 are located. Therefore, a chromosome 10q inversion provides the structural basis for the D10S170-RET fusion that forms the hybrid transforming sequence RET/PTC.

[Management of multiple endocrine neoplasia syndrome type 2 families in association with rare germline mutations of the RET proto-oncogene].

INTRODUCTION: Heredity of MEN2 syndromes is caused by a heterozygous germline mutation in the RET proto-oncogene. This study describes families with rare noncysteine codon 790/791 mutations and discusses the genotype-phenotype correlation plus the therapeutic options. PATIENTS AND METHODS: Forty-five patients with a putative sporadic MTC were screened for RET germline mutations by direct DNA sequencing. Family members of identified index cases underwent genetic analysis. Gene carriers were examined clinically and biochemicaly and underwent prophylactic thyroidectomy. RESULTS: Five index patients were identified. In the kindreds three L790F and one Y791F carriers were detected. The thyroid gland histology of L790F carriers revealed MTC in 2 patients and C-cell hyperplasia in 2 additional patients. The Y791F carrier had a normal histology. CONCLUSIONS: Codon 790/791 mutations had diverse penetrance: prophylactic thyreoidectomy in children is a justifiable approach for codon 790 mutation carriers, but should depend on the clinical course of codon 791 carriers.

Screening of six risk exons of the RET proto-oncogene in families with medullary thyroid carcinoma in the Czech Republic.

Medullary thyroid carcinoma (MTC) occurs as a sporadic form (75%) or as an autosomal dominant inherited familial disorder (25%) called familial MTC (FMTC) or as multiple endocrine neoplasia type 2 (MEN2) syndromes. Germ-line mutations in the rearranged during transfection (RET) proto-oncogene in exons 10, 11, 13, 14, 15 and 16 are known to be a cause of most of the familial forms. In this paper we report molecular genetic testing of 106 families with MTC (358 tested persons) from the Czech Republic in which we directly sequenced these six exons of the RET proto-oncogene. We detected germ-line mutations in 100% of MEN2B families (4/4 families), 90% of MEN2A families (9/10), 40% of FMTC families (4/10) and 7% of apparently sporadic MTC (6/82). Eleven different germ-line mutations were revealed. MEN2B was associated with mutation Met918 Thr in exon 16. In one MEN2B family beside this mutation the Tyr791 Phe was also found, which has not yet been reported. MEN2A was restricted to different mutations in exon 11 (codon 634). In FMTC and sporadic MTC families the mutations in exons 10, 11, 13 and 14 were detected. The genotype/phenotype correlations are given. Genetic testing revealed germ-line mutations in 23 index patients, 24 family members and excluded them in 53 relatives.

Sequence variant in the intron 10 of the RET oncogene in a patient with microfollicular thyroid carcinoma with medullar differentiation: implications for newly generated chi-like sequence.

Sequence alterations in the RET proto-oncogene are becoming increasingly important to clinical assessment of the malignant disease of the thyroid. A spectrum of mutations is necessary to establish comprehensive phenotype to genotype relationship relevant to diagnosis and therapy of thyroid malignancies. We aimed to append to the increasing database of these oncogenic lesions and, therefore, analyzed DNA from tumor tissue and constitutive DNA from a patient with thyroid carcinoma. mutational screening and sequence characterization of the RET proto-oncogene was performed to include part of the intronic sequences. We report a germline sequence variant in DNA from the patient diagnosed with microfollicular thyroid carcinoma. The carcinoma presented not as fully developed medullar carcinoma (MTC) but as microfollicular carcinoma with tendency to evolve into MTC. We characterized the sequence variant located in the intron 10 of the RET oncogene as an A to G substitution denoted IVS10 + 4G. The described sequence alteration generates a chi-like sequence surrounded by several chi-like sequences with recombinational potential. Such alteration may be involved in the pathogenesis of the microfollicular carcinoma via genome destabilization through homologous recombination in the process of tumor progression. This result further substantiates the importance of the database correlating specific sequence variations in the RET gene with distinct disease phenotypes.

RET proto-oncogene mutations are restricted to codon 634 and 618 in Korean families with multiple endocrine neoplasia 2A.

Identification of the germline mutation in the RET proto-oncogene is important for the diagnosis of hereditary medullary thyroid carcinoma (MTC). Hereditary forms account for approximately 25%-30% of ALL cases of MTC. The objective of this study was to evaluate the prevalence of the RET mutation and the genotype-phenotype relation in Korean patients with MTC. Genomic DNAs were obtained from 33 patients with MTC (M:F = 10:23, 39.8 +/- 12.0 years) who underwent total thyroidectomy between 1997 and 2003 at the Samsung Medical Center. Exons 10, 11, 13, 14, 15 and 16 of the RET proto-oncogene were amplified with specific primers using polymerase chain reaction (PCR). Sequence analysis was performed on the polymerase chain reaction (PCR) product using an automatic sequence analyzer. Nine of the 33 patients (M:F = 3:6, 33.3 +/- 10.0 years) were identified as having RET mutations. Six patients had multiple endocrine neoplasia (MEN) 2A and one had familial medullary thyroid carcinoma (FMTC). The remaining two patients were thought to have sporadic MTC. Five of the patients with MEN 2A had RET mutations in codon 634 of exon 11 (3 patients, C634Y; 2 patients, C634R) and the other patient with MEN 2A had a RET mutation in codon 618 of exon 10 (C618R). The patient with FMTC had a mutation in codon 634 (C634W). The two patients with sporadic MTC had RET mutations in codon 634 (1 patient, C634Y; 1 patient, C634S). We were not able to identify any genotype-phenotype relations because of the limited number of patients. Twenty-seven percent (9/33) of the patients with MTC in this study had RET mutations. Taking other studies into account, 77% (10/13) of Korean families with MEN 2A, including 7 other families in three reports from Korea, had RET mutations in codon 634 (5 families, C634Y; 4 families, C634R; 1 family, C634W), and 23% (3/13) had RET mutations in codon 618 (2 families, C618R; 1 family, C618S). RET proto-oncogene mutations were restricted to codon 634 and 618 in Korean families with MEN 2A.

Polymorphisms in the RET proto-oncogene and the phenotypic presentation of familial medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) occurs in a sporadic or as an autosomal dominant hereditary form. Inherited forms of MTC are related to mutations in the RET proto-oncogene. We screened genomic DNA from 11 patients with MTC for mutations in exons 10, 11, 13, 14, 15, and 16 of the RET proto-oncogene. Subsequently, we also evaluated a family of 1 patient with presumed diagnosis of sporadic MTC. Three patients with MEN2A from two unrelated families presented mutations in exon 11 (C634Y and C634R). A heterozygous mutation in exon 14 (V804M) was identified in the patient with the presumed sporadic MTC. We also observed two different polymorphisms: S904S in exon 15 (2 patients) and L769L in exon 13 (4 patients). The L769L polymorphism has been associated with earlier onset of sporadic MTC. On the other hand, mutations in exon 14 are associated with MTC of later onset and lower aggressiveness. Indeed, the carrier of the V804M mutation associated with L769L polymorphism presented MTC at 32 years of age, in contrast to her asymptomatic mother, who had only the V804M mutation and had MTC diagnosed by fine-needle aspiration biopsy at 60 years of age. In conclusion, the present study confirms the need for genetic screening to differentiate sporadic and hereditary forms of MTC. In addition, the genetic study allows the identification of asymptomatic carriers of hereditary forms of MTC. Finally, we speculated that the L769L polymorphism of the RET proto-oncogene may be related to earlier age of onset in the patient with the V804M mutation.

A human yeast artificial chromosome containing the multiple endocrine neoplasia type 2B Ret mutation does not induce medullary thyroid carcinoma but does support the growth of kidneys and partially rescues enteric nervous system development in Ret-deficient mice.

We generated a line of transgenic mice using a yeast artificial chromosome containing the Ret mutation responsible for the multiple endocrine neoplasia type 2B syndrome (MEN 2B). The resulting animals did not develop any of the expected neoplasms associated with MEN 2B. Transgenic animals were then bred with animals lacking murine Ret (Ret(M)) to further evaluate the function of human mutated Ret (Ret(H)(2B)) in the murine context. Whereas mice lacking Ret(M) exhibit intestinal aganglionosis and the absence of kidneys with other genitourinary anomalies, expression of the Ret(H)(2B) transgene in Ret(M)-deficient mice allowed significant renal development with a partial rescue of the enteric nervous system. These Ret(H)(2B)-positive/Ret(M)-deficient mice exhibit normal Ret expression and survive longer than Ret(M)-deficient mice, but still die at 3 to 5 days of age with evidence of enterocolitis. We conclude that the normal expression of a human Ret proto-oncogene with the MEN 2B mutation does not cause any features of MEN 2B in mice. Although the gene is normally expressed in the appropriate target tissues, there is incomplete phenotypic rescue in mice lacking murine Ret. These results suggest important interspecies differences between humans and mice in the function of the Ret oncogene.

Polymerase chain reaction-single strand conformational polymorphism analysis of rearranged during transfection proto-oncogene in Chinese familial Hirschsprung s disease.

AIM: To investigate the relationship between mutations of rearranged during transfection (RET) proto-oncogene and Chinese patients with Hirschsprung s disease (HD), and to elucidate the genetic mechanism of familial HD patient at the molecular level. METHODS: Genomic DNA was extracted from venous blood of probands and their relatives in two genealogies. Polymerase chain reaction (PCR) products, which were amplified using specific primers (RET, exons 11, 13, 15 and 17), were electrophoresed to analyze the single-strand conformational polymorphism (SSCP) patterns. The positive amplified products were sequenced. Forty-eight sporadic HD patients and 30 normal children were screened for mutations of RET proto-oncogene simultaneously. RESULTS: Three cases with HD in one family were found to have a G heterozygous insertion at nucleotide 18,974 in exon 13 of RET cDNA (18,974insG), which resulted in a frameshift mutation. In another family, a heterozygosity for T to G transition at nucleotide 18,888 in the same exon which resulted in a synonymous mutation of Leu at codon 745 was detected in the proband and his father. Eight RET mutations were confirmed in 48 sporadic HD patients. CONCLUSION: mutations of RET proto-oncogene may play an important role in the pathogenesis of Chinese patients with HD. Detection of mutated RET proto-oncogene carriers may be used for genetic counseling of potential risk for HD in the affected families.

A common haplotype at the 5 end of the RET proto-oncogene, overrepresented in Hirschsprung patients, is associated with reduced gene expression.

Hirschsprung disease (HSCR) is a complex genetic defect of intestinal innervation mainly ascribed to loss of function mutations of the RET gene. Although RETcoding mutations account for only 15% of HSCR sporadic cases, several linkage and association studies still indicate RET as a major HSCR gene, suggesting the existence of noncoding RET variants or common polymorphisms which can act in HSCR pathogenesis. We previously described a predisposing RET haplotype (A-C-A) composed of alleles at three SNPs (-1 bp and -5 bp from the RET transcription start site, NT_033985.6:g.975824G>A and NT_033985.6:g.975820C>A, respectively, and silent polymorphism c.135G>A), which was present in 62% of chromosomes from HSCR patients but only in 22% of control chromosomes. Here we address the question of how this 5 ACA haplotype may functionally act as a predisposing factor in HSCR pathogenesis by performing functional analysis of the same three SNPs. We demonstrate that neither the two promoter variants nor the exon 2 SNP interfere with reporter gene transcription or RET mRNA splicing, respectively. However, real-time RT-PCR, performed in RNA obtained from lymphoblasts of selected individuals, has shown that homozygosity for the whole ACA haplotype is associated with reduced RET gene expression. We propose that a yet unidentified variant in linkage disequilibrium with the ACA haplotype, rather than the single characterizing SNPs, acts as a HSCR susceptibility allele by affecting the normal amount of RET receptor on the cell surface.

Investigation of loss of heterozygosity and SNP frequencies in the RET gene in papillary thyroid carcinoma.

In both medullary carcinoma and papillary carcinoma of the thyroid, altered expression of the RET gene is implicated in tumorigenesis. Recent studies suggest that loss of heterozygosity (LOH) at the G691S SNP may be associated with tumors from patients with a history of radiation exposure. We investigated LOH for three RET SNPs (G691S, S904S, and L769L) in tumor and normal tissue from 46 patients from Ukraine and Belarus who were exposed to radioactive fallout following the Chernobyl nuclear accident and were operated for papillary thyroid carcinoma between 1995 and 2000. Normal tissue from 28 patients was heterozygous for at least one SNP; DNA from the corresponding tumor samples was also heterozygous, indicating that no LOH had taken place. To assess SNP frequencies in a radiation-associated thyroid cancer cohort, we investigated a further 68 unpaired post-Chernobyl samples. For G691S, there was considerable deviation from Hardy-Weinberg equilibrium; more detailed analysis showed that this was linked to age at onset of disease. Among younger patients, the distribution of genotypes conformed to Hardy-Weinberg equilibrium; among older patients, we observed marked deviation (p = 0.0072), with significant over-representation of the rare S allele relative to the younger groups (Fisher s exact, p = 0.0233). This suggests that SNPs in the RET oncogene may play a role in sporadic papillary thyroid carcinoma.

The RET proto-oncogene: a molecular therapeutic target in thyroid cancer.

The RET proto-oncogene is responsible for the development of several human inherited and non-inherited diseases. Germline point mutations were identified in multiple endocrine neoplasia types 2A and 2B, and familial medullary thyroid carcinoma. More than 10 rearranged forms of RET, referred to as RET/PTC 1-9, ELKS/RET and RFP/RET, have been cloned from sporadic and radiation-associated papillary thyroid carcinomas. These mutations induced oncogenic activation of RET tyrosine kinase by different mechanisms. To date, various kinds of therapeutic approaches have been developed for the treatment of RET-associated cancers, including tyrosine kinase inhibitors, gene therapy with dominant negative RET mutants, and RNA interference to abrogate oncogenic mutant RET expression. RET and some signaling molecules that function downstream of RET could be potential targets for the development of selective cancer therapeutics.

A newly identified RET proto-oncogene polymorphism is found in a high number of endocrine tumor patients.

Multiple RET proto-oncogene transcripts, due to genomic variations and alternate splicing, have been described. To investigate endocrine tumor tissue characteristic RET proto-oncogene expression, we performed quantitative RT-PCR, Northern blot and Southern blot analyses of benign and malignant endocrine-derived tissues. We newly describe RET proto-oncogene expression in carcinoid-, gastrinoma- and insulinoma-derived tissue samples. In addition, the presence of a 3-terminally truncated RET proto-oncogene mRNA variant in benign and malignant thyroid neoplasias, as well as in a pheochromocytoma, an ovarian carcinoma and a medullary thyroid carcinoma, is demonstrated. Southern blot analysis revealed no evidence of gross RET proto-oncogene rearrangements or deletions. As the underlying cause for a bi-allelic TaqI restriction fragment length polymorphism (RFLP), a C (allele 1)/T (allele 2) transition within intron 19, was characterized. This polymorphism is close to a recently described polyadenylation site and lies within a binding site for the nucleic acid binding protein Pbx-1. Screening of healthy subjects and of patients suffering from various endocrine malignancies revealed exclusively allele 1 homozygous and allele 1/allele 2 heterozygous genotypes. Heterozygous genotypes were found in a significantly higher percentage in samples derived from endocrine tumor patients when compared with those from healthy control subjects. Homozygosity for allele 2 was found exclusively in somatic DNA derived from endocrine tumors with high malignant potential. Analysis of DNA derived from varying regions within individual anaplastic thyroid carcinomas revealed an allele 1/allele 2 switch of the RFLP banding pattern, indicating loss of heterozygosity at the RET proto-oncogene locus. In conclusion, our data demonstrate presence of a 5-terminal RET proto-oncogene transcript in endocrine tissues and reveal a bi-allelic RET proto-oncogene polymorphism. A heterozygous genotype for this polymorphism is found in a considerable number of endocrine tumor patients.

Nine novel germline gene variants in the RET proto-oncogene identified in twelve unrelated cases.

We report nine novel DNA alterations in the RET proto-oncogene in 12 unrelated cases identified by DNA sequencing of exons 10 and 11 of the gene. The novel variants K666E, IVS9-11G-->A, D631V in cis with H665Q, D631E (with C634Y), E623K (in trans with C618S), 616delGAG (in trans with C609Y), Y606C, C630R, and R635-T636insELCR;T636P were detected in patients with various clinical presentations ranging from thyroid goiter, medullary thyroid carcinoma, and pheochromocytoma to classic multiple endocrine neoplasia type 2A. When novel DNA alterations are found, extended family studies can be helpful in determining the clinical significance of such findings. Segregation within families suggests that K666E and T636insELCR;T636P are likely to be disease-causing mutations. However, the mechanism by which they affect the normal activity of the RET receptor is unclear. Absence of segregation with disease was observed for E623K and 616delGAG. For the remainder of the DNA alterations, family studies were not possible, and the clinical significance of these novel variants needs further assessment. Additional case reports, animal models, and/or functional studies are needed to determine the clinical significance of these newly identified variants.

ZD6474 suppresses oncogenic RET isoforms in a Drosophila model for type 2 multiple endocrine neoplasia syndromes and papillary thyroid carcinoma.

Patients with hereditary medullary thyroid carcinoma (MTC) associated with multiple endocrine neoplasia (MEN) types 2A and 2B and familial MTC (FMTC) have mutations in the RET proto-oncogene. Approximately 40 percent of patients with papillary thyroid carcinoma (PTC) typically have either intrachromosomal or extrachromosomal rearrangements that join the promoter and NH(2)-terminal domains of unrelated genes to the COOH-terminal fragment of RET. The RET point mutations associated with MEN2A, MEN2B, or FMTC, or the chromosomal breakpoints and translocations associated with PTC, typically activate the RET receptor tyrosine kinase (RTK). RET kinase inhibitors are likely to be beneficial for patients with hereditary MTC, where currently there is no effective chemotherapy or radiation therapy. Recently, the low molecular weight tyrosine kinase inhibitor ZD6474 was found to block the enzymatic activity of RET-derived oncoproteins in cultured cell lines. We have developed a Drosophila model for MEN2A and MEN2B diseases by targeting oncogenic forms of RET to the developing Drosophila eye. Here we show that, when fed orally, ZD6474 suppressed RET-mediated phenotypes within the context of this in vivo model. Importantly, ZD6474 showed high efficacy and very low toxicity. This compound failed to significantly suppress an activated form of another RTK, the Drosophila epidermal growth factor receptor, nor did it suppress the activity of downstream components of the RET/Ras pathway. Our results support the view that targeting chemical kinase inhibitors such as ZD6474 to tissues with oncogenic forms of RET is a useful treatment strategy for RET-dependent carcinomas.

[G691S, L769L and S836S ret proto-oncogene polymorphisms are not associated with higher risk to sporadic medullary thyroid carcinoma in Chilean patients].

BACKGROUND: Medullary thyroid carcinoma (MTC) may occur either as sporadic or as hereditary. Even though the sporadic form corresponds to the majority of cases, the pathogenesis is still unclear. Several polymorphisms of the ret proto-oncogene, including those located in exon 11, 13, 14 and 15 have been described in the general population and some of them seem to be over-represented in sporadic MTC patients from European countries, especially G691S, L769L and S836S. AIM: To evaluate the allele frequencies of these variants in Chilean patients and controls and to determine if these polymorphisms would be associated with the development of sporadic MTC from a different genetic population base. SUBJECTS AND METHODS: Fifty sporadic MTC patients and 50 normal subjects were tested for G691S, L769L, S836S and S904S polymorphisms. The extracted genomic DNA was initially analyzed by direct sequencing of PCR products in patients. The presence or absence of each polymorphism was also assessed in patients and in control by restriction digestion. RESULTS: The allele frequencies showed a similar level of the G691S, L769L and S904S variants in both groups. Of interest, we found an under-representation of S836S polymorphism in the sporadic MTC group but this number was not statistically significant (p=0.141). CONCLUSIONS: We did not find an over representation of the G691S, L769 and S836S. These results argue against the validity of the association of these polymorphisms as contributing factors in the development of sporadic MTC based on a Chilean population and raise questions about the importance of these polymorphisms overall.

Regulation of protein kinase B tyrosine phosphorylation by thyroid-specific oncogenic RET/PTC kinases.

Papillary thyroid carcinoma (PTC) is a heterogenous disorder characterized by unique gene rearrangements and gene mutations that activate signaling pathways responsible for cellular transformation, survival, and antiapoptosis. Activation of protein kinase B (PKB) and its downstream signaling pathways appears to be an important event in thyroid tumorigenesis. In this study, we found that the thyroid-specific oncogenic RET/PTC tyrosine kinase is able to phosphorylate PKB in vitro and in vivo. RET/PTC-transfected cells showed tyrosine phosphorylation of endogenous and exogenous PKB, which was independent of phosphorylation of T308 and S473 regulated by the upstream kinases phosphoinositide-dependent kinase-1 and -2, respectively. The PKB Y315 residue, which is known to be phosphorylated by Src tyrosine kinase, was also a major site of phosphorylation by RET/PTC. RET/PTC-mediated tyrosine phosphorylation results in the activation of PKB kinase activity. The activation of PKB by RET/PTC blocked the activity of the forkhead transcription factor, FKHRL1, but a Y315F mutant of PKB failed to inhibit FKHRL1 activity. In summary, these observations suggest that RET/PTC is able to phosphorylate the Y315 residue of PKB, an event that results in maximal activation of PKB for RET/PTC-induced thyroid tumorigenesis.

Assessment of RET/PTC oncogene activation in thyroid nodules utilizing laser microdissection followed by nested RT-PCR.

Single palpable nodules of the thyroid gland are common in clinical practice; the majority of such lesions are benign. However, noninvasive thyroid nodules that exhibit borderline morphological signs of papillary cancer represent a diagnostic challenge. Rearrangements of the RET oncogene have been proposed as a marker for papillary thyroid cancer. In this chapter, methods for the analysis of the RET oncogene in laser microdissected papillary thyroid cancer tissue are described.

RET proto-oncogene: a review and update of genotype-phenotype correlations in hereditary medullary thyroid cancer and associated endocrine tumors.

Hereditary medullary thyroid carcinoma (MTC) is caused by autosomal dominant gain-of-function mutations in the RET proto-oncogene. Associations between specific RET mutations (genotype) and the aggressiveness of MTC and presence or absence of other endocrine neoplasms (phenotype) are well documented. mutations in six exons (10, 11, 13, 14, 15, and 16) located in either cysteine-rich or tyrosine kinase domains cause one of three distinctive clinical subtypes: familial MTC, multiple endocrine neoplasia (MEN) type 2A (including variants with Hirschsprung s disease and cutaneous lichen amyloidosis), and MEN 2B. Hallmarks of MEN 2A include MTC, pheochromocytoma, and hyperparathyroidism. MEN 2B is associated with an earlier onset of MTC and pheochromocytoma, the absence of hyperparathyroidism, and the presence of striking physical stigmata (e.g., coarse facies, ganglioneuromatosis, and marfanoid habitus). Familial MTC is not associated with other endocrine neoplasms; however, the accurate distinction between familial MTC and MEN 2A may be difficult in kindreds with small size, incomplete histories, or a predominance of young individuals who may not have yet fully manifested the syndrome. Genetic testing detects greater than 95% of mutation carriers and is considered the standard of care for ALL first-degree relatives of patients with newly diagnosed MTC. Recommendations on the timing of prophylactic thyroidectomy and the extent of surgery are based upon a model that utilizes genotype- phenotype correlations to stratify mutations into three risk levels.

Localization of the 5 end of the MCF2 oncogene to human chromosome 15q15----q23.

Oncogenic activation of the MCF.2 cell line-derived transforming sequence gene (MCF2) occurs through substitution of part of its 5 coding region by unrelated nonsyntenic sequences. Analysis of the MCF2 oncogene locus revealed complex recombination events involving four discontinuous human DNA segments. The upstream replacing sequence, named URS, represents the farthest 5 portion of the locus. The URS sequence maps to the D15S93 locus on human chromosome 15q15----q23.

An in vitro approach to test the possible role of candidate factors in the transcriptional regulation of the RET proto-oncogene.

Neural crest cells arise from the epithelium of the dorsal neural tube and migrate to various districts giving origin, among others, to sympathetic, parasympathetic, and enteric ganglia. It has been shown that the transcription factors HOX11L1, HOX11L2, MASH1, PHOX2A, and PHOX2B are ALL necessary, to various extents, to the correct development of the autonomic nervous system. To investigate their possible role in the transcriptional regulation of the RET proto-oncogene, a gene playing a crucial role in correct intestinal innervation, we undertook a specific in vitro experimental strategy. Two neuroblastoma cell lines (SK-N-MC and SK-N-BE) were cotransfected with each transcription factor expressing plasmids and sequential deletion constructs of the 5 c-RET flanking region cloned upstream of the Luciferase reporter gene. Here we show that HOX11L1 enhances the activity of the c-RET promoter in SK-N-MC cell line by stimulating a region between -166 bp and -35 bp. Gel shift assays performed with oligonucleotides spanning this promoter sequence showed a change of the SP1 interaction with its binding sites, consequent to transfection with HOX11L1. While HOX11L2 showed no effect in both the cell lines, we have observed PHOX2A, PHOX2B, and MASH1 triggering a reproducible increase in the Luciferase activity in SK-N-BE cell line. A sequence responsible of the PHOX2A-dependent activation has been identified, while PHOX2B seems to act indirectly, as no physical binding has been demonstrated on c-RET promoter.

Induction of a proinflammatory program in normal human thyrocytes by the RET/PTC1 oncogene.

Rearrangements of the RET receptor tyrosine kinase gene generating RET/PTC oncogenes are specific to papillary thyroid carcinoma (PTC), the most frequent thyroid tumor. Here, we show that the RET/PTC1 oncogene, when exogenously expressed in primary normal human thyrocytes, induces the expression of a large set of genes involved in inflammation and tumor invasion, including those encoding chemokines (CCL2, CCL20, CXCL8, and CXCL12), chemokine receptors (CXCR4), cytokines (IL1B, CSF-1, GM-CSF, and G-CSF), matrix-degrading enzymes (metalloproteases and urokinase-type plasminogen activator and its receptor), and adhesion molecules (L-selectin). This effect is strictly dependent on the presence of the RET/PTC1 Tyr-451 (corresponding to RET Tyr-1062 multidocking site). Selected relevant genes (CCL20, CCL2, CXCL8, CXCR4, L-selectin, GM-CSF, IL1B, MMP9, UPA, and SPP1/OPN) were found up-regulated also in clinical samples of PTC, particularly those characterized by RET/PTC activation, local extrathyroid spread, and lymph node metastases, when compared with normal thyroid tissue or follicular thyroid carcinoma. These results, demonstrating that the RET/PTC1 oncogene activates a proinflammatory program, provide a direct link between a transforming human oncogene, inflammation, and malignant behavior.

Detection of the PTC/retTPC oncogene in human thyroid cancers.

We have investigated the PTC/retTPC oncogene, an activated form of ret proto-oncogene with a specific rearrangement, in thyroid malignancies. Southern analysis was used to screen 36 thyroid papillary carcinomas (PC), 22 normal thyroid tissues from glands with PC elsewhere, three follicular carcinomas, eight follicular adenomas and 30 other non-malignant thyroids. Rearrangements were detected in four PCs (11%) using probes derived from the ret proto-oncogene. Genomic breakpoints from a PC and a PC cell line (TPC-1) were cloned and sequenced. The rearrangement points of ret proto-oncogene were found in the intron between the exon for the transmembrane domain and the first exon for the tyrosine kinase domain. Furthermore, the PTC/retTPC chimeric transcripts were detected in two PCs with the rearrangement by reverse transcription polymerase chain reaction. Distant metastases were present in 50% (2/4) of PCs with the rearrangement, but in only two out of 32 PCs without a detectable rearrangement (P = 0.05, Fisher exact test). Our study suggests that the rearrangement of the ret proto-oncogene may be involved in the development of distant metastases in patients with papillary thyroid carcinomas. However, a larger clinical study will be required to verify this observation.

Detection of phosphorylated retTPC oncogene product in cytoplasm.

The product of the retTPC oncogene, an activated form of the ret proto-oncogene found in human papillary thyroid carcinomas, was identified as a 57-kDa protein (p57retTPC) by Western blotting with a polyclonal antibody raised by an oligopeptide corresponding to the carboxy-terminal region of the ret proto-oncogene product. Subcellular fractionation experiments using NIH3T3 cell transformants induced by the retTPC cDNA showed that p57retTPC was localized in a soluble cytoplasmic fraction, whereas the ret proto-oncogene products expressed in a neuroblastoma cell line were present in a membrane fraction. Immunostaining also demonstrated that p57retTPC is localized in the cytoplasm. Immunoprecipitation with anti-phosphotyrosine antibody followed by Western blotting revealed that p57retTPC is constitutively phosphorylated, whereas the ret proto-oncogene products are not. These findings suggest that p57retTPC has an aberrant tyrosine kinase activity resulting in autophosphorylation associated with change in its location.

Establishment and characterization of a malignant melanocytic tumor cell line expressing the ret oncogene.

We established a cell line (designated Mel-ret) from a melanocytic tumor developed in a metallothionein/ret transgenic mouse. Unlike primary melanocytic tumors, which did not show malignant features, when the Mel-ret cells were transplanted into nude mice they invaded into surrounding tissues and had metastatic ability. Although the Ret proteins were expressed at similar levels in the cell line and the primary tumors, the level of tyrosine phosphorylation in the Mel-ret cells was much higher than that in the primary tumors. In particular, an 85-kDa tyrosine-phosphorylated band was specifically detected in the Mel-ret cells. These results suggest that the increase in tyrosine phosphorylation may be responsible for malignant transformation of the Mel-ret cells. Immunofluorescence and cell fractionation studies showed that the Ret proteins and most of tyrosine-phosphorylated proteins in the Mel-ret cells localized in the membrane fraction. No activation of phosphatidyl-inositol-3 kinase (PI-3 kinase), a target protein for several tyrosine kinases, was detected in the Mel-ret cells.

Medullary thyroid carcinoma: pitfalls in diagnosis by fine needle aspiration cytology and relationship of cytomorphology to RET proto-oncogene mutations.

OBJECTIVE: To elucidate the pitfalls in the diagnosis of medullary thyroid carcinoma (MTC) by fine needle aspiration cytology (FNAC) and the relationship of cytomorphology to RET proto-oncogene mutations. STUDY DESIGN: Cytomorphology was reviewed in the fine needle aspiration slides of 34 patients with MTC proven by surgery and pathology. Germline or somatic RET proto-oncogene mutations were determined using polymerase chain reaction-based sequencing in 15 of 34 patients, and the relationship to cytomorphology was evaluated. RESULTS: Twenty-eight (82.4%) of 34 cases were diagnosed correctly as MTC by FNAC, 3 cases were misdiagnosed as follicular neoplasm and 1 as desmoid, and 2 cases were suspicious for MTC. The main reason for misdiagnosis was overlooking the slight angular shape of the nuclei or atypical changes. In 15 of 34 cases with germline or somatic RET proto-oncogene mutations determined, 10 cases had a germline mutation, and 1 had only a somatic mutation. There were 4 cases that had neither germline nor somatic RET proto-oncogene mutations. Cells with small/round and spindled forms were the predominant findings of codon 918 ATG-->ACG mutation, and cells with small/round and large oval to polygonal forms were the main findings of codon 634 mutations. There were no misdiagnoses in patients with RET proto-oncogene mutations. CONCLUSION: FNAC is a good diagnostic method for MTC. Codon 918 mutation correlates mainly with small/round and spindled cells and codon 634 with small/round, large oval to polygonal forms.

Ret proto-oncogene mutations in apparently sporadic Turkish medullary thyroid carcinoma patients: Turkmen study.

OBJECTIVE: Medullary thyroid carcinoma (MTC) frequently occurs in a sporadic form, but a substantial number of cases are hereditary and appear as part of the multiple endocrine neoplasia type 2 (MEN2) syndromes. Germline mutations in ret proto-oncogene have been shown to be the underlying cause of MEN2 syndromes. DESIGN: We carried out a multi-center study that aimed to perform mutational analysis of so called sporadic MTC patients. METHODS: Fifty-six MTC patients verified by histopathologic examination were subjected to genetic analysis. Exon 10, 11, 13, 14, 15 and 16 of the ret gene were analyzed by DNA sequencing and restriction enzyme digestion method. RESULTS: Among 56 apparently sporadic MTC patients, we identified 6 (10.7%) ret germline mutation carriers. Three individuals carried mutations at codon 634 in exon 11, one at codon 618 in exon 10, and two at codon 804 in exon 14. Identification of the predisposition gene mutation has allowed DNA-based strategy for direct mutation detection in patients with apparently sporadic MTCs. A substantial number of patients with apparently sporadic MTC carried germline mutations and 50% of their first degree relatives are expected to have or to develop MTC and/or other endocrine tumors. CONCLUSIONS: These results indicate the importance of careful genetic surveillance of any patient with apparently sporadic MTCs.

Exon 5 of the RET proto-oncogene: a newly detected risk exon for familial medullary thyroid carcinoma, a novel germ-line mutation Gly321Arg.

Familial medullary thyroid carcinoma (FMTC) is an autosomal dominant inherited disease, characterized by germ-line mutations in the RET proto-oncogene, mainly in exons 10 and 11, but also in exons 13, 14 and 15. Recently, mutations in exons 8 and 16 associated with FMTC were also described. In the herein presented study, single strand conformation polymorphism (SSCP) method for rapid screening of mutations in the RET proto-oncogene and fluorescent sequencing method were used. In one Czech family with FMTC, we have identified a novel missense point mutation of the RET proto-oncogene in exon 5, that results in substitution of arginine by glycine at codon 321 in the cadherin-like domain of ret protein. It seems that this mutation causes FMTC as no other mutation was found in the classical risk exons (10, 11, 13, 14, 15 and 16) of the RET proto-oncogene. The mutation cosegregates with medullary thyroid carcinoma (MTC) or C cell hyperplasia (CCH) in two patients; two other family members are mutation carriers without clinical signs of MTC so far. To improve the diagnosis of FMTC, analysis of exon 5 of the RET proto-oncogene should be considered in families with no identified classical RET mutations.

Haplotypes of the human RET proto-oncogene associated with Hirschsprung disease in the Italian population derive from a single ancestral combination of alleles.

The RET proto-oncogene is the major gene involved in the complex genetics of Hirschsprung disease (HSCR), or aganglionic megacolon, showing causative loss-of-function mutations in 15-30% of the sporadic cases. Several RET polymorphisms and haplotypes have been described in association with the disease, suggesting a role for this gene in HSCR predisposition, also in the absence of mutations in the coding region. Finally, the presence of a functional variant in intron 1 has repeatedly been proposed to explain such findings. Here we report a case-control study conducted on 97 Italian HSCR sporadic patients and 85 population matched controls, using 13 RET polymorphisms distributed throughout the gene, from the basal promoter to the 3 UTR. Linkage disequilibrium and haplotype analyses have shown increased recombination between the 5 and 3 portions of the gene and an over-representation, in the cases studied, of two haplotypes sharing a common allelic combination that extends from the promoter up to intron 5. We propose that these two disease-associated haplotypes derive from a single founding locus, extending up to intron 19 and successively rearranged in correspondence with a high recombination rate region located between the proximal and distal portions of the gene. Our results suggests the possibility that a common HSCR predisposing variant, in linkage disequilibrium with such haplotypes, is located further downstream than the previously suggested interval encompassing intron 1.

Activation of the Erk8 mitogen-activated protein (MAP) kinase by RET/PTC3, a constitutively active form of the RET proto-oncogene.

Mitogen-activated protein (MAP) kinases have a central role in several biological functions, including cell adhesion and spreading, chemotaxis, cell cycle progression, differentiation, and apoptosis. Extracellular signal-regulated kinase 8 (Erk8) is a large MAP kinase whose activity is controlled by serum and the c-Src non-receptor tyrosine kinase. Here, we show that RET/PTC3, an activated form of the RET proto-oncogene, was able to activate Erk8, and we demonstrate that such MAP kinase participated in RET/PTC3-dependent stimulation of the c-jun promoter. By using RET/PTC3 molecules mutated in specific tyrosine autophosphorylation sites, we characterized Tyr(981), a known binding site for c-Src, as a major determinant of RET/PTC3-induced Erk8 activation, although, surprisingly, the underlying mechanism did not strictly depend on the activity of Src. In contrast, we present evidence that RET/PTC3 acts on Erk8 through Tyr(981)-mediated activation of c-Abl. Furthermore, we localized the region responsible for the modulation of Erk8 activity by the RET/PTC3 and Abl oncogenes in the Erk8 C-terminal domain. Altogether, these results support a role for Erk8 as a novel effector of RET/PTC3 and, therefore, RET biological functions.

BAY 43-9006 inhibition of oncogenic RET mutants.

BACKGROUND: Medullary and papillary thyroid carcinomas are often associated with oncogenic activation of the RET tyrosine kinase. We evaluated whether the biaryl urea BAY 43-9006, which is known to inhibit several other tyrosine kinases, blocks RET kinase function and oncogenic activity. METHODS: We examined BAY 43-9006 activity against oncogenic RET in vitro and in cellular RET signaling in oncogenic RET-transfected NIH3T3 fibroblasts by using immunocomplex kinase assays and immunoblotting with phospho-specific antibodies. The effects of BAY 43-9006 on proliferation of human TPC1 and TT thyroid carcinoma cells, which harbor spontaneous oncogenic RET alleles, and on RAT1 fibroblasts transformed with oncogenic RET mutants, including mutants that are resistant to other chemotherapeutic agents, were determined using growth curves and flow cytometry. Growth of TT cell-derived xenograft tumors in athymic mice treated orally with BAY 43-9006 or with vehicle was measured. ALL statistical tests were two-sided. RESULTS: BAY 43-9006 inhibited oncogenic RET kinase activity at half-maximal inhibitory concentrations (IC50s) of 50 nM or less in NIH3T3 cells. It also arrested the growth of NIH3T3 and RAT1 fibroblasts transformed by oncogenic RET and of thyroid carcinoma cells that harbor spontaneous oncogenic RET alleles. Moreover, BAY 43-9006 inhibited the growth of cells carrying RET V804L (IC50 = 110 nM, 95% confidence interval [CI] = 88 to 133 nM) or RET V804M (IC50 = 147 nM, 95% CI = 123 nM to 170 nM), both mutants that are resistant to anilinoquinazolines and pyrazolopyrimidines. After 3 weeks of oral treatment with BAY 43-9006 (60 mg/kg/day), the volume of TT cell xenografts (n = 7) was reduced from 72.5 to 44 mm3 (difference = 28.5 mm3, 95% CI = 7 mm3 to 50 mm3), whereas in vehicle-treated mice (n = 7), mean tumor volume increased to 408 mm3 (difference = 320 mm3, 95% CI = 180 mm3 to 460 mm3; untreated versus treated, P =.02). This inhibition paralleled a decrease in RET phosphorylation. CONCLUSIONS: BAY 43-9006 is a powerful inhibitor of the RET kinase. Its potential as a therapeutic tool for RET-positive thyroid tumors, including those expressing V804 mutations merits study.

Impact of RET proto-oncogene analysis on the clinical management of multiple endocrine neoplasia type 2.

Multiple endocrine neoplasia type 2 (MEN2) is an autosomal dominant disease characterized by the presence of medullary thyroid carcinoma, primary hyperparathyroidism, and pheochromocytoma. Multiple endocrine neoplasia type 2 is still an underdiagnosed, or late-diagnosed condition in many areas of the world. Since 1993, when the first missense RET proto-oncogene (RET) mutations were reported in MEN2, up to 46 different RET-causing disease mutations have been described. Since a strong genotype-phenotype correlation exists for MEN2, the detection of RET mutations has produced a major impact in early recognition and treatment of MTC and MEN2. Presently, RET mutation analysis should be performed for ALL MEN2 cases and their at-risk familial relatives. Further, prophylactic total thyroidectomy is indicated in ALL cases harboring activating gametic RET mutations. In most RET mutation carriers, prophylactic total thyroidectomy is indicated at ages as early as a few months to 4 years of age, promoting longer survival and improvement of quality of life or even definitive cure. We discuss the large impact of RET proto-oncogene analysis on the clinical management of MEN2 and the role of early RET molecular DNA diagnosis in providing clinicians and surgeons with valuable information that enables them to indicate early total thyroidectomy.

Mutation of RET proto-oncogene in Hirschsprung s disease and intestinal neuronal dysplasia.

AIM: To investigate the genetic relationship between Hirschsprung s disease (HD) and intestinal neuronal dysplasia (IND) in Chinese population. METHODS: Peripheral blood samples were obtained from 30 HD patients, 20 IND patients, 18 HD/IND combined patients and 20 normal individuals as control. Genomic DNA was extracted according to standard procedure. Exons 11,13,15,17 of RET proto-oncogene were amplified by polymerase chain reaction (PCR). The mutations of RET proto-oncogene were analyzed by single strand conformational polymorphism (SSCP) and sequencing of the positive amplified products was performed. RESULTS: Eight germline sequence variants were detected. In HD patients, 2 missense mutations in exon 11 at nucleotide 15165 G-->A (G667S), 2 frameshift mutations in exon 13 at nucleotide 18974 (18974insG), 1 missense mutation in exon 13 at nucleotide 18919 A-->G (K756E) and 1 silent mutation in exon 15 at nucleotide 20692 G-->A(Q916Q) were detected. In HD/IND combined patients, 1 missense mutation in exon 11 at nucleotide 15165 G-->A and 1 silent mutation in exon 13 at nucleotide 18888 T-->G (L745L) were detected. No mutation was found in IND patients and controls. CONCLUSION: mutation of RET proto-oncogene is involved in the etiopathogenesis of HD. The frequency of RET proto-oncogene mutation is quite different between IND and HD in Chinese population. IND is a distinct clinical entity genetically different from HD.

[Association between RET proto-oncogene polymorphisms and Hirschsprung disease in Chinese Han population of Hubei district].

OBJECTIVE: To establish the genetic background of exon2, exon13, exon11 and exon15 polymorphisms of RET proto-oncogene and study the possible involvement of RET proto-oncogene in the etiology of Hirschsprung disease (HD) in Chinese Han population surrounding Province HuBei. METHODS: The genotype and allele frequencies of RET proto-oncogene polymorphisms were identified by polymerase chain reaction-restriction fragment length polymorphisms (PCR-RFLPS) in 94 HD patients and 122 control subjects. RESULTS: The genotype and allele frequencies of exon2 were AA 0.17, AG 0.72, GG 0.11, A 0.53, G 0.47 in control, and AA 0.61, AG 0.35, GG 0.04, A 0.78, G 0.22 in HD, and those of exon13 were GG 0.30, GT 0.52, TT 0.18, G 0.56, T 0.44 in control, and GG 0.49, GT 0.36, TT 0.15, G 0.67, T 0.33 in HD. There were significant differences in the two polymorphisms above between HD and control. The genotype and allele frequencies of exon11 were AA 0.05, AG 0.16, GG 0.79, A 0.13, G 0.87 in control and AA 0.02, AG 0.14, GG 0.84, A 0.09, G 0.91 in HD, the differences were not found between these two groups about this site. Exon15 were ALL of CC genotype in spite of control or HD. CONCLUSIONS: These data provide evidences for the contributions of exon2 and exon13 polymorphisms of RET proto-oncogene to susceptibility to HD in Chinese Han population surrounding province.

New multiple somatic mutations in the RET proto-oncogene associated with a sporadic medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) occurs mostly as a sporadic tumor or in connection with inherited cancer syndromes-multiple endocrine neoplasia (MEN) types 2A and 2B and familial MTC. Germline mutations in the RET proto-oncogene are found in most of the familial cases. Somatic mutations in the RET proto-oncogene are detected in 23%-69% of patients with sporadic MTC. The most frequent somatic mutation is Met918Thr in exon 16 and only a small percentage of mutations in other RET exons have been observed. In a very few cases double mutations were found. Genetic screening for somatic mutations in RET exons 10, 11, 13, 14, 15, and 16 in Czech patients with sporadic MTC was carried out by DNA sequencing. This study presents a new triplesomatic mutation Gly911Asp, Met918Thr, and Glu921Lys in exon 16 of the RET proto-oncogene detected in an 18-year-old Czech male patient. In the second case, a new double-somatic mutation Val591Ile in exon 10 with a concomitant somatic mutation Met918Thr in exon 16 was found in a 77-year-old Czech female patient. These both newly described somatic multiple mutations were revealed in a hemizygous status, the loss of heterozygosity in tumor tissues in comparison with germline DNA was confirmed.

[Characterization of RET proto-oncogene C634Y mutation in a Moroccan family with multiple endocrine neoplasia type 2A].

Medullary thyroid carcinoma (MTC) is a rare cancer which originates from the calcitonin producing "C" cells of thyroid gland. It presents in as isolated form or as part of the multiple endocrine neoplasia type 2 (MEN 2). The familial form of MTC which frequency remains underestimated, account for 25 to 40% of ALL MTC presentations. ALL hereditary forms are transmitted in an autosomal dominant manner and are due to proto-oncogene RET germ line mutations. Although MCT is relatively rare, preclinical or prebiological diagnosis can be achieved with genetic screening with high specificity and sensitivity. Early diagnosis is crucial for disease prevention. In this study we identified the first RET mutation underlying NEM 2A in Morocco. The C634Y mutation was present in the heterozygous state in a Moroccan family with MEN 2A. Genetic screening showed that six asymptomatic members of this family were not C364Y carriers. This report should contribute to the development of genetic screening for NEM 2 and F-MTC in Morocco.

Double germline mutations in the RET Proto-oncogene in MEN 2A and MEN 2B kindreds.

Medullary thyroid carcinoma (MTC) is a rare form of thyroid cancer representing about 10% of ALL thyroid malignancies. It occurs mostly as a sporadic tumor or in association with autosomal dominant inherited cancer syndromes--multiple endocrine neoplasia (MEN) types 2A and 2B and familial MTC. Germline mutations in exons 8, 10, 11, 13, 14, 15 and 16 of the RET proto-oncogene are found in most of the familial cases. There are only a few published data reporting multiple germline mutations in the RET proto-oncogene. We have detected double germline mutations in 2 different exons on the same RET allele in two MEN 2 families. In the MEN 2A family, double germline mutation in exons 10 (Cys620Phe) and 13 (Tyr791Phe) was detected. In the MEN 2B family, beside the classical germline mutation in exon 16 (Met918Thr) a second germline mutation in exon 13 (Tyr791Phe) was found. This study revealed that MEN 2 syndromes can also be caused by double germline mutations in the RET proto-oncogene and these families can be added to small worldwide cohort of families with multiple germline mutations.

Occurrence of the Cys611Tyr mutation and a novel Arg886Trp substitution in the RET proto-oncogene in multiple endocrine neoplasia type 2 families and sporadic medullary thyroid carcinoma cases originating from the central region of Portugal.

OBJECTIVE: Medullary thyroid carcinoma (MTC) occurs both sporadically and in the context of autosomal dominantly inherited multiple endocrine neoplasia type 2 (MEN2) syndromes: MEN2A, MEN2B, and familial medullary thyroid carcinoma (FMTC), which are caused by activating germline mutations in the RET proto-oncogene. The aim of this study was to characterize the RET mutational spectrum in MEN2 families and apparently sporadic MTC (AS-MTC) cases originating from the central region of Portugal. SUBJECTS AND METHODS: We studied a total of 82 individuals (64 affected and 18 family members), comprising five MEN2 families (four MEN2A and one MEN2B), as well as 53 AS-MTC cases. RET germline mutations were screened using PCR-DNA sequencing, SSCP and RFLP. The haplotypes associated with recurrent mutations were determined by fragment analysis of microsatellite markers, and by RFLP, in the case of intragenic polymorphisms. RESULTS: Frequency of the Cys611Tyr (TGC-TAC) mutation was significantly increased in this region of Portugal, due to the fact that three apparently unrelated MEN2A/FMTC families, out of the five in which mutations were identified, harboured this specific mutation. Haplotype analysis revealed that a common haplotype was shared between two of these three families. We have also characterized a novel RET mutation, Arg886Trp, located in the tyrosine kinase domain, which was found in an AS-MTC case. CONCLUSIONS: There are regional specificities in the relative frequency of RET mutations, which are consistent with a cluster-like distribution of specific disease-causing mutations, as a result of the inheritance of a shared haplotype. These data, along with the finding of a novel RET mutation (Arg886Trp), have important implications towards facilitating and improving the molecular diagnosis of hereditary MTC on a regional basis.

The identification of ganglion cells in Hirschsprung disease by the immunohistochemical detection of ret oncoprotein.

The absence of ganglion cells (GCs) is the primary anatomic abnormality in Hirschsprung disease. Light microscopy is the mainstay in establishing this diagnosis. However, establishing a condition of aganglionosis may be challenging on routine H&E-stained sections of colonic biopsies and resections. We studied the identification of GCs by retinoblastoma oncoprotein (ret) immunoreactivity and routine H&E light microscopy by evaluating 53 blocks from 34 patients demonstrating GCs on original H&E-stained sections and 55 blocks from 38 patients lacking GCs on original H&E-stained sections. ALL blocks demonstrating GCs on H&E-stained sections also were positive for GCs on ret staining (100%). In 3 blocks that were negative for GCs by H&E staining (5%), GCs were shown on ret-stained sections. Immunoreactivity for ret has comparable specificity but slightly higher sensitivity to routine light microscopic evaluation in identifying GCs. GCs are identified more readily by ret immunoreactivity than by routine morphologic examination.

[Mutation screening of RET proto-oncogene in Chinese sporadic patients with pheochromocytoma].

OBJECTIVE: To screen the mutations of RET proto-oncogene in sporadic patients with pheochromocytoma. METHODS: Forty-two cases of sporadic pheochromocytoma were tested for mutations of RET gene. Of these 42 DNA samples, 12 were extracted from peripheral blood cells and 30 from paraffin-embedded pheochromocytoma specimens. The PCR product of exon 10 and exon 11 was used to molecular analysis of the RET proto-oncogene. RESULTS: Among 42 patients, 2 were found to have RET gene mutations. One of mutations located at codon 634 (TGC>TAC) in exon 11 of RET proto-oncogene. Another one located at codon 632 (GAG>AAG). CONCLUSION: Some patients with apparently sporadic pheochromacytoma were carrier of mutations, a routine genetic analysis for mutations of RET gene is indicated for these patients.

Isolated intestinal ganglioneuromatosis with a new mutation of RET proto-oncogene.

A 13-year-old boy with a history of juvenile polyps of the colon was subsequently found to have isolated intestinal ganglioneuromatosis without any other features characteristic of multiple endocrine neoplasia (MEN) 2B. Screening for MEN 2B revealed a polymorphism of the RET proto-oncogene at codon 691 with a glycine to serine conversion. This mutation has not been described before in association with ganglioneuromatosis and MEN 2B. The phenotype and presentation are compared with those of previous case reports.

An STS in the human PTC oncogene located at 10q11.2.

Fibroblast growth factor 5 (FGF-5) is a member of the fibroblast growth factor family with transforming potential. It has been found to be expressed in several human tumor cell lines, but nothing is known about expression of this growth factor in normal cells and its biological functions. Here we show that the FGF-5 gene is expressed in exponentially growing normal human fibroblasts. In quiescent fibroblasts, expression of FGF-5 is strongly induced by serum and several growth factors such as platelet-derived growth factor (PDGF), epidermal growth factor (EGF) and transforming growth factor alpha (TGF-alpha). This induction can be mediated by at least two different pathways involving protein kinase C or cAMP-dependent kinases. Since the effect is independent of de novo protein synthesis, FGF-5 represents the product of a primary response gene. In addition our data suggest that FGF-5 is mitogenic for human fibroblasts, indicating the existence of an FGF-5-mediated positive feedback in these cells which could amplify and prolong the cellular response to the initial stimulus.

Very early prophylactic thyroid surgery for infants with a mutation of the RET proto-oncogene at codon 634: evaluation of the implementation of international guidelines for MEN type 2 in a single centre.

OBJECTIVE: Genetic diagnosis available since 1993 established germinal mutations of the RET proto-oncogene at codon 634 as the main cause of inherited medullary thyroid carcinoma (MTC). International guidelines established in 1999 recommend that children with such mutations undergo a total thyroidectomy before age 5, with unspecified cervical neck dissection. Since 1993, only 41 of 275 thyroidectomies reported in RET 634 children were performed before age 5 (15%). The aim of this study was to evaluate the implementation of these guidelines in a single centre. DESIGN AND PATIENTS: Genetic diagnosis was proposed to the parents of ALL eight children born after 1992 from two RET 634 families. Total thyroidectomy was proposed before age 5 if the child carried a mutation. RESULTS: Genetic diagnosis was performed in ALL the children (aged 1-3) and thyroidectomy in the five who carried a mutation (aged 2-5). Cervical lymph node dissection varied from lymphadenectomy of central and lateral compartments in the eldest child to pickings in the youngest. There was no permanent hypoparathyroidism or recurrent nerve paralysis. C-cell hyperplasia, medullary thyroid carcinoma and lymph node metastasis were present in 5/5, 3/5 and 0/5, respectively. Undetectable pentagastrin-stimulated CT levels were achieved and maintained postoperatively in ALL five children (average follow-up 3.6 years). CONCLUSIONS: MEN 2 guidelines on thyroidectomy can be efficiently and safely implemented by a multidisciplinary team operating in a single centre. The lack of guidelines on cervical neck dissection remains a problem; this could be solved by determining an age under which this procedure would be deemed unnecessary.

Tight linkage of the ret proto-oncogene with the multiple endocrine neoplasia type 2A locus.

The ret proto-oncogene has been mapped to 10q11.2 near the MEN2A locus by in situ hybridization. We carried out a linkage study of Japanese multiple endocrine neoplasia type 2A (MEN2A) families using a cosmid clone containing the ret proto-oncogene as probe. Two polymorphic alleles (A1 and A2) could be detected by digesting DNA with EcoRI: allele A1 was detected as a 10 kb fragment and A2 as 5.4 and 4.6 kb fragments. Of 11 Japanese MEN2A families analysed, four were informative, and the maximum lod score was 4.23 at a recombination fraction of 0.00. This result suggests the ret proto-oncogene to be close to the MEN2A gene and therefore possibly to be a useful DNA marker for cloning the latter.

A rare extracellular D631Y germline mutation of the RET proto-oncogene in two Korean families with multiple endocrine neoplasia 2A.

A mutation in codon 631 of exon 11 of the RET proto-oncogene is extremely rare in the patients with multiple endocrine neoplasia type 2A (MEN 2A). We report here on a rare extracellular mutation of the RET gene that led to the substitution of a tyrosine for an aspartate in codon 631 (D631Y, GAC to TAC) in two Korean families with MEN 2A. Eleven individuals from two unrelated families were found to have the D631Y germline mutation. Among them, medullary thyroid carcinoma (MTC) was identified in five patients: four of them had MEN 2A and one had familial MTC. They had tumors 2 cm or less in the greatest dimension that were limited to the thyroid, and they had a relatively old age above 30 at the time of diagnosis. Pheochromocytoma was detected in six patients including the four patients who had MEN 2A. ALL had adrenal tumors greater than 3 cm in the greatest dimension, and four of them had bilateral tumors. Two of six patients suffering with pheochromocytoma had no clinical evidence of MTC at the time of diagnosis. None had any evidence of hyperparathyroidism. This genetic profile might be related to the less vigorous clinical disease behavior and the late onset of MTC. In addition, pheochromocytoma might be the first manifestation prior to the development of MTC in some patients with the D631Y mutation. This report is the first description of the clinical characteristics of the D631Y germline mutation in the families with MEN 2A.

An orally administered multitarget tyrosine kinase inhibitor, SU11248, is a novel potent inhibitor of thyroid oncogenic RET/papillary thyroid cancer kinases.

CONTEXT: The oncogenic RET/PTC tyrosine kinase causes papillary thyroid cancer (PTC). The use of inhibitors specific for RET/PTC may be useful for targeted therapy of PTC. OBJECTIVE: The objective of the study was to evaluate the efficacies of the recently developed kinase inhibitors SU11248, SU5416, and SU6668 in inhibition of RET/PTC. DESIGN: SU11248, SU5416, and SU6668 were synthesized, and their inhibitory potencies were evaluated using an in vitro RET/PTC kinase assay. The inhibitory effects of the compounds on RET/PTC were evaluated by quantifying the autophosphorylation of RET/PTC, signal transducer and activator of transcription (STAT)-3 activation, and the morphological reversal of RET/PTC-transformed cells. RESULTS: An in vitro kinase assay revealed that SU5416, SU6668, and SU11248 inhibited phosphorylation of the synthetic tyrosine kinase substrate peptide E4Y by RET/PTC3 in a dose-dependent manner with IC(50) of approximately 944 nm for SU5416, 562 nm for SU6668, and 224 nm for SU11248. Thus, SU11248 effectively inhibits the kinase activity of RET/PTC3. RET/PTC-mediated Y705 phosphorylation of STAT3 was inhibited by addition of SU11248, and the inhibitory effects of SU11248 on the tyrosine phosphorylation and transcriptional activation of STAT3 were very closely correlated with decreased autophosphorylation of RET/PTC. SU11248 caused a complete morphological reversion of transformed NIH-RET/PTC3 cells and inhibited the growth of TPC-1 cells that have an endogenous RET/PTC1. CONCLUSION: SU11248 is a highly effective tyrosine kinase inhibitor of the RET/PTC oncogenic kinase.

Expression of ret proto-oncogene in human neuroblastomas.

We examined the expression of ret proto-oncogene (proto-ret) in surgically resected human neuroblastomas. Slot blot RNA hybridization revealed that ALL 29 neuroblastomas examined expressed the proto-ret, the relative intensity of the hybridization ranging from 1 to 48. No correlation was found between the level of expression of proto-ret and the clinical stage. The level of expression was also not correlated with N-myc amplification, the patient s age or the histological type of the tumor. Based on the previous finding that proto-ret expression is very rarely detected in tumor cell lines other than those of neuroblastoma, proto-ret expression was suggested to be a characteristic of neuroblastomas, and possibly to be involved in the genesis of neuroblastomas.

Video-assisted central compartment lymphadenectomy in a patient with a positive RET oncogene: initial experience.

BACKGROUND: Prophylactic surgery for patients carrying a positive RET proto-oncogene proved to be highly effective in curing those likely to experience the development of a medullary carcinoma. Video-assisted procedures have been proved feasible for central compartment dissection. METHODS: A total of 15 patients (7 men and 8 women) with a positive RET proto-oncogene underwent total thyroidectomy and central compartment lymphadenectomy via a video-assisted approach. The mean age of the patients was 32.5 years. The echographically estimated mean volume was 10.3 ml, and the mean diameter of the main nodule was 8.8 mm. Preoperative ultrasound showed an absence of lateral neck lymph node involvement in ALL cases. No drain was used. Direct laryngoscopy was performed in ALL cases 1 month after surgery. RESULTS: The mean operative time was 67.3 min. A transient hypoparathyroidism occurred in one patient, and a permanent hypoparathyroidism occurred in another patient. No laryngeal nerve palsy was present. ALL the patients were discharged on postoperative day 1. Histology showed a medullary carcinoma in 10 patients and diffuse C-cell hyperplasia in 5 patients. The mean number of lymph nodes removed was 5.1. None of these nodes proved to be metastatic. Calcitonin levels were undetectable in ALL six patients who had a follow-up period longer than 1 year. CONCLUSION: Video-assisted central compartment lymphadenectomy was proved to be effective and safe. The procedure demonstrated a complication rate comparable with that for the conventional procedure, a better cosmetic outcome, and less postoperative pain. Although the video-assisted access proved to be a valid option for the treatment of patients carrying a positive RET proto-oncogene, a greater number of cases with a longer follow-up period is necessary to estimate the impact of the video-assisted approach on central neck lymphadenectomy.

The ret proto-oncogene is consistently expressed in human pheochromocytomas and thyroid medullary carcinomas.

We have recently reported the identification of a new oncogene, named PTC, frequently activated in human thyroid papillary carcinomas. This gene is a novel rearranged form of the ret proto-oncogene and we have shown that this rearrangement occurred in vivo as a tumor-specific somatic event. In an effort to further examine the role of this oncogene in human malignancies, we have investigated the expression of the ret oncogene in a number of human tumors. We consistently detected expression of normal-sized transcripts of the ret proto-oncogene in human pheochromocytomas and in human medullary thyroid carcinomas (MTC), both of familial and sporadic type. Moreover, we showed that ret mRNA levels were increased following (Bu)2cAMP-induced differentiation of a human MTC cell line (TT). Since the ret gene has been mapped on chromosome 10, close to the gene which predisposes patients to the MEN2A syndrome, we suggest that this region of chromosome 10 might be involved in the proliferative and differentiative patterns of these neuroectodermal tissues.

[Thyroid carcinomas and Hirschsprung s disease--10-year experience with molecular genetic testing of the RET proto-oncogene].

In the last ten years, research has confirmed the role of the RET proto-oncogene in the pathogenesis of thyroid cancer such as medullary thyroid carcinoma (MTC) and papillary thyroid carcinoma (PTC), multiple endocrine neoplasia type 2 (MEN 2) and Hirschsprung s disease that can be associated with MTC or MEN 2. Through the use of molecular genetic testing, we are able to detect gene mutations and the course the disease might take can be predicted, thus enabling us to cure mutation carriers among the high-risk patients can at a very early, clinically asymptomatic stage of the disease; prophylactic total thyreoidectomy in said patients is recommended. At this juncture, there is extensive on-going research on the physiological role played by the RET proto-oncogene on the normal proliferation, differentiation and survival of the cell. Thanks to the new findings there are now possibilities of the theurapeutic use of gene therapy on an RET signaling cascade level in near future.

Allele dosage-dependent penetrance of RET proto-oncogene in an Israeli-Arab inbred family segregating Hirschsprung disease.

Hirschsprung disease (HSCR) is characterised by intestinal obstruction resulting from an absence of ganglion cells in the intestinal tract. The mutations in the major gene, RET, associated with isolated HSCR, are dominant loss-of-function mutations with incomplete penetrance and variable expressivity. We have ascertained a large inbred Israeli-Arab family segregating HSCR. Sequencing of the RET gene showed a splicing mutation, IVS6+5G- >A, in the homozygous state in ALL the females with severe forms of HSCR and in the heterozygous state in the male patient with short-segment HSCR. The recently described hypomorphic-RET predisposing allele, rs2435357, was transmitted in the heterozygous state to the male patient, but was not transmitted to the three affected females. Although the heterozygous IVS6+5G- >A is of low-penetrance for short-segment HSCR disease, the homozygous state is fully penetrant for total aganglionosis or long-segment HSCR. As in other inbred populations segregating a weakly penetrant RET allele (Mennonite), our findings support the hypothesis that the penetrance of RET gene mutations for the HSCR phenotype depends on: (i) the nature of the mutation, (ii) the allele dosage and (iii) modifier-loci.

The identification of ganglion cells in Hirschsprung disease by the immunohistochemical detection of ret oncoprotein.

Resistance of carcinoma cells to hypoxic stress is of importance to the growth of solid tumors. The mucin 1 (MUC1) oncoprotein is aberrantly overexpressed by most human carcinomas; however, there is no known relationship between MUC1 and the hypoxic stress response. The present work has demonstrated that MUC1 attenuates activation of hypoxia-inducible factor-1alpha (HIF-1alpha), a regulator of gene transcription in the response of cells to hypoxic stress. In cells with stable gain and loss of MUC1 function, we have shown that MUC1 up-regulates prolyl hydroxylase 3 (PHD3) expression and promotes HIF-1alpha degradation. PHD activity is attenuated by increases in reactive oxygen species (ROS) generated in the hypoxic stress response. Our results further demonstrate that MUC1 blocks hypoxia-induced increases in ROS and thereby potentiates PHD-mediated HIF-1alpha suppression. Importantly, MUC1 also blocks hypoxia-induced apoptosis and necrosis by suppressing accumulation of ROS. These findings indicate that MUC1 attenuates HIF-1alpha activation in a survival response to hypoxic stress.

Significance of the RET proto-oncogene polymorphisms in Turkish sporadic medullary thyroid carcinoma patients.

Several single nucleotide polymorphisms (SNP) of the RET gene have been identified in medullary thyroid carcinoma (MTC) patients as well as in the general population. However, the relevance of SNP for MTC patients is still controversial, whether these allelic variants play other interacting, predisposing or modifying roles in clinical behavior of MTC. The aim of this work is to elaborate allelic frequencies of the RET proto-oncogene polymorphisms in Turkish sporadic MTC patients and to demonstrate if there is an association between SNP and the clinical disease features, specifically the age at onset of MTC and lymph node involvement at diagnosis. We analyzed the allelic frequencies of SNP of the exon 11, 13, 14 and 15 of the RET proto-oncogene in blood samples from 50 sporadic MTC patients, using the polymerase chain reaction methodology followed by DNA sequencing. The observed allelic frequencies were 24% for G691S polymorphism in exon 11, 29% for L769L polymorphism in exon 13, 5% for S836S polymorphism in exon 14, and 26% for S904S polymorphism in exon 15. These frequencies are similar to those reported in other countries. We did not observe any significant association of ALL four SNP with the age at onset of MTC. Our results indicate a possible association between the presence of lymph node involvement at the time of diagnosis (extent of disease) and L769L or S836S polymorphism. However, it is not possible to draw definitive conclusions that these two polymorphisms play a significant role in clinical behavior of MTC. Further studies are needed to evaluate the role of this polymorphism in the clinical behavior of MTC.

Mutation analysis of the RET proto-oncogene and early thyroidectomy: results of a Portuguese cancer centre.

BACKGROUND: Evidence that germline mutations in the RET proto-oncogene are the underlying cause of the familial form of medullary thyroid carcinoma (MTC) made it possible to identify gene carriers with a very high degree of accuracy. Aiming to define the mutational profile observed in our patients and to assess gene carriers compliance with an early surgery, we reviewed results of molecular analysis of RET performed at our institution since 1994. METHODS: One hundred fifty-eight individuals were screened for germline mutations of the RET proto-oncogene. Seventy-seven patients had apparently sporadic MTC; 8 patients had both MTC and pheochromocytoma or MTC and clinical features of multiple endocrine neoplasia type 2B despite a negative family history; 8 patients were known to belong to affected kindreds; and 65 individuals were at-risk individuals to develop MTC. RESULTS: A germline mutation in RET was identified in 4% of apparently sporadic MTC patients, in 100% of patients with MTC and pheochromocytoma or MTC and clinical features of multiple endocrine neoplasia type 2B, and in 100% of probands of clinically established kindreds. The most affected codon was 634 (58%) followed by codon 804 (16%). Among at-risk individuals, 49% were identified as gene carriers. Seven individuals were submitted to prophylactic thyroidectomy (mean age, 17.7 +/- 12.5 years; range: 3-42 years), and ALL but 1 had MTC. CONCLUSIONS: RET mutational spectrum observed in the present population disclosed a higher frequency of codon 804 mutations than expected. Compliance with an early prophylactic surgery seemed to be influenced not only by medical advice and cultural factors but also by the aggressiveness of disease in gene carriers families.

RET oncogene amplification in thyroid cancer: correlations with radiation-associated and high-grade malignancy.

A radiation etiology is well known in thyroid carcinogenesis. RET oncogene rearrangement is the most common oncogenic alteration in Chernobyl-related papillary thyroid cancer (PTC). To find the characteristic alteration associated with RET rearrangements in radiation-induced thyroid cancers, we analyzed the RET oncogene by fluorescence in situ hybridization. The fluorescence in situ hybridization technique has the possibility of detecting RET rearrangements at a single-cell level regardless of the specific fusion partner involved and directly reveals RET copy number on a per-cell basis. Our study demonstrated RET amplification in ALL 3 cases of radiation-associated thyroid cancers but not in sporadic well-differentiated PTC (n = 11). Furthermore, RET amplification was observed in ALL 6 cases of sporadic anaplastic thyroid cancers (ATCs). The frequency of RET amplification-positive cells was higher in ATC (7.2%-24.1%) than in PTC (1.5%-2.7%). The highest frequency of RET amplification-positive cells was observed among ATC cases with a strong p53 immunoreactivity. In conclusion, we found RET amplification, which is a rare oncogenic aberration, in thyroid cancer. This report is the first one to suggest the presence of RET amplification in PTC and ATC. RET amplification was correlated with radiation-associated, high-grade malignant potency, and p53 accumulation, suggesting genomic instability. RET amplification might be induced by a high level of genomic instability in connection with progression of thyroid carcinogenesis and, subsequently, be associated with radiation-induced and/or high-grade malignant cases.

RET proto-oncogene in Sardinia: V804M is the most frequent mutation and may be associated with FMTC/MEN-2A phenotype.

OBJECTIVE: Genetic screening of RET proto-oncogene is a powerful tool for the early identification of familial cases of medullary thyroid carcinoma (MTC), comprising isolated familial thyroid medullary carcinoma (FMTC) and multiple endocrine neoplasia syndromes 2A (MEN-2A) and 2B (MEN-2B). We report the results obtained by RET mutation analysis of subjects living in Sardinia, an Italian island whose inhabitants display a peculiar genetic background due to geographic isolation and low immigration rate for several centuries. DESIGN: Retrospective study reporting data on 67 patients referred during the last 5 years for RET analysis because affected by MTC or first degree relatives of MTC patients. MAIN OUTCOME: Only three mutations were identified affecting codons 620 (exon 10), 634 (exon 11), and 804 (exon 14); surprisingly, the most prevalent mutation found was V804M (overall prevalence: 59%). This finding is quite different from previous studies carried out in other Caucasian and non-Caucasian populations, in which the frequency of the V804M mutation is consistently reported less than 5%. The phenotype associated to V804M mutation was mostly FMTC (16/17 cases = 94.1%), but in one case (5.9%) primary hyperparathyroidism was found, suggesting a MEN-2A. CONCLUSIONS: These results underline the importance of the genetic background in the distribution of RET mutations and should be taken into consideration when performing genetic evaluation of MTC patients.

C620R mutation of the murine ret proto-oncogene: loss of function effect in homozygotes and possible gain of function effect in heterozygotes.

Germline RET mutations are responsible for different inherited disorders: Hirschsprung disease (congenital aganglionic megacolon), caused by loss of function mutations, familial medullary thyroid carcinoma and multiple endocrine neoplasia type 2, caused by gain of function mutations. Intriguingly, some RET mutations, including C620R, are associated with both types of diseases. To investigate the dual role of such RET mutations, a mouse model with a targeted mutation ret(C620R) was generated. ret(C620R/C620R) offspring die during the first postnatal day, and show kidney agenesis and intestinal aganglionosis. Decreased outgrowth of the Ret-positive cells was observed in ret(C620R/C620R) neuronal cell cultures, which is suggestive of an impaired migration, proliferation or survival of the Ret-expressing cells. Electronmicroscopy revealed the absence of membrane-bound Ret in ret(C620R/C620R) cells as compared to ret(+/+) and ret(+/C620R) cells. On the other hand, aged ret(+/C620R) mice develop precancerous lesions in the adrenal gland or in the thyroid. Our results suggest that the ret(C620R) mutation has a loss of function effect in homozygotes and exhibits a dominant gain of function effect with low penetrance causing hyperplasia in heterozygotes.

RET proto-oncogene genotyping using unlabeled probes, the masking technique, and amplicon high-resolution melting analysis.

Single bp mutations in the RET proto-oncogene can cause multiple endocrine neoplasia type 2 syndromes. The conventional approach for genotyping RET mutations is sequencing the exons. A closed-tube RET genotyping assay using a saturating DNA dye, unlabeled probes, and amplicon high-resolution melting analysis was developed. The method required two sequential polymerase chain reaction stages, a primary and secondary assay. The primary assay analyzed RET exons 10, 11, 13, 14, and 16 with a total of seven reactions using eight unlabeled probes. The primary assay genotyped wild-type exons, a common exon 13 polymorphism, and an exon 16 mutation, whereas other RET sequence variation was detected. The primary unlabeled probe data limited the possible genotypes for the detected RET sequence variation, which permitted genotyping in a secondary assay with only two to five reactions. Six probes were designed with the masking technique and masked selected sequence variations to allow unambiguous analysis of other mutations elsewhere under the probe. After this two-stage RET genotyping assay, less than 0.2% of exons tested would require sequencing for genotype. A blinded study generated from five wild type and 29 available RET sequence variation samples was 100% concordant with sequencing. Amplicon high-resolution melting analysis with unlabeled probes and the masking technique is a fast, accurate method for genotyping the >50 RET sequence variations.

The RET oncogene is a critical component of transcriptional programs associated with retinoic acid-induced differentiation in neuroblastoma.

Differentiation is a key feature in pathologic classification and prognosis of neuroblastic tumors, although the underlying molecular mechanisms are not well defined. To identify key differentiation-related molecules and pathways, we evaluated gene expression during retinoic acid (RA)-induced differentiation of seven neuroblastic tumor cell lines. Transcriptional response to RA was highly variable among cell lines despite the fact that six of seven showed similar morphologic changes. RA consistently altered expression of a small set of genes, some of which are known to play a role in neurogenesis and differentiation. expression of genes that were regulated by RA was associated with important clinical subgroups of neuroblastic tumors and were differentially expressed by stroma-rich and stroma-poor subtypes. RET, a receptor tyrosine kinase involved with differentiation, was consistently up-regulated throughout the time course of RA treatment in the majority of neuroblastic tumor cell lines. Interference with RET activation abrogated RA-induced transcriptional programs and differentiation, suggesting a key role of RET in this process. The core set of RA-regulated genes includes critical molecular components of pathways necessary for neuroblastic tumor differentiation and have potential as therapeutic targets and molecular markers of response to differentiating agents.

Asymptomatic bilateral adrenal pheochromocytoma in a patient with a germline V804M mutation in the RET proto-oncogene.

A diagnosis of bilateral pheochromocytoma warrants exclusion of hereditary pheochromocytoma. OBJECTIVE: To describe the first case of a bilateral pheochromocytoma associated with V804M mutation in the RET proto-oncogene. PATIENTS: The index case was a 54-year-old man with bilateral adrenal masses discovered during a CT scan performed for other reasons. MEASUREMENTS: Genetic analysis included exons 8-11 and 13-17 in the RET proto-oncogene, ALL four exons and flanking intronic regions in the SDHD gene, ALL eight exons and flanking intronic regions in the SDHB, and ALL three exons in the VHL gene. RESULTS: Investigations revealed elevated urinary metanephrines (32.3 micromol/day), and laparoscopic bilateral adrenalectomy confirmed bilateral pheochromocytomas. A heterozygous V804M mutation in exon 14 of the RET was found in the index case and in four relatives. Total thyroidectomy, performed in four of five affected members in this kindred, disclosed a medullary thyroid carcinoma in the index case and in a 50-year-old woman, and nodular C-cell hyperplasia in the other two subjects. CONCLUSIONS: This clinical case suggests that individuals carrying the germline V804M mutation should be screened annually for the presence of pheochromocytoma.

RET proto-oncogene mutations are restricted to codons 634 and 918 in mainland Chinese families with MEN2A and MEN2B.

OBJECTIVE: Multiple endocrine neoplasia type 2 is caused by autosomal dominant gain-of-function mutations in the RET proto-oncogene, which includes multiple endocrine neoplasia type 2A (MEN2A), type 2B (MEN 2B), and familial medullary thyroid carcinoma (FMTC). In this paper we present the phenotype-genotype correlation of 20 unrelated Chinese families with 15 cases of MEN2A and five cases of MEN2B. DESIGN: Cross-sectional study. PATIENTS: A total of 147 members from the 20 families were included. Among them, 119 family members were from MEN2A pedigrees (including 15 MEN2A probands) and 28 members from MEN2B pedigrees (including five MEN2B probands). MEASUREMENTS: Genomic DNA was isolated from peripheral blood leucocytes and was amplified using polymerase chain reaction (PCR). DNA analysis for RET mutations in exons 8, 10, 11, 13, 14, 15 and 16 was performed with specific primers. RESULTS: Thirty-seven MEN2A and five MEN2B patients were identified as having RET mutations. The incidence of medullary thyroid carcinoma (MTC), pheochromocytoma (PCC) and hyperparathyroidism (HPT) in the 37 MEN2A patients was 91.9, 56.8 and 10.8%, respectively; the onset of MTC in MEN2A patients was earlier than that of PCC and HPT. Five germline mutations, ALL located at codon 634 of exon11 in the RET proto-oncogene, were detected in ALL of the 37 MEN2A patients. The highest frequency of the five germline mutations was C634Y (46.7%), followed by C634R (26.7%), C634W (13.3%), C634F (6.7%) and C634S (6.7%). No statistical significance was found between the incidence of PCC and different genotypes of codon 634 in MEN2A patients, whereas the incidence of HPT was closely associated with C634R and C634Y. The gene mutation (M918T) at exon16 of the RET proto-oncogene was present in five MEN2B probands. CONCLUSIONS: RET proto-oncogene mutations were restricted to codon 634 and 918 in Chinese families with MEN2A and MEN2B. In general the genetic characteristics of these patients with MEN2A and MEN2B reflect the general pattern around the world and it remains to be determined with larger studies in China whether Chinese patients have a different genetic pattern of mutations.

Orolabial signs are important clues for diagnosis of the rare endocrine syndrome MEN 2B. Presentation of two unrelated cases.

Multiple endocrine neoplasia syndromes (MEN) are genetic disorders with glandular hyperplasia and consecutive malignant neoplasia. MEN type 2B is the least common form of these tumor syndromes. It presents with typical dysmorphic features, mucosal neuromas, ganglioneuromatosis, medullary thyroid carcinoma (MTC) and phaeochromocytoma. The prognosis depends on the presence of MTC. We have surprisingly found two unrelated patients with this syndrome at our department within two weeks. In the medical history of a 17-year-old boy, Crohn s disease had been considered because of abdominal pain and distention. He had marfanoid appearance and previously undergone minor surgeries for a large tongue with neuromas and hypertrophic gums. Two weeks later, a 10-year-old girl presented with a hard palpable mass on her neck. She had thickened lips, neuromas on the tongue and a solitary thyroid nodule. Genetic analysis was carried out in both patients and a heterozygous M918T mutation of the RET proto-oncogene was found. Laboratory tests and imaging studies were consistent with MTC. Phaeochromocytoma was not present. Both patients underwent total thyroidectomy and lymph node dissection. Histological examination confirmed the diagnosis of MTC. In conclusion, the initial diagnosis of MEN 2B should be suspected on the presence of typical facial/oral signs and gastrointestinal symptoms. Hormonal tests and imaging techniques of the thyroid and the adrenals can confirm the clinical diagnosis of MEN 2B and genetic analysis can prove its germline origin.

Change in the spectrum of RET mutations diagnosed between 1994 and 2006.

Medullary thyroid carcinoma (MTC) is a rare calcitonin producing tumor. About 70-75% of patients with MTC have sporadic disease while the others suffer from hereditary MTC. Hereditary MTC is divided into three clinical subtypes: multiple endocrine neoplasia (MEN) type 2A is characterized by MTC, pheochromocytoma and primary hyperparathyroidism. MEN 2B is characterized by aggressive MTC, pheochromocytoma, marfanoid habitus and the presence of distinctive mucosal neuromas on the tongue, lips and subconjunctival areas as well as ganglioneuromatosis of the gastrointestinal tract. The third clinical subtype of inherited MTC, familial MTC, is defined as the presence of MTC in families without evidence of adrenal or parathyroid gland involvement. Hereditary MTC is caused by autosomal dominant gain-of-function mutations in the RET proto-oncogene. The first RET germline mutations were identified in 1993 in patients with MEN 2A and FMTC. Initially a codon 634 (exon 11) mutation was found in approximately 85% of patients with MEN 2A, and germline mutations in FMTC kindreds were more equally distributed throughout the RET proto-onocogene. In about 5% of families in these earlier series, mutations did not reside in exons 10 and 11. We now report a change in the spectrum of mutations detected in the RET proto-oncogene in patients with hereditary MTC from the classical mutation at codon 634 in exon 11 (level 2) to more cases with mutations in the exons 13-15 (level 1) and less aggressive disease. In our series 38.9% of mutations were level 1 mutations, 54.4% level 2, and 5.6% level 3 mutations.

Mutations in the RET proto-oncogene in medullary thyroid carcinoma.

Kaposi s sarcoma herpesvirus oncoprotein vFLIP K13 is a potent activator of NF-kappaB and plays a key role in viral pathogenesis. K13 contains a putative TRAF-interacting motif, which is reportedly required for its interaction with TRAF2. The K13-TRAF2 interaction is believed to be essential for the recruitment of K13 to the I-kappaB kinase (IKK) complex and for K13-induced NF-kappaB and JNK activation. In addition, TRAF3 has been reported to be required for K13-induced NF-kappaB and JNK activation. We have re-examined the role of the TRAFs in K13 signaling and report that mutations in the putative TRAF-interacting motif of K13 have no deleterious effect on its ability to interact with the IKK complex or activation of the NF-kappaB pathway. Furthermore, endogenously expressed TRAF2 and TRAF3 do not interact with K13 and play no role in K13-induced NF-kappaB activation or its interaction with the IKK complex. Finally, K13 does not activate the JNK pathway. Our results support a model in which K13 bypasses the upstream components of the tumor necrosis factor receptor signaling pathway and directly interacts with the IKK complex to selectively activate the NF-kappaB pathway without affecting the JNK pathway. Selective NF-kappaB activation by K13 might represent a novel strategy employed by the virus to promote latency.

[The clinical patterns and RET proto-oncogene in fifteen multiple endocrine neoplasia type 2A pedigrees].

OBJECTIVE: To detect the phenotype and rearranged mutations during transfection of RET proto-oncogene in fifteen multiple endocrine neoplasia type 2A (MEN2A) probands and their family members. METHODS: Totally 119 family members of the fifteen MEN2A pedigrees were recruited. Total genomic DNA was extracted from peripheral blood for PCR. PCR products of exon 8, 10, 11, 13, 14, 15 and exon16 of the RET proto-oncogene were purified and direct gene sequencing was performed. RESULTS: The germline mutations of RET proto-oncogene were detected in 49 members of the fifteen MEN2A pedigrees. Among them, 37 patients had MEN2A phenotype and the remaining 12 were gene carriers. The mean age at which the members of the former group were diagnosed as MEN2A was significantly later than those of the latter group [(43.0 +/- 13.9) yr vs (9.8 +/- 7.4) yr, P < 0.01]; The incidences of medullary thyroid carcinoma (MTC), pheochromocytoma (PCC) and hyperparathyroidism (HPT) in 37 MEN2A patients were 91.9%, 56.8% and 10.8%; Five germline mutations which ALL located in codon 634 of exon11 in RET proto-oncogene were detected in the fifteen MEN2A pedigrees. They were C634W (13.3%), C634Y (46.7%), C634R (26.7%), C634F (6.7%) and C634S (6.7%); Through the analysis of the genotype-phenotype of the 37 MEN2A patients, no statistic significance was found in the age of diagnose for MEN2A, the incidence of PCC, the percentage of cervical lymph node metastasis and the five different genotypes. CONCLUSION: The mean age at which the 37 patients of the fifteen MEN2A pedigrees were diagnosed was older than that reported in the overseas literatures. The occurrence of MTC in MEN2A patients is earlier than that of PCC and HPT. The incidences of MTC and PCC are basically consistent with those in the overseas archives, while the incidence of HPT is lower than that in the corresponding report. The detected mutations of RET proto-oncogene in MEN2A patients were ALL located in codon 634, being simpler than that in foreign reports.

Expression of the ret proto-oncogene in human neuroblastoma cell lines and its increase during neuronal differentiation induced by retinoic acid.

Previously we observed specific expression of the ret proto-oncogene (proto-ret) in human neuroblastoma cell lines. A neuronal subline and non-neuronal sublines were isolated from the SK-N-SH cell line, which is composed of a heterogeneous cell population. expression of proto-ret was detected in the neuronal subline, named SH-4305, but not in three non-neuronal sublines. expression of proto-ret in the SH-4305 cells increased markedly after treatment with retinoic acid for 1 day, with concomitant morphological change, namely neurite outgrowth, and induction of neurofilament mRNA expression. Induction of proto-ret expression seemed to be correlated with neurite outgrowth and increase of neurofilament mRNA expression. These data suggest that the proto-ret product plays a role in neuronal differentiation.

Formation of pseudosymmetrical G-quadruplex and i-motif structures in the proximal promoter region of the RET oncogene.

A polypurine (guanine)/polypyrimidine (cytosine)-rich sequence within the proximal promoter region of the human RET oncogene has been shown to be essential for RET basal transcription. Specifically, the G-rich strand within this region consists of five consecutive runs of guanines, which is consistent with the general motif capable of forming intramolecular G-quadruplexes. Here we demonstrate that, in the presence of 100 mM K+, this G-rich strand has the ability to adopt two intramolecular G-quadruplex structures in vitro. Moreover, comparative circular dichroism (CD) and DMS footprinting studies have revealed that the 3 -G-quadruplex structure is a parallel-type intramolecular structure containing three G-tetrads. The G-quadruplex-interactive agents TMPyP4 and telomestatin further stabilize this G-quadruplex structure. In addition, we demonstrate that the complementary C-rich strand forms an i-motif structure in vitro, as shown by CD spectroscopy and chemical footprinting. This 19-mer duplex sequence is predicted to form stable intramolecular G-quadruplex and i-motif species having minimum symmetrical loop sizes of 1:3:1 and 2:3:2, respectively. Together, our results indicate that stable G-quadruplex and i-motif structures can form within the proximal promoter region of the human RET oncogene, suggesting that these secondary structures play an important role in transcriptional regulation of this gene.

RET proto-oncogene expression of papillary thyroid carcinomas in Thai patients.

BACKGROUND: Ret proto-oncogene activation has been found in papillary thyroid carcinoma with different frequencies according to geographic location. The rate of expression ranges from 0-100 percent in the literature. This gene expression has also been studied in many Asian countries but it has never been studied in Thailand. OBJECTIVE: To study the frequency of the RET expression and their roles in predicting prognosis of papillary thyroid carcinoma among Thai patients treated at King Chulalongkorn Memorial Hospital, Bangkok, Thailand. MATERIAL AND METHOD: One hundred and one cases of papillary carcinomas were studied with immunohistochemistry for RET antibodies. ALL slides with routine staining were reviewed to classify cell variants and record other prognostic parameters such as size, multicentricity, extrathyroid invasion. The clinical data such as age and sex were also included for analyses. RESULTS: Forty-seven of the total 101 cases (46.5%) showed positive RET protein staining. The mean age among patients with RET negative neoplasms was 43.9 years compared with 39.8 years in RET positive group (p = 0.16). The average size of the tumors without RET expression was 2.5 cm, slightly larger than the RET positive tumors (2.1 cm)(p = 0.26). Extrathyroid invasion of the RET-positive tumors was found to be 33.2 percent while the RET negative neoplasms had 38.8 percent of this feature (p = 1). According to AMES score, the RET positive cases had only 11 percent of high-risk tumors, whereas the RET negative group comprised 23.1 percent of high-risk malignancies (p = 0.20). There was no significant difference in RET expression among cell variants (p = 1). CONCLUSION: The study of 101 papillary thyroid carcinomas at the King Chulalongkorn Memorial Hospital disclosed high frequency of RET expression (46.5%) and this is the only data among Thai patients that has ever been documented in the literature. Although, the gene expression in the tumor tends to be associated with good prognostic features but it was not distinct enough to be statistically significant.

[DelD631: a novel mutation of the RET proto-oncogene in multiple endocrine neoplasia type 2A (MEN2A)].

OBJECTIVE: To detect RET mutations in a rare Chinese big family with Multiple endocrine neoplasia type 2A (MEN2A). METHODS: One MEN2A family, including the proband, have 22 members of two generations, it is a rare big family in modern Chinese families. The DNAs of the 22 members from the family including 4 patients were extracted from blood leukocytes, PCR and gene sequencing of PCR products by an automated DNA sequencer were applied to scan the exon10 and 11 of RET proto-oncogene. Sequencing results were compared with the Pubmed s. Clone sequencing was adopt to further confirm the results, then verifying the novel mutation through the human gene mutation database at the institute of medical genetics in cardiff. Invitrogen biotechnology company (Shanghai) provided the technology of clone sequencing. RESULTS: A novel deletion mutation of D631 (GAC) (del D631) was detected in exon11 of the RET proto-oncogene in 4 MEN2A patients of the family, this rare deletion mutation of D631 (GAC) lead base sequence of TGC(angle)GACGAGCTG change to TGCGAGCTG. Besides 4 MEN2A patients, the son of II6 (the first class relative) was found to be a carrier of delD631 mutation. CONCLUSION: A novel deletion mutation (del D631) of RET proto-oncogene was detected in the family with MEN2A and it has never been reported before in the world. DelD631 may be related to the late onset of MEN2A compared to the cysteine mutations and pheochromocytoma might be the first manifestation prior to the development of MTC.

Asymptomatic bilateral adrenal pheochromocytoma in a patient with a germline V804M mutation in the RET proto-oncogene.

Activation of eukaryotic gene transcription involves the recruitment by DNA-binding activators of multiprotein histone acetyltransferase (HAT) and Mediator complexes. How these coactivator complexes functionally cooperate and the roles of the different subunits/modules remain unclear. Here we report physical interactions between the human HAT complex STAGA (SPT3-TAF9-GCN5-acetylase) and a "core" form of the Mediator complex during transcription activation by the MYC oncoprotein. Knockdown of the STAF65gamma component of STAGA in human cells prevents the stable association of TRRAP and GCN5 with the SPT3 and TAF9 subunits; impairs transcription of MYC-dependent genes, including MYC transactivation of the telomerase reverse transcriptase (TERT) promoter; and inhibits proliferation of MYC-dependent cells. STAF65gamma is required for SPT3/STAGA interaction with core Mediator and for MYC recruitment of SPT3, TAF9, and core Mediator components to the TERT promoter but is dispensable for MYC recruitment of TRRAP, GCN5, and p300 and for acetylation of nucleosomes and loading of TFIID and RNA polymerase II on the promoter. These results suggest a novel STAF65gamma-dependent function of STAGA-type complexes in cell proliferation and transcription activation by MYC postloading of TFIID and RNA polymerase II that involves direct recruitment of core Mediator.

Creation and characterization of a doxycycline-inducible mouse model of thyroid-targeted RET/PTC1 oncogene and luciferase reporter gene coexpression.

BACKGROUND: RET/PTC1 chromosomal rearrangement is associated with papillary thyroid carcinoma formation in children exposed to ionizing radiation. We previously created a transgenic mouse model with thyroid-targeted constitutive RET/PTC1 expression and demonstrated papillary thyroid carcinoma formation. OBJECTIVE: In this study, we aimed to create a doxycycline-inducible mouse model of thyroid RET/PTC1 and luciferase reporter gene coexpression to allow for noninvasive monitoring of transgene expression in mice of various ages and timepoints after induction. DESIGN: Transgenic mice carrying the rtTA gene driven by the thyroglobulin promoter were generated, and crossed with responder mice carrying RET/PTC1 and firefly luciferase genes under control of a bidirectional tetracycline response element. MAIN OUTCOMES: Most bitransgenic mice had thyroid-targeted, doxycycline-independent transgene expression. Only one line had thyroid-targeted, doxycycline-regulated RET/PTC1 and luciferase coexpression, in which doxycycline induction of RET/PTC1 led to Erk phosphorylation and reduced expression of the sodium/iodide symporter (NIS). However, thyroid lesions were not found in any bitransgenic mice examined. CONCLUSIONS: We found that acute RET/PTC1 expression can activate the MEK/Erk pathway and downregulate NIS expression in the mouse thyroid gland. However, a higher level of RET/PTC1 is likely necessary for tumor formation. Thyroid luciferase induction was detectable noninvasively using IVIS in vivo imaging.

Prognostic significance of somatic RET oncogene mutations in sporadic medullary thyroid cancer: a 10-year follow-up study.

BACKGROUND: Medullary thyroid carcinoma (MTC) is a well-differentiated thyroid tumor that maintains the typical features of C cells. An advanced stage and the presence of lymph node metastases at diagnosis have been demonstrated to be the most important bad prognostic factors. Somatic RET mutations have been found in 40-50% of MTCs. Although a relationship between somatic mutations and bad prognosis has been described, data are controversial and have been performed in small series with short-term follow ups. The aim of this study was to verify the prognostic value of somatic RET mutations in a large series of MTCs with a long follow up. METHODS: We studied 100 sporadic MTC patients with a 10.2 yr mean follow-up. RET gene exons 10-11 and 13-16 were analyzed. The correlation between the presence/absence of a somatic RET mutation, clinical/pathological features, and outcome of MTC patients was evaluated. RESULTS: A somatic RET mutation was found in 43 of 100 (43%) sporadic MTCs. The most frequent mutation (34 of 43, 79%) was M918T. RET mutation occurrence was more frequent in larger tumors (P=0.03), and in MTC with node and distant metastases (P<0.0001 and P=0.02, respectively), thus, a significant correlation was found with a more advanced stage at diagnosis (P=0.004). A worse outcome was also significantly correlated with the presence of a somatic RET mutation (P=0.002). Among ALL prognostic factors found to be correlated with a worse outcome, at multivariate analysis only the advanced stage at diagnosis and the presence of a RET mutation showed an independent correlation (P<0.0001 and P=0.01, respectively). Finally, the survival curves of MTC patients showed a significantly lower percentage of surviving patients in the group with RET mutations (P=0.006). CONCLUSIONS: We demonstrated that the presence of a somatic RET mutation correlates with a worse outcome of MTC patients, not only for the highest probability to have persistence of the disease, but also for a lower survival rate in a long-term follow up. More interestingly, the presence of a somatic RET mutation correlates with the presence of lymph node metastases at diagnosis, which is a known bad prognostic factor for the definitive cure of MTC patients.

RET proto-oncogene testing in infants presenting with Hirschsprung disease identifies 2 new multiple endocrine neoplasia 2A kindreds.

BACKGROUND: Multiple endocrine neoplasia 2A (MEN 2A) is a genetic syndrome manifesting as medullary thyroid carcinoma (MTC), hyperparathyroidism, and pheochromocytoma. Multiple endocrine neoplasia 2A results from mutations in the RET proto-oncogene. Hirschsprung disease (HSCR) is a rare manifestation of MEN 2A and has been described in known MEN 2A families. METHODS: Here we describe 2 MEN 2A families that were only identified after the diagnosis of HSCR. RESULTS: Kindred 1: A boy presented in infancy with HSCR. Genetic screening revealed a C609Y mutation, which is consistent with MEN 2A. Evaluation of his sister, father, and grandmother revealed the same mutation. ALL 3 had thyroidectomies demonstrating C-cell hyperplasia. The grandmother had a microscopic focus of MTC. Kindred 2: An infant boy and his sister were diagnosed with HSCR as neonates. Genetic testing demonstrated a C620R gene mutation consistent with MEN 2A. Total thyroidectomies revealed metastatic MTC in the father and C-cell hyperplasia in both children. CONCLUSIONS: Hirschsprung disease can be the initial presentation of MEN 2A. We strongly recommend that genetic screening be performed in patients presenting with HSCR, looking for the known RET mutations associated with MEN 2A. If a mutation consistent with MEN 2A is detected, genetic screening of ALL first-degree relatives in the kindred is recommended.

[Mutation of the RET proto-oncogene in type 2A multiple endocrine neoplasia Chinese families and the application of pentagastrin stimulation test in diagnosis and follow-up].

OBJECTIVE: To detect the mutations of RET proto-oncogene in two Chinese families with multiple endocrine neoplasia type 2A (MEN2A) and to study the clinical application of pentagastrin stimulation test in the diagnosis and follow-up of MEN2A. METHODS: In this study, there were 4 patients clinically diagnosed as MEN2A in the two pedigrees. PCR and direct gene sequencing of PCR products with an automated DNA sequencer were used to scan the entire 21 exons of RET proto-oncogene in the leukocyte DNA of 6 members of the two families. Blood calcitonin was measured and pentagastrin stimulation test carried out in ALL the 4 clinically diagnosed patients. RESULTS: Two missense mutations were detected in exon 11 of the RET proto-oncogene. One was C634R in the 2 patients from one MEN2A family and the other was C634Y in 2 patients from another family. The basal serum calcitonin was very high (400.5 - 13 510.7 ng/L, normal range 16.6 - 132.8 ng/L) in the MEN2A patients and after pentagastrin stimulation the serum calcitonin level was significantly higher (494.1 - 33 901.9 ng/L). CONCLUSIONS: Two mutations (C634R and C634Y) were detected in the patients of two families with MEN2A. Pentagastrin stimulation test was helpful for the diagnosis and follow-up after operative treatment of MEN2A.

Somatic mutations in the RET proto-oncogene in sporadic medullary thyroid carcinomas.

The frequency and prognostic relevance of RET proto-oncogene somatic mutations in sporadic medullary thyroid carcinoma (MTC) remain controversial. In order to study somatic mutations in the RET proto-oncogene in sporadic MTCs found in the Czech population and to correlate these mutations with clinical and pathological characteristics, we investigated 48 truly sporadic MTCs by sequencing classical risk exons 10, 11, 13, 14, 15 and 16. From the 48 tumors studied, 23 (48%) had somatic mutation in the RET proto-oncogene in exons 10, 11, 15 or 16. The classical somatic mutation Met918Thr in exon 16 was only found in 13 tumors (27%). In five cases, multiple somatic mutations and deletions were detected. A statistically significant correlation between the presence of somatic mutation with more advanced pathological TNM stages was observed. Other clinical and pathological characteristics did not show any statistical significant association with the presence or absence of somatic mutation.

Uncommon association of germline mutations of RET proto-oncogene and CDKN2A gene.

INTRODUCTION: Calcitonin measurement is advised in the diagnosis of thyroid nodules, as it is an accurate marker of medullary thyroid carcinoma (MTC). C-cell hyperplasia (CCH)-induced hypercalcitoninemia cannot be distinguished from that induced by MTC, unless surgery is performed. CASE: We report the clinical and biological features of a patient with a family history of cancer, including melanoma and pancreatic cancer, who had previously undergone surgery for melanoma. He presented the unusual association of papillary thyroid carcinoma (PTC), normocalcemic hyperparathyroidism, and hypercalcitoninemia with a pathological response to pentagastrin, which was histologically deemed secondary to CCH. Multiple endocrine neoplasia (MEN) 2A was diagnosed. RET gene analysis showed a p.V804M missense mutation in exon 14, a low- but variably penetrant defect found in both sporadic and MEN2A-associated MTC/CCH, and a p.G691S polymorphism in exon 11. Furthermore, the germline P48T mutation was found in the CDKN2A gene exon 1, which is known to be associated with melanoma and pancreatic cancer. The patient showed the uncommon coexistence of a germline mutation in two suppressor genes, RET and CDKN2A; this finding, deemed to be a mere coincidence, did not modify the phenotype expected by each single mutation. CCH associated with V804M RET mutation is a precancerous condition and surgery is recommended. In order to exclude MTC, surgery is advised in patients with a pathological calcitonin response to pentagastrin, in the absence of thyroid autoimmunity. CCH-induced hypercalcitoninemia can be associated with thyroid cancers other than MTC (e.g., PTC). Family history is important in scheduling specific genetic screening in high-risk patients and their relatives.

Synergistic effect of oncogenic RET and loss of p18 on medullary thyroid carcinoma development.

Activating mutations in the RET proto-oncogene are associated with both familial and sporadic medullary thyroid carcinoma (MTC) development; however, the genetic mechanisms underlying MTC tumorigenesis remain largely unknown. Recently, we have identified somatic inactivating mutations in the cell cycle inhibitor gene P18 in human MTC, which coincided with activating RET mutations, suggesting a role for loss of P18 in combination with oncogenic RET in the multistep process of MTC development. Therefore, we crossed transgenic mice expressing oncogenic RET (RET2B) with mice lacking p18 (and p27, another cell cycle inhibitor) and monitored MTC development. RET2B;p18(+/-) mice and RET2B;p18(-/-) mice developed MTC with a highly increased incidence compared with their corresponding single mutant littermates. In addition, expression of oncogenic RET causes an earlier age of onset and larger MTCs in p18(-/-);p27(+/-) mice. In a subset of MTCs of RET2B;p18(+/-)(;p27(+/-)) mice, p18(Ink4c) expression was completely lost. This loss of p18(Ink4c) expression correlated with higher proliferation rates as well as with larger MTCs, indicating that loss of p18 in combination with oncogenic RET not only increases the risk for MTC development but also enhances MTC progression. Our data strongly indicate that oncogenic RET and loss of p18 cooperate in the multistep tumorigenesis of MTC.

RET oncogene in MEN2, MEN2B, MTC and other forms of thyroid cancer.

Hereditary medullary thyroid carcinoma (MTC) is caused by specific autosomal dominant gain-of-function mutations in the RET proto-oncogene. Genotype-phenotype correlations exist that help predict the presence of other associated endocrine neoplasms as well as the timing of thyroid cancer development. MTC represents a promising model for targeted cancer therapy, as the oncogenic event responsible for initiating malignancy has been well characterized. The RET proto-oncogene has become the target for molecularly designed drug therapy. Tyrosine kinase inhibitors targeting activated RET are currently in clinical trials for the treatment of patients with MTC. This review will provide a brief overview of MTC and the associated RET oncogenic mutations, and will summarize the therapies designed to strategically interfere with the pathologic activation of the RET oncogene.

New presentation of familial medullary thyroid carcinoma in 87-year-old patient with high-risk RET proto-oncogene codon 620 mutation.

OBJECTIVE: We report a case of familial medullary thyroid carcinoma in an 87-year-old woman, despite the patient having a high-risk codon 620 mutation. METHOD: Medline and PubMed were searched for cases and literature reviews relating to the following keywords: codon 620 , medullary thyroid carcinoma , multiple endocrine neoplasia and RET proto-oncogene . RESULTS: We report the case of an 87-year-old woman who presented with a goitre, later identified as medullary thyroid carcinoma. Genetic analysis revealed a RET proto-oncogene codon 620 mutation. Genetic testing has revolutionised the management of medullary thyroid carcinoma. The genetic basis of hereditary medullary thyroid carcinoma lies with the RET proto-oncogene. Several disease-causing mutations of this gene have been identified and their clinical prognosis described. The penetrance of these mutations is high; as such, carriers progress to develop medullary thyroid carcinoma at a young age. mutations at the codon 620 position are classified as high-risk for early development of medullary thyroid carcinoma; thus, the current recommendation is for prophylactic thyroidectomy at five years of age. CONCLUSIONS: In this case, the progress of hereditary medullary thyroid carcinoma was unique, considering the late presentation of medullary thyroid carcinoma despite the presence of the high-risk RET proto-oncogene codon 620 mutation. The authors wish to highlight the importance of this case, as it may present a counter-argument to the current recommendations for early, prophylactic thyroidectomy in codon 620 mutation carriers in order to prevent early development of medullary thyroid carcinoma.

Multiple endocrine neoplasia type 2A in two families with the familial medullary thyroid carcinoma associated G533C mutation of the RET proto-oncogene.

INTRODUCTION: Multiple endocrine neoplasia type 2A (MEN2A) is an autosomal dominant hereditary disorder, associated with a cluster of germline gain-of-function mutations of the RET proto-oncogene (RET), mainly in exons 10-15. The G533C mutation in exon 8 of the RET is rare and has been mainly related to the familial medullary thyroid carcinoma. PATIENTS-METHODS: We describe the RET G533C mutation in exon 8 of the RET in two unrelated female index patients, with MEN2A phenotype, consisting of pheochromocytoma which was the presenting feature and medullary thyroid carcinoma. In addition, 12 family members were also studied. DNA extraction, PCR, and sequencing of RET was performed in exons 7-19 and 21, following standard procedures. RESULTS: The mutation was found in both index patients and in 6 out of 12 family members (50%). Three of them were biochemically affected with histologically proven medullary thyroid carcinoma in two of them while there are no certain clues regarding the other three members as they declined further evaluation. CONCLUSION: Patients with MEN2A should be also searched in exon 8 while positive carriers of this mutation should be screened annually for pheochromocytoma or other components of the syndrome.

Enhanced sensitivity of the RET proto-oncogene to ionizing radiation in vitro.

Exposure to ionizing radiation is a well-known risk factor for a number of human cancers, including leukemia and thyroid cancer. It has been known for a long time that exposure of cells to radiation results in extensive DNA damage; however, a small number of studies have tried to explain the mechanisms of radiation-induced carcinogenesis. The high prevalence of RET/PTC rearrangements in patients who have received external radiation, and the evidence of in vitro induction of RET rearrangements in human cells, suggest an enhanced sensitivity of the RET genomic region to damage by ionizing radiation. To assess whether RET is indeed more sensitive to radiations than other genomic regions, we used a COMET assay coupled with fluorescence in situ hybridization, which allows the measurement of DNA fragmentation in defined genomic regions of single cells. We compared the initial DNA damage of the genomic regions of RET, CXCL12/SDF1, ABL, MYC, PLA2G2A, p53, and JAK2 induced by ionizing radiation in both a lymphoblastoid and a fetal thyroid cell line. In both cell lines, RET fragmentation was significantly higher than in other genomic regions. Moreover, a differential distribution of signals within the COMET was associated with a higher percentage of RET fragments in the tail. RET was more susceptible to fragmentation in the thyroid-derived cells than in lymphoblasts. This enhanced susceptibility of RET to ionizing radiation suggests the possibility of using it as a radiation exposure marker.

XB130, a tissue-specific adaptor protein that couples the RET/PTC oncogenic kinase to PI 3-kinase pathway.

XB130 is a recently cloned 130 kDa-adaptor protein and Src kinase substrate, structurally similar to actin-filament-associated protein. Here we show that XB130 is predominantly expressed in the thyroid. Given that XB130 is a thyroid-specific tyrosine kinase substrate, we asked whether it is targeted by RET/PTC, a genetically rearranged, constitutively active, thyroid-specific tyrosine kinase that plays a pathogenic role in papillary thyroid cancer. RET/PTC induced robust tyrosine phosphorylation of XB130, which promoted its subsequent association with the p85alpha subunit of phosphatidylinositol 3-kinase (PI 3-kinase). We identified tyrosine 54 of XB130 as the major target of RET/PTC-mediated phosphorylation and a critical binding site for the SH2 domains of p85alpha. Importantly, downregulation of XB130 in TPC1 papillary thyroid cancer cells, harboring the RET/PTC1 kinase, strongly reduced Akt activity without altering ERK1/2 phosphorylation, and concomitantly inhibited cell-cycle progression and survival in suspension. In conclusion, XB130 is a novel substrate of the RET/PTC kinase that links RET/PTC signaling to PI 3-kinase activation, and thereby plays an important role in sustaining proliferation and survival of thyroid tumor cells.

Analysis of RET, ZEB2, EDN3 and GDNF genomic rearrangements in 80 patients with Hirschsprung disease (using multiplex ligation-dependent probe amplification).

Hirschsprung disease (HSCR) is transmitted in a complex pattern of inheritance and is mostly associated with variants in the RET proto-oncogene. However, RET mutations are only identified in 15-20% of sporadic HSCR cases and solely in 50% of the familial cases. Since genomic rearrangements in particularly sensitive areas of the RET proto-oncogene and/or associated genes may account for the HSCR phenotype in patients without other detectable RET variants, the aim of the present study was to identify rearrangements in the coding sequence of RET as well as in three HSCR-associated genes (ZEB2, EDN3 and GDNF) in HSCR patients by using Multiplex Ligation-dependent Probe Amplification (MLPA). We have screened 80 HSCR patients for genomic rearrangements in RET, ZEB2, EDN3 and GDNF and did not identify any deletion or amplification in these four genes in ALL patients. We conclude that genomic rearrangements in RET are rare and were not responsible for the HSCR phenotype in individuals without identifiable germline RET variants in our group of patients, yet this possibility cannot be excluded altogether because the confidence to identify variation in at least two percent of the individuals was only 95%.

Genetic testing for multiple endocrine neoplasia type 2.

Multiple endocrine neoplasia type 2 (MEN 2) represents a complex autosomal dominant inherited syndrome characterized by occurrence of distinct proliferative disorders of endocrine tissues. The identification of RET proto-oncogene mutations in MEN 2 and FMCT has provided a precise method for identifying gene carriers. 30 subjects (9 males, 21 females, age range 11-63 years) with multiple endocrine neoplasia type 2 have been investigated from 1998 till 2006. 20 patients were considered as index cases and 10 patients were identified after a screening programme for MEN 2. tumoral associations permitted the MEN 2A diagnosis in 21 cases, MEN 2A with cutaneous lichen amyloidosis in 6 cases and FMCT in 3 cases. We selected 22 patients from 14 families to investigate mutations in the RET proto-oncogene. In 7 subjects no mutations could be detected in the exons 10 and 11 of the RET proto-oncogene. Heterozygous missense mutations in exon 11 were found in 15 subjects consisting of three different mutations in codon 634 (TGC --> TGG, TGC --> GGC, TGC --> CGC). We conclude that our 15 patients have the most frequent mutations described in MEN 2A families. Because the testing for exons 10 and 11 is negative for other 7 patients, the remaining 13, 14, 15 and 16 exons should be sequenced in these cases.

Diagnostic and surgical dilemmas in hereditary medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) is a rare malignancy arising from the parafollicular C cells within the thyroid gland. The majority of cases are sporadic, but at least 30% are hereditary in nature. Inherited forms of MTC occur as familial MTC or as a manifestation of multiple endocrine neoplasia type 2. Early diagnosis and aggressive surgical management, including prophylactic thyroidectomy, improve the prognosis of patients with hereditary MTC. Several issues regarding the diagnosis and treatment of MTC remain controversial. Genetic penetrance and virulence are variable. We present an index case of familial MTC to illustrate common difficulties in the initial diagnosis and dilemmas in the surgical approach, followed by a review of current literature relevant to the management of hereditary MTC.

When is prophylactic thyroidectomy indicated for patients with the RET codon 609 mutation?.

BACKGROUND: mutations in the RET proto-oncogene cause multiple endocrine neoplasia type 2A (MEN2A), and prophylactic thyroidectomy has generally been recommended before the age of 5 years. Patients with codon 609 mutations develop MTC at a later age and therefore the timing of prophylactic thyroidectomy is less clear. We report a three-generation family with C609Y RET mutation where members having prophylactic or therapeutic thyroidectomy call the current recommendations for age at thyroidectomy into question. METHODS: Sixteen family members underwent thyroidectomy, for which clinical, laboratory, and pathological data were analyzed. A literature review of RET codon 609 mutations was carried out. RESULTS: Data were collected from 16 patients from this 38-member kindred. None of these affected members had pheochromocytoma, and one had a parathyroid adenoma. Nine of 16 patients had MTC (mean age 44.7 years, range 29-59 years) and elevated basal calcitonin levels; 6 of these 9 had lymph node metastases. Two patients had C-cell hyperplasia (CCH) at ages 18 and 37 years, and five patients had normal thyroid pathology (mean age 16 years, range 5-37 years). In the literature, a family with C609Y mutation was reported, with 15 members having MTC (mean age 42 years, range 21-59 years), and 6 with CCH (mean age 24 years, range 15-37 years). CONCLUSION: The youngest patient with C609Y RET mutation and MTC was 21 years old, and the youngest patient with CCH was 15 years old at diagnosis. These data suggest that patients with RET C609Y mutations can delay thyroidectomy until 10-15 years of age, with annual calcitonin screening prior to thyroidectomy.

Tenascin C in medullary thyroid microcarcinoma and C-cell hyperplasia.

Tenascin C (Tn-C) is an extracellular matrix glycoprotein that is expressed early in carcinogenesis including intraepithelial neoplastic lesions of different organs. In this study, we analyze whether stroma reaction seen by Tn-C expression is detected early in tumorigenesis of medullary thyroid carcinoma (MTC) including medullary microcarcinoma and C-cell hyperplasia (CCH), which is accepted to be a precursor lesion of MTC in the setting of RET oncogene germ-line mutation. Tn-C was expressed in the stroma of ALL medullary microcarcinoma and in the stroma next to CCH. Stromal Tn-C expression was significantly more often seen in CCH with concomitant MTC than in isolated CCH of hereditary as well as nonhereditary cases (p = 0.001 and p = 0.016, respectively). We conclude that Tn-C expression and thus early stroma remodeling is seen in medullary microcarcinoma and CCH. Stromal Tn-C expression seems to be an indicator of a further step in carcinogenesis of MTC irrespective of a RET oncogene germ-line mutation.

Impact of connexin32 deletion on E7 or RET/PTC3 oncogene-driven growth and neoplastic transformation of the thyroid gland.

Connexins (Cx) form gap junctions and allow direct cell-to-cell communication. Cx through gap junctions or by themselves play regulatory roles on cell growth and differentiation. Using genetically modified mice, we previously found that Cx32 acts as a down-regulator of growth in normal thyroid gland. In this study, we examined the impact of Cx32 ablation on oncogene-driven thyroid growth and neoplastic transformation. Cx32 knockout (Cx32-KO) mice were crossed with transgenic mice expressing, selectively in the thyroid gland, either the E7 or RET/PTC3 (RP3) oncogene. As already described, Cx32-KO mice had no detectable thyroid alteration in physiological conditions and mice expressing E7 or RP3 exhibited time-dependent thyroid hypertrophy and variable changes in expression of differentiation. The thyroid of E7 mice evolved towards a large colloid goitre whereas RP3 mice developed a hyperplastic thyroid of variable size, and the largest glands (about 40% of total) represented a profound tissue remodeling with proliferative papillary formations. E7-induced thyroid hypertrophy was reduced by about 40% in Cx32-KO mice as compared with wild-type (WT) littermates. On the contrary, thyroid hypertrophy induced by thyrotropin stimulation (in response to goitrogen treatment) was enhanced by about 40% in Cx32-KO mice as compared with WT mice. Thyroid hypertrophy of RP3 mice and the proportion of glands showing extensive tissue remodeling were drastically reduced in mice devoid of Cx32. Our data show that Cx32, which negatively controls thyroid growth activated by thyrotropin via the cAMP pathway, would act as a positive effector of thyroid growth triggered by oncogenes acting through other signaling cascades.

The ret oncogene products are membrane-bound glycoproteins phosphorylated on tyrosine residues in vivo.

We identified ret oncogene products in NIH 3T3 cells transformed by the ret oncogene (NIH(ret)) and a cell line (Lym-ret) established from pre-B cell lymphoma which developed in E mu-ret transgenic mice. Using the polyclonal antibody against the kinase domain of ret, two glycoproteins with apparent molecular weights of 100 kd and 96 kd were found in both cell lines, although the expression level of the 100 kd protein was much higher than that of the 96 kd protein. Cell fractionation experiments indicated that the 100 kd protein was present predominantly in the membrane fraction while the 96 kd protein was found in both membrane and cytosol fractions. Western blot analysis indicated that the 100 kd ret protein was phosphorylated on tyrosine residues in vivo.

High iodine concentration attenuates RET/PTC3 oncogene activation in thyroid follicular cells.

BACKGROUND: Papillary thyroid carcinoma (PTC) is frequently associated with a RET gene rearrangement that generates a RET/PTC oncogene. RET/PTC is a fusion of the tyrosine kinase domain of RET to the 5 portion of a different gene. This fusion results in a constitutively active MAPK pathway, which plays a key role in PTC development. The RET/PTC3 fusion is primarily associated with radiation-related PTC. Epidemiological studies show a lower incidence of PTC in radiation-exposed regions that are associated with an iodine-rich diet. Since the influence of excess iodine on the development of thyroid cancer is still unclear, the aim of this study is to evaluate the effect of high iodine concentrations on RET/PTC3-activated thyroid cells. METHODS: PTC3-5 cells, a rat thyroid cell lineage harboring doxycycline-inducible RET/PTC3, were treated with 10(-3) M NaI. Cell growth was analyzed by cell counting and the MTT assay. The expression and phosphorylation state of MAPK pathway-related (Braf, Erk, pErk, and pRet) and thyroid-specific (natrium-iodide symporter [Nis] and thyroid-stimulating hormone receptor [Tshr]) proteins were analyzed by Western blotting. Thyroid-specific gene expression was further analyzed by quantitative reverse transcription (RT)-polymerase chain reaction. RESULTS: A significant inhibition of proliferation was observed, along with no significant variation in cell death rate, in the iodine-treated cells. Further, iodine treatment attenuated the loss of Nis and Tshr gene and protein expression induced by RET/PTC3 oncogene induction. Finally, iodine treatment reduced Ret and Erk phosphorylation, without altering Braf and Erk expression. CONCLUSION: Our results indicate an antioncogenic role for excess iodine during thyroid oncogenic activation. These findings contribute to a better understanding of the effect of iodine on thyroid follicular cells, particularly how it may play a protective role during RET/PTC3 oncogene activation.

A TaqI RFLP in the human ret proto-oncogene.

We have compared the effects of the v-erb A oncogene on proliferation and differentiation of normal erythroid progenitors with those of tyrosine kinase oncogenes, e.g. v-sea. For this, a v-erb A retrovirus containing the neomycin resistance gene as a selectable marker or, alternatively, a v-erb A-ts v-sea retrovirus were used to infect normal bone marrow cells. V-erb A induced the outgrowth of immature, erythropoietin(EPO)-dependent erythroid cells from infected bone marrow which ceased to proliferate and disintegrated after 9 to 18 divisions. In contrast, ts-v-sea erythroblasts grew for the expected 25 to 40 population doublings in the absence of EPO. Transcription of the erythrocyte genes carbonic anhydrase II and erythrocyte anion transporter was significantly inhibited in v-erb A infected erythroblasts, indicating that v-erb A alone was sufficient for the repression of the erythrocyte-specific genes observed in AEV-transformed leukemic cells. A detailed analysis of the differentiation phenotype induced by v-erb A in erythroblasts (in the presence or absence of a temperature-inactivated ts sea oncogene) indicates that v-erb A-erythroblasts express a partially mature, aberrant phenotype characterized by the coexpression of mature and immature differentiation antigens. This phenotype clearly differs from that induced by tyrosine kinase oncogenes in erythroid cells.

Differential expression of galectin-3, CK19, HBME1, and Ret oncoprotein in the diagnosis of thyroid neoplasms by fine needle aspiration biopsy.

BACKGROUND: Fine needle aspiration biopsy (FNAB) is a common and excellent procedure for the evaluation of thyroid lesions that require surgical resection. At times, the FNAB diagnosis can be difficult, particularly of follicular-patterned lesions. Previous studies have shown that some immunohistochemical (IHC) markers may be helpful in establishing more accurate diagnosis. In this study, our goal was to evaluate four of the recently investigated markers in differentiating benign from malignant thyroid nodules on FNABs. MATERIALS AND METHODS: We performed IHC staining of galectin-3, Ret oncoprotein (Ret), HBME-1, and cytokeratin 19 (CK19), on cell block sections of thyroid FNAB cases that had corresponding surgical resections. They included 44 benign lesions (37 hyperplastic or cellular nodules, HN; and 7 follicular adenomas, FA) and 27 malignant tumors (6 follicular carcinoma, FC; 19 classic papillary carcinoma, PTC; and 2 follicular variant of papillary carcinoma, FVPC). The stains were done according to the standard avidin-biotin-peroxidase method. RESULTS: Statistical analysis showed that immunoexpression was significantly higher in the malignant group for ALL four markers. The sensitivity for positive expression for ALL benign lesions versus malignant tumors was as follows: 10/44 (22.7%) versus 25/27 (92.6%) for galectin-3; 14/44 (31.8%) versus 23/27 (85%) for Ret; 12/44 (27.3%) versus 24/27 (88.8%) for HBME-1; and 13/44 (29.5%) versus 23/27 (85%) for CK19. The sensitivity and specificity was highest for galectin-3 (92.6% and 77.3%, respectively) followed by HMBE-1 (88.9% and 72.7%, respectively). When combining the markers expressions, the panel of galectin-3 + HBME-1 showed the highest sensitivity and specificity (90.7% and 75%, respectively), but this was, however, lower than galectin-3 alone (92.3% and 77.3%, respectively). CONCLUSION: We conclude that galectin-3 is the best single marker in differentiating benign from malignant thyroid lesions with the highest sensitivity and specificity. The galectin-3 + HBME-1 was the best combination for distinguishing benign from malignant lesions. Because they were the best two independent and combined markers, we recommend the use of the galectin-3 + HBME-1 panel to enhance the diagnostic accuracy of follicular-patterned thyroid lesions on FNABs.

Medullary thyroid carcinoma cell lines contain a self-renewing CD133+ population that is dependent on ret proto-oncogene activity.

CONTEXT: Medullary thyroid carcinoma (MTC) is a cancer of the parafollicular C cells commonly caused by an inherited or acquired RET proto-oncogene mutation. Therapeutic resistance and recurrence of the disease imply the presence of cancer stem cells in MTC. OBJECTIVE: In this study, we sought to identify and characterize cancer stem cell-like cells in MTC. MAIN OUTCOME MEASURES: The characterization of stem cell properties was performed using immunostaining, flow cytometry, sphere formation assay, rederivation assay, Western blotting, and quantitative RT-PCR of defined markers of neural stem and progenitor cells. The role of ret proto-oncogene activation was assessed through RNA interference knockdown. RESULTS: CD133 positivity was identified by immunostaining patient MTC. Flow cytometry confirmed a subpopulation of CD133(+) cells in two MTC cell lines. The CD133(+) cells could be expanded by sphere formation assay, passaged multiple times, and expressed neural progenitor markers beta-tubulin 3 and glial fibrillary acidic protein. The MZ-CRC-1 cell line, which harbors a M918T RET mutation, had greater CD133(+) cell numbers and sphere-forming ability than the TT cell line, which harbors the less active C634W mutation. Sphere formation was more dependent on ret proto-oncogene activity than epidermal growth factor or fibroblast growth factor. CONCLUSION: Our data support the existence of cancer stem-like cells in MTC, which exhibit the features of self-renewal and of multiple lineage differentiation that is dependent on ret proto-oncogene receptor activity. These findings may provide new insights to develop more promising therapy for MTC.

One hundred and seven family members with the rearranged during transfection V804M proto-oncogene mutation presenting with simultaneous medullary and papillary thyroid carcinomas, rare primary hyperparathyroidism, and no pheochromocytomas: is this a new syndrome--MEN 2C?.

BACKGROUND: The rearranged during transfection (RET) V804M proto-oncogene mutation is rare and associated with medullary thyroid carcinoma (MTC). We present 40 members from a total cohort of 107 family members with this mutation. METHODS: Family members were tested for RET mutations, calcitonin levels, and screened for pheochromocytoma and primary hyperparathyroidism (PHPT). Thyroidectomies were performed on 15 members. Surgery and pathology reports were obtained and reviewed. A pedigree was constructed. RESULTS: A high penetrance was found for MTC and simultaneous papillary thyroid carcinoma (PTC; 40%). The incidence of PHPT was low (13%). There were no findings of pheochromocytoma. The course in the first family generation was indolent, with late onset of MTC. The second generation experienced earlier disease development; onset occurred earliest in the third generation. The second generation experienced a higher incidence of PTC than the first. CONCLUSION: This is the largest family with this mutation reported to date. However, it does not fit the classic familial MTC or MEN 2A cancer syndrome. Considering that PTC is not an incidental finding, but the result of an inherited RET V804 M mutation, we propose to identify this phenotypic expression as a unique syndrome consistent with manifestations of MTC, PHPT, and PTC.

Identification of the ret proto-oncogene products in neuroblastoma and leukemia cells.

Monoclonal and/or polyclonal antibodies were generated against the products synthesized from two portions of the ret proto-oncogene (c-ret) cDNA expressed in Escherichia coli. These antibodies were reactive in immunoblotting with 150 kd and 170 kd proteins in cell lysates from three human neuroblastoma cell lines expressing the ret proto-oncogene. When the neuroblastoma cells were treated with tunicamycin, a protein with an apparent molecular weight of 120 kd, which is consistent with that of the c-ret protein predicted from the cDNA sequence, appeared on immunoblots. These results indicated that the 150 kd and 170 kd proteins in neuroblastoma cells are produced from a single polypeptide of 120 kd by posttranslational glycosylation. Furthermore, the antibodies detected a unique 190 kd protein as well as 150 kd protein in a cell lysate from THP-1 human monocytic leukemia cell line, suggesting that glycosylated forms of the c-ret protein are different between neuroblastoma and leukemia cells.

DNA breaks at fragile sites generate oncogenic RET/PTC rearrangements in human thyroid cells.

Human chromosomal fragile sites are regions of the genome that are prone to DNA breakage, and are classified as common or rare, depending on their frequency in the population. Common fragile sites frequently coincide with the location of genes involved in carcinogenic chromosomal translocations, suggesting their role in cancer formation. However, there has been no direct evidence linking breakage at fragile sites to the formation of a cancer-specific translocation. Here, we studied the involvement of fragile sites in the formation of RET/PTC rearrangements, which are frequently found in papillary thyroid carcinoma (PTC). These rearrangements are commonly associated with radiation exposure; however, most of the tumors found in adults are not linked to radiation. In this study, we provide structural and biochemical evidence that the RET, CCDC6 and NCOA4 genes participating in two major types of RET/PTC rearrangements, are located in common fragile sites FRA10C and FRA10G, and undergo DNA breakage after exposure to fragile site-inducing chemicals. Moreover, exposure of human thyroid cells to these chemicals results in the formation of cancer-specific RET/PTC rearrangements. These results provide the direct evidence for the involvement of chromosomal fragile sites in the generation of cancer-specific rearrangements in human cells.

Identification of two novel mutations in the RET proto-oncogene in the same family.

BACKGROUND: Activating germline mutations of the RET gene cause multiple endocrine neoplasia type 2 and familial medullary thyroid carcinoma (FMTC), conditions that are inherited in an autosomal dominant manner. In addition, somatic RET mutations have been identified in a variable proportion (about 30-70%) of sporadic (nonfamilial) MTC cases. METHODS: We describe a Greek family with two novel likely pathogenic sequence variants of the RET gene. The first is a C to T transition at position 2458 (c.2458C>T) that causes an arginine to cysteine substitution (p.R820C) in exon 14 in the intracellular region of the kinase. This sequence variant was identified in an apparently healthy woman who had a recently deceased sister with confirmed aggressive MTC (age of onset 37 years). To assess the pathogenicity of this novel missense sequence variant, screening was performed on ALL available relatives: her two sons, the mother, and a second sister, including an MTC tumor sample from the deceased sister of the proband. At the time of the investigation, no clinical symptoms suggestive of multiple endocrine neoplasia type 2 or MTC were present in any of the individuals screened. RESULTS: The c.2458C>T transition was found in one son, the living sister, and the mother. Interestingly, it was not present in the tumor sample from the deceased sister. Instead, an in-frame deletion of 54 nt in exon 10 resulting in a protein missing 18 amino acids from I590 to G608 (c.1766_1819del 54) was found. Both genetic alterations were present in heterozygous state. CONCLUSIONS: These data suggest that the novel in-frame deletion was the disease-causing mutation in the deceased sister. The effect of the 2458C>T mutation on the activity of the kinase is under investigation.

c-RET molecule in malignant melanoma from oncogenic RET-carrying transgenic mice and human cell lines.

Malignant melanoma is one of the most aggressive cancers and its incidence worldwide has been increasing at a greater rate than that of any other cancer. We previously reported that constitutively activated RFP-RET-carrying transgenic mice (RET-mice) spontaneously develop malignant melanoma. In this study, we showed that expression levels of intrinsic c-Ret, glial cell line-derived neurotrophic factor (Gdnf) and Gdnf receptor alpha 1 (Gfra1) transcripts in malignant melanomas from RET-transgenic mice were significantly upregulated compared with those in benign melanocytic tumors. These results suggest that not only introduced oncogenic RET but also intrinsic c-Ret/Gdnf are involved in murine melanomagenesis in RET-mice. We then showed that c-RET and GDNF transcript expression levels in human malignant melanoma cell lines (HM3KO and MNT-1) were higher than those in primary cultured normal human epithelial melanocytes (NHEM), while GFRa1 transcript expression levels were comparable among NHEM, HM3KO and MNT-1. We next showed c-RET and GFRa1 protein expression in HM3KO cells and GDNF-mediated increased levels of their phosphorylated c-RET tyrosine kinase and signal transduction molecules (ERK and AKT) sited potentially downstream of c-RET. Taken together with the finding of augmented proliferation of HM3KO cells after GDNF stimulation, our results suggest that GDNF-mediated c-RET kinase activation is associated with the pathogenesis of malignant melanoma.

Association analysis of the RET proto-oncogene with Hirschsprung disease in the Han Chinese population of southeastern China.

Hirschsprung disease (HSCR) is a complex congenital disorder characterized by intestinal obstructions caused by the absence of the intestinal ganglion cells of the nerve plexuses in variable lengths of the digestive tract. This study investigated a possible role of the RET proto-oncogene in sporadic HSCR patients in the Han Chinese population. Our results indicated that rs1800858, rs1800860, rs1800863, and rs2075912, located in exons 2, 7, 15, and intron 19 of RET, are strongly associated with the disease (P < 0.01), with rs1800860 and rs1800863 playing a protective role in the pathogenesis of HSCR in the Chinese population. We also showed that the haplotype consisting of four SNPs is significantly associated with HSCR. We did not find a significant difference in the CA-repeat in intron 5 of RET between cases and controls. Our study provided further evidence that the RET gene is involved in the susceptibility to HSCR in the Han Chinese population.

Coexistent familial nonmultiple endocrine neoplasia medullary thyroid carcinoma and papillary thyroid carcinoma associated with RET polymorphism.

Familial nonmultiple endocrine neoplasia medullary thyroid cancer accounts for 10% to 15% of hereditary medullary thyroid carcinoma and is characterized by lack of accompanying endocrine or nonendocrine diseases. Simultaneous occurrence of medullary and papillary thyroid carcinoma in the same patient is rare and known as collision tumor. Here, the authors present familial nonmultiple endocrine neoplasia medullary thyroid cancer in 4 sisters, ALL having RET proto-oncogene polymorphism in exon 15 at codon 904 and 2 having additional polymorphism in exon 13 at codon 769. The index case had concomitant medullary and papillary thyroid carcinomas, which are suggested to be completely different tumors in terms of incidence, cell origin, histopathologic features and prognosis. Histopathologically, she also had Hashimoto thyroiditis in the remaining thyroid tissue and medullary thyroid carcinoma metastasis in 3 cervical lymph nodes. This case is the first in the literature to report coexistent familial nonmultiple endocrine neoplasia medullary thyroid cancer and papillary thyroid carcinoma related with a RET polymorphism (S904S in exon 15).

Effects of silencing RET/PTC1 junction oncogene in human papillary thyroid carcinoma cells.

BACKGROUND: RET/PTC1 rearrangement is the most common genetic alteration identified to date in papillary thyroid carcinomas (PTC) and represents an interesting target for small interfering RNA (siRNA) strategies because it is present only in the tumor cells and not in the normal cells. Our aims were (i) to target the RET/PTC1 oncogene by siRNAs, (ii) to assess the knockdown effects on cell growth and cell cycle regulation, and (iii) to identify genes affected by the RET/PTC1 silencing. METHODS: Three efficient siRNAs previously designed in our laboratory in a model of murine PTC (RP-1 cells) were used to knockdown RET/PTC1 in the TPC-1 cells. By reverse transcriptase-polymerase chain reaction (RT-PCR) and quantitative RT-PCR (Q-RT-PCR) they were found unable to silence RET/PTC1. After sequencing, we redesigned an siRNA against RET/PTC1 (siRNARET/PTC1) and compared it for its efficiency and specificity with an siRNA against RET (siRNARET) in the TPC-1 cells, in human cell lines that expressed RET (MCF-7 and BT-474 cells), and in the murine RP-1 cells. The effects on cell cycle growth (MTT tests), cell cycle (flow cytometry), and apoptosis (TUNEL method) were studied. Genes affected by the RET/PTC1 knockdown were identified by microarray analysis followed by Q-RT-PCR validation. RESULTS: A mutation was found by sequencing within the H4 part of the RET/PTC1 junction leading to a (2)(9)(7)T-->G substitution. The redesigned siRNARET/PTC1 inhibits about 85% of the oncogene expression in the human TCP-1 cells. The specificity of the siRNARET/PTC1 was confirmed by the absence of a silencing effect on the human breast MCF-7 and BT-474 cells without RET/PTC1 and the murine RP-1 with (2)(9)(7)G-->T mutation. The downregulation of RET/PTC1 modified the cell cycle and induced an apoptotic response. Microarray analysis revealed an inhibition of E2F2 transcription factor known to be involved in the cell cycle regulation. CONCLUSIONS: This study shows the impact of a point mutation within a junction oncogene on the siRNA design. In the case of a therapeutic approach by siRNA, the junction oncogene must be systematically sequenced. The E2F2 gene regulation would have a biological significance and seems to be directly mediated by RET/PTC1.

The RET/PTC3 oncogene activates classical NF-kappaB by stabilizing NIK.

The oncogenic fusion protein RET/PTC3 (RP3) that is expressed in papillary thyroid carcinoma (PTC) and thyroid epithelia in Hashimoto s thyroiditis activates nuclear factor-kappa B (NF-kappaB) and induces pro-inflammatory gene expression; however, the mechanism of this activation is unknown. To address this, we expressed RP3 in murine embryonic fibroblasts (MEFs) lacking key classical and noncanonical NF-kappaB signaling components. In wild-type MEFs, RP3 upregulated CCL2, CXCL1, granulocyte-macrophage colony-stimulating factor and tumor necrosis factor expression and activated classical but not noncanonical NF-kappaB. RP3-activated NF-kappaB in IkappaB kinase (IKK)beta(-/-) MEFs but not IKKalpha- or NF-kappaB essential modulator (NEMO)-deficient cells and activation was inhibited by a peptide that blocks NEMO binding to the IKKs. RP3 increased the levels of NF-kappaB-inducing kinase (NIK) and did not activate NF-kappaB in NIK-deficient MEFs. Notably, NIK stabilization was not accompanied by TRAF3 degradation demonstrating that RP3 disrupts normal basal NIK regulation. Dominant-negative NIK blocked RP3-induced NF-kappaB activation and an RP3 signaling mutant (RP3(Y588F)) did not stabilize NIK. Finally, examination of PTC specimens revealed strong positive staining for NIK. We therefore conclude that RP3 activates classical NF-kappaB via NIK, NEMO and IKKalpha. Importantly, our findings reveal a novel mechanism for oncogene-induced NF-kappaB activation via stabilization of NIK.

A study of RET proto-oncogene polymorphisms in association with lung cancer risk in the Korean population.

BACKGROUND/AIM: This study examined whether the polymorphisms at the promoter region of RET gene are associated with the risk of lung cancer in the Korean population. PATIENTS AND METHODS: A total of 409 Korean lung cancer patients and 409 normal subjects were recruited. PCR-RFLP, SNaP Shot assay and logistic regression analyses were performed to characterize the association between polymorphisms of RET and lung cancer risk. RESULTS: Four SNPs (-1697 C>G, -1260 C>T, -719 C>T, -527 C>A) of RET were selected for large-scale genotyping. Statistical analyses revealed that novel -1260 C > T polymorphism and haplotype 3 (-1697G, -1260T, -719C, and -719C) were associated with the risk of lung cancer; specifically, there were significant associations within subgroups of males and smokers. CONCLUSION: These results demonstrated that this novel polymorphism of the RET gene is associated with an increased risk of lung cancer in the Korean population.

On the use of multifactor dimensionality reduction (MDR) and classification and regression tree (CART) to identify haplotype-haplotype interactions in genetic studies.

Haplotype-based approaches may have greater power than single-locus analyses when the SNPs are in strong linkage disequilibrium with the risk locus. To overcome potential complexities owing to large numbers of haplotypes in genetic studies, we evaluated two data mining approaches, multifactor dimensionality reduction (MDR) and classification and regression tree (CART), with the concept of haplotypes considering their haplotype uncertainty to detect haplotype-haplotype (HH) interactions. In evaluation of performance for detecting HH interactions, MDR had higher power than CART, but MDR gave a slightly higher type I error. Additionally, we performed an HH interaction analysis with a publicly available dataset of Parkinson s disease and confirmed previous findings that the RET proto-oncogene is associated with the disease. In this study, we showed that using HH interaction analysis is possible to assist researchers in gaining more insight into identifying genetic risk factors for complex diseases.

Single nucleotide polymorphisms act as modifiers and correlate with the development of medullary and simultaneous medullary/papillary thyroid carcinomas in 2 large, non-related families with the RET V804M proto-oncogene mutation.

BACKGROUND: Single nucleotide polymorphisms (SNPs) may function as modifiers of the RET proto-oncogene, resulting in the expression of medullary thyroid carcinoma (MTC) and papillary thyroid carcinoma (PTC). We present 2 non-related Italian-American families (Family 1, n = 107; Family 2, n = 31) with the RET V804M mutation. We have correlated the presence of specific SNPs and the rare RET V804M mutation to MTC, C-cell hyperplasia (CCH), and PTC. METHODS: Sequencing was performed on exons 10, 11, and 13-16 of the RET proto-oncogene. The presence of MTC, CCH, and PTC were correlated to specific SNPs. RESULTS: In both families, 3 SNPs in exon 11 (G691S), exon 13 (L769L), and exon 15 (S904S) were detected in 100% of patients with overt MTC. The SNP L769L was present in ALL patients including patients with PTC, MTC, and CCH. CONCLUSION: SNP analysis revealed a similar pattern between the 2 families. SNPs in exon 11 (G691S) and exon 15 (S904S) appear to influence the development of MTC. A SNP in exon 13 (L769L) may serve as a modifier in the development of simultaneous MTC and PTC, as well as presentation of MTC, in patients with the RET V804M mutation.

Preventive thyroidectomy in patients with hereditary medullary thyroid carcinoma found heterozygote for mutant RET proto-oncogene.

The currently available genetic tests for identification of the RET proto-oncogene mutation offer the possibility of prospective successful therapy before the hyperplasia of C-cells evolve to Medullary Thyroid Carcinoma. We present our experience regarding the preventive thyroidectomy of family members with history of Medullary Thyroid Carcinoma, who were found to be heterozygote for mutant RET proto-oncogene. We have retrospectively reviewed 19 members of 6 families with history of Medullary Thyroid Carcinoma, who were heterozygote for mutant RET protooncogene and underwent prophylactic thyroidectomy. ALL patients included in this series were below twenty years of age. The Medullary Thyroid Carcinoma was asymptomatic and the mutation of RET protooncogene has been also documented pre-operatively in ALL of them. ALL patients had undergone total thyroidectomy, while 1 with pheochromocytoma had undergone also left epinephridectomy. Fourteen patients (73.68%) had undergone lymph-nodes resection (in 10 of them the resection was central, in 3 unilateral and in 1 bilateral). Although none of our patients suffered from hyperparathyroidism, 7 parathyroid glands have been also resected from 3 patients, while auto-transfusion has been performed in one. In ALL patients, preoperative measurement of the calcitonin blood levels before and after stimulation with pentagastrin has been performed.

Multiple endocrine neoplasia type 2B with a RET proto-oncogene A883F mutation displays a more indolent form of medullary thyroid carcinoma compared with a RET M918T mutation.

BACKGROUND: Most cases of multiple endocrine neoplasia type 2B (MEN-2B) are attributable to a germline methionine to threonine mutation at codon 918 (M918T) of the RET proto-oncogene; very few cases of a germline alanine to phenylalanine mutation at codon 883 (A883F) are reported without a clear description of the clinical course. Nevertheless, RET-A883F is currently considered to be among the highest risk mutations, and prophylactic thyroidectomy is recommended as early as 6 months of life. Further characterization of the clinical behavior of RET-A883F mutation is warranted. We present the clinical data for a family with MEN-2B associated with RET-A883F mutation. SUMMARY: The proband, a 39-year-old woman, had multifocal medullary thyroid carcinoma (MTC) with cervical lymphadenopathy, but no evidence of distant metastases. She was disease free after surgical resection. She also had bilateral pheochromocytomas and mucosal neuromas leading to the clinical diagnosis of MEN-2B. Genetic testing showed that the woman and her three children (3-5 years old) had the RET-A883F mutation. The children had near-normal calcitonin levels, and none had sonographic evidence of suspicious thyroid nodules or cervical lymphadenopathy. CONCLUSION: A family with MEN-2B due to RET-A883F mutation displayed a less aggressive form of MTC than what is usually seen in patients with RET-M918T mutation. RET-A883F mutation could be a lower-risk mutation than previously thought and the current recommendation of prophylactic thyroidectomy in the first year of life may not be warranted. Further reports will help clarify the natural history of MTC caused by this mutation.

Evaluation of systemic targeting of RET oncogene-based MTC with tumor-selective peptide-tagged Ad vectors in clinical mouse models.

Significant advantage of targeted antitumoral treatment consists in the possibility to restrict maximum therapeutic efficacy to the malignant cell population by reducing toxicity in healthy tissues. Using different clinical models for aggressive medullary thyroid carcinoma (MTC), we have recently identified peptide ligands that bind highly selective to tumor cells. By linking the most convincing SRESPHP peptide to an adenoviral (Ad) vector expressing the MTC-related oncogene inhibitor RETDeltaTK, gene transfer was specifically directed to neoplastic tissue after systemic virus administration. We show that peptide-mediated delivery of RETDeltaTK significantly enhanced apoptosis, resulting in a strong inhibition of orthotopic and xenograft tumor growth. Conversely, tumors treated with controls expanded their initial size without notable cell death. According to the therapeutic effect, strong virus accumulation was found exclusively in thyroid carcinomas. Strikingly, application of native tropism depleted viral vector linked to tumor-selective peptide was accompanied by a substantial reduction of Ad binding to the liver. Of note, single systemic injection of a low dose (10e8 pfu/mouse) of MTC-specific Ad.RETDeltaTK induced regression of multiple tumors at different sites in ALL treated animals. In sum, our results open up the possibility for an efficient cancer cell-specific therapy of primary MTC, their migrating populations and potentially metastases.

Single oligoarray-based detection of specific M918T mutation in RET oncogene in multiple endocrine neoplasia type 2B.

The most important mutation associated with Multiple Endocrine Neoplasia type 2B (MEN 2B) is the change of thymine to cytosine in codon 918 of exon 16 in the RET oncogene (ATG --> ACG). The aim of this work was to develop a single oligoarray by using tandem hybridization to detect the T918C/RET mutation for MEN 2B patients. Two genetically non-related families were studied; each family had a member affected by MEN2B. Both patients presented the T918C/RET mutation in a heterozygous fashion. None of the relatives was positive for this mutation; thus, these cases arose de novo. The proper mutation was confirmed by with different tools, PCR-Fok I endonuclease, direct sequencing, and also using our oligoarray. In this case, it is suitable to use a DNA target smaller than 150 bases with single- or double-stranded DNA and short probes of 7-mer. It was also possible to detect the mutation by employing different sources of DNA, fresh or paraffin-embedded tissues. Therefore, the present oligoarray can identify the most common M918T mutation of RET oncogene from a variety of DNA sources with good specificity and be a good alternative in the molecular diagnosis for MEN 2B cases.

Indolent medullary thyroid cancer with a RET proto-oncogene Cys618Phe mutation presenting as sporadic unilateral pheochromocytoma in a 55-year-old Korean woman.

The most important mutation associated with Multiple Endocrine Neoplasia type 2B (MEN 2B) is the change of thymine to cytosine in codon 918 of exon 16 in the RET oncogene (ATG --> ACG). The aim of this work was to develop a single oligoarray by using tandem hybridization to detect the T918C/RET mutation for MEN 2B patients. Two genetically non-related families were studied; each family had a member affected by MEN2B. Both patients presented the T918C/RET mutation in a heterozygous fashion. None of the relatives was positive for this mutation; thus, these cases arose de novo. The proper mutation was confirmed by with different tools, PCR-Fok I endonuclease, direct sequencing, and also using our oligoarray. In this case, it is suitable to use a DNA target smaller than 150 bases with single- or double-stranded DNA and short probes of 7-mer. It was also possible to detect the mutation by employing different sources of DNA, fresh or paraffin-embedded tissues. Therefore, the present oligoarray can identify the most common M918T mutation of RET oncogene from a variety of DNA sources with good specificity and be a good alternative in the molecular diagnosis for MEN 2B cases.

Molecular analysis of the RET proto-oncogene key exons in patients with medullary thyroid carcinoma: a comprehensive study of the Iranian population.

BACKGROUND: Germ-line mutations of RET proto-oncogene are the known cause of hereditary medullary thyroid carcinoma (MTC), which account for approximately 25% of ALL MTC cases and occur as multiple endocrine neoplasia type 2 syndromes. Here, we present the first comprehensive genetic screening and analysis of MTC among Iranian families. METHODS: A total of 55 patients with MTC (male to female ratio=1:1.6; average age of disease onset = 33 +/- 13 years) from 53 independent families participated in this study. ALL of the patients had undergone total thyroidectomy between 1999 and 2006, and 51 of them were clinically characterized as apparently sporadic cases. Genomic DNA samples were obtained and following highly-specific polymerase chain reaction amplification of the 6 RET key exons (10, 11, 13, 14, 15, and 16) were subjected to direct DNA sequencing without a requirement for a purification step. RESULTS: Sequence analysis revealed that 9 (17.6%) of the apparently sporadic cases (from 8 kindreds) carried an RET germ-line mutation. Of the seven different mutations identified among ALL of the families studied, five were in the cysteine codons, with Cys634Arg having the highest prevalence (45.5%) among the afflicted families. mutation carriers have an earlier age of onset (21 +/- 6) versus the sporadic cases (37 +/- 12). CONCLUSIONS: This is the first comprehensive genetic screening and analysis of MTC among Iranian families. The results further confirm the need and advantages of DNA sequencing for identification of hereditary MTC cases. There does not seem to be a meaningful correlation between single nucleotide polymorphism patterns and the average age of disease onset. Geographical distribution of the sporadic cases, however, shows a significant concentration toward the Northern regions of the country, noticeably the provinces situated directly to the south of the Caspian Sea.

RET-protooncogene variants in patients with sporadic neoplasms of the digestive tract and the central nervous system.

PURPOSE: The RET protooncogene plays a crucial role in neural crest development; accordingly, mutations of RET cause MEN2A and familial medullary thyroid carcinoma, while the expression deregulation of RET is involved in the pathophysiology of glioblastoma multiforme (GBM) and pancreatic cancer (PDAC). The aim of this study was to evaluate if germline variants of the RET protooncogene are associated with GBM, pancreatic cancer and gastric cancer (GC). METHODS: Genomic DNA from peripheral blood was isolated from 100 patients with GBM, 65 patients with GC and 54 patients with PDAC. The coding sequence of RET promoter, exon 2 and exon 13 was amplified. Sequence variations at -5 and -1 in the promotor and in exon 2 were determined through a LightCycler assay, and analysis of exon 13 was carried out by genomic sequencing. RESULTS: There was no significant association of the RET-promoter or exon 2 genotypes with the phenotype in the different populations, although there was an increase of the GG genotype of the -5G>A variant in ALL cancers compared to controls. Sequencing of exon 13 identified mutation c.2372A>T in codon 791 (Y791F) in heterozygous state in one of 100 GBM patients, in two of 65 patients with gastric cancer, in two of 54 PDAC patients and in none of the controls. CONCLUSIONS: Although our data did not reach significance in our small cohorts, we cannot rule out the involvement of the -5G promoter allele and the c.2372A>T mutation in the development of the aforementioned tumours.

RET proto-oncogene mutations are restricted to codon 618 in Cypriot families with multiple endocrine neoplasia 2.

BACKGROUND: RET germline mutations predispose to the development of inherited cancer syndrome multiple endocrine neoplasia type 2 (MEN2). Several variants of the RET proto-oncogene including G691S and S904S have been suggested to act as genetic modifiers at the age of onset ofMEN2. AIM: The aim of this study is to characterize clinically and molecularly 7 Cypriot patients with familial medullary thyroid carcinoma (FMTC) and 1 with MEN2A and also to determine the allelic frequencies of the RET variants G691S and S904S. SUBJECTS AND METHODS: Seven probands from FMTC families and 1 from MEN2A were screened for the presence of RET mutations and the G691S and S904S variants. Additionally, 226 healthy Cypriots, who served as controls were analysed in an attempt to compare the frequencies of G691S and S904S RET variants to those observed in the 8 patients. RESULTS: The clinical diagnosis of the probands was based on clinical presentation and supported with biochemical findings. The germline C618R mutation of exon 10 was identified in ALL 8 probands and in 15 relatives from 7 different families. No significant difference in the G691S/S904S variants allele frequencies between patients (4/16 or 25%) and controls (124/452 or 27.4%) was found. CONCLUSIONS: mutational screening of the RET gene identified a common mutation (C618R) in ALL 8 (7 FMTC and 1 MEN2A) unrelated Cypriot patients which may be explained by a founder effect. Additionally, no association of the G691S/S904S variants was linked with the disease.

Is the RET proto-oncogene involved in the pathogenesis of intestinal neuronal dysplasia type B?.

Hirschsprung disease (HSCR) is defined by the absence of intramural ganglia of Meissner and Auerbach along variable lengths of the gastrointestinal tract. Intestinal neuronal dysplasia (IND) type B is characterized by the malformation of the parasympathetic submucous plexus of the gut. A connection appears to exist between these two enteric nervous system abnormalities. Due to the major role played by the RET proto-oncogene in HSCR, we sought to determine whether this gene was also related to INDB. dHPLC techniques were employed to screen the RET coding region in 23 patients presenting with INDB and 30 patients with a combined HSCR+INDB phenotype. In addition, eight RET single nucleotide polymorphisms (SNPs) were strategically selected and genotyped by TaqMan technology. The distribution of SNPs and haplotypes was compared among the different groups of patients (INDB, HSCR+INDB, HSCR) and the controls. We found several RET mutations in our patients and some differences in the distribution of the RET SNPs among the groups of study. Our results suggest an involvement of RET in the pathogenesis of intestinal INDB, although by different molecular mechanisms than those leading to HSCR. Further investigation is warranted to elucidate these precise mechanisms and to clarify the genetic nature of INDB.

Predicting phenotypic severity of uncertain gene variants in the RET proto-oncogene.

Although reported gene variants in the RET oncogene have been directly associated with multiple endocrine neoplasia type 2 and hereditary medullary thyroid carcinoma, other mutations are classified as variants of uncertain significance (VUS) until the associated clinical phenotype is made clear. Currently, some 46 non-synonymous VUS entries exist in curated archives. In the absence of a gold standard method for predicting phenotype outcomes, this follow up study applies feature selected amino acid physical and chemical properties feeding a Bayes classifier to predict disease association of uncertain gene variants into categories of benign and pathogenic. Algorithm performance and VUS predictions were compared to established phylogenetic based mutation prediction algorithms. Curated outcomes and unpublished RET gene variants with known disease association were used to benchmark predictor performance. Reliable classification of RET uncertain gene variants will augment current clinical information of RET mutations and assist in improving prediction algorithms as knowledge increases.

Mutational analysis of RET proto-oncogene among patients with medullary thyroid carcinoma and at risk carriers from India.

The Class III beta-tubulin isotype (betaIII-tubulin) is a predictive biomarker in ovarian cancer and other solid tumor malignancies. We discovered that betaIII-tubulin function is linked to two GTPases: guanylate-binding protein 1 (GBP1), which activates its function, and GNAI1, which inhibits it. This finding was demonstrated in a panel of ovarian cancer cells resistant to several chemotherapeutic agents. Using a protein microarray, we identified PIM1 as the downstream partner of GBP1, recruited into the cytoskeleton under hypoxic conditions. The clinical value of these observations was tested by performing an archive study of 98 ovarian cancer patients, which demonstrated that the betaIII-tubulin -/PIM1- cohort responded to treatment, exhibiting long overall survival (OS), while betaIII-tubulin +/PIM+ patients experienced poor outcomes and OS times similar to patients receiving palliation alone. betaIII-tubulin expression is commonly believed responsible for paclitaxel resistance due to its enhancement of the dynamic instability of microtubules, which counteracts the activity of taxanes. In contrast, our research reveals that betaIII-tubulin behaves as a gateway for prosurvival signals, such as PIM1, to move into the cytoskeleton. When cells are exposed to microenvironmental stressors, they activate this pathway by telling the cytoskeleton to incorporate PIM1 through GBP1 and betaIII-tubulin, which ultimately leads to drug resistance. This discovery reveals that betaIII-tubulin does not act alone but requires partners to play its role. The discovery of such protein:protein interactions underlying this prosurvival cascade makes feasible the development of therapeutic approaches using novel compounds that are capable of inhibiting the transmission of prosurvival signals into the cytoskeleton.

[Phenotype of the C634Y mutation in the RET proto-oncogene in MEN2A: report of a family].

BACKGROUND AND OBJECTIVES: Genetic testing of RET proto-oncogen allows an early diagnosis of Multiple Endocrine Neoplasia syndrome type 2 and establish a correlation between genotype and clinical manifestations. The purpose of this study was to demonstrate the benefits of an early diagnosis with genetic testing followed by prompt surgery on the cure of MTC versus a later diagnosis with serum calcitonin. PATIENTS AND METHOD: Retrospective descriptive study of 8 members of a MEN 2A family by C634Y mutation. We performed serum calcitonin screening until 1999 and subsequently RET genetic testing was obtained. Carriers underwent total thyroidectomy and periodic determination of calcitonin, urinary metanephrines, calcium, phosphorus and neck and abdominal imaging techniques. RESULTS: Five patients were diagnosed by calcitonin familial screening and ALL of them have high calcitonin by now. Three patients were diagnosed by genetic testing (an adult and two children) and they are free of disease. Calcitonin was closely monitored in children and they underwent surgery when it started to raise, at 6 and 10 years old respectively, finding nodular C-cell hyperplasia in both. Of 8 carriers 3 developed pheochromocytomas, bilateral and asynchronous, one-half had normal urinary metanephrines and two of them were simultaneous with MTC. No patient had biochemical data suggesting hyperparathyroidism although in one patient multiple parathyroid adenomas were found at thyroidectomy. CONCLUSIONS: RET genetic analysis has achieved an early diagnosis and treatment with no development of MTC in our patients, adjusting the time and type of surgery and allowing a genotype-phenotype correlation. It demonstrates how a genetic alteration is associated with a pathology that we can prevent and manage improving the prognosis of our patients.

Solution structure of all parallel G-quadruplex formed by the oncogene RET promoter sequence.

RET protein functions as a receptor-type tyrosine kinase and has been found to be aberrantly expressed in a wide range of human diseases. A highly GC-rich region upstream of the promoter plays an important role in the transcriptional regulation of RET. Here, we report the NMR solution structure of the major intramolecular G-quadruplex formed on the G-rich strand of this region in K(+) solution. The overall G-quadruplex is composed of three stacked G-tetrad and four syn guanines, which shows distinct features for ALL parallel-stranded folding topology. The core structure contains one G-tetrad with ALL syn guanines and two other with ALL anti-guanines. There are three double-chain reversal loops: the first and the third loops are made of 3 nt G-C-G segments, while the second one contains only 1 nt C10. These loops interact with the core G-tetrads in a specific way that defines and stabilizes the overall G-quadruplex structure and their conformations are in accord with the experimental mutations. The distinct RET promoter G-quadruplex structure suggests that it can be specifically involved in gene regulation and can be an attractive target for pathway-specific drug design.

Chasing the ubiquitous RET proto-oncogene in South African MEN2 families--implications for the surgeon.

The RET proto-oncogene (REarranged during Transfection; RET) plays an important role in the causation of many thyroid tumours. Germline RET proto-oncogene missense mutations have been clearly linked to medullary thyroid carcinoma (MTC) and the inherited cancer syndrome multiple endocrine neoplasia type 2 (MEN2A, MEN2B). METHODS: We investigated a cohort of MEN2-related patients referred to Tygerberg Hospital, W Cape (2003-2009). The study cohort was divided into three groups based on pathology (viz. MEN/MTC, phaeochromocytoma, and a miscellaneous group of MEN pathologies). Families with identified high-risk factors were recalled. Serum calcitonin levels were monitored where indicated. DNA was extracted from whole blood by standard techniques and polymerase chain reaction (PCR) products screened for RET gene variations by heteroduplex single-strand duplication techniques (heteroduplex single-strand conformation polymorphism analysis) being validated with automated sequencing techniques showing conformational variants in acrylamide gel. RESULTS: We screened 40 persons, male/female ratio 1:1.5. Three ethnic groups were represented (white (12), black (11) and mixed race (17)). Nine were index MTC cases, 5 phaeochromocytoma, 3 Hirschsprung s disease-MEN associations and 2 miscellaneous (1 neuroblastoma, 1 intestinal neuronal dysplasia), while 1 fell into the MEN2B category. The remaining 19 were unaffected relatives screened for carrier status, among whom afamilial recurrence was observed in 7. On genetic testing, an RET point mutation at the high-risk 634 cysteine allele was identified in 11 cases. A further cysteine radical mutation at the 620 position was related to MEN2 in 3 families plus 1 other family referred from elsewhere. Other less-recognised gene variations were detected throughout the RET gene in 70% of cases and included the 691 position on codon 11 (11 cases); the 432 position (4 cases, 1 homozygous) intronic mutations on exon 4 (1 case); and an IVS19-37G/C and a D1017N variation in exon 19 in 2 MEN families. Fifteen MTC patients have had thyroidectomies, of which 2 were prophylactic (C-cell hyperplasia; early occult MTC). A further 3 are awaiting prophylactic surgery. CONCLUSION: RET gene mutation carries a risk of MEN2 and MTC in ALL ethnic groups in South Africa. Prophylactic surgery may prevent MTC, so genetic screening is important to identify and treat high-risk patients.

In vitro transforming potential, intracellular signaling properties, and sensitivity to a kinase inhibitor (sorafenib) of RET proto-oncogene variants Glu511Lys, Ser649Leu, and Arg886Trp.

Multiple endocrine neoplasia type 2 and a subset of apparently sporadic medullary thyroid carcinoma (AS-MTC) are caused by germ line activating point mutations of the rearranged during transfection (RET) proto-oncogene. RET encodes a receptor with tyrosine kinase activity that targets several intracellular signaling cascades, such as RAS-RAF-ERK1/2, PIK3-AKT, and STAT transcription factors. The objective of this study was to assess the function of three germ line RET variants Arg886Trp, Ser649Leu, and Glu511Lys of undetermined pathogenic significance, which were found in three kindreds of isolated AS-MTC. For this purpose, we employed vectors expressing each of the RET variants and measured the number of NIH3T3 transformation foci and soft agar colonies, the degree of activation of known RET intracellular signaling targets (ERK1/2, STAT1, STAT3, and TCF4), and the extent of ERK1/2 inhibition on sorafenib treatment. We found that RET variants Arg886Trp and Glu511Lys have shown increased in vitro transforming potential in a glial-derived neurotrophic factor-dependent manner. In contrast, the Ser649Leu variant did not significantly increased the number of foci and agar colonies relative to wild-type RET (RET-WT). The variants Glu511Lys and Arg886Trp showed 10- and 12.5-fold ERK1/2 activation respectively, that was significantly higher than that observed for RET-WT (fivefold). Increased levels of STAT1 and TCF4 activation were only observed for RET Arg886Trp (2.5- and 3-fold versus 1.2- and 2-fold in RET-WT respectively). The three RET variants analyzed here were sensitive to treatment with sorafenib. In conclusion, our results allow to classify previously uncharacterized RET genotypes, which may be of use to define follow-up and therapeutic regimens.

Recombinant ret oncogene products induce T-lymphocyte proliferation, and suppress lymphoma derived from ret transgenic mice.

3Recombinant ret oncogene products in complete Freund s adjuvant were injected into normal mice and ret oncogene transgenic mice. Spleen cells from the mice immunized with ret proteins were highly proliferated in vitro by the stimulation of ret proteins. The proliferating T cells have CD4(+) phenotype and secreated CTLL-2 reactive interleukins. The peritoneal exudate cells from ret protein-immunized mice suppressed ret-2 lymphoma, which was derived from ret lymphoma transgenic mice. The peritoneal exudate cells from ret melanoma transgenic mice did not suppress ret-2 lymphoma, when they were immunized with ret proteins.

Coexistence of multiple endocrine neoplasia type 1 and type 2 in a large Italian family.

To describe the coexistence of mutations of both the multiple endocrine neoplasia type 1 (MEN1) and type 2 (MEN2) genes in a large Italian family and evaluate if it could be associated with more aggressive clinical manifestations of the two syndromes. Blood samples were obtained for genetic and biochemical analyses. The RET gene exons (8, 10, 11, 13, 14, 15, 16, 18) and the MEN1 coding regions, including the exon-intron boundaries, were amplified by PCR and directly sequenced. We identified two germline mutations in the proband: the first one, K666M, located at the exon 11 of RET proto-oncogene and the second one, IVS4+1G>T, located in the MEN1 gene. The functional characterization of IVS4+1G>T variation, located in the splicing donor site of exon 4 of MEN1 gene, caused the in-frame junction of exon 3 to exon 5, thus obtaining a shorter protein. The same proband s germline mutations were found in 16 relatives out of 21 screened subjects: 8 carried IVS4+1G>T, 4 RET K666M, and 4 both the mutations. This is the second report in literature of coexistence in the same family of germline mutations of both RET proto-oncogene and MEN1 gene. The simultaneous presence of the two mutations was not apparently associated with more aggressive diseases, since at last follow-up ALL patients appeared to be disease-free or well compensated by medical therapy; finally, no one exhibited metastatic diseases.

Interplay between Ret and Fap-1 regulates CD95-mediated apoptosis in medullary thyroid cancer cells.

Emerging evidence suggests that Ret oncoproteins expressed in medullary thyroid cancer (MTC) might evade the pro-apoptotic function of the dependence receptor proto-Ret by directly impacting the apoptosis machinery. Identification of the molecular determinants of the interplay between Ret signaling and apoptosis might provide a relevant contribution to the optimization of Ret-targeted therapies. Here, we describe the cross-talk between Ret-M918T oncogenic mutant responsible for type 2B multiple endocrine syndrome (MEN2B), and components of death receptor-mediated extrinsic apoptosis pathway. In the human MEN2B-type MTC cell line MZ-CRC-1 expressing Ret-M918T, Ret was found associated with Fap-1, known as inhibitor of the CD95 death receptor trafficking to the cell membrane, and with procaspase-8, the initiator pro-form caspase in the extrinsic apoptosis pathway. Cell treatment with the anti-tumor Ret kinase inhibitor RPI-1 inhibited tyrosine phosphorylation of procaspase-8, likely inducing its local activation, followed by downregulation of both Ret and Fap-1, and translocation of CD95 into lipid rafts. According to the resulting increase of CD95 cell surface expression, the CD95 agonist antibody CH11 enhanced RPI-1-induced cell growth inhibition and apoptosis. RET RNA interference downregulated Fap-1 protein in MZ-CRC-1 cells, whereas exogenous RET-M918T upregulated Fap-1 in HEK293 cells. Overall, these data indicate that the Ret oncoprotein exerts opposing controls on Fap-1 and CD95, increasing Fap-1 expression and decreasing CD95 cell surface expression. The functional interplay of the Ret mutant with the extrinsic apoptosis pathway provides a mechanism possibly contributing to MTC malignant phenotype and a rational basis for novel therapeutic strategies combining Ret inhibitors and CD95 agonists.

In silico and in vitro analysis of rare germline allelic variants of RET oncogene associated with medullary thyroid cancer.

Germline and somatic RET oncogene mutations are found in 98% hereditary and 40% sporadic medullary thyroid carcinomas. Our aim was to analyse by in silico and in vitro assays the transforming activity of six rare RET mutations (T338I, V648I, M918V, A883T, S904F and M848T). Six known RET mutations were used as controls. The in silico analysis showed the highest score value (i.e. 65) for S904F, M848T, M918T and C634R, whereas L790F, G691S, T338I and V648I had 0 score. Intermediate score values were obtained by A883T (score=55), M918V, V804M and Y791F (score=15). The in vitro focus formation assay showed that cells transfected with S904F, M918T, M848T or C634R generated the largest number of focus formation units (FFU). Intermediate numbers of FFU were observed in cells transfected with M918V, V804M, Y791F or A883T, while cells transfected with L790F, G691S, T338I or V648I showed a number of FFU similar to control cells. A positive correlation between the in silico score and in vitro FFU was found (P=0.0005). Only cells transfected with M918T or C634R grew faster and generated higher number of colonies in soft agar than control cells. However, the cells that were transfected with V804M produced an intermediate number of colonies. In conclusion, two of the six rare RET mutations, S904F and M848T possessed a relatively high transforming activity but a low aggressiveness; the other four mutations T338I, V648I, M918V and A883T were low or non-transforming, and their ability to induce tumoural transformation might be related to particular genetic conditions.

Synergistic growth inhibition of cancer cells harboring the RET/PTC1 oncogene by staurosporine and rotenone involves enhanced cell death.

TPC-1 is a highly proliferative thyroid papillary carcinoma-derived cell line. These cells express the RET/PTC1 fusion protein, whose isoforms are characterized in this work. The bacterial alkaloid staurosporine and the plant extract rotenone are death-inducing drugs that have an inhibitory synergistic effect on the growth of TPC-1 cells. We show that this synergism is accompanied by an enhancement of the induction of cell death. Staurosporine alone induces cell cycle arrest in G(1), whereas rotenone induces arrest in G(2)/M. We suggest that this additive pressure may drive cells to die, resulting in the synergistic interaction of the drug combination. These data emphasize the potential use of the staurosporine plus rotenone combination as an anticancer tool.

Establishing high resolution melting analysis: method validation and evaluation for c-RET proto-oncogene mutation screening.

BACKGROUND: Reliable and effective primary screening of mutation carriers is the key condition for common diagnostic use. The objective of this study is to validate the method high resolution melting (HRM) analysis for routine primary mutation screening and accomplish its optimization, evaluation and validation. Due to their heterozygous nature, germline point mutations of c-RET proto-oncogene, associated to multiple endocrine neoplasia type 2 (MEN2), are suitable for HRM analysis. Early identification of mutation carriers has a major impact on patients survival due to early onset of medullary thyroid carcinoma (MTC) and resistance to conventional therapy. METHODS: The authors performed a series of validation assays according to International Conference on Harmonization of Technical Requirements for Registration of Pharmaceuticals for Human Use (ICH) guidelines for validation of analytical procedures, along with appropriate design and optimization experiments. After validated evaluation of HRM, the method was utilized for primary screening of 28 pathogenic c-RET mutations distributed among nine exons of c-RET gene. RESULTS: Validation experiments confirm the repeatability, robustness, accuracy and reproducibility of HRM. ALL c-RET gene pathogenic variants were detected with no occurrence of false-positive/false-negative results. CONCLUSIONS: The data provide basic information about design, establishment and validation of HRM for primary screening of genetic variants in order to distinguish heterozygous point mutation carriers among the wild-type sequence carriers. HRM analysis is a powerful and reliable tool for rapid and cost-effective primary screening, e.g., of c-RET gene germline and/or sporadic mutations and can be used as a first line potential diagnostic tool.

Hirschsprung s disease and medullary thyroid carcinoma: 15-year experience with molecular genetic screening of the RET proto-oncogene.

PURPOSE: Inactivating germline mutations in the RET proto-oncogene are the major genetic cause of Hirschsprung s disease (HD). In some cases, HD can be associated with medullary thyroid carcinoma (MTC) that is commonly caused by activating RET mutations. METHODS: The retrospective and prospective genetic analyses of 157 patients with HD operated on between December 1979 and June 2011 were carried out. DNA was isolated from peripheral leukocytes. HD patients and family members were tested for RET mutations by direct sequencing and single-strand conformation polymorphism methods. RESULTS: RET mutations were detected in 16 patients (10%). Association with MTC was found in two families, other eight families had a mutation with potentially high risk of MTC development and four novel mutations were detected. Total colonic aganglionosis was noted to have a high mutation detection rate (40%). Three patients underwent total thyroidectomy (two had clinical manifestation of MTC, one C-cell hyperplasia). CONCLUSION: Results show the benefit of systematic RET mutation screening in HD patients in order to identify the risk of MTC in the preclinical stage of the disease. ALL patients should be tested for RET mutations at least in exon 10, and now additionally in exon 11 and 13, as well.

Case report: a p.C618S RET proto-oncogene germline mutation in a large Chinese pedigree with familial medullary thyroid carcinoma.

We report a Chinese pedigree with familial medullary thyroid carcinoma. Direct sequencing of the entire coding sequences of Rearranged during Transfection (RET) identified a recurrent c.T1852A (p.C618S) mutation in 13 of 23 members. The polymorphisms c.A135G (p.A45A), c.A1296G (p.A432A), c.T2307G (p.L769L) and IVS19 + 15T > C were also found in 13 carriers, and c.G2073A (p.G691S) was found in 1 carrier. Of the 13 carriers, seven (mean age: 42.6 years, range: 27-64) presented MTC as the isolated clinical phenotype, with elevated basal serum calcitonin (average: 1077.9 ng/L, range: 504-2,652) and a mean diameter of thyroid nodules of 2.97 cm (range: 1.6-4.3); they underwent a total thyroidectomy with modified bilateral/unilateral neck dissection and/or level VI lymph node dissection. The other 6 carriers did not accept surgery (4 rejected, 2 awaited). These were 2 older patients (63 and 32 years) with elevated calcitonin (1359 and 41.4 ng/L) and multi-centric hypoechoic nodules (1.5 and 0.6 cm) with calcifications in both/left thyroid lobes; and Doppler ultrasound showed normal bilateral thyroids in 4 younger carriers (median age: 8.3 years, range: 4-12) but with increased calcitonin (average: 9.7 ng/L, range: 7.87-12.2) in 3 of them. The phenotype here is consistent with the clinical symptoms reported worldwide. We recommend that screening of hotspot regions of RET should be preferentially carried out, while whole-exon sequencing should be performed when clinical signs fail to reveal hotspot mutations or different phenotype discrepancies. Moreover, we strongly suggest prophylactic thyroidectomy should be performed before age 5 in carriers with p.C618S to prevent the occurrence and metastasis of MTC.

The relationship of cytomorphology of medullary thyroid carcinomas between family members with the same RET proto-oncogene mutation.

OBJECTIVE: To evaluate the relationship of the cytomorphology of medullary thyroid carcinomas (MTC) between family members with the same RET proto-oncogene mutation. STUDY DESIGN: Review of the fine-needle aspiration slides of 13 cases with MTC proven by surgery and pathology from 5 unrelated families with either multiple endocrine neoplasia (MEN) type 2A or familial MTC (FMTC). RESULTS: Small, round, and abundant large oval-to-polygonal cells were major cytomorphologic findings in 66.7% of family members with exon 11, codon 634 TGC --> CGC germline mutation. Small, round cells and only a few or no polygonal cells were found in 66.7% of family members with exon 11, codon 634 TGC --> TTC germline mutation and in 100% of family members with codon 634 TGC --> TGG germline mutations, as well as in 100% of family members with exon 10, codon 620 TGC --> GGC germline mutation. CONCLUSIONS: The high rate of similarity of cytomorphology (66.7-100%) in the family members with MEN type 2A or FMTC might be related to the same etiology in the production of MTC in the same family. The relationship of the respective cytomorphology with the long-term prognosis is worth elucidating further.

Identification of functionally distinct TRAF proinflammatory and phosphatidylinositol 3-kinase/mitogen-activated protein kinase/extracellular signal-regulated kinase kinase (PI3K/MEK) transforming activities emanating from RET/PTC fusion oncoprotein.

Thyroid carcinomas that harbor RET/PTC oncogenes are well differentiated, relatively benign neoplasms compared with those expressing oncogenic RAS or BRAF mutations despite signaling through shared transforming pathways. A distinction, however, is that RET/PTCs induce immunostimulatory programs, suggesting that, in the case of this tumor type, the additional pro-inflammatory pathway reduces aggressiveness. Here, we demonstrate that pro-inflammatory programs are selectively activated by TRAF2 and TRAF6 association with RET/PTC oncoproteins. Eliminating this mechanism reduces pro-inflammatory cytokine production without decreasing transformation efficiency. Conversely, ablating MEK/ERK or PI3K/AKT signaling eliminates transformation but not pro-inflammatory cytokine secretion. Functional uncoupling of the two pathways demonstrates that intrinsic pro-inflammatory pathways are not required for cellular transformation and suggests a need for further investigation into the role inflammation plays in thyroid tumor progression.

Specific expression of the ret proto-oncogene in human neuroblastoma cell lines.

The expression of the ret proto-oncogene (proto-ret), which possibly encodes two isoforms of a receptor-type tyrosine kinase, was examined in human tumor cell lines. expression of the proto-ret mRNA was detected in ALL 11 neuroblastoma cell lines examined. The level of mRNA varied more than 100-fold in these neuroblastoma cell lines and was particularly high in three of them. On the other hand, 19 non-neuroblastoma tumor cell lines derived from solid tumors and a human diploid fibroblast cell line did not express any detectable levels of proto-ret mRNA. No remarkable amplification of the proto-ret or gross structural changes in the coding region were found in these neuroblastoma cell lines. The specific expression of the proto-ret in neuroblastomas suggests that the proto-ret product may have a role in cellular functions specific to neuroblastoma cells.

Mutation screening of RET proto-oncogene in a family with medullary thyroid carcinoma, marfanoid habitus and pheochromocytoma; from clinically MEN2B to genetically MEN2A syndrome.FAU - Hasani-Ranjbar, Shirin.

AIM: To evaluate the effects of HSP90 blockade by EC154 on the oncogenic receptor tyrosine kinase macrophage-stimulating 1 receptor (MST1R) in gastric and pancreatic cancer. MATERIALS AND METHODS: Impact of EC154 on signaling pathways was investigated by western blotting. cancer cell migration was evaluated in Boyden chambers. Transcriptional regulation of MST1R was examined by using promoter-luciferase reporter constructs. Effects on MST1R expression, and tumor growth were investigated in in vivo tumor models. RESULTS: MST1R was expressed by cancer cells without evidence of MST1R mutations. EC154 led to an effective inhibition of cancer cell growth, down-regulated MST1R, diminished its promoter activity, and disrupted oncogenic macrophage-stimulating protein 1 (MSP1) signaling. Moreover, pro-migratory activities of cancer cells were dramatically inhibited. In vivo, treatment with EC154 significantly reduced tumor growth, while MST1R expression was down-regulated. CONCLUSION: Wild-type MST1R is an HSP90 client protein that can be targeted in gastrointestinal cancer using HSP90 inhibitors.

RET, ROS1 and ALK fusions in lung cancer.

Through an integrated molecular- and histopathology-based screening system, we performed a screening for fusions of anaplastic lymphoma kinase (ALK) and c-ros oncogene 1, receptor tyrosine kinase (ROS1) in 1,529 lung cancers and identified 44 ALK-fusion-positive and 13 ROS1-fusion-positive adenocarcinomas, including for unidentified fusion partners for ROS1. In addition, we discovered previously unidentified kinase fusions that may be promising for molecular-targeted therapy, kinesin family member 5B (KIF5B)-ret proto-oncogene (RET) and coiled-coil domain containing 6 (CCDC6)-RET, in 14 adenocarcinomas. A multivariate analysis of 1,116 adenocarcinomas containing these 71 kinase-fusion-positive adenocarcinomas identified four independent factors that are indicators of poor prognosis: age >/= 50 years, male sex, high pathological stage and negative kinase-fusion status.

Bilateral adrenal pheochromocytoma with a germline L790F mutation in the RET oncogene.

About ten percent of pheochromocytomas are associated with familial syndrome. Hereditary pheochromocytoma has characteristics of early onset, multifocality and bilaterality. We experienced a case of 44-year-old man with bilateral pheochromocytoma without evidence of medullary thyroid cancer. Genetic test detected a L790F germline mutation of RET oncogene. The author found a necessity for genetic tests in cases of young-age, bilateral pheochromocytoma.

Multiple endocrine neoplasias type 2B and RET proto-oncogene.

Multiple Endocrine Neoplasia type 2B (MEN 2B) is an autosomal dominant complex oncologic neurocristopathy including medullary thyroid carcinoma, pheochromocytoma, gastrointestinal disorders, marphanoid face, and mucosal multiple ganglioneuromas. Medullary thyroid carcinoma is the major cause of mortality in MEN 2B syndrome, and it often appears during the first years of life. RET proto-oncogene germline activating mutations are causative for MEN 2B. The 95% of MEN 2B patients are associated with a point mutation in exon 16 (M918/T). A second point mutation at codon 883 has been found in 2%-3% of MEN 2B cases. RET proto-oncogene is also involved in different neoplastic and not neoplastic neurocristopathies. Other RET mutations cause MEN 2A syndrome, familial medullary thyroid carcinoma, or Hirschsprung s disease. RET gene expression is also involved in Neuroblastoma. The main diagnosis standards are the acetylcholinesterase study of rectal mucosa and the molecular analysis of RET. In our protocol the rectal biopsy is, therefore, the first approach. RET mutation detection offers the possibility to diagnose MEN 2B predisposition at a pre-clinical stage in familial cases, and to perform an early total prophylactic thyroidectomy. The surgical treatment of MEN 2B is total thyroidectomy with cervical limphadenectomy of the central compartment of the neck. When possible, this intervention should be performed with prophylactic aim before 1 year of age in patients with molecular genetic diagnosis. Recent advances into the mechanisms of RET proto-oncogene signaling and pathways of RET signal transduction in the development of MEN 2 and MTC will allow new treatment possibilities.

Lessons to be learned from the clinical management of a MEN 2A patient bearing a novel 634/640/700 mutation of the RET proto-oncogene.

Oncogenic KRAS mutations in colorectal cancer (CRC) are associated with lack of benefit from epidermal growth factor receptor (EGFR)-directed antibody (Ab) therapy. However, the mechanisms by which constitutively activated KRAS (KRAS(G12V)) impairs effector mechanisms of EGFR-Abs are incompletely understood. Here, we established isogenic cell line models to systematically investigate the impact of KRAS(G12V) on tumor growth in mouse A431 xenograft models as well as on various modes of action triggered by EGFR-Abs in vitro. KRAS(G12V) impaired EGFR-Ab-mediated growth inhibition by stimulating receptor-independent downstream signaling. KRAS(G12V) also rendered tumor cells less responsive to Fc-mediated effector mechanisms of EGFR-Abs-such as complement-dependent cytotoxicity (CDC) and Ab-dependent cell-mediated cytotoxicity (ADCC). Impaired CDC and ADCC activities could be linked to reduced EGFR expression in KRAS-mutated versus wild-type (wt) cells, which was restored by small interfering RNA (siRNA)-mediated knockdown of KRAS4b. Immunohistochemistry experiments also revealed lower EGFR expression in KRAS-mutated versus KRAS-wt harboring CRC samples. Analyses of potential mechanisms by which KRAS(G12V) downregulated EGFR expression demonstrated significantly decreased activity of six distinct transcription factors. Additional experiments suggested the CCAAT/enhancer-binding protein (C/EBP) family to be implicated in the regulation of EGFR promoter activity in KRAS-mutated tumor cells by suppressing EGFR transcription through up-regulation of the inhibitory family member C/EBPbeta-LIP. Thus, siRNA-mediated knockdown of C/EBPbeta led to enhanced EGFR expression and Ab-mediated cytotoxicity against KRAS-mutated cells. Together, these results demonstrate that KRAS(G12V) signaling induced C/EBPbeta-dependent suppression of EGFR expression, thereby impairing Fc-mediated effector mechanisms of EGFR-Abs and rendering KRAS-mutated tumor cells less sensitive to these therapeutic agents.

Management of pheochromocytoma during pregnancy: laparoscopic adrenalectomy.

The pituitary tumor transforming gene (PTTG) is a multifunctional proto-oncogene that is over-expressed in various tumors including thyroid carcinomas, where it is a prognostic indicator of tumor recurrence. PTTG has potent transforming capabilities in vitro and in vivo, and many studies have investigated the potential mechanisms by which PTTG contributes to tumorigenesis. As the human securin, PTTG is involved in critical mechanisms of cell cycle regulation, whereby aberrant expression induces aneuploidy. PTTG may further contribute to tumorigenesis through its role in DNA damage response pathways and via complex interactions with hormones and growth factors. Furthermore, PTTG over-expression negatively impacts upon the efficacy of radioiodine therapy in thyroid cancer, through repression of expression and function of the sodium iodide symporter. Given its various roles at ALL disease stages, PTTG appears to be an important oncogene in thyroid cancer. This review discusses the current knowledge of PTTG with particular focus on its role in thyroid cancer.

[Human ret proto-oncogene].

mutations of ras oncogenes are believed to play an important role in the initiation or progression of human tumors. In thyroid tumors the incidence of ras activation by specific point mutations has been reported to range from 33% in follicular adenomas up to 60% in anaplastic carcinomas. Because of our long-standing interest in Hurthle cell tumors, we began a study of 70 such cases to determine the incidence of ras mutations and their clinical correlates. Analysis of N-ras sequences at codon position 61, with the polymerase chain reaction method and oligonucleotide probe hybridization, showed point mutations of the normal codon CAA* in eight tumor samples. One was a mutation from CAA to AAA, one from CAA to CTA,* and six from CAA to CGA. These mutations would result in amino acid substitutions of lysine, leucine, or arginine for the normal glutamine at position 61 in the N-ras protein. Identical ras mutations in two tumors and some of their surrounding thyroid tissue may indicate that activating ras point mutations are an early event in carcinogenesis. The incidence of mutations was 1 of 24 (4%) of the histologically benign tumors, 5 of 34 (15%) of the intermediate tumors (with vascular or capsular permeation), and 2 of 12 (17%) in the malignant group. Four of these eight patients died of metastatic thyroid disease and four are alive without evidence of recurrence.

Hirschsprung disease of the colon, a vaginal mass and medullary thyroid cancer - a RET oncogene driven problem.

This case report emphasizes the fact that ALL patients with Hirschsprung disease should be screened for RET oncogene mutation as there is a well known association between Hirschsprung disease and Multiple Endocrine Neoplasia (MEN) Type 2A. It also reminds us that Medullary Thyroid Carcinoma is known to cause elevated levels of CEA which does not originate from gastrointestinal tract.

Expression of the RET proto-oncogene is regulated by TFAP2C in breast cancer independent of the estrogen receptor.

BACKGROUND: The RET proto-oncogene is expressed as part of the estrogen receptor (ER) cluster in breast cancer. We sought to determine if TFAP2C regulates Ret expression directly or indirectly through ER. METHODS: Chromatin immunoprecipitation sequencing (ChIP-Seq) and gel-shift assay were used to identify TFAP2C binding sites in the RET promoter in four breast cancer cell lines. Ret mRNA and protein levels were evaluated in ER-positive and ER-negative breast cancer cell lines after knockdown of TFAP2C. Luciferase expression assay was performed to assess expression from two of the identified sites. RESULTS: ChIP-Seq identified five main binding peaks for TFAP2C in the RET promoter at -101.5 kb, -50.7 kb, -32.5 kb, +5.0 kb, and +33.6 from the RET transcriptional start site. Binding at three of the AP-2 sites was conserved across ALL four cell lines, whereas the RET -101.5 and RET +33.6 sites were each found to be unbound by TFAP2C in one cell line. A TFAP2C consensus element was confirmed for ALL five sites. Knockdown of TFAP2C by siRNA in ER-positive MCF-7 cells resulted in significant down regulation of Ret mRNA compared to nontargeting (NT) siRNA (0.09 vs. 1.0, P < 0.001). Knockdown of TFAP2C in ER-negative MDA-MB-453 cells also led to a significant reduction in Ret mRNA compared to NT siRNA (0.16 vs. 1.0, P < 0.001). In MCF-7 cells, knockdown of TFAP2C abrogated Ret protein expression (0.02 vs. 1.0, P < 0.001) before reduction in ER. CONCLUSIONS: TFAP2C regulates expression of the RET proto-oncogene through five AP-2 regulatory sites in the RET promoter. Regulation of Ret by TFAP2C occurs independently of ER expression in breast carcinoma.

Acute myeloid leukemia with translocation (8;16)(p11;p13) and MYST3-CREBBP rearrangement harbors a distinctive microRNA signature targeting RET proto-oncogene.

Acute myeloid leukemia (AML) with t(8;16)(p11;p13) (t(8;16) AML) has unique clinico-biological characteristics, but its microRNA pattern is unknown. We analyzed 670 microRNAs in seven patients with t(8;16) AML and 113 with other AML subtypes. Hierarchical cluster analysis showed that ALL t(8;16) AML patients grouped in an independent cluster. Supervised analysis revealed a distinctive signature of 94-microRNAs, most of which were downregulated, including miR-21 and cluster miR-17-92. The mRNA expression analysis of two known transcription factors of these microRNAs (STAT3 and c-Myc, respectively) showed significant downregulation of STAT3 (P=0.04). A bioinformatic analysis showed that 29 of the downregulated microRNAs might be regulated by methylation; we treated a t(8;16) AML sample with 5-aza-2 -deoxycytidine (5-AZA-dC) and trichostatin A and found that 27 microRNAs were re-expressed after treatment. However, there was no difference in methylation status between t(8;16) and other AML subtypes, either overall or in the microRNA promoter. Cross-correlation of mRNA and microRNA expression identified RET as a potential target of several microRNAs. A Renilla-luciferase assay and flow cytometry after transfection with pre-microRNAs confirmed that RET is regulated by miR-218, miR-128, miR-27b, miR-15a and miR-195. In conclusion, t(8;16) AML harbors a specific microRNA signature that is partially epigenetically regulated and targets RET proto-oncogene.

Medullary thyroid carcinoma (MTC) and RET proto-oncogene: mutation spectrum in the familial cases and a meta-analysis of studies on the sporadic form.

Medullary thyroid carcinoma (MTC) is an uncommon malignant tumor arising from the calcitonin-producing parafollicular cells (C cells) of thyroid. It accounts for 5-10% of ALL thyroid cancers, and it mostly occurs as a sporadic entity (sMTC), but a familial pattern (fMTC) is also possible. RET proto-oncogene germline mutations are crucial for the onset and the progression of fMTC, and the occurrence of single nucleotide polymorphisms could predispose to the sporadic form. In order to clarify the role of this gene in MTC, we carefully reviewed the PubMed database using appropriate terms. First, we summarized current knowledge of the germline RET mutations, mutation spectrum, and prevalence. We then performed a meta-analysis on the available case-control association studies for sMTC. Finally, we carried out in silico predictions of the best associated variants in the attempt to better define their role in the disease. To date, a total of 39 different RET germline mutations have been identified in fMTC families. The most affected codons are 609, 611, 618, 620 (exon 10) and 634 (exon 11), encoding for the extracellular cysteine-rich domain, and codons 768 (exon 13) and 804 (exon 14) of the intracellular tyrosine kinase domain. Six polymorphisms with at least three studies were included in the meta-analysis (A45A [rs1800858], G691S [rs1799939], L769L [rs1800861], S836S [rs1800862], S904S [rs1800863], and IVS1-126G>T [rs2565206]). The meta-analysis demonstrated a modest association of sMTC susceptibility with S836S and a strong association with the IVS1-126G>T polymorphism. Besides RET polymorphisms, we also investigated the role of a few other low-penetrance alleles of genes involved in the RET pathway or in xenobiotic metabolism, but none of these were confirmed. Thus, despite the well-known molecular basis of fMTC, the genetic variants of the sporadic form are still poorly understood, and functional analyses are needed to better understand the consequence of such RET variants and to improve our knowledge on the disease.

Correlation between multiple RET mutations and severity of Hirschsprung s disease.

PURPOSE: The enteric nervous system (ENS), comprising neurons and glial cells, organized as interconnected ganglia within the gut wall, controls peristalsis and the production of secretions. The RET receptor tyrosine kinase is expressed throughout enteric neurogenesis and is required for normal ENS development. Humans with mutations in the RET locus have Hirschsprung s disease (HSCR), and mice lacking RET exhibit total intestinal aganglionosis. Although a number of mutations with the potential for causing HSCR have been reported, their precise correlation with phenotype and symptom severity in HSCR is not clearly understood. Our study investigates the correlation between mutations in the RET locus and symptom severity in HSCR. METHODS: We performed a comprehensive nucleotide analysis of the RET coding region in 18 HSCR patients and 87 controls, performed cellular biological analysis by Western blotting using the expression vector, and analyzed cell proliferation with anti-Ki67 antibody under immunofluorescence confocal microscopy (ICM). RESULTS: We identified three novel mutations, D489N, L769L, and V778D in the RET coding region in our HSCR patients. In the allelic distribution of D489N and L769L, the difference between HSCR patients and controls reached statistical significance (p = 0.0373 and p = 0.0004, respectively), whereas no statistical difference was observed in the allelic distribution of V778D (p = 0.1073). One HSCR patient who died from total colonic aganglionosis had a combination of homozygous mutation of D489N, L769L, and heterozygous mutation of V778D. Western blotting of full mutant RET from this patient showed significantly increased 150kD-band, which corresponds to the immature form compared with wild-type and single mutant RET. ICM showed that overexpression of full mutant RET significantly reduced cellular proliferation in comparison with wild-type and single mutant RET. CONCLUSION: A combination of mutations in the RET locus may correlate with symptom severity in HSCR as a consequence of reduced cellular proliferation secondary to altered maturation of RET.

RET proto-oncogene genetic screening of families with multiple endocrine neoplasia type 2 optimizes diagnostic and clinical management in China.

BACKGROUND: Genetic screening for germline mutations in the RET proto-oncogene has been extensively exploited worldwide to optimize the diagnostic and clinical management of multiple endocrine neoplasia type 2 (MEN2) patients and their relatives. However, a distinct lag period exists not only in the recognition but also in the medical treatment of patients with MEN2. Here we present a comprehensive genetic and clinical analysis of MEN2 among Chinese families followed from 1975 to 2011. Our series comprises 36 index cases and 134 relatives from 11 independent families. METHODS: Genetic diagnosis was performed in ALL participants by direct sequencing ALL relevant RET exons. Thyroidectomy was performed in 50 patients with varying cervical neck dissection procedures. Patients with pheochromocytoma (PHEO) underwent specific surgery. Demographic, clinical profiles, mutation types, tumor histopathologic features, and follow-up records were systematically analyzed. RESULTS: The RET mutations p.C634Y (n=34), p.C634R (n=6), p.C618S (n=13), p.V292M/R67H/R982C (n=7), p.L790F (n=2), and p.C634Y/V292M/R67H/R982C (n=1) were confirmed in 31 index cases and then identified in 32 at-risk relatives (mutation carriers), with MEN2A as the most common clinical subtype. The overall penetrance of PHEO in patients with MEN2A was 46.7%. A total of 50 patients underwent thyroidectomy, and there was a significant lowering of their mean age at thyroidectomy and the tumor diameter of the mutation carriers that were detected and operated on compared with the index cases (age at first surgery: 29.3 vs. 39.3 years, p<0.05; maximum size: 1.1 vs. 3.3 cm, p<0.001). There was also a decrease in the TNM staging and the proportion of patients who underwent inappropriate initial thyroid surgery (pN1: 31.6% vs. 100%, p<0.001; inappropriate surgery: 0% vs. 29%). Meanwhile, disease-free survival (DFS) increased (DFS: 100% vs. 58.1%, p<0.05). Both medullary thyroid carcinoma-specific (n=1) and PHEO-specific (n=5) deaths were reported during the study period. CONCLUSIONS: Our results further substantiate that gene scanning of ALL relevant RET exons is a powerful tool in the management of MEN2 patients, especially in asymptomatic carriers, and has led to earlier diagnosis and more complete initial treatment of patients with MEN2 in China.

Novel tandem germline RET proto-oncogene mutations in a patient with multiple endocrine neoplasia type 2B: report of a case and a literature review of tandem RET mutations with in silico analysis.

BACKGROUND: Multiple endocrine neoplasia type 2B (MEN2B) is the rarest and most aggressive form of MEN2. MEN2B cases usually carry either an M918T or A883T mutation of the RET, but to date, there are 3 atypical MEN2B caused by tandem mutations. METHODS AND RESULTS: A 32-year-old woman with no family history of medullary thyroid carcinoma (MTC) presented with a neck tumor and multiple mucosal nodules. She was diagnosed with MEN2B. Genetic analyses of RET revealed that she had 2 mutations, Q781R and V804M. Subclone and genetic analyses revealed that Q781R was on the paternal allele and V804M was a de novo. In silico analysis of the tandem mutations showed a high prediction score. CONCLUSIONS: We describe a novel combination of tandem RET mutations (Q781R/V804M) in a MEN2B-like patient. In silico analysis showed a high prediction score, which was compatible with the clinical phenotype in the present case.

Ponatinib (AP24534) is a novel potent inhibitor of oncogenic RET mutants associated with thyroid cancer.

CONTEXT: The RET tyrosine kinase encoding gene acts as a dominantly transforming oncogene in thyroid carcinoma and other malignancies. Ponatinib (AP24534) is an oral ATP-competitive tyrosine kinase inhibitor that is in advanced clinical experimentation in leukemia. OBJECTIVE: We tested whether ponatinib inhibited RET kinase and oncogenic activity. METHODS: Ponatinib activity was studied by an in vitro RET immunocomplex kinase assay and immunoblotting. The effects of ponatinib on proliferation of human TT, MZ-CRC-1, and TPC-1 thyroid carcinoma cells, which harbor endogenous oncogenic RET alleles, and of NIH3T3 fibroblasts transfected with oncogenic RET mutants were determined. Ponatinib activity on TT cell xenografted tumors in athymic mice was measured. RESULTS: Ponatinib inhibited immunopurified RET kinase at the IC(5)(0) of 25.8 nM (95% confidence interval [CI] = 23.15-28.77 nM). It also inhibited (IC(5)(0) = 33.9 nM; 95% CI = 26.41-43.58 nM) kinase activity of RET/V804M, a RET mutant displaying resistance to other tyrosine kinase inhibitor. Ponatinib blunted phosphorylation of point-mutant and rearranged RET-derived oncoproteins and inhibited proliferation of RET-transformed fibroblasts and RET mutant thyroid carcinoma cells. Finally, after 3 weeks of treatment with ponatinib (30 mg/kg/d), the volume of TT cell (medullary thyroid carcinoma) xenografts was reduced from 133 mm(3) to an unmeasurable size (difference = 133 mm(3), 95% CI = -83 to 349 mm(3)) (P < .001). Ponatinib-treated TT cell tumors displayed a reduction in the mitotic index, RET phosphorylation, and signaling. CONCLUSIONS: Ponatinib is a potent inhibitor of RET kinase and has promising preclinical activity in models of RET-driven medullary thyroid carcinoma.

RET codon 618 mutations in Saudi families with multiple endocrine neoplasia Type 2A and familial medullary thyroid carcinoma.

BACKGROUND AND OBJECTIVES: Certain diseases such as multiple endocrine neoplasia (MEN) 2A, MEN 2B, familial and sporadic medullary thyroid carcinoma (MTC) and renal dysgenesis are related to abnormalities of the RET protein. Our aim was to evaluate the frequency of RET mutation in 10 Saudi families with MEN type 2A and familial MTC. DESIGN AND SETTING: A cross-sectional prospective study of patients followed up at King Abdulaziz University Hospital and King Abdulaziz Medical City, Jeddah, between March 2001 and March 2011. PATIENTS AND METHODS: Genomic DNA was isolated from peripheral blood leukocytes of ALL subjects by standard procedures. Exons 10, 11, 13, 14 and 16 of the RET proto-oncogene were analyzed by single-strand conformation polymorphism, direct DNA sequencing and/or restriction enzyme analysis. RESULTS: We screened 79 subjects for the RET mutation. Of which 43 subjects had hereditary MTC were en.rolled in this study. MEN type 2A was identified in 25 subjects; MTC was diagnosed in ALL 25 subjects (100%), pheochromocytoma in 13 subjects (52%) and hyperparathyroidism in 4 subjects (16%). The most frequent genotype in patients with MEN 2A syndrome was a codon 618 mutation (46.6%), followed by a codon 634 mutation (44.2%). Among the 5 families with MEN 2A, 3 had a mutation at codon 634, whereas 2 had a mutation at codon 618. CONCLUSION: The most frequent RET proto-oncogene mutation in our series was in codon 618 (exon 10).

[Clinical diagnosis and treatment of familial medullary thyroid carcinoma caused by a p.C618Y RET proto-oncogene mutation in a Chinese pedigree].

OBJECTIVE: To explore the clinical characteristics, therapeutic and clinical significance for RET proto-oncogene screening in a pedigree with familial medullary thyroid carcinoma. METHODS: Comprehensive medical history was obtained from 19 members in a 4-generate southern Chinese family. Systemic clinical investigations including biochemical testing, imaging examinations and germline RET screening. RESULTS: RET screening showed heterozygous missense mutations of TGC to TAC at codon 618 on exon 10 in 8 cases (p.C618Y) completely consistent with the clinical manifestations. The clinical data of 7 patients with medullary thyroid carcinoma (MTC) and 2 carriers of asymptomatic RET mutation from were analyzed. Single/bilateral multi-centric MTC with lymph node metastases was confirmed in 6 cases by histopathology and 1 case by clinical examination. There were 1 male and 6 females with an initial mean diagnostic age was 49.6 years (range: 24 - 78). ALL had palpable neck masses. And the mean maximum diameter of MTC was 2.6 cm (range 1.4 - 4.4). Seven patients underwent thyroidectomy except a 78-year-old female patient: right total and left subtotal thyroidectomy (n = 1), right total thyroidectomy (previous left total thyroidectomy for benign mass) (n = 1) and total thyroidectomy (n = 4) were performed. ALL procedures were accompanied by at least bilateral level VI lymph node dissection and/or with modified single/bilateral neck dissection. After the first operation, 6 patients still presented a high value of calcitonin: 1 patient died of metastasis 64 months postoperatively; 3 patients underwent reoperation at 6 months after initial operation, the calcitonin levels dropped to normal in 2/3 cases and stayed higher in 1 case; another two cases presented bilateral thyroid gland residua, local lymph node enlargement on imaging examination and elevated levels of calcitonin at 214 and 60 months postoperation respectively. However, 1/2 asymptomatic with elevated pre-operative calcitonin subjects underwent total thyroidectomy and histopathological examination showed bilateral C cell hyperplasia. The other carriers, without surgery, with normal neck images, close monitoring and a 10-month follow-up, still presented undetectable calcitonin. CONCLUSIONS: Based on family survey, integrated RET screening and serum levels of calcitonin facilitate an early diagnosis and normalize surgery to improve the prognosis. For asymptomatic RET mutation carriers, their levels of calcitonin shall guide the individualized regimen of prophylactic thyroidectomy or strict monitoring and follow-ups.

The clinical spectrum of RET proto-oncogene mutations in codon 790.

OBJECTIVE: Due to a strong genotype-phenotype correlation, the timing of prophylactic thyroidectomy in rearranged during transfection (RET) gene mutation carriers is usually dictated by genetic analysis. SUBJECTS AND METHODS: We report a nationwide retrospective study of the clinical data of 77 French patients from 19 families with a mutation in codon 790 of the RET proto-oncogene. RESULTS: The average age at diagnosis was 35.6 years +/- 20.5. Thirty-nine patients were women. Fifty-five patients underwent operations for the treatment of medullary thyroid carcinoma (MTC) at the mean age of 38 years (4-82 years). The mean follow-up duration was 89 months. TNM staging was as follows: T0NxMx in 19, TxNxMx in 1, T1NxMx in 22, T1N1Mx in 8, T2N1Mx in 1 and T3N1Mx in four patients. In the T1/x-Nx group, 96% were considered cured after surgery. In the N1 group (n=13), six patients had multifocal disease and five patients were cured. Age and gender were not significant predictors of remission. Twenty-two patients did not undergo an operation (age 1.5-78 years); among them, 11 patients had a mean basal calcitonin (CT) level of 9.8 pg/ml (2-24) after 53 months of follow-up. One patient had been operated on for phaeochromocytoma (PHEO), and their CT level remained normal for 262 months. CONCLUSIONS: This study confirms that RET 790 mutation is associated with a non-aggressive form of multiple endocrine neoplasia type 2, as 28% of the patients were followed up without thyroidectomy, 25% had been thyroidectomised with no tumour being detected and even patients with MTC had slow-evolving disease. Moreover, only one patient had PHEO, and no-one had primary hyperparathyroidism.

Prophylactic thyroidectomy for MEN 2-related medullary thyroid carcinoma based on predictive testing for RET proto-oncogene mutation and basal serum calcitonin in China.

INTRODUCTION: Early and normative surgery is the only curative method for multiple endocrine neoplasia type 2 (MEN 2)-related medullary thyroid carcinoma (MTC). AIMS: To study the timing of prophylactic total thyroidectomy (TT) for MEN 2-related MTC with different RET mutations in a Chinese population, and to compare the sensitivity and accuracy of fully-automated chemiluminescence immunoassay (FACLIA) and radioimmunoassay (RIA) for serum calcitonin (Ct). METHODS: We collected 24 asymptomatic individuals from 8 unrelated Chinese families with MEN 2, and analyzed RET mutation and Ct levels. Then we performed TT on 17 of the 24 individuals, including TT (2/17), TT with bilateral level VI lymph-node dissection (B-LND(VI); 12/17) and TT with B-LND(VI) + modified unilateral/bilateral/local neck dissection (3/17). RESULTS: Histopathology revealed bilateral/unilateral MTC in 15/17 (88.2%; median diameter, 1.0 cm) and bilateral C-cell hyperplasia in 2/17 (11.8%; p.V292M/R67H/R982C and p.C618Y). Lymph-node metastasis/fibro-adipose tissue invasion (p.C634R) or solely fibro-adipose tissue invasion (p.C634Y) were found in 2/17 (11.8%). Elevated pre-surgical Ct (pre-Ct) was identified by FACLIA in 17/17 (median age, 24.0), while pre-Ct by RIA was found in only 6/15 (P < 0.001). The median follow-up was 22.0 months, during which 16/17 had no abnormality (one p.C634R individual had elevated Ct), and another 7 carriers still had consistently undetectable Ct by FACLIA. CONCLUSIONS: Our study highlights the importance and feasibility of individualized prophylactic TT for MEN 2-related MTC, based on predictive integrated screening of RET and pre-Ct levels. Besides, we recommend FACLIA to measure Ct for earlier diagnosis, treatment and follow-up monitoring of MTC.

Effects of silencing the RET/PTC1 oncogene in papillary thyroid carcinoma by siRNA-squalene nanoparticles with and without fusogenic companion GALA-cholesterol.

BACKGROUND: RET/PTC1 is the most prevalent type of gene rearrangement found in papillary thyroid carcinoma (PTC). Previously, we introduced a new noncationic nanosystem for targeted RET/PTC1 silencing by efficient delivery of small interfering RNA (siRNA) using the "squalenoylation" approach. With the aim of improving these results further, we designed new squalenoyl nanostructures consisting of the fusogenic peptide GALA-cholesterol (GALA-Chol) and squalene (SQ) nanoparticles (NPs) of siRNA RET/PTC1. METHODS: The siRNA RET/PTC1-SQ bioconjugate was synthesized. The corresponding NPs were prepared with or without GALA-Chol by nanoprecipitation and then characterized for their size and zeta potential. The effects of NPs on BHP 10-3 SCmice and TPC-1 cell viability (MTT assay), gene and protein silencing (reverse transcription-quantitative polymerase chain reaction [rt-qPCR], Western blot), and cellular uptake (fluorescent microscopy) were studied. In vivo gene silencing efficiency of siRNA RET/PTC1-SQ NPs was assessed by administration in nude mice via either intratumoral (i.t.) or intravenous (i.v.) routes. tumor growth was followed for 19 days. tumors were then collected, and RET/PTC1 gene and protein inhibitions were assessed by RT-qPCR and Western blot. RESULTS: The combination of siRNA RET/PTC1-SQ bioconjugate and GALA-Chol leads to stable NPs of approximately 200 nm diameter. In vitro, the results revealed that combining GALA-Chol with siRNA RET/PTC1-SQ NPs decreased cell viability, enhanced cellular internalization, and induced gene silencing efficiency in both human PTC (BHP 10-3 SCmice and TPC-1) cell lines. On the contrary, in vivo, the siRNA RET/PTC1-SQ GALA-Chol NPs were not found to be efficient either in gene silencing or in tumor growth inhibition, compared to siRNA RET/PTC1-SQ NPs both via i.t. and i.v. routes (p<0.001). CONCLUSIONS: Conversely to siRNA RET/PTC1-SQ NPs, the siRNA RET/PTC1-SQ GALA-Chol NPs are efficient in vitro but not in vivo. Finally, NPs of siRNA RET/PTC1-SQ were found to be efficient silencers of the RET/PTC1 fusion oncogene in in vivo applications even at a concentration lower than used in a previously published study.

PTC is a novel rearranged form of the ret proto-oncogene and is frequently detected in vivo in human thyroid papillary carcinomas.

We recently detected a novel activated oncogene by transfection analysis on NIH 3T3 cells in five out of 20 primary human thyroid papillary carcinomas and in the available lymph node metastases. We designated this transforming gene PTC (for papillary thyroid carcinoma). Here we describe the molecular cloning and sequencing of the gene. The new oncogene resulted from the rearrangement of an unknown amino-terminal sequence to the tyrosine kinase domain of the ret proto-oncogene. This gene rearrangement was detected in ALL of the transfectants and in ALL of the original tumor DNAs, but not in normal DNA of the same patients, thus indicating that this genetic lesion occurred in vivo and is specific to somatic tumors. Moreover, the transcript coded for by the fused gene was detected in an additional PTC-positive human papillary carcinoma for which mRNA was available.

[The clinical patterns and RET proto-oncogene identification of pheochromocytoma in 13 multiple endocrine neoplasia type 2A pedigrees].

OBJECTIVE: To explore the clinical patterns and clinical significance for RET screening in adrenal pheochromocytoma (PHEO) associated with multiple endocrine neoplasia type 2A (MEN2A). METHODS: The clinical data of 32 PHEO patients with MEN2A from 13 unrelated MEN2A pedigrees from August 1989 to January 2013 were analyzed. The comprehensive medical data included systemic examinations and germline RET gene screening. RESULTS: Among 68 patients belonging to 13 MEN2A families, 32 (47.1%) presented with PHEO. There were 19 males and 13 females with a mean age of (41 +/- 12) years. And the mean maximum diameter of PHEO was (4.6 +/- 2.2) cm. The diagnosis of PHEO was made after medullary thyroid carcinoma (n = 12, 37.5%), simultaneously (n = 12, 37.5%), initially (n = 7, 21.9%) and death during appendectomy for PHEO-induced hypertensive crisis (n = 1, 3.1%). The diagnosis of PHEO was made before (n = 22) or after (n = 10) clinical screening. The former had 12 symptomatic cases while the latter only 1 case (12/22 vs 1/10, P = 0.024).Except for 5 asymtomatic fatal cases during non-PHEO operations, bilateral PHEO was found in 17 cases including 3 unilaterally treated cases developing another PHEO in contralateral adrenal with a lag period of 5, 10 and 17 years. There were 7 symptomatic patients in bilateral cases versus 6 in unilateral cases (7/17 vs 6/10, P = 0.440). Twenty-five patients underwent PHEO surgery: laparascopic approach in 14 cases (8 with bilateral simultaneous adrenalectomy) and open approach in 11 (2 with bilateral simultaneous adrenalectomy). And 10 patients undergoing bilateral adrenal-sparing operations or adrenalectomy required hormonal replacement therapy. During a mean observation period of 72 (1-282) months, no local recurrence, distant metastasis or Addisonian crisis were noted in 25 cases (contralateral relapse in 3 cases). Among them, 2 cases developed adrenocortical insufficiency unresponsive to an adjustment of hormonal doses.RET screening showed 4 recurrent missense substitutions in 32 MEN2A-PHEO patients: p. C634Y exon 11 (n = 27, 84.4%), p. C634R exon 11 (n = 3, 9.4%), p. C634F exon 11 (n = 1, 3.1%) and p. C618R exon 10 (n = 1, 3.1%). CONCLUSIONS: The mutations of RET proto-oncognene of PHEO in MEN2A are frequently located at codon 634. A combination of pedigree examination and RET gene screening may facilitate an early diagnosis and early treatment of asymptomatic PHEO patients in MEN2A.Laparoscopic cortical-sparing adrenalectomy for preserving adrenocortical function is a preferred surgical approach.

[Hirschsprung s disease, RET proto-oncogene mutation and prophylactic thyroidectomy].

BACKGROUND: The dismal outcome of malignant peripheral nerve sheath tumor (MPNST) highlights the necessity of finding new therapeutic methods to benefit patients with this aggressive sarcoma. Our purpose was to investigate epidermal growth factor receptor (EGFR) as a potential therapeutic target in MPNSTs. PATIENTS AND METHODS: We performed a microarray based-comparative genomic hybridization (aCGH) profiling of two cohorts of primary MPNST tissue samples including 25 patients treated at The University of Texas MD Anderson cancer Center (MD Anderson) and 26 patients from Tianjin Medical University cancer Institute & Hospital (TMUCIH). Fluorescence in situ hybridization (FISH) method was used to validate the gene amplification detected by aCGH analysis. Another independent cohort of 56 formalin fixed paraffin embedded (FFPE) MPNST samples was obtained to explore EGFR protein expression by immunohistochemical analysis. Cell biology detection and validation were performed on human MPNST cell lines ST88-14 and STS26T. RESULTS: aCGH and pathway analysis of the 51 MPNSTs identified significant gene amplification events in EGFR pathway, including frequent amplifications of EGFR gene itself, which was subsequently validated by FISH assay. High expression of EGFR protein was associated with poor disease-free and overall survival of human MPNST patients. In human MPNST cell lines ST88-14 and STS26T, inhibition of EGFR by siRNA or Gefitinib led to decreased cell proliferation, migration, and invasion accompanied by attenuation of PI3K/AKT and MAPK pathways. CONCLUSION: These results suggest that EGFR is a potential therapeutic target for MPNST.

Oncogenic RET kinase domain mutations perturb the autophosphorylation trajectory by enhancing substrate presentation in trans.

To decipher the molecular basis for RET kinase activation and oncogenic deregulation, we defined the temporal sequence of RET autophosphorylation by label-free quantitative mass spectrometry. Early autophosphorylation sites map to regions flanking the kinase domain core, while sites within the activation loop only form at later time points. Comparison with oncogenic RET kinase revealed that late autophosphorylation sites become phosphorylated much earlier than wild-type RET, which is due to a combination of an enhanced enzymatic activity, increased ATP affinity, and surprisingly, by providing a better intermolecular substrate. Structural analysis of oncogenic M918T and wild-type RET kinase domains reveal a cis-inhibitory mechanism involving tethering contacts between the glycine-rich loop, activation loop, and alphaC-helix. Tether mutations only affected substrate presentation but perturbed the autophosphorylation trajectory similar to oncogenic mutations. This study reveals an unappreciated role for oncogenic RET kinase mutations in promoting intermolecular autophosphorylation by enhancing substrate presentation.

First reported case in Ireland of MEN2A due to a rare mutation in exon 8 of the RET oncogene.

We present the case of a 30-year-old female who was diagnosed with hereditary phaeochromocytoma secondary to a rare gene mutation in exon 8 of the RET oncogene. This genetic mutation was picked up as part of an extended genetic screen using a method known as next generation sequencing. Detection of this genetic mutation prompted further screening for the manifestation of multiple endocrine neoplasia type 2A (MEN2A). The patient subsequently underwent a thyroidectomy with histology confirming C-cell hyperplasia. LEARNING POINTS: Genetic analysis is an important step in the diagnostic work up of phaeochromocytoma.Extended genetic analysis is important when there is a strong suspicion of hereditary phaeochromocytoma.mutations in exon 8 of the RET gene are associated with phaeochromocytoma as part of MEN2A syndrome.

Prevalence by age and predictors of medullary thyroid cancer in patients with lower risk germline RET proto-oncogene mutations.

BACKGROUND: Age-related risk of medullary thyroid carcinoma (MTC) development in presymptomatic carriers of lower risk germline RET mutations is uncertain; such data may aid counseling patients regarding timing of thyroidectomy. METHODS: From an institutional database and an exhaustive literature review, we identified 679 patients with American Thyroid Association (ATA) level A or B mutations who were identified because of family screening (index cases of MTC were excluded to minimize selection bias). We evaluated age at thyroidectomy or last evaluation if no thyroidectomy, preoperative calcitonin level (elevated or not), the mutated codon, and outcome (MTC vs. no MTC after thyroidectomy or no clinical evidence of MTC if thyroid intact). Data were used to estimate the cumulative prevalence of MTC and/or assess likelihood of MTC stratified by codon. After exclusion of cases with missing data or small representation, 503 patients with mutations in codons 533, 609, 611, 618, 620, 791, and 804 were analyzed. RESULTS: 236 patients had MTC. Cumulative prevalence and median time to MTC varied by codon and within ATA risk levels (p<0.0001). Patients with a codon 620 mutation were 2.8-6.9 times more likely to have MTC than other level B mutation carriers, and 5.1-21.7 times more likely than level A mutation carriers included in our focus population. The youngest median time to MTC was 19 years for codon 620 and the oldest was 56 years for codon 611. Cumulative prevalence of MTC by age 20 was 10% or lower for codons 533, 609, 611, 791, and 804. By age 50, it ranged from 18% for codon 791 to 95% for codon 620. An elevated preoperative calcitonin level strongly predicted MTC on final pathology, though false-negative rates varied by codon (p<0.0001). Positive predictive values ranged from 76% to 100% by codon with an overall positive predictive value of 87% across codons. CONCLUSIONS: This study offers a better understanding of the age-related development of MTC in lower risk RET mutation carriers, provides evidence of further distinctions between lower risk mutations within ATA subgroups, and clarifies the clinical significance of codon 791 mutations. The data support individualized "codon-based" management approaches coupled with clinical data such as calcitonin levels.

Genetic disorders of pediatric MEN2A patients in the south of Spain.

INTRODUCTION: Medullary thyroid carcinoma (MTC) is observed in nearly 100 % of patients with multiple endocrine neoplasia type 2A (MEN2A). The gene responsible for MEN2A is the RET proto-oncogene and about 95 % of MEN2A patients have germline mutations in five specific cysteine codons (609, 611, 618, 620 and 634). MATERIALS AND METHODS: A retrospective study of children from families with MEN2A in our geographic area was performed. Variables analyzed included demographic data, kinship relations, age at genetic screening, age at prophylactic thyroidectomy, genetic mutation subtype and histological findings. The genetic study consisted in direct molecular analysis by automatic sequencing of RET mutated exon in the studied family. RESULTS: We performed 13 prophylactic total thyroidectomies from 1997 to 2013, 8 females and 5 males. The mean age at genetic diagnosis was 3.8 years (range 2-5.9). ALL children belonged to four interconnected families living in the same geographic area and presenting C634Y mutation in ALL the cases. The mean age at prophylactic thyroidectomy was 5.6 years (range 4-8.5). Histopathological findings demonstrated seven cases of C-cells nodular hyperplasia, one lymphocytic thyroiditis, two without evidence of disease, two micro-carcinomas and one multicentric carcinoma. CONCLUSION: The mutation found in the RET proto-oncogene responsible for MEN2A in pediatric patients in the south of Spain is the C635Y. It is considered a high-risk mutation, associated with an earlier malignant transformation and development of MTC.

Characterization of wild-type and mutated RET proto- oncogene associated with familial medullary thyroid cancer.

BACKGROUND: We aimed to assess RET proto-oncogene polymorphisms in three different Iranian families with medullary thyroid cancer (MTC), and performed molecular dynamics simulations and free energy stability analysis of these mutations. MATERIALS AND METHODS: This study consisted of 48 patients and their first-degree relatives with MTC confirmed by pathologic diagnosis and surgery. We performed molecular dynamics simulations and free energy stability analysis of mutations, and docking evaluation of known RET proto-oncogene inhibitors, including ZD-6474 and ponatinib, with wild-type and mutant forms. RESULTS: The first family consisted of 27 people from four generations, in which nine had the C.G2901A (P.C634Y) mutation; the second family consisted of six people, of whom three had the C.G2901T (P.C634F) mutation, and the third family, who included 12 individuals from three generations, three having the C.G2251A (P.G691S) mutation. The automated 3D structure of RET protein was predicted using I-TASSER, and validated by various protein model verification programs that showed more than 96.3% of the residues in favored and allowed regions. The predicted instability indices of the mutated structures were greater than 40, which reveals that mutated RET protein is less thermo-stable compared to the wild-type form (35.4). CONCLUSIONS: Simultaneous study of the cancer mutations using both in silico and medical genetic procedures, as well as onco-protein inhibitor binding considering mutation-induced drug resistance, may help in better overcoming chemotherapy resistance and designing innovative drugs.

Effects of siRNA on RET/PTC3 junction oncogene in papillary thyroid carcinoma: from molecular and cellular studies to preclinical investigations.

RET/PTC3 junction oncogene is typical of radiation-induced childhood papillary thyroid carcinoma (PTC) with a short latency period. Since, RET/PTC3 is only present in the tumour cells, thus represents an interesting target for specific therapy by small interfering RNA (siRNA). Our aim is to demonstrate in vitro and in vivo molecular and cellular effects of siRNA on RET/PTC3 knockdown for therapeutic application.First, we established a novel cell line stably expressing RET/PTC3 junction oncogene, named RP3 which was found tumorigenic in nude mice compared to NIH/3T3 mouse fibroblasts. Among four siRNAs and five concentrations tested against RET/PTC3, an efficient siRNA RET/PTC3 and an appropriate dose (50 nM) were selected which showed significant inhibition (p<0.001) of gene (RT-qPCR) and protein (Western blot) expressions. This siRNA was found efficient in RP3 cells (harbouring RET/PTC3) but non-efficient in BHP10-3 SCmice cell line (harbouring RET/PTC1) showing that a specific siRNA against fusion sequence is required to target the junction oncogene. In vitro siRNA RET/PTC3 showed significant (p<0.001) inhibitory effects on RP3 cell viability (MTT assay) and on invasion/migration (IncuCyte scratch test) with blockage of cell cycle at G0/G1 phase (flow cytometry) and induced apoptosis by caspase-3 and PARP1 cleavage (WB). After intravenous injection in nude mice, respective squalene (SQ) nanoparticles (NPs) of siRNA RET/PTC3 significantly (p<0.001) reduced RP3 tumour growth, oncogene and oncoprotein expressions, induced apoptosis and partially restored differentiation (decrease in Ki67). Hence, our findings highly support the use of siRNA RET/PTC3-SQ NPs as a new promising treatment for patients affected by PTC expressing RET/PTC3.

[Multiple endocrine neoplasia type 2A caused by a p.C618R RET proto-oncogene mutation in a Chinese pedigree].

OBJECTIVE: To explore the clinical characteristics and significance of RET proto-oncogene screening in multiple endocrine neoplasia type 2A (MEN2A). METHODS: Comprehensive medical history was obtained for 5 members from a 3-generation family from southern China. Clinical investigations have included biochemical testing, imaging, and screening of germline RET proto-oncogene mutations. RESULTS: Genetic screening has revealed a missense mutation at codon 618(TGC>CGC) of exon 10 in 3 patients(p.C618R), which was consistent with their clinical manifestations. For the 3 individuals, the age at diagnosis was 21, 26 and 36 yr, and the maximum diameter of medullary thyroid carcinoma was 22, 25 and 39 cm, respectively. The 36-year-old female patient initially underwent right total thyroidectomy plus right neck lymph node dissection. Four years later, she again underwent left adrenal tumorectomy and left total thyroidectomy plus left neck lymph node dissection. The 21-year-old male patient underwent right total thyroidectomy plus right modified neck dissection. The follow-up was respectively 146 and 26 months following the initial operation. Two patients still presented elevated calcitonin and had bilateral neck lymph node masses and/or left thyroid masses on imaging examination. The 26-year-old female patient, who presented bilateral thyroid masses and elevated calcitonin, has refused thyroidectomy. CONCLUSION: Combined family survey and RET gene screening can facilitate early diagnosis and surgical treatment to improve the prognosis.

Diagnostic correlation between RET proto-oncogene mutation, imaging techniques, biochemical markers and morphological examination in MEN2A syndrome: case report and literature review.

Multiple endocrine neoplasia type 2 (MEN2) is a rare autosomal dominant monogenic disorder caused mostly by missense mutations in the RET (REarranged during Transfection) proto-oncogene on chromosome 10q11.2. MEN2A represents more than 50% of ALL MEN2 cases, having a regular pattern with medullary thyroid carcinoma (MTC) incidence of 90-100%, bilateral pheochromocytoma (PCC) incidence of 40-50% and primary hyperparathyroidism (HPT) incidence of 10-25%. Until recently, the diagnosis of MTC was most frequently based on fine-needle aspiration of thyroid nodules, after an ultrasound examination and endocrine evaluation of serum calcitonin levels. Nowadays, RET gene screening (starting with exons 10 and 11) is a mandatory test used for identification of both symptomatic and non-symptomatic MTC carriers or for exclusion of healthy individuals from subsequent periodical clinical/biochemical screening. In this context, and in the idea of PCC preceding MTC, the early detection of germline RET mutations are highly suggestive for hereditary disease. PCC diagnosis is established in classical manner by abdominal ultrasound imaging or computed tomography confirming the presence of adrenal gland masses, elevated plasma metanephrines and normetanephrines values and histopathological examination. Additional HPT diagnosis is acknowledged by serum ionized calcium and parathormone levels. Here we report a hereditary case of MEN2A in a two-generation Romanian family, along with data presenting the importance of correlative plurifactorial diagnostic scheme in this syndrome and a short literature review.

[Hereditary medullary thyroid cancer in a family with MEN2B: clinical analysis and mutation detection of RET proto-oncogene].

Peritoneal carcinomatosis from lung cancer is rare, particularly from lung squamous cell carcinoma (LSCC). Concurrent somatic BRAF and KRAS mutations within the same tumor specimen have not been reported. The present study describes the case of a treatment-naive LSCC patient with coexisting BRAF V600E and oncogenic KRAS G12A mutations in the primary lung lesion and the peritoneal metastases. The patient presented with prominent peritoneal carcinomatosis and an eosinophilic leukemoid reaction, but no respiratory symptoms. The patient succumbed 8 days after the onset of the condition due to rapid aggravation of the peritoneal carcinomatosis. To the best of our knowledge, this is the first study concerning the coexistence of BRAF and KRAS mutations in LSCC. Intensive activation of ERK was also observed in the primary lung lesion and the peritoneal metastases. Although the exact pathogenesis was unclear, the observations indicated that in the present study, the BRAF V600E and KRAS G12A mutations may have cooperate in inducing the malignant phenotype of LSCC. This case also highlighted the potential aggressive course and unusual pattern of spread of this specific dual-mutated tumor.

Immunohistochemical detection of RET proto-oncogene product in tumoral and nontumoral mucosae of gastric cancer.

OBJECTIVE: To detect RET (REarranged during Transfection) protein by immunohistochemistry (IHC) in gastric cancer. STUDY DESIGN: A total of 210 samples were employed, of which 197 specimens were from 91 surgical pieces of gastric adenocarcinoma, comprising 91 tumoral, 91 nontumoral, and 15 intramucosal dysplastic samples. Another 13 gastric mucosae were from cancer-free patients. Two RET antibodies (clones Ret01 and 3F8) were used separately for IHC. RESULTS: Of the nontumoral samples from gastric cancers, 28 were positive (31%) with either antibody Ret01 or 3F8. The positive stains were often located in deep pyloric glands and associated with chronic inflammation patterns (p = 0.045). RET positivity correlated with phosphorylated epidermal growth factor receptor, which had been previously tested (p = 0.021). In tumoral samples RET was positive in 7 cases with antibody Ret01 (8%) and 9 cases with 3F8 (10%). In 15 intramucosal dysplastic samples RET was detected in 6 cases with antibody Ret01 and 8 cases with 3F8. There was an accordance between the IHC using antibodies Ret01 and 3F8 in tumoral, nontumoral, and intramucosal dysplastic samples (p = 0.500, 1.000, and 0.500). The 13 samples from cancer-free patients were always negative. CONCLUSION: Activation of RET proto-oncogene may be one of the molecular pathogeneses in gastric inflammatory and tumoral diseases.

Presence of aberrant transcripts of ret proto-oncogene in a human papillary thyroid carcinoma cell line.

In a papillary thyroid carcinoma cell line, TPC-1, we found transcripts hybridizing to ret proto-oncogene (proto-ret) cDNA probes. The transcripts hybridized to the probes encoding the kinase domain but not to those of the transmembrane and extracellular domains of proto-ret. The sizes of the main transcripts in TPC-1 were aberrant, being 2.0, 2.5, 4.0 and 5.0 kb. In the neuroblastoma cell lines, the transcripts were 3.9, 4.5, 6.0 and 7.0 kb, which have been proved to be generated by alternative splicing and polyadenylation from the non-altered proto-ret oncogene. ALL of the four transcripts in TPC-1 are about 2 kb smaller than the corresponding ones in the neuroblastoma. From the length of the transcripts, it is suspected that the transcripts in TPC-1 are a rearranged form of proto-ret. This is the first report describing the aberrant transcripts of proto-ret in a human tumor.

Characterization of V804M-mutated RET proto-oncogene associated with familial medullary thyroid cancer, report of the largest Turkish family.

PURPOSE: Analysis of the RET proto-oncogen is very important for diagnosis and prognosis of medullary thyroid cancer (MTC). Genotype-phenotype correlation is also well known. Here we report features of the largest known family in Turkey with the V804M-mutated RET proto-oncogene. METHODS: Thirty members from three generations were evaluated. A RET proto-oncogen mutation, calcitonin (Ct) measurement and thyroid ultrasound were performed on ALL individuals. Seventeen members had V804M mutation. Fourteen of these patients underwent total thyroidectomy and additional central lymph node dissection for five subjects. RESULTS: The mean age of patients with MTC was 46.5 (30-61) years. The mean calcitonin level of RET positive members was 13.27 pg/mL (1-49.8 pg/mL). Three had a basal Ct level above normal limits. Seven of the 14 patients were diagnosed with MTC, and two were diagnosed with papillary thyroid cancer without MTC. One patient had central neck metastasis. Hyperparathyroidism or pheochromocytoma was not detected in any case. Patients who were RET negative, had normal Ct levels and no suspected nodule on ultrasound examination. CONCLUSIONS: Our study revealed a relatively good prognosis in patients with V804M mutation. Despite the surgery was performed in older age no advance disease was observed.

Skewed mutational spectrum of RET proto-oncogene Exon10 in Iranian patients with medullary thyroid carcinoma.

Thyroid cancer is the most common endocrine malignant tumor. Medullary thyroid carcinoma (MTC) is an aggressive tumor arising from calcitonin-producing parafollicular cells. MTC has autosomal dominant inheritance and accounts for 5-10 % of ALL thyroid cancers. It occurs in hereditary (25 %, hMTC) and sporadic (75 %, sMTC) forms. Gain-of-function mutations in the REarranged during transfection (RET) proto-oncogene have been identified in 98 % of hMTC and 50 % of sMTC. The aim of this investigation was to identify mutation(s) in the much conserved RET exon10 in Iranian MTC patients. We started screening patients with MTC for RET in 2001. This study included 347 individuals (154 with sMTC, 38 with FMTC, 8 with multiple endocrine neoplasia type 2A [MEN2A], 3 with MEN2B, and 3 with pheochromocytoma; 207 index cases and 140 relatives). Germline mutation screening of RET exon10 was performed with PCR-DNA sequencing. A total of 14 missense mutations (10 mutations in men and 4 in women) were identified in cysteine codons 611, 618, and 620 (exon10) in 11 patients and three first-degree relatives as follows: four C611Y (three with FMTC and one relative), one C618R (FMTC), one C618S (sMTC), one C620G (sMTC), four C620R (one with FMTC and three with sMTC), and three C620F (one with FMTC and two relatives). In the present study, six different mutations were identified in exon10 of RET in 14 patients with sMTC and FMTC that were restricted to codons 611, 618, and 620, but not in codon 609. This data showed a skewed pattern of RET exon10 mutation compared to other populations. No mutation was found for MEN2A, MEN2B, and pheochromocytoma in exon10 in this population. In the most common mutations in exon10, the FMTC and sMTC patients were C611Y and C620R, respectively.

The RET oncogene in papillary thyroid carcinoma.

Papillary thyroid carcinoma (PTC) is the most common form of thyroid cancer, accounting for greater than 80% of cases. Surgical resection, with or without postoperative radioiodine therapy, remains the standard of care for patients with PTC, and the prognosis is generally excellent with appropriate treatment. Despite this, significant numbers of patients will not respond to maximal surgical and medical therapy and ultimately will die from the disease. This mortality reflects an incomplete understanding of the oncogenic mechanisms that initiate, drive, and promote PTC. Nonetheless, significant insights into the pathologic subcellular events underlying PTC have been discovered over the last 2 decades, and this remains an area of significant research interest. Chromosomal rearrangements resulting in the expression of fusion proteins that involve the rearranged during transfection (RET) proto-oncogene were the first oncogenic events to be identified in PTC. Members of this fusion protein family (the RET/PTC family) appear to play an oncogenic role in approximately 20% of PTCs. Herein, the authors review the current understanding of the clinicopathologic role of RET/PTC fusion proteins in PTC development and progression and the molecular mechanisms by which RET/PTCs exert their oncogenic effects on the thyroid epithelium. cancer 2015;121:2137-2146. (c) 2015 American cancer Society.

A novel dual kinase function of the RET proto-oncogene negatively regulates activating transcription factor 4-mediated apoptosis.

The RET proto-oncogene, a tyrosine kinase receptor, is widely known for its essential role in cell survival. Germ line missense mutations, which give rise to constitutively active oncogenic RET, were found to cause multiple endocrine neoplasia type 2, a dominant inherited cancer syndrome that affects neuroendocrine organs. However, the mechanisms by which RET promotes cell survival and prevents cell death remain elusive. We demonstrate that in addition to cytoplasmic localization, RET is localized in the nucleus and functions as a tyrosine-threonine dual specificity kinase. Knockdown of RET by shRNA in medullary thyroid cancer-derived cells stimulated expression of activating transcription factor 4 (ATF4), a master transcription factor for stress-induced apoptosis, through activation of its target proapoptotic genes NOXA and PUMA. RET knockdown also increased sensitivity to cisplatin-induced apoptosis. We observed that RET physically interacted with and phosphorylated ATF4 at tyrosine and threonine residues. Indeed, RET kinase activity was required to inhibit the ATF4-dependent activation of the NOXA gene because the site-specific substitution mutations that block threonine phosphorylation increased ATF4 stability and activated its targets NOXA and PUMA. Moreover, chromatin immunoprecipitation assays revealed that ATF4 occupancy increased at the NOXA promoter in TT cells treated with tyrosine kinase inhibitors or the ATF4 inducer eeyarestatin as well as in RET-depleted TT cells. Together these findings reveal RET as a novel dual kinase with nuclear localization and provide mechanisms by which RET represses the proapoptotic genes through direct interaction with and phosphorylation-dependent inactivation of ATF4 during the pathogenesis of medullary thyroid cancer.

Development of lung adenocarcinomas with exclusive dependence on oncogene fusions.

This report delivers a comprehensive genetic alteration profile of lung adenocarcinomas (LADC) driven by ALK, RET, and ROS1 oncogene fusions. These tumors are difficult to study because of their rarity. Each drives only a low percentage of LADCs. Whole-exome sequencing and copy-number variation analyses were performed on a Japanese LADC cohort (n = 200) enriched in patients with fusions (n = 31, 15.5%), followed by deep resequencing for validation. The driver fusion cases showed a distinct profile with smaller numbers of nonsynonymous mutations in cancer-related genes or truncating mutations in SWI/SNF chromatin remodeling complex genes than in other LADCs (P < 0.0001). This lower mutation rate was independent of age, gender, smoking status, pathologic stage, and tumor differentiation (P < 0.0001) and was validated in nine fusion-positive cases from a U.S. LADCs cohort (n = 230). In conclusion, our findings indicate that LADCs with ALK, RET, and ROS1 fusions develop exclusively via their dependence on these oncogene fusions. The presence of such few alterations beyond the fusions supports the use of monotherapy with tyrosine kinase inhibitors targeting the fusion products in fusion-positive LADCs.

Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase.

Oncogenic mutation of the RET receptor tyrosine kinase is observed in several human malignancies. Here, we describe three novel type II RET tyrosine kinase inhibitors (TKI), ALW-II-41-27, XMD15-44 and HG-6-63-01, that inhibit the cellular activity of oncogenic RET mutants at two digit nanomolar concentration. These three compounds shared a 3-trifluoromethyl-4-methylpiperazinephenyl pharmacophore that stabilizes the DFG-out inactive conformation of RET activation loop. They blocked RET-mediated signaling and proliferation with an IC50 in the nM range in fibroblasts transformed by the RET/C634R and RET/M918T oncogenes. They also inhibited autophosphorylation of several additional oncogenic RET-derived point mutants and chimeric oncogenes. At a concentration of 10 nM, ALW-II-41-27, XMD15-44 and HG-6-63-01 inhibited RET kinase and signaling in human thyroid cancer cell lines carrying oncogenic RET alleles; they also inhibited proliferation of cancer, but not non-tumoral Nthy-ori-3-1, thyroid cells, with an IC50 in the nM range. The three compounds were capable of inhibiting the gatekeeper V804M mutant which confers substantial resistance to established RET inhibitors. In conclusion, we have identified a type II TKI scaffold, shared by ALW-II-41-27, XMD15-44 and HG-6-63-01, that may be used as novel lead for the development of novel agents for the treatment of cancers harboring oncogenic activation of RET.

LDL Receptor-Related Protein 6 Modulates Ret Proto-Oncogene Signaling in Renal Development and Cystic Dysplasia.

Hypoplastic and/or cystic kidneys have been found in both LDL receptor-related protein 6 (Lrp6)- and beta-catenin-mutant mouse embryos, and these proteins are key molecules for Wnt signaling. However, the underlying mechanisms of Lrp6/beta-catenin signaling in renal development and cystic formation remain poorly understood. In this study, we found evidence that diminished cell proliferation and increased apoptosis occur before cystic dysplasia in the renal primordia of Lrp6-deficient mouse embryos. The expression of Ret proto-oncogene (Ret), a critical receptor for the growth factor glial cell line-derived neurotrophic factor (GDNF), which is required for early nephrogenesis, was dramatically diminished in the mutant renal primordia. The activities of other representative nephrogenic genes, including Lim1, Pax2, Pax8, GDNF, and Wnt11, were subsequently diminished in the mutant renal primordia. Molecular biology experiments demonstrated that Ret is a novel transcriptional target of Wnt/beta-catenin signaling. Wnt agonist lithium promoted Ret expression in vitro and in vivo. Furthermore, Lrp6-knockdown or lithium treatment in vitro led to downregulation or upregulation, respectively, of the phosphorylated mitogen-activated protein kinases 1 and 3, which act downstream of GDNF/Ret signaling. Mice with single and double mutations of Lrp6 and Ret were perinatal lethal and demonstrated gene dosage-dependent effects on the severity of renal hypoplasia during embryogenesis. Taken together, these results suggest that Lrp6-mediated Wnt/beta-catenin signaling modulates or interacts with a signaling network consisting of Ret cascades and related nephrogenic factors for renal development, and the disruption of these genes or signaling activities may cause a spectrum of hypoplastic and cystic kidney disorders.

Preclinical Efficacy and Safety Assessment of an Antibody-Drug Conjugate Targeting the c-RET Proto-Oncogene for Breast Carcinoma.

PURPOSE: The RET proto-oncogene has been implicated in breast cancer, and the studies herein describe the preclinical and safety assessment of an anti-RET antibody-drug conjugate (ADC) being developed for the treatment of breast cancer. EXPERIMENTAL DESIGN: RET protein expression was analyzed in breast tumor samples using tissue microarrays. The fully human anti-RET antibody (Y078) was conjugated to the DM1 and DM4 derivatives of the potent cytotoxic agent maytansine using thioether and disulfide linkers, respectively. The resulting compounds, designated Y078-DM1 and Y078-DM4, were evaluated for antitumor activity using human breast cancer cell lines and established tumor xenograft models. A single-dose, 28-day, safety study of Y078-DM1 was performed in cynomolgus monkeys. RESULTS: By immunohistochemistry, RET expression was detected in 57% of tumors (1,596 of 2,800 tumor sections) and was most common in HER2-positive and basal breast cancer subtypes. Potent in vitro cytotoxicity was achieved in human breast cancer cell lines that have expression levels comparable with those observed in breast cancer tissue samples. Dose-response studies in xenograft models demonstrated antitumor activity with both weekly and every-3-weeks dosing regimens. In cynomolgus monkeys, a single injection of Y078-DM1 demonstrated dose-dependent, reversible drug-mediated alterations in blood chemistry with evidence of on-target neuropathy. CONCLUSIONS: RET is broadly expressed in breast cancer specimens and thus represents a potential therapeutic target; Y078-DM1 and Y078-DM4 demonstrated antitumor activity in preclinical models. Optimization of the dosing schedule or an alternate cytotoxic agent with a different mechanism of action may reduce the potential risk of neuropathy. Clin cancer Res; 21(24); 5552-62. (c)2015 AACR.

A NOVEL DOUBLE MUTATION VAL648ILE AND VAL804LEU OF RET PROTO-ONCOGENE IN MULTIPLE ENDOCRINE NEOPLASIA TYPE 2.

OBJECTIVE: We report the case of a female patient with multiple endocrine neoplasia type 2A (MEN2A) who was found to have a double mutation in the RET (rearranged during transfection) proto-oncogene. METHODS: RET mutational analysis was performed by Sanger DNA sequencing. RESULTS: The proband was a compound heterozygote for the RET germline mutations Val648Ile and Val804Leu on exons 11 and 14, respectively. Genetic analysis of family members showed the presence of the Val648Ile mutation in ALL except 1 daughter who carried the Val804Leu mutation. However, none of them showed any clinical, biochemical, or histologic signs of neoplastic disease either in the thyroid or adrenal gland. Furthermore, a daughter and the proband s sister who underwent a prophylactic thyroidectomy did not show pathologic evidence of C-cell disease. CONCLUSIONS: We hypothesize that the combined effect of the 2 mutations may have induced the development of pheochromocytoma (PHEO) in our patient. Thus, in the presence of single RET-induced mild medullary thyroid cancer (MTC) phenotype, the search for additional genetic anomalies may lead to the discovery of rare but potentially more aggressive double mutation genotypes. ABBREVIATIONS: ACTH = adrenocorticotropic hormone ATA = American Thyroid Association CT = calcitonin FMTC = familial medullary thyroid cancer HSCR = Hirschsprung disease MEN2A/B = multiple endocrine neoplasia type 2A/2B MTC = medullary thyroid cancer PHEO = pheochromocytoma RET = rearranged during transfection SDHB/D = succinate dehydrogenase subunits B/D VHL = Von Hippel-Lindau.

Selective repression of RET proto-oncogene in medullary thyroid carcinoma by a natural alkaloid berberine.

BACKGROUND: The gain-of-function mutation of the RET proto-oncogene, which encodes a receptor tyrosine kinase, is strongly associated with the development of several medullary thyroid carcinomas (MTCs). Thus, the RET protein has been explored as an excellent target for progressive and advanced MTC. In this study we have demonstrated a therapeutic strategy for MTC by suppressing the transcription of RET proto-oncogene though the stabilization of G-quadruplex structure formed on the promoter region of this gene using a natural product berberine. METHODS: Medullary thyroid carcinoma (MTC) TT cell line has been used to evaluate the effects of berberine on RET expression and its downstream signaling pathways. The specificity of berberine was demonstrated by using the papillary thyroid carcinoma TPC1 cell line, which lacks the G-quadruplex forming sequence on the RET promoter region due to chromosomal rearrangement. RESULTS: Berberine suppressed the RET expression by more than 90 % in MTC TT cells at a concentration of 2.5 mug/ml with minimal effect on the TPC1 cells. Canadine, which is a structural analogue of berberine, showed little interaction with RET G-quadruplex and also had no effect on RET expression in MTC TT cells. The down-regulation of RET with berberine further inhibited the cell proliferation through cell cycle arrest and activation of apoptosis in TT cells, which was confirmed by a 2-fold increase in the caspase-3 activity and the down-regulation of cell-cycle regulatory proteins. CONCLUSION: Our data strongly suggest that the G-quadruplex forming region and the stabilization of this structure play a critical role in mediating the repressive effect of berberine on RET transcription.

Catecholamine crisis as a first manifestation of familial bilateral pheochromocytoma caused by RET proto-oncogene mutation in codon C 634R.

INTRODUCTION: Multiple endocrine neoplasia type 2 (MEN 2) is a genetic disorder caused by mutation in the RET proto-oncogene. MEN 2A includes medullary carcinoma of the thyroid, pheochromocytoma, and primary hyperparathyroidism. The authors present a case study of three family members with bilateral pheochromocytoma in the course of MEN 2A, a catecholamine crisis being the first manifestation of the syndrome in one of them. Case 1: A 30-year-old man without a history of hypertension or any other chronic medical problems was admitted to the Emergency Department because of a hypertensive crisis that was followed by cardiac arrest. A later diagnosis revealed bilateral pheochromocytoma and RET proto-oncogene mutation in codon 634. The patient underwent bilateral adrenalectomy and total thyroidectomy; the latter confirmed the presence of medullary carcinoma. Case 2: The patient underwent right adrenalectomy with the removal of a pheochromocytoma at the age of sixteen. Ten years later, a suspicion of pheochromocytoma in the remaining left adrenal was raised. mutation in the RET proto-oncogene was confirmed as well. The patient first underwent left adrenalectomy and then she had total thyroidectomy. Postoperative histopathological examinations revealed pheochromocytoma and medullary carcinoma. Case 3: Radiological and biochemical examination confirmed pheochromocytoma. Therefore, the two adrenals were removed. As mutation in codon 634 was detected, the patient underwent total thyroidectomy as well. The presence of medullary carcinoma was confirmed. CONCLUSIONS: Pheochromocytoma is a rare and potentially lethal disease if a catecholamine crisis develops. Its recognition requires further investigation towards genetic syndromes, particularly MEN 2A.

Human ret proto-oncogene mapped to chromosome 10q11.2.

Using cosmid clones derived from human ret protooncogene as probes, we determined its chromosome localization by fluorescence in situ hybridization. Two overlapping clones, cret-1 and -2, which were cloned using the most 5 part of human ret proto-oncogene cDNA, hybridized to chromosome 10q11.2. Sixty-three and 52% of the grains obtained by cret-1 and -2, respectively, were localized to the same site. No other specific hybridization site was observed. From these data, we assigned the site of ret proto-oncogene to chromosome 10q11.2, where the possible locus responsible for multiple endocrine neoplasia type 2A (MEN2A) was mapped by linkage analysis using interstitial retinol binding protein cDNA and D10S5. These findings suggest that ret proto-oncogene might be a suitable probe for approaching the MEN2A locus.

Activation of the ret-II oncogene without a sequence encoding a transmembrane domain and transforming activity of two ret-II oncogene products differing in carboxy-termini due to alternative splicing.

We previously reported the cloning of a transforming gene, ret-II, which contains the proto-ret kinase domain. In the present study ret-II cDNAs were cloned from a transformant and analyzed. The restriction map and nucleotide sequence indicated that the sequence upstream of the proto-ret kinase domain was replaced by another sequence, which encoded a fusion protein composed of 899 amino acids. This non-proto-ret sequence differed from that of the ret previously reported and had no hydrophobic amino acid stretch for a transmembrane domain. Furthermore, we obtained two kinds of ret-II cDNAs differing in their 3 regions and found that the differences were generated by alternative splicing. From these cDNAs, two types of oncogene products differing in their carboxy-terminal amino acid residues were predicted. The two products exhibited similar transforming activity in NIH3T3 cells. These data indicate that activation of proto-ret can occur as a result of replacement of the extra-cellular and transmembrane domains with the hydrophilic sequence. In addition, differences in the carboxy-terminal amino acid residues in the two types of ret-II oncogene products have no influence on the transforming activity of the ret-II oncogene.

Cloning and expression of the ret proto-oncogene encoding a tyrosine kinase with two potential transmembrane domains.

The nucleotide sequence of the ret proto-oncogene has been determined from cDNA clones isolated from a cDNA library of a THP-1 human monocytic leukemia cell line. Analysis of this sequence indicates that it encodes a protein which is structurally related to transmembrane receptors with a cytoplasmic tyrosine kinase domain. Unlike most growth factor receptors, it contains two hydrophobic regions which are potential transmembrane domains. Comparison of the sequence of the ret proto-oncogene with that of the ret transforming gene revealed that, in addition to the amino-terminal truncation, the last 51 carboxy-terminal amino acids of the ret proto-oncogene were replaced with 9 unrelated amino acids of the ret transforming gene. The focus forming activity of the ret cDNA, containing both amino-terminal and caboxy-terminal truncations, was approximately 13-fold higher than that of cDNA containing only the amino-terminal truncation. This suggests a possible role for the carboxy-terminal sequence in activation of transforming potential of the ret proto-oncogene. When transcription of the ret proto-oncogene was examined in a variety of mouse tissues, we detected its transcription in normal mouse spinal cord and lymphadenopathy of C3H/HeJ-gld/gld and MRL/Mp-lpr/lpr mice.

Molecular cloning and characterization of human ret-II oncogene.

A transformant having ret-II was obtained by transfection of NIH3T3 cells with DNA from a human sigmoid colon cancer. Comparison of the restriction map of ret-II with that of proto-ret revealed that the ret-II has rearrangements both 5 and 3 to the sequence coding for the kinase domain. However, only the upstream rearrangement was consistently observed in ALL transformants, suggesting that the upstream rearrangement resulted in the activation of proto-ret. The recombination point and replaced sequence of ret-II were different from those previously reported for ret (Takahashi et al., 1985). In addition, ret-II does not retain region coding for transmembrane of proto-ret. This rearrangement, however, was not detected in the original tumor DNA by Southern blot analysis.

Characterization of RET proto-oncogene 3 splicing variants and polyadenylation sites: a novel C-terminus for RET.

The RET proto-oncogene, which encodes a receptor tyrosine kinase, displays multiple alternative splicing variants. Splicing of sequences 3 of exon 19 to generate several coding and untranslated region (UTR) sequences has been previously reported. We have sequenced the full length RET coding region and characterized the transcripts and 3 UTRs generated by alternative splicing of the RET 3 terminus. These analyses were performed using both RET cDNA cloned from a pheochromocytoma library and reverse transcriptase PCR products generated using RNA from a neuroblastoma cell line (LA-N-2). Three different carboxyl termini were identified. In addition to the nine and 51 terminal amino acid forms already known, we identified a third with 43 terminal amino acids predicted to encode a novel RET protein isoform. A total of 3621 base pairs of DNA 3 of exon 19, which spans the alternatively spliced exons and RET UTRs, was sequenced. Four polyadenylation sites were identified. The observed combinations of polyadenylation sites and 3 coding sequence suggest that RET transcripts with up to 10 different 3 sequences and up to 40 different full length RET transcripts may exist.

The physical map of the human RET proto-oncogene.

The RET proto-oncogene, a transmembrane tyrosine kinase receptor, is involved in the development of at least five different disease phenotypes. RET is activated through somatic rearrangements in a number of cases of papillary thyroid carcinoma while germ-line point mutations are associated with three inherited cancer syndromes MEN 2A, MEN 2B and FMTC. Moreover, point mutations or heterozygous deletions of RET are found in the dominant form of Hirschsprung disease or congenital colonic aganglionosis. We cloned the entire RET genomic sequence in a contig of cosmids encompassing 150 kb, from the CA repeat sTCL-2 to the region upstream the RET promoter, and established the position of the 20 exons of the RET gene with respect to a detailed restriction map based on eight endonucleases. A new highly polymorphic CA repeat sequence was identified within intron 5 of RET (RET-INT5). Finally the orientation of RET on chromosome 10q11.2 made it possible to orientate three other genes rearranged with RET in papillary thyroid carcinomas, namely H4/D10S170 on 10q21, R1 alpha on 17q23 and RFG2/Ele1 on 10q11.2.

[Ret proto-oncogene mutations associated with type 2 multiple endocrine neoplasms (MEN 2). Clinical implications].

Multiple endocrine neoplasia type 2 (MEN 2) is an autosomal dominant cancer syndrome. Clinical features and diagnostic aspects of this syndrome are reviewed with a focus on progress biochemical screening to genetic analysis of those at risk. The clinical implications resulting from the application of the new methods of molecular biology are discussed.

RET proto-oncogene mutations and rearrangements in endocrine diseases.

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.

Absence of RET proto-oncogene point mutations in sporadic hyperplastic and neoplastic lesions of the parathyroid gland.

We investigated the possible role of RET proto-oncogene mutations in the development of sporadic hyperplastic, benign, and malignant parathyroid lesions. DNA extracted from paraffin-embedded specimens of forty parathyroid lesions was screened for RET proto-oncogene point mutations in exons 10, 11, and 16 by nonisotopic polymerase chain reaction-based single-strand conformation polymorphism and heteroduplex gel electrophoresis. The nucleotide sequence of samples with aberrant band patterns was identified by nonisotopic direct sequencing of polymerase chain reaction-amplified DNA. Parathyroids of seven patients with multiple endocrine neoplasia type 2A (MEN 2A) and MEN 2B served as positive controls. None of the eight hyperplastic lesions, three cases of parathyromatosis, ten parathyroid adenomas, eleven carcinomas or one normal parathyroid gland contained mutations in each of the three RET exons tested. Six MEN-2A-associated hyperplastic glands exhibited identical band shifts in the polymerase chain reaction single-strand conformation polymorphism analysis of exon 11, which corresponded to a Cys 634-->Arg substitution in the nucleotide sequence analysis (TGC-->CGC), whereas in the MEN 2B parathyroid specimen a point mutation was found at codon 918 of exon 16 (ATG-->ACG), causing a Met 918-->Thr substitution. Our data indicate that RET mutations of the MEN 2 loci in exons 10, 11, and 16 are not involved in the development of sporadically occurring benign or malignant parathyroid lesions. Furthermore, our results are in accordance with the observation that MEN 2A patients with Cys 634-->Arg (germline) mutations have a higher risk of developing parathyroid disease than those with other mutations at codon 634.

Mechanism of activation of the ret proto-oncogene by multiple endocrine neoplasia 2A mutations.

Transforming activity of the c-ret proto-oncogene with multiple endocrine neoplasia (MEN) 2A mutations was investigated by transfection of NIH 3T3 cells. Mutant c-ret genes driven by the simian virus 40 or cytomegalovirus promoter induced transformation with high efficiencies. The 170-kDa Ret protein present on the cell surface of transformed cells was highly phosphorylated on tyrosine and formed disulfide-linked homodimers. This result indicated that MEN 2A mutations induced ligand-independent dimerization of the c-Ret protein on the cell surface, leading to activation of its intrinsic tyrosine kinase. In addition to the MEN 2A mutations, we further introduced a mutation (lysine for asparaginic acid at codon 300 [D300K]) in a putative Ca(2+)-binding site of the cadherin-like domain. When c-ret cDNA with both MEN 2A and D300K mutations was transfected into NIH 3T3 cells, transforming activity drastically decreased. Western blot (immunoblot) analysis revealed that very little of the 170-kDa Ret protein with the D300K mutation was expressed in transfectants while expression of the 150-kDa Ret protein retained in the endoplasmic reticulum was not affected. This result also demonstrated that transport of the Ret protein to the plasma membrane is required for its transforming activity.

Mutations of codon 918 in the RET proto-oncogene correlate to poor prognosis in sporadic medullary thyroid carcinomas.

The hereditary multiple endocrine neoplasia syndromes types 2A and B (MEN 2A and B) were recently linked to germline mutations in the RET proto-oncogene, altering one of five cysteine residues in exon 10 or 11 (MEN 2A), or substituting a methionine for a threonine at codon 918 in exon 16 (MEN 2B). The latter mutation also occurs somatically in some sporadic medullary thyroid carcinomas (MTC), and has in a previous study been correlated with a less favorable clinical outcome. In the present study, 46 MTCs were selected for investigation of the codon 918 mutation. The mutation was found in 29 tumors (63%), and was significantly correlated with a poor outcome, with regard to distant metastasis or tumor recurrence (p < 10(-4)). Two tumors showed multifocal growth and C-cell hyperplasia, and these patients were therefore also investigated for germline mutations in exons 10, 11 and 16. The codon 918 mutation was found only in the tumors, thus of somatic origin. The RET codon 918 mutation may have prognostic impact, and therefore preoperative assessment may influence decision-making in the treatment of patients suffering from MTC.

RET/PTC oncogene activation is an early event in thyroid carcinogenesis.

RET/PTC oncogene activation occurs in about 20% of human thyroid papillary carcinomas. However, it is not known yet whether it is an early or late event in the process of thyroid carcinogenesis. Here we demonstrate, by using a combined immunohistochemical and reverse transcriptase-polymerase chain reaction based approach, that RET/PTC activation is present in 11 out of 26 occult thyroid papillary carcinomas analysed. Therefore, we conclude that it represents an early event in the process of thyroid cell transformation.

RET proto-oncogene mutations in multiple endocrine neoplasia type 2 and medullary thyroid carcinoma.

The identification of RET proto-oncogene mutations in patients with MEN2 2 years ago was a watershed event in the management of this genetic cancer syndrome. The identification of a finite number of mutations that together causes more than 95% of hereditary and 15-25% of sporadic MTC has made it possible to develop simple and definitive tests to screen individuals at risk for this tumour syndrome. The impact of this technology is enormous. It is now possible to reassure 50% of family members at risk that they, and their children, do not have to worry about developing MTC. In the other 50% who are gene carriers, it is now possible to approach clinical management with greater certainty and plot strategies that are likely to result in a greater percentage of curative therapy. It seems likely that this technology will also have an impact on the management of sporadic MTC, although it is still too early to define a specific role for mutational analysis in these patients, except to exclude hereditary disease. The identification of specific mutations causative for MTC makes it possible to conceive future strategies for the treatment or prevention of MTC and to further extend the impact of these exciting findings.

Diversity of RET proto-oncogene mutations in familial and sporadic Hirschsprung disease.

Hirschsprung disease (HSCR) is a common congenital malformation (1 in 5,000 live births) due to the absence of autonomic ganglia in the terminal hindgut, and resulting in intestinal obstruction in neonates. Recently, a dominant gene for familial HSCR has been mapped to chromosome sub-band 10q11.2 and the disease has been ascribed to mutations in a tyrosine kinase receptor gene mapping to this region, the RET proto-oncogene. Studying the 20 exons of the RET gene by a combination of denaturating gradient gel electrophoresis and single strand conformation polymorphism in a large series of HSCR patients (45 sporadic cases and 35 familial forms), we found mutations of the RET gene in 50% of familial HSCR, regardless of the length of the aganglionic segment. The mean penetrance of the mutant allele in familial HSCR was significantly higher in males (72%) than in females (51%). Most interestingly, mutations at the RET locus accounted for at least 1/3 of sporadic HSCR in our series. These mutations were scattered along the length of the gene. Finally, among the mutations identified in sporadic cases (16/45), seven proved to be de novo mutations suggesting that new mutations at the RET locus significantly contribute to sporadic HSCR. Taken together, the low penetrance of the mutant gene, the lack of genotype-phenotype correlation, the sex-dependent effect of RET mutations and the variable clinical expression of the disease support the existence of one or more modifier genes in familial HSCR.

Molecular defects in thyroid carcinomas: role of the RET oncogene in thyroid neoplastic transformation.

tumors are believed to arise as a result of an accumulation of mutations in critical genes involved in the control of cell proliferation. Thyroid neoplasms represent a good model for studying the role of these mutations in epithelial cell multistep carcinogenesis because they comprise a broad spectrum of lesions with different degrees of malignancy. Recent reports have described the involvement of specific genetic alterations in different types of thyroid neoplasms. Papillary carcinomas are characterized by the activation of the receptor tyrosine kinases RET and TRK-A proto-oncogenes. Ras point mutations are frequently observed in tumors with follicular histology and a high prevalence of p53 point mutations have been found in anaplastic carcinomas. A definition of molecular defects characterizing thyroid tumors will be helpful in establishing sensitive and specific detection strategies and, in addition, to define genetic and environmental factors important for their pathogenesis.

Oncogenic rearrangements of the RET proto-oncogene in papillary thyroid carcinomas from children exposed to the Chernobyl nuclear accident.

Since the Chernobyl nuclear reactor accident, a striking increase of thyroid carcinoma has been reported in children exposed to radiation in Belarus. Because of its unprecedented scale and its emotional implications, this finding has raised concern and called the attention of the scientific community to this major health problem. Although epidemiologically documented, a direct correlation between thyroid cancer and radiation exposure has not been definitely proven at the molecular level. On the assumption that ionizing radiation could cause specific and common cancer-associated genetic lesions, an analysis of oncogene activation and/or tumor suppressor gene inactivation would help to define radiation-induced thyroid carcinomas. Therefore, we have analyzed by different molecular approaches, including Southern blotting, DNA transfection assay on NIH-3T3 cells, and reverse transcription-PCR analysis, six papillary carcinomas from children living in the region of Belarus at the time of the Chernobyl nuclear accident to identify tumor-specific gene rearrangements of the proto-oncogenes RET and TRK, previously found activated in a tumor type-specific manner in papillary thyroid carcinoma. Using Southern blot analysis in four cases, we could detect specific rearranged bands indicating an oncogenic activation of RET that in three cases resulted in rearranged sequences provided by the same activating gene. Moreover, the DNA of the last three cases showed a biological activity in transforming NIH-3T3 cells after the DNA-mediated transfection assay, and the respective NIH-3T3 transfectants were found to express the oncogenic fusion transcripts. These results support the possibility that RET oncogenic activation could represent a major genetic lesion associated with thyroid carcinoma in children exposed to the Chernobyl nuclear accident.

The RET proto-oncogene and cancer.

The RET proto-oncogene, a receptor tyrosine kinase, has been evaluated as a candidate gene for multiple endocrine neoplasia type 2A and type 2B (MEN 2A and MEN 2B), for familial medullary thyroid carcinoma (FMTC), and for sporadic cases of medullary thyroid carcinoma (MTC) and pheochromocytomas. We determined the genomic structure of RET and used single-strand conformational polymorphism (SSCP) analysis to identify sequence variants in genomic DNA from families segregating MEN 2 and FMTC. In addition, we examined paired tumour and lymphocyte genomic DNAs from individuals with sporadic cases of MTC and pheochromocytoma. Altogether, we and others found 21 missense mutations in five cysteines clustered in the extra-cellular domain of RET (exons 10 and 11) associated with 111 MEN 2A and FMTC families. In contrast, a single point mutation that results in the substitution of threonine for methionine within the catalytic core of the tyrosine kinase domain (codon 918, exon 16) is responsible for ALL 66 reported cases of MEN 2B. Two missense mutations and a six base-pair deletion were identified in MTC tumour DNA, but no mutations were identified from pheochromocytoma tumour DNAs. A predictive DNA test for MEN 2A-associated mutations in RET has been developed that is based on detection of missense mutations by polymerase chain reaction (PCR) amplification and restriction endonuclease cleavage. A dominant oncogene model for the action of the RET gene product is proposed as a mechanism of action in MEN 2A, MEN 2B, FMTC and for at least some cases of sporadic MTC.

Germ line mutation in the RET proto-oncogene associated with familial multiple endocrine neoplasia type 2B: a case report.

Multiple endocrine neoplasia type 2 (MEN 2) is a dominantly inherited cancer syndrome. MEN 2B is characterized by the combined occurrence of medullary thyroid carcinoma (MTC), pheochromocytoma, mucosal neuroma and Marfanoid habitus. Recently, a missense mutation in codon 918 of the proto-RET has been reported in the germ line of apparently distinct families with MEN 2B. In the present paper we first show a familial case of MEN 2B in Japan also to be associated with a germ line mutation in codon 918 of the proto-RET. The mutation was the substitution of a threonine for a methionine in the tyrosine kinase domain of the protein. The germ-like mutations of the proto-RET in MEN 2A and MEN 2B are the first examples of a dominantly acting oncogenic point mutation initiating human hereditary neoplasia.

Expression of the ret proto-oncogene in phaeochromocytoma. An in situ hybridization and northern blot study.

The expression and distribution of ret proto-oncogene mRNA were investigated in five phaeochromocytomas of both familial and sporadic types by in situ hybridization (ISH) using digoxigenin-labelled cRNA probes and Northern blot (NB) analysis with random priming labelled cDNA probes. The probes corresponded to the tyrosine kinase domain of the gene. An excellent correlation was found between the ISH and NB results. By both techniques, the expression of the ret proto-oncogene was detected in three of the five cases, two of four familial tumours, and the only sporadic tumour that was studied. The results confirm that ret is frequently expressed in phaeochromocytomas and suggest that it might be an important event in their development and/or progression.

Expression of ret proto-oncogene products in the hypoganglionic segment of the small intestine of congenital aganglionosis rats.

The ret proto-oncogene (proto-ret) encodes a receptor tyrosine kinase that contains a cadherin-related sequence in the extracellular domain, which plays an important role in control of normal cell growth and differentiation. Recent studies have shown that familial Hirschsprung s disease is closely linked to the proto-ret locus. Immunohistologically studies on congenital aganglionosis rats were made using polyclonal antibody generated for the carboxy-terminal sequence of the proto-ret products. Immunoreactivity was investigated in the small and large intestines of mutant and control rats. It was increased in the ganglia of the hypoganglionic segment of the small intestine and was minimal in the normoganglionic small intestinal segment of congenital aganglionosis in rats. The reactivity was also strong in the ganglia of the large intestine of normal rats. Because the proto-ret is preferentially expressed in the neuronal tissue and plays a critical role in differentiation of apparently multipotential neural crest cells to enteric neurons, the results suggest that abnormal development of local vagal neural crest cells, which were influenced by spatially regulating factors, results in the hypoganglionic segment.

Activated RET/PTC oncogene elicits immediate early and delayed response genes in PC12 cells.

The expression of the receptor-like tyrosine kinase RET is associated with tumors, tissues or cell lines of neural crest origin. In addition RET products (Ret) are involved in determining cell fate during the differentiation of the enteric nervous system and during renal organogenesis. However, as yet, no direct evidence exists to indicate that the Ret kinase activity might interfere in a specific way with cellular differentiation, or proliferation, of a neural crest derived cell line. By using two constitutively activated forms of RET (RET/PTC1 and RET/PTC3) in transient transfection experiments, we have obtained evidence that active RET could reprogramme the gene expression pattern in the rat pheochromocytoma PC12 cell line. Transcription driven by gene promoters, such as NGFI-A and vgf, which belong, respectively, to primary and delayed response genes to nerve growth factor (NGF), and by the neuron-specific enolase (NSE) promoter, is rapidly induced by the expression of activated RET oncogenes. This induction is not elicited in other non neural derived cell types tested. We also demonstrate that endogenous ras activity is required for RET induction of these neural markers. Finally, in the RET/PTC transfected PC12 cells, NGF is unable to induce further their transcription. This suggests that RET/PTC could share an intracellular signalling pathway with the NGF-receptor.

Activated RET oncogene products induce maturation of xenopus oocytes.

The RET proto-oncogene encodes a transmembrane receptor of the tyrosine kinase family, recently found to be the gene responsible for the multiple endocrine neoplasia type 2A and 2B syndromes. RET was found specifically activated, by gene rearrangement, in human thyroid carcinomas of the papillary subtype. In most cases the activation consisted of an in frame fusion of the RET tyrosine-kinase domain, at the carboxy-terminus, with heterologous genes at the amino-terminus. These chimeric oncogenes are collectively named RET/PTC. Two forms of these gene products, RET/PTC1 and RET/PTC3, have been tested for their ability to induce meiotic maturation in Xenopus oocytes. Injection of RET/PTC mRNAs into immature oocytes induced maturation-promoting-factor (MPF) activation and germinal vesicle breakdown (GVBD). The injected oocytes expressed polypeptides recognized by an anti-RET gene product antibody as well as by an antiphosphotyrosine antibody, indicating activation of the tyrosine-kinase domain. The RET/PTC induced maturation was dependent on endogenous ras; in fact, the coinjection of RET/PTC mRNA with a neutralizing anti-ras antibody blocked oocytes maturation without interfering with the accumulation and tyrosine-phosphorylation of the RET/PTC protein.

A single missense mutation in codon 918 of the RET proto-oncogene in sporadic medullary thyroid carcinomas.

The RET proto-oncogene is expressed in human medullary thyroid carcinoma and pheochromocytoma. Recently germline mutations of the RET proto-oncogene were reported in four syndromes (MEN 2A, MEN 2B, familial medullary thyroid carcinoma and Hirschprung s disease) and somatic mutation was also found in sporadic medullary thyroid carcinoma. To determine the incidence of RET mutations in medullary thyroid carcinoma in Japan, we investigated 14 medullary thyroid carcinomas (comprising 1 case of MEN 2A, 1 case of MEN 2B, 2 cases of familial medullary thyroid carcinoma and 10 cases of sporadic). tumors from ALL cases were screened by PCR-SSCP on exons 10 and 11. DNA sequencing on these exons was performed for the hereditary medullary thyroid carcinoma cases. The PCR products of exon 16 from tumor DNA were analyzed by means of Fok1 restriction enzyme digestion analysis and mutations confirmed by DNA sequencing. We found no structural abnormalities in either exon 10 or exon 11 in any of the cases examined, but in four of 10 sporadic cases we detected a common point mutation at codon 918 (ATG to ACG) in exon 16, where methionine was replaced with threonine. Our results support the theory that a point mutation of exon 16 of the RET proto-oncogene may be related to the oncogenesis of sporadic medullary thyroid carcinomas. However, further studies on the entire RET proto-oncogene are needed to clarify the relationship between its expression and thyroid tumorigenesis.

Tumor-specific mutations in the tyrosine kinase domain of the RET proto-oncogene in pheochromocytomas of sporadic type.

Sporadic pheochromocytomas, sporadic medullary thyroid carcinomas (MTCs), pheochromocytomas and/or MTCs in multiple endocrine neoplasia (MEN) 2A or 2B were screened for mutations in the tyrosine kinase domain of the RET proto-oncogene by direct sequencing of PCR-amplified products or sequencing subcloned DNAs from PCR-products. ALL tumors of 4 MEN 2B patients were confirmed to contain a heterozygous missense mutation at codon 918 (ATG-->ACG; Met-->Thr) of the RET proto-oncogene as well as their leukocytes. The same tumor-specific mutations at codon 918 were also found in 5/16 (31%) sporadic pheochromocytomas. These results suggest that mutations of the RET proto-oncogene in its tyrosine kinase domain play a role not only as the predisposing gene for MEN 2B, but also as a tumorigenic factor for pheochromocytomas of sporadic type.

Low frequency of germline mutations in the RET proto-oncogene in patients with apparently sporadic medullary thyroid carcinoma.

BACKGROUND AND OBJECTIVES: Medullary thyroid carcinoma (MTC) occurs both sporadically and in the autosomal dominantly inherited multiple endocrine neoplasia (MEN) type 2 syndromes. The distinction between true sporadic MTC and a new mutation familial case is important for future clinical management of both the patient and family. The susceptibility gene for MEN 2 is the RET proto-oncogene. Systematic analysis for germline mutations of the RET proto-oncogene was performed in a series of 67 patients with apparently sporadic MTC to determine whether they were true sporadic cases or unsuspected de novo MEN 2 cases. DESIGN AND PATIENTS: Sixty-seven unselected patients with sporadic MTC were randomly ascertained from clinic patients from four centres. The diagnosis of MTC was confirmed by histopathology. Germline DNA was extracted from peripheral blood leucocytes or from paraffin-embedded tissue and subsequently used for polymerase chain reaction amplification. MEASUREMENTS: Polymerase chain reaction based RET mutation analysis was performed by direct double-stranded cycle sequencing of exons 10, 11, 13 and 16, within which the majority of MEN2 mutations have been shown to occur. RESULTS: In this series, there was one proven case of germline mutation in RET codon 620, which previously has been shown to be responsible for MEN 2, thus indicating heritable disease. No germline mutation in codon 918, typical of MEN 2B, was found. CONCLUSIONS: A figure of 1.5% germline mutations in 67 apparently sporadic MTC is lower than the incidence of familial disease reported in previous series involving clinical and biochemical screening. The presence of a germline mutation in the RET proto-oncogene in a patient with MTC indicates heritable disease. The absence of germline RET exon 10, 11, 13 or 16 mutation appears to rule out MEN 2A to a high probability, although the presence of a familial form of MTC other than classical MEN 2A cannot be excluded conclusively.

Tyrosine kinase activity of the ret proto-oncogene products in vitro.

We investigated tyrosine kinase activity of the ret proto-oncogene products (proto-Ret proteins), using a cell lysate of NB-39-nu neuroblastoma cells. The 150 kDa and 170 kDa proto-Ret proteins immunoprecipitated with antibodies against their carboxy-terminal 20 amino acids were shown to be phosphorylated predominantly on tyrosine residues in immunocomplex kinase assay. The level of tyrosine phosphorylation of the 150 kDa proto-Ret protein was approximately 10-fold higher than that of the 170 kDa proto-Ret protein, although both proteins were expressed at similar levels in neuroblastoma cells. This result was confirmed by using a lysate of SK-N-MC human primitive neuroectodermal tumor cells transfected with the ret proto-oncogene. The kinase activity of proto-Ret proteins was significantly inhibited by antibodies against their kinase domain, indicating that these antibodies recognize crucial epitopes for the enzymatic activity. On the other hand, the proto-Ret proteins were not phosphorylated in vivo in NB-39-nu cells and SK-N-MC transfectants.

DNA polymorphisms and conditions for SSCP analysis of the 20 exons of the ret proto-oncogene.

The c-mos proto-oncogene product, Mos, is a serine/threonine protein kinase that controls the meiotic cell cycle in vertebrate oocytes. Both in vivo and in vitro, Mos can activate mitogen-activated protein kinase (MAPK) most probably by direct phosphorylation of MAPK kinase (MAPKK). In many cell types transformed by diverse oncogene products such as Raf, MAPK is constitutively activated, suggesting that the MAPK pathway may mediate oncogenic signalling by many oncogene products. Using mouse NIH3T3 cells, we examined whether oncogenic transformation by Mos is mediated by MAPK activation. Coexpression of a kinase-defective (dominant-negative) mutant of Mek1, one of the MAPKK isoforms, completely suppressed transformation by Mos. By contrast, coexpression of wild-type Mek1 markedly enhanced the transforming efficiency of Mos. Moreover, overexpression of the dominant-negative Mek1 reverted the transformation phenotype of Mos-transformed cells. These results indicate that in NIH3T3 cells the Mek1/MAPK pathway is necessary and sufficient for transformation (and its maintenance) by Mos. Transformation of NIH3T3 cells by Raf or Ras was also suppressed by the dominant-negative Mek1, but significantly less efficiently than that by Mos, suggesting the existence of multiple signalling pathways for Raf and Ras oncoproteins.

Detection of a germline mutation at codon 918 of the RET proto-oncogene in French MEN 2B families.

Multiple endocrine neoplasia type 2A (MEN 2A), type 2B (MEN 2B), and familial medullary thyroid carcinoma (FMTC) are three dominantly inherited disorders linked to the same disease locus on chromosome 10. Two types of germline mutation of the RET proto-onco-gene, which codes for a transmembrane tyrosine kinase, are associated with MEN 2. Missense mutations at cysteine residues in the extra-cytoplasmic domain are exclusively associated with MEN 2A and FMTC. In MEN 2B patients, a single point mutation at codon 918 has recently been characterized, leading to the replacement of a methionine by a threonine within the RET tyrosine kinase domain. We now report the identification of a mutation at codon 918 in the germline of 16 patients out of 18 unrelated MEN 2B families analyzed. In these families we have been able to demonstrate that, in five cases, the mutation arose de novo, and that, in one kindred, it was coinherited with the disease. These results indicate that a unique mutation at codon 918 of the RET gene is the most prevalent genetic defect causing MEN 2B, but also that rare MEN 2B cases are associated with different mutations yet to be defined.

Multiple mRNA isoforms of the human RET proto-oncogene generated by alternate splicing.

The RET proto-oncogene encodes a receptor tyrosine kinase. We and others have recently shown that distinct germline mutations of the RET proto-oncogene account for the majority of cases of the dominantly inherited multiple endocrine neoplasia (MEN) type 2 syndromes, and can cause a dominantly inherited form of Hirschsprung disease, a disorder of development of the autonomic innervation of the gut. RET is also oncogenically activated in some sporadic thyroid and adrenal tumours. Here we report the characterisation of multiple mRNA isoforms of RET generated by alternate splicing. Two isoforms are predicted to encode membrane-spanning receptors with a truncated extracellular ligand-binding domain. A third isoform is predicted to encode a soluble, secreted form of the receptor. These mRNA isoforms are expressed in both normal and tumour tissues.

Characterization of the promoter region and oligomerization domain of H4 (D10S170), a gene frequently rearranged with the ret proto-oncogene.

PTC-1, the predominant form of PTC oncogene in human papillary thyroid carcinoma, encodes a fusion protein containing the N-terminus of H4 (D10S170) fused 5 to the ret tyrosine kinase domain. Accordingly, the PTC-1 expression is driven by the H4 gene promoter. Our study showed that H4 is expressed in various human tissues, including thyroid. Furthermore, we have localized the transcriptional start sites of H4 to a region 100 to 190 bp upstream of the translation initiation site (ATG) by primer extension assay, and the H4 promoter to a region within 259 bp upstream of the ATG site by luciferase assay. Interestingly, protein sequence analysis indicated a potential coiled-coil domain in the N-terminal region of H4. Indeed, oligomerization was demonstrated by an in vitro assay with recombinant proteins containing this region. As dimerization is considered to be a crucial step for receptor tyrosine kinase activation, we hypothesize that both unscheduled expression of ret tyrosine kinase and constitutive oligomerization of PTC-1 proteins are responsible for PTC-1 transforming activity in thyroid.

[Identification of mutation of RET proto-oncogene in Hirschsprung disease].

Hirschsprung s disease is a frequent congenital malformation of the hindgut. The existence of Hirschsprung s families favors the role of an autosomal dominant gene with a reduced penetrance. We have successively localized and identified the RET proto-oncogene as the gene responsible for familial Hirschsprung s disease. Interestingly, other mutations of the RET proto-oncogene have been described in inherited predisposition to endocrine cancers. This observation shows that, depending on their nature, mutations of the RET proto-oncogene could lead either to early developmental defects or to tumor predisposition.

Alternative splicing of the ret proto-oncogene at intron 4.

Using reverse-transcription polymerase chain reaction (RT-PCR), we identified three alternative splicing pathways of the ret proto-oncogene (proto-ret) which occur at intron 4. Although the majority of the primary transcripts were spliced to make mRNA encoding the protein product previously reported, two alternatively spliced transcripts containing either a 62 bp or a 69 bp insertion were also present. Intron 4 of proto-ret was cloned from human genomic DNA using a PCR method, and both the 62 bp and 69 bp sequences were localized in the intron. Furthermore, using a semi-quantitative RT-PCR method, we found that the expression of the two alternatively spliced transcripts varies in cell lines derived from different tissues. The relative amount of the transcripts containing the 62 bp insertion in these cell lines was: THP-1 > NB-39-nu = TT, whereas the relative amount of the transcripts containing the 69 bp insertion was: THP-1 > TT > NB-39-nu.

Spatial and temporal expression of the ret proto-oncogene product in embryonic, infant and adult rat tissues.

Immunohistochemical analysis with the anti-Ret antibody was performed to investigate the expression of the c-ret proto-oncogene product (c-Ret protein) in embryonic, infant and adult rat tissues. During embryogenesis, the c-Ret expression became detectable by day 11.5 in the developing peripheral and central nervous systems as well as in the excretory system. In the peripheral nervous system of the trunk, it was expressed at high levels in the enteric neuroblasts and the autonomic and dorsal root ganglia. c-Ret positive cells appeared in the mesenchyme around the foregut and the dorsal aorta at day 11.5 and formed the myenteric plexus of the whole embryonic gut and the sympathetic trunk at later stages respectively. Examination of the cranial region revealed that the c-Ret protein was expressed in neural crest cells migrating from rhombomere 4 at day 11.5 and then became positive in the facial, glossopharyngeal and vagus cranial ganglia at day 12.5-13.5. After day 16.5 of gestation, the c-Ret expression was also observed in the trigeminal ganglion. In the central nervous system, the c-Ret protein was expressed in the neuroepithelial cells of the ventral neural tube (day 11.5-14.5), the motor neurons of the spinal cord (day 18.5) as well as in the embryonic neuroretina (day 18.5). In addition to the nervous system, the c-Ret expression was detected in the nephric duct (day 11.5), the ureteric bud (day 13.5) and the collecting ducts of the kidney (day 16.5). After birth, neurons in the nervous systems mentioned above continued to express the c-Ret protein at variable levels while no c-Ret expression was observed in the kidney of adult rats. Furthermore, the c-Ret expression was found in the acinar cells of the salivary gland, the epithelial cells of the thymus and the follicular dendritic cells of the spleen and lymph node in infant and adult rats.(ABSTRACT TRUNCATED AT 250 WORDS)FAU - Tsuzuki, T

A rapid screening method for the detection of mutations in the RET proto-oncogene in multiple endocrine neoplasia type 2A and familial medullary thyroid carcinoma families.

Multiple endocrine neoplasia type 2A (MEN2A) and familial medullary thyroid carcinoma (FMTC) are autosomal dominant inherited cancer syndromes with incomplete penetrance. Following the identification of mutations in the RET proto-oncogene that segregate with the disease phenotype in MEN2A, MEN2B, and FMTC, genetic screening of individuals with mutations in RET may be performed. We have employed restriction endonuclease digestion of polymerase chain reaction products as an alternative to sequence analysis for rapid identification of mutant gene carriers in families in which MEN2A and FMTC are segregating. Twenty-one Australasian MEN2A and FMTC families have been screened for mutations in a cysteine-rich region of the RET proto-oncogene. Seven independent mutations were identified in key individuals in 16 of these families. We have identified a mutation in codon 620, 2053 T-->C (Cys620Arg), and two mutations in codon 634 of exon 11 of RET, 2095 T-->C (Cys634Arg) and 2096 G-->A (Cys634Tyr), ALL three of which were present in both MEN2A and FMTC families.

A novel point mutation in the tyrosine kinase domain of the RET proto-oncogene in sporadic medullary thyroid carcinoma and in a family with FMTC.

Germline mutations within one of six codons of the RET proto-oncogene account for the majority of cases of multiple endocrine neoplasia (MEN) type 2A and type 2B and familial medullary thyroid carcinoma (FMTC). MEN 2A and FMTC mutations characterised thus far occur exclusively in the cysteine-rich domain of the extracellular region of RET. We now report a missense mutation in the intracellular tyrosine kinase domain of RET in the germline of a family with FMTC that does not have a cysteine codon mutation. In this family, the mutation, which alters GAG (Glu) to GAC (Asp) at codon 768, segregates with the FMTC phenotype. The same mutation was also detected in sporadic MTC but not in corresponding constitutional DNA, confirming that it is likely to be of pathological significance rather than a rare polymorphism.

RET proto-oncogene mutations in inherited and sporadic medullary thyroid cancer.

The proliferation of the human prostatic cancer JCA-1 cells showed a complex response to different concentrations of TPA. Whereas cells exposed for 24 h had growth reduction which was proportional to the concentration of TPA added to the culture media, they showed resistance to low (0.016 and 0.16 nM) but not high (> or = 1.6 nM) doses of TPA after 72 h. Growth-inhibited, treated cells also displayed a distinct cell morphology compared with the controls. Since c-myc expression has previously been shown to be correlated with cellular proliferation, we determined changes in its steady-state level in control and treated cells by Northern analysis. Following a 24h, 48h, and 72h treatment, with 16 nM TPA, c-myc mRNA was suppressed by 91%, 83%, and 78%, respectively, in good agreement with the extent of growth reduction observed. At the low dose of TPA (0.16 nM), however, the c-myc mRNA expression remained inhibited by 85% even though cell growth was only reduced by 10-14%. No difference in the total amount of c-myc protein could be detected between control and treated cells by Western analysis.

Germline mutations of the RET proto-oncogene in eight Japanese patients with multiple endocrine neoplasia type 2A (MEN2A).

Multiple endocrine neoplasia type 2A (MEN2A) is a dominantly inherited cancer syndrome characterized by medullary thyroid carcinoma, pheochromocytoma, and parathyroid hyperplasia. The gene responsible for MEN2A was localized by linkage analysis to chromosome 10q11.2 in 1987, and recently mutations in RET, a proto-oncogene in the candidate region, were discovered in patients with MEN. The majority of mutations found so far in MEN2A patients have been located in nucleotide sequences encoding cysteine residues in the extracellular domain of RET. To characterize MEN2A germline alterations in the Japanese population, we screened DNA from eight unrelated patients for mutations in exons 10 and 11 of the RET proto-oncogene and found mutations in ALL eight patients, at codons 618, 620, or 634; each of these sites encodes a cysteine residue in the extracellular domain of RET. The mutations were confirmed in other affected individuals in the respective families by digestion of polymerase chain reaction (PCR) products containing the mutated codons with restriction enzymes (Rs alpha I, CfoI, or AluI) for which cleavage sites had been generated by the specific genetic alteration. These PCR-restriction enzyme systems will be useful for genetic diagnosis in members of families carrying these mutations.

Isolation and characterization of a chicken homolog of the c-ret proto-oncogene.

The c-ret proto-oncogene encodes a receptor tyrosine kinase that plays important roles in human disease and in normal mammalian development. mutations in the human RET gene are associated with multiple endocrine neoplasia syndromes and Hirschsprung s disease in humans, while targeted mutagenesis of murine c-ret resulted in severe developmental abnormalities affecting the excretory and peripheral nervous systems. To examine the evolutionary conservation of the ret protein sequence and its developmental expression pattern, we isolated and sequenced cDNA clones of chicken c-ret and examined its expression in chick embryos and adult tissues. The cytoplasmic domains of chicken and human ret were relatively well conserved (91% similar), but the extracellular domains were more divergent (68% similar), although the conservation of cysteine residues in this region suggests a conserved secondary structure. As in mouse and human, chicken c-ret encodes two protein isoforms. The number and sizes of the transcripts were similar to those in human and mouse cells, and during chick embryogenesis, c-ret mRNA was observed in many of the same sites as in the mouse, including the Wolffian duct and ureteric bud, the enteric, dorsal root, sympathetic and facioacoustic ganglia, and the ventral spinal cord. Evolutionary differences in expression were observed in the trigeminal ganglion, the ventral roots of the spinal cord, the mesenchymal cells of the branchial arches and the adult testes. The results are discussed with regard to the role of the ret receptor in normal development and disease.

Point mutation of the RET proto-oncogene in the TT human medullary thyroid carcinoma cell line.

The RET proto-oncogene encodes a tyrosine-kinase receptor specifically expressed in tissues of neuroectodermal origin. Recently specific point mutations of RET have been demonstrated to be responsible for the Multiple Endocrine Neoplasia type 2A and 2B and Familial Medullary Thyroid Carcinoma syndromes, characterized by the occurrence of medullary thyroid carcinomas. Here we report that a human medullary thyroid carcinoma cell line, the TT cell line, harbours a MEN2A-type mutation, specifically a cysteine to triptophan substitution at the level of the RET codon 634. This mutation is heterozygous and both normal and mutated alleles are expressed. We suggest that the TT cell line could be a useful cell system to investigate the role played by the RET oncogene in the transformation and differentiation of human thyroid C-cells.

Induction of RET proto-oncogene expression in neuroblastoma cells precedes neuronal differentiation and is not mediated by protein synthesis.

RET proto-oncogene products are involved in neural crest development, and constitutional RET mutations are associated with syndromes characterized by tumors of neural crest origin. To study the regulation of RET transcription during neuronal differentiation we analyzed RET expression in neuroblastoma cell lines treated with various differentiating agents. A marked increase in RET mRNA levels was observed in ALL the cell lines examined shortly after retinoic acid (RA) treatment and before the onset of detectable morphological changes. Upregulation of RET expression was also found in SK-N-BE cells induced to differentiate by 12-O-tetradecanoylphorbol-13-acetate, glial cell-conditioned medium, alpha or gamma interferon, and in SH-SY-5Y cells exposed to nerve growth factor. Induction of RET expression by RA occurred in the absence of de novo protein synthesis. On the other hand, cycloheximide treatment by itself caused upregulation of RET transcripts. These results indicate that the positive transcriptional regulation of RET is closely associated with early neuronal differentiation and suggest that a negative regulatory factor/s controls RET transcription in neuroblastoma cells. Finally, anti-Ret antibodies immunoprecipitated four bands with apparent molecular weights of 150, 155, 170, and 175 kDa in RA-induced SK-N-BE cells. These bands likely represent differently glycosylated forms of the two RET primary products (117 and 122 kDa) detected in tunicamycin-treated cells.

RET proto-oncogene mutations in French MEN 2A and FMTC families.

Constitutional mutations of the RET proto-oncogene have been identified in multiple endocrine neoplasia type 2A (MEN 2A), type 2B (MEN 2B) and familial medullary thyroid carcinoma (FMTC) families. We sequenced RET exons 10 and 11 in 86 unrelated patients with an inherited predisposition to MTC (excluding MEN 2B). Germ-line mutations were identified in 93% of the MEN 2A families and 67% of the FMTC families tested. ALL were missense mutations affecting one of three cysteines in the extracellular domain of the RET tyrosine kinase receptor. The prevalence of phaeochromocytoma and hyperparathyroidism was significantly higher in families with a mutation of cysteine 634. These data confirm the preferential localisation of MEN 2A and FMTC associated mutations and the strong correlation between clinical manifestations and the position of RET mutation. Although direct sequencing of RET exons 10 and 11 allows the identification of a constitutional mutation in a large proportion of MEN 2A and FMTC families, our data sustain the existence of other MTC predisposing mutations elsewhere in RET coding or regulating region.

Diverse phenotypes associated with exon 10 mutations of the RET proto-oncogene.

mutations of the RET proto-oncogene are the underlying cause of some cases of Hirschsprung disease (HSCR) and the inherited cancer syndromes multiple endocrine neoplasia types 2A (MEN 2A) and 2B (MEN 2B) and familial medullary thyroid carcinoma (FMTC). In HSCR these mutations are dispersed throughout the gene, while in MEN 2A and FMTC, they are tightly clustered in five cysteine codons of the RET extracellular domain. HSCR and MEN 2 are usually distinct but occasional families have been reported with both diseases. In each of five families with HSCR with or without MEN 2A or FMTC, we have identified a nucleotide substitution in one of the five cysteine codons previously associated with MEN 2A or FMTC. In one family, which had HSCR as its only phenotype, we detected a Cys-->Trp mutation at codon 609 which had not been previously observed. In three families, both HSCR and MEN 2A were associated with a single Cys-->Arg mutation at either codon 618 or 620 of RET. In the fifth family, FMTC and HSCR were present but we could not determine whether HSCR arose from mutation of the RET locus. We suggest that specific mutations in cysteine codons 618 and 620 result in MEN 2A or FMTC, but can also predispose to HSCR with low penetrance.

Mutations of the RET proto-oncogene in the multiple endocrine neoplasia type 2 syndromes and Hirschsprung disease.

Distinct point mutations in the RET proto-oncogene are the cause of the inherited multiple endocrine neoplasia type 2 syndromes (MEN 2), and the congenital gut disorder Hirschsprung disease. The site and type of these mutations suggests that they have differing effects on the activity of the receptor tyrosine kinase encoded by RET. The normal function of the RET receptor tyrosine kinase has yet to be determined. However, this has been investigated by the inactivation of the RET gene in transgenic mice. The developmental abnormalities apparent in these mice, together with the observation that the major tissues affected in MEN 2 and Hirschsprung disease have a common origin in the embryonal neural crest, suggest that RET encodes a receptor for a developmental regulator involved in the genesis of a variety of neural crest derivatives, and in the organogenesis of the kidney.

Absence of mutations in the MEN2A region of the ret proto-oncogene in non-MEN 2A phaeochromocytomas.

OBJECTIVE: To determine the presence of abnormalities of the MEN2A region of the ret proto-oncogene in phaeochromocytomas/paragangliomas (PHAEO) of different aetiologies. DESIGN: Total RNA was extracted from tumours and used as templates for reverse transcriptase polymerase chain reactions. A ret primer pair, which encompasses the region which is mutated in the germ-line of patients with MEN 2A, was used. The resulting 262-bp product was sequenced. PATIENTS: Ten PHAEOs were examined. Four tumours were from von Hippel-Lindau disease patients; five were sporadic, isolated tumours; one from a patient with multiple endocrine neoplasia type 2A (MEN 2A). The medullary thyroid cancer from the single MEN 2A patient was also examined. RESULTS: A heterozygous TGC to CGC mutation of codon 634 (cysteine to arginine) was found in the PHAEO and medullary thyroid cancer from the MEN 2A patient. The 262-bp ret fragment was not found in two tumours (one malignant PHAEO and one secretory paraganglioma), although the intra-cellular ret tyrosine kinase domain was detected in these tumours. The cysteine codons were normal in ALL other non-MEN 2A PHAEOs. CONCLUSION: mutations of key cysteine codons of the ret proto-oncogene may be specific to MEN 2A.

Exon structure and flanking intronic sequences of the human RET proto-oncogene.

Using a PCR strategy based on an initial set of 15 couples of primers designed from the known cDNA sequence, we identified 18 introns in the human RET proto-oncogene and sequenced the corresponding 5 and 3 exon-intron junctions. This approach was successful in locating ALL the introns contained in fragments short enough to be amplified by PCR. Thus 19 exons were identified which, together with the previously reported exon subjected to alternative splicing, brings the total number of RET exons to 20. This information is relevant for the screening of recently reported missense mutations of RET which cause Multiple Endocrine Neoplasia 2A (MEN2A) and for the search of additional point mutations of the same gene which might cause two other neural crest disorders, MEN2B and Hirschsprung disease, mapping in the same region as MEN2A.

A mutation in the RET proto-oncogene associated with multiple endocrine neoplasia type 2B and sporadic medullary thyroid carcinoma.

Multiple endocrine neoplasia type 2 (MEN 2) comprises three clinically distinct, dominantly inherited cancer syndromes. MEN 2A patients develop medullary thyroid carcinoma (MTC) and phaeochromocytoma. MEN 2B patients show in addition ganglioneuromas of the gastrointestinal tract and skeletal abnormalities. In familial MTC, only the thyroid is affected. Germ-line mutations of the RET proto-oncogene have recently been reported in association with MEN 2A and familial MTC. ALL mutations occurred within codons specifying cysteine residues in the transition point between the RET protein extracellular and transmembrane domains. We now show that MEN 2B is also associated with mutation of the RET proto-oncogene. A mutation in codon 664, causing the substitution of a threonine for a methionine in the tyrosine kinase domain of the protein, was found in ALL nine unrelated MEN 2B patients studied. The same mutation was found in six out of 18 sporadic tumours.

Specific mutations of the RET proto-oncogene are related to disease phenotype in MEN 2A and FMTC.

We have analysed 118 families with inherited medullary thyroid carcinoma (MTC) for mutations of the RET proto-oncogene. These included cases of multiple endocrine neoplasia types 2A (MEN 2A) and 2B (MEN 2B) and familial MTC (FMTC). mutations at one of 5 cysteines in the extracellular domain were found in 97% of patients with MEN 2A and 86% with FMTC but not in MEN 2B patients or normal controls. 84% of the MEN2A mutations affected codon 634. MEN 2A patients with a Cys634 to Arg substitution had a greater risk of developing parathyroid disease than those with other codon 634 mutations. Our data show a strong correlation between disease phenotype and the nature and position of the RET mutation, suggesting that a simple, constitutive activation of the RET tyrosine kinase is unlikely to explain the events leading to MEN 2A and FMTC.

Identification of multiple endocrine neoplasia, type 2 gene carriers using linkage analysis and analysis of the RET proto-oncogene.

Ten kindreds (95 individuals) with multiple endocrine neoplasia, type 2 (MEN 2) were analyzed by linkage analysis using four highly polymorphic (CA)n-repeat markers (sTCL-1, D10S141, ZNF22, and sJRH-1). Additionally, we examined the RET proto-oncogene for specific mutations by DNA sequence analyses in these 10 plus 14 members of 3 additional kindred. Nine families had MEN 2A, two had MEN 2B, and two had medullary thyroid cancer alone (FMTC). Using these four markers, ALL 10 kindreds were informative, with 10 individuals predicted to be presymptomatic MEN 2 gene carriers and 23 individuals predicted not to be carriers. DNA sequence analysis of exons 10 and 11 of the RET proto-oncogene revealed a mutation in ALL nine MEN 2A kindreds. A missense mutation was found in each case, leading to a loss of a cysteine residue (codon 618 of exon 10 or codon 634 of exon 11). In the MEN 2A families, the linkage analysis and RET mutation analysis gave concordant results for prediction of gene carriers in 100% of the individuals tested. No mutations were found in the two kindreds with FMTC or the two MEN 2B kindreds. Two individuals from two different MEN 2A kindreds were identified who had abnormal calcitonin stimulation tests but were not MEN 2A gene carriers by both linkage analysis and RET mutation analysis. These individuals presumably represented the sporadic occurrence of abnormal calcitonin stimulation tests in the general population. These studies provide further support for a role of the RET proto-oncogene in the pathogenesis of MEN 2A. Additionally, in the absence of identifiable RET proto-oncogene mutations, linkage analysis using (CA)n-repeat markers is a highly accurate alternative for the identification of MEN 2 or FMTC gene carriers.

Point mutation within the tyrosine kinase domain of the RET proto-oncogene in multiple endocrine neoplasia type 2B and related sporadic tumours.

The susceptibility loci for the three multiple endocrine neoplasia (MEN) type 2 syndromes have been mapped to the region of chromosome 10q11.2 containing the RET proto-oncogene, which codes for a receptor tyrosine kinase. The majority of MEN 2A and familial medullary thyroid carcinoma results from missense mutations within one of five cysteine codons in the extracellular domain of the RET proto-oncogene. We now report a missense mutation, resulting in the substitution of a threonine for a methionine at codon 918 in the tyrosine kinase catalytic domain, in the germline of 26 of 28 apparently distinct families with MEN 2B. DNA from five of 13 apparently sporadic MTC and one of 12 apparently sporadic phaeochromocytomas harboured a similar mutation, but the corresponding germline DNA was wildtype in each case.

Activated RET oncogene in thyroid cancers of children from areas contaminated by Chernobyl accident.

In 58 gastric carcinomas the expression of the Her2/neu gene product p185 was immunohistochemically analyzed. Fresh tumor tissue for molecular studies was available in 25 cases. The results were correlated with various pathohistological and prognostic factors. A 16-32fold Her2/neu amplification was found in 20% of the tumors (n = 5). The oncogene product p185 was detected at the basement membrane in 38% of the tumors (n = 22). Amplification and p185 overexpression occurred in intestinal, but not diffuse type carcinomas (p < 0.001). p185 expression was independent from tumor site and tumor stage, but correlated with pT-stage (p < 0.001). Overall prognosis was influenced by tumor stage and R-classification, but not by p185 expression. Multivariate analysis, however, defined patients with stage IIIA/B and IV and R0-resection who had a poorer survival in case of p185 expression (p < 0.05). Her2/neu amplification and p185 overexpression appear to be characteristic molecular events in intestinal type gastric carcinogenesis and may help in identifying a subgroup of patients at increased risk for shorter survival.

Identification of the Cys634-->Tyr mutation of the RET proto-oncogene in a pedigree with multiple endocrine neoplasia type 2A and localized cutaneous lichen amyloidosis.

Following the recent identification of specific germline mutations of the RET proto-oncogene in Multiple Endocrine Neoplasia type 2A (MEN2A) patients, we looked for mutations of this gene in a pedigree showing recurrence of MEN2A and localized Cutaneous Lichen Amyloidosis (CLA). Basal calcitonin and/or pentagastrin test performed in ALL the 10 available members of this pedigree confirmed the clinical diagnosis and allowed the presymptomatic identification of an additional carrier. A cys634-->tyr missense mutation, already reported as causative in MEN2A patients, was identified after SSCP analysis and direct sequencing of exon 11 of the RET protooncogene in one individual affected with both MEN2A and CLA, thus suggesting a common etiology for the two disorders. Taking advantage of the observation of an RsaI restriction site in the sequence surrounding the mutated codon, we could demonstrate that the same mutation is present in three other affected members, in the presymptomatic carrier and in one additional 25 years old healthy member who shows a mildly positive pentagastrin test.

Inherited cancers associated with the RET proto-oncogene.

mutations in the RET proto-oncogene have been identified in the constitutional DNA of patients with the inherited disorders multiple endocrine neoplasia type 2A and 2B and familial medullary thyroid carcinoma. This review focuses on the discoveries over the past year that pointed to RET as a candidate gene, and on the nature and spectrum of what appear to be dominant mutations associated with an inherited predisposition to tumor development.

Detection of RET proto-oncogene point mutations in paraffin-embedded pheochromocytoma specimens by nonradioactive single-strand conformation polymorphism analysis and direct sequencing.

The suitability of formalin-fixed and paraffin-embedded tumor material was evaluated for molecular analysis of the RET proto-oncogene. We analyzed exons 10, 11, and 16 for point mutations in seven sporadic and six multiple endocrine neoplasia (MEN) 2A-associated pheochromocytomas by a nonradioactive single-strand conformation polymorphism assay followed by nonradioactive direct sequencing of PCR-amplified DNA using an automated DNA sequencer. ALL MEN 2A-associated pheochromocytomas contained a heterozygous missense germline mutation within cystine codons of the cysteine-rich extracellular domain encoded by exons 10 and 11. mutations were located in codon 619 (TGC-->TCC; Cys-->Ser) in one, in codon 635 (TGC-->CGC; Cys--Arg) in three, and in codon 635 (TGC-->TAC; Cys-->Tyr) in two pheochromocytomas. No tumor-specific (somatic) mutations were detected in exons 10, 11, and 16 of the sporadic pheochromocytomas. These data support recent findings that germline point mutations that are clustered in distinct cysteine codons of the RET proto-oncogene are involved in the neoplastic phenotype of the MEN 2A syndrome. Our results demonstrate that both nonradioactive single-strand conformation polymorphism and direct sequencing are suitable methods to detect single base substitutions in DNA extracted from archival material.

A de novo mutation of the RET proto-oncogene in a patient with MEN 2A.

The expression of the murine double minute-2 (MDM2) gene, the product of which binds to and inactivates p53, was studied in 60 patients with B-cell chronic lymphocytic leukemia (B-CLL) or non-Hodgkin s lymphoma (B-NHL). Northern blot analysis showed that the level of MDM2 gene expression was low in normal human B-cells, whereas 17 of the patients (28.3%) with B-CLL or NHL had more than 10-fold higher levels of MDM2 gene expression than that observed in normal B cells. Immunohistochemical analysis confirmed MDM2 overexpression at the cellular protein level. MDM2 gene overexpression was found more frequently in patients with the low-grade type of lymphoma (56.5%) than in those with intermediate-/high-grade types (10.8%) (P = .001). Moreover, MDM2 overexpression was found significantly more frequently in patients at advanced clinical stages. Simultaneous analysis of p53 gene mutation showed that three patients had both MDM2 gene overexpression and p53 gene mutation. The results of the present study suggest that MDM2 gene overexpression may play an important role in the tumorigenicity and/or disease progression of CLL and low-grade lymphomas of B-cell origin.

A novel polymorphism in the coding sequence of the human RET proto-oncogene.

A novel polymorphism in the coding sequence of the human RET proto-oncogene is described. The RET proto-oncogene maps to chromosome 10q11.2, and is involved in multiple endocrine neoplasia (MEN 2A, MEN 2B), familial medullary thyroid carcinoma and Hirschsprung s disease.

Germ line mutations of the ret proto-oncogene in Japanese patients with multiple endocrine neoplasia type 2A and type 2B.

We investigated mutations of the ret proto-oncogene in Japanese patients with multiple endocrine neoplasia (MEN) type 2A and type 2B. DNAs from pheochromocytomas and/or medullary thyroid carcinomas (MTCs) of five MEN 2A and three MEN 2B patients were amplified by a polymerase chain reaction (PCR) and analyzed. tumors of four MEN 2A patients had missense mutations in Cys 634 in the extracellular domain of the ret proto-oncogene. The same mutations were detected in normal tissues of the patients, indicating that the mutations had arisen in the germ line. Using a reverse transcriptase(RT)-PCR, both normal and mutant transcripts of the ret proto-oncogene were detected in a tumor of one patient with MEN 2A mutation. In addition, three MEN 2B patients examined had the same point mutation (ATG-->ACG) at codon 918 in the tyrosine kinase domain of the ret proto-oncogene. Since ALL mutations identified in this study generated new restriction enzyme sites or eliminated a restriction site, the mutant alleles of affected family members could be readily detected without sequencing.

Clinical value of direct DNA analysis of the RET proto-oncogene in families with multiple endocrine neoplasia type 2A.

BACKGROUND: The multiple endocrine neoplasia type 2A gene is the RET proto-oncogene located on the long arm of chromosome 10, and many mutations within this gene have been reported. METHODS: Peripheral blood DNA was analyzed from 95 members of twelve families with multiple endocrine neoplasia type 2A and known mutations in codon 634 (of exon 11) of the RET proto-oncogene. This region was amplified by the polymerase chain reaction, followed by digestion with Cfo I, which detects restriction sites created by the most common TGC- > CGC mutation and by a TGC- > TGG mutation or with Rsa I, which detects a restriction site created by a TGC- > TAC mutation. RESULTS: Diagnoses were confirmed in 39 patients; 15 of 56 at-risk persons were gene carriers and 41 were noncarriers. The noncarriers included seven persons who had previously undergone thyroidectomies for suspected C-cell hyperplasia but were negative for the RET mutation present in affected members of their families. CONCLUSIONS: Identification of the specific gene alterations within families permits direct DNA diagnosis of at-risk family members. The 41 noncarriers will not require further testing nor need to be concerned about transmitting multiple endocrine neoplasia type 2A to their descendants. The normal DNA findings in seven of these persons emphasize the importance of DNA studies in patients with C-cell hyperplasia but no medullary thyroid cancer at operation.

Somatic and MEN 2A de novo mutations identified in the RET proto-oncogene by screening of sporadic MTC:s.

Since germline mutations in the RET proto-oncogene (RET) predisposing to tumor development in Familial Medullary Thyroid Carcinoma (FMTC), Multiple endocrine neoplasia type 2A (MEN 2A), and Multiple endocrine neoplasia type 2B (MEN 2B) were reported, it has become possible to identify gene carriers with a very high degree of accuracy. mutations in FMTC and MEN 2A exclusively affect cysteine residues in exon 10 and 11 of RET, whereas in MEN 2B codon 918 in exon 16 is involved. This latter mutation has also been described in a subset of apparently sporadic medullary thyroid carcinomas (MTC). mutations in MEN 2B often occur as de novo germline mutations, whereas de novo mutations have not yet been described in FMTC or MEN 2A. We analyzed ten MTC:s and ten pheochromocytomas, ALL clinically judged to be sporadically occurring, by direct DNA sequencing of exons 10, 11, and 16 of RET. This analysis revealed a de novo germline mutation of codon 634 in exon 11 in a patient with MTC. In addition, somatic mutations of codon 918 in exon 16 in six of the remaining MTC:s were found. Interestingly, the presence of this somatic mutation was associated with a significantly less favorable clinical outcome.

A 7 bp deletion of the RET proto-oncogene in familial Hirschsprung s disease.

Since germline mutations in the RET proto-oncogene (RET) predisposing to tumor development in Familial Medullary Thyroid Carcinoma (FMTC), Multiple endocrine neoplasia type 2A (MEN 2A), and Multiple endocrine neoplasia type 2B (MEN 2B) were reported, it has become possible to identify gene carriers with a very high degree of accuracy. mutations in FMTC and MEN 2A exclusively affect cysteine residues in exon 10 and 11 of RET, whereas in MEN 2B codon 918 in exon 16 is involved. This latter mutation has also been described in a subset of apparently sporadic medullary thyroid carcinomas (MTC). mutations in MEN 2B often occur as de novo germline mutations, whereas de novo mutations have not yet been described in FMTC or MEN 2A. We analyzed ten MTC:s and ten pheochromocytomas, ALL clinically judged to be sporadically occurring, by direct DNA sequencing of exons 10, 11, and 16 of RET. This analysis revealed a de novo germline mutation of codon 634 in exon 11 in a patient with MTC. In addition, somatic mutations of codon 918 in exon 16 in six of the remaining MTC:s were found. Interestingly, the presence of this somatic mutation was associated with a significantly less favorable clinical outcome.

De-novo mutations of the RET proto-oncogene in Hirschsprung s disease.

Resected specimens of 288 primary stomach cancers (175 early cases and 113 advanced cases) and recurrent tumors or biopsy specimens of 21 recurrent or inoperable metastatic stomach cancers were examined immunohistochemically for expression of c-erbB-2 oncogene product. c-erbB-2 protein-positive staining was detected in 6.9, 15.9 and 28.6% of early, advanced and recurrent or inoperable metastatic stomach cancers, respectively, the difference being significant (p < 0.005). Four patients with advanced cancer showed positive staining in metastatic lymph nodes but not in the primary tumors. The results of tissue immunostaining were compared with c-erbB-2 protein levels in sera of the patients measured by an enzyme-linked immunosorbent assay. The levels of this oncogene product were consistently low in the sera of most of the patients with primary stomach cancers, regardless of whether or not c-erbB-2 protein was expressed in the tumor. However, in the recurrent or inoperable metastatic stomach cancers, 5 of 6 patients with c-erbB-2 protein-positive tumors showed elevated levels of c-erbB-2 protein in the serum. After following up c-erbB-2 protein levels in the sera of 3 patients during the period of chemotherapy against recurrent or inoperable metastatic disease, we found that the levels increased only in the late stage. These results suggest that, in stomach cancer, c-erbB-2 protein is likely to be excreted into the serum at a relatively late stage, reflecting systemic spread of the disease.

[Mutations of RET proto-oncogene in Hirschsprung disease].

Hirschsprung s disease (HSCR) is a common condition (1 in 5,000 live births) resulting in intestinal obstruction in neonates and megacolon in infants and adults. This disease has been ascribed to the absence of autonomic ganglion cells, which are derived from the neural crest, in the terminal hindgut. Segregation analyses have suggested incompletely penetrant dominant inheritance in familial HSCR. Recently, a gene for HSCR has been mapped to chromosome 10q11.2. No recombination was observed between the disease locus and the locus for the RET proto-oncogene, a protein tyrosine kinase gene expressed in the cells derived from the neural crest. Here we report on nonsense and missense mutations in the extracellular domain of the RET protein (exons 2, 3, 5 and 6) in 6 unrelated probands and show that the mutant genotypes segregate with the disease in HSCR families. mutations of RET have been previously reported in multiple endocrine neoplasia type 2A (MEN 2A). Thus, germ-line mutations of the RET gene may contribute either to developmental anomalies in HSCR or to inherited predisposition to cancer in MEN 2A.

DNA polymorphisms and conditions for SSCP analysis of the 20 exons of the ret proto-oncogene.

Recently identified mutations affecting different domains of the RET proto-oncogene are associated with Multiple Endocrine Neoplasia type 2A (MEN 2A) and type 2B (MEN 2B), familial and sporadic Medullary Thyroid Carcinomas (MTC) and Hirschsprung disease (HSCR). In order to facilitate the screening for RET mutations, and to study possible genotype-phenotype correlations, we established exon-intron junctions and extended the intronic sequences flanking the 20 exons of this gene. This made it possible to design primers and to develop PCR conditions useful for SSCP analysis of the whole RET coding sequence. Nine conformational variants were observed which after sequencing turned out to be 8 silent mutations and a conservative amino acid substitution. Restriction analysis performed on DNA samples from unrelated controls confirmed the polymorphic nature of six of these nucleotide changes and made it possible to estimate the frequency of the corresponding alleles.

Germ-line mutations of the RET proto-oncogene in multiple endocrine neoplasia type 2A.

Multiple endocrine neoplasia type 2A (MEN 2A) is a dominantly inherited cancer syndrome that affects tissues derived from neural ectoderm. It is characterized by medullary thyroid carcinoma (MTC) and phaeochromocytoma. The MEN2A gene has recently been localized by a combination of genetic and physical mapping techniques to a 480-kilobase region in chromosome 10q11.2 (refs 2,3). The DNA segment encompasses the RET proto-oncogene, a receptor tyrosine kinase gene expressed in MTC and phaeochromocytoma and at lower levels in normal human thyroid. This suggested RET as a candidate for the MEN2A gene. We have identified missense mutations of the RET proto-oncogene in 20 of 23 apparently distinct MEN 2A families, but not in 23 normal controls. Further, 19 of these 20 mutations affect the same conserved cysteine residue at the boundary of the RET extracellular and transmembrane domains.

Mutations in the RET proto-oncogene are associated with MEN 2A and FMTC.

Multiple endocrine neoplasia type 2A (MEN 2A) and familial medullary thyroid carcinoma (FMTC) are dominantly inherited conditions which predispose to the development of endocrine neoplasia. Evidence is presented that sequence changes within the coding region of the RET proto-oncogene, a putative transmembrane tyrosine kinase, may be responsible for the development of neoplasia in these inherited disorders. Single strand conformational variants (SSCVs) in exons 7 and 8 of the RET proto-oncogene were identified in eight MEN 2A and four FMTC families. The variants were observed only in the DNA of individuals who were either affected or who had inherited the MEN2A or FMTC allele as determined by haplotyping experiments. The seven variants identified were sequenced directly. ALL involved point mutations within codons specifying cysteine residues, resulting in nonconservative amino acid changes. Six of the seven mutations are located in exon 7. A single mutation was found in exon 8. Variants were not detected in four MEN 2B families studied for ALL exon assays available, nor were they detectable in 16 cases of well documented sporadic medullary thyroid carcinoma or pheochromocytoma that were tested for exon 7 variants. Coinheritance of the mutations with disease and the physical and genetic proximity of the RET proto-oncogene provide evidence that RET is responsible for at least two of the three inherited forms of MEN 2. Neither the normal function, nor the ligand of RET are yet known. However, its apparent involvement in the development of these inherited forms of neoplasia as well as in papillary thyroid carcinoma suggest an important developmental or cell regulatory role for the protein.

Point mutations affecting the tyrosine kinase domain of the RET proto-oncogene in Hirschsprung s disease.

Hirschsprung s disease is a genetic disorder of neural crest development affecting 1 in 5,000 births. It is characterized by the absence of intramural ganglion cells in the hindgut, which often results in partial to complete intestinal obstruction during the first years of life. An autosomal dominant gene causing this disease was recently mapped to chromosome 10q11.2 (refs 1,2), using an interstitial deletion of this region isolated in a cell hybrid. It was subsequently localized to a 250-kilobase interval which contains the RET proto-oncogene. Using flanking intronic sequences as primers to amplify 12 of the 20 exons of RET from genomic DNA of 27 Hirschsprung s disease patients, we have now identified four mutations (one frameshift and three missense) that totally disrupt or partially change the structure of the tyrosine kinase domain of the RET protein (Ret). mutations in the extracellular cysteine-rich domain of Ret have been identified previously in patients with multiple endocrine neoplasia type 2A, and a targeted mutation in the tyrosine kinase domain of the same gene produces intestinal aganglionosis and kidney agenesis in homozygous transgenic mice. Our results support the hypothesis that RET, in addition to its potential role in tumorigenesis, plays a critical role in the embryogenesis of the mammalian enteric nervous system.

Mutations of the RET proto-oncogene in Hirschsprung s disease.

Hirschsprung s disease (HSCR) is a common condition (1 in 5,000 live births) resulting in intestinal obstruction in neonates and megacolon in infants and adults. This disease has been ascribed to the absence of autonomic ganglion cells, which are derived from the neural crest, in the terminal hindgut. Segregation analyses have suggested incompletely penetrant dominant inheritance in familial HSCR. Recently, a gene for HSCR has been mapped to chromosome 10q11.2 (refs 6, 7). No recombination was observed between the disease locus and the locus for the RET proto-oncogene, a protein tyrosine kinase gene expressed in the cells derived from the neural crest. Here we report nonsense and missense mutations in the extracellular domain of RET protein (exons 2, 3, 5 and 6) in six unrelated probands and show that the mutant genotypes segregate with the disease in HSCR families. mutations of RET have been previously reported in multiple endocrine neoplasia type 2A (MEN 2A). Thus, germ-line mutations of the RET gene may contribute either to developmental anomalies in HSCR or to inherited predisposition to cancer in MEN 2A.

The oncogenic versions of the Ret and Trk tyrosine kinases bind Shc and Grb2 adaptor proteins.

Proto-TRK and proto-RET genes encode receptor type tyrosine kinases. Oncogenic rearrangements of both proto-oncogenes have been detected with a significant frequency in human papillary thyroid carcinomas. Chimeric Ret and Trk oncoproteins, encoded by different rearrangements of proto-TRK and proto-RET genes, display a constitutive phosphorylation on tyrosine. Moreover, it has been shown that phosphorylated tyrosine receptors, activated by their ligands, form multiprotein complexes responsible for transducing mitogenic or differentiation signals. We have therefore begun to analyse in this study the signal transduction pathways triggered by different Ret and Trk oncoproteins. We have shown that the SH2 domain of the adaptor protein Shc coimmunoprecipitates with ALL the Ret and Trk oncoproteins as well as with NGF-activated proto-Trk receptor. Tyrosine phosphorylation of Trk proteins both normal and oncogenic is necessary for their binding to Shc. In addition, in cells containing either Ret or Trk oncoproteins, Shc proteins are constitutively phosphorylated on tyrosine and bound to Grb2. Only in in vitro experiments were Ret and Trk oncoproteins shown to bind the SH2 region of Grb2. Finally, when proto-Trk product is stimulated by NGF, Shc phosphorylation and association with Grb2 are induced. In conclusion, we have shown that Ret and Trk oncoproteins can form multiprotein complexes, however, the functional meaning of the described interactions has to be elucidated.

Expression of the ret proto-oncogene product in human normal and neoplastic tissues of neural crest origin.

The histological localization of the ret proto-oncogene (proto-ret) product was examined in neural crest-derived and neuronal tissues together with their neoplastic counterparts by immunohistochemistry using a polyclonal antibody. Schwann cells, neurons, sympathetic ganglia, and cells of the adrenal medulla were positive for the proto-ret product, whereas melanocytes were negative. Positive results were obtained from neural crest-derived tumours such as schwannoma (69 per cent, 11/16), neurofibroma (59 per cent, 13/22), neuroblastoma (80 per cent, 4/5), phaeochromocytoma (100 per cent, 3/3) and medullary thyroid carcinoma (100 per cent, 3/3). The antibody reacted with ALL of the 22 astrocytomas examined. With negative proto-ret expression in melanocytic tumours, proto-ret expression was considered to correlate with the differentiation of some lineages of neural crest-derived cells.

A Drosophila homolog of human proto-oncogene ret transiently expressed in embryonic neuronal precursor cells including neuroblasts and CNS cells.

We have identified a Drosophila gene encoding a putative receptor tyrosine kinase by screening a genomic DNA library with a DNA probe for a Drosophila homolog of fibroblast growth factor receptors. The newly isolated gene codes for a transmembrane protein most similar in sequence to a mammalian proto-oncogene ret; thus, the gene was termed Dret. Dret mRNA is transcribed in very small amounts in the embryonic, larval, and pupal stages. Whole mount in situ hybridization experiments revealed that the mRNA is transiently expressed in neuroblasts in early embryos. In late embryos, Dret mRNA was detected in subpopulations of differentiating CNS and PNS cells. In addition, Dret expression was affected in neurogenic mutants. These results suggest that Dret can be considered as a functional homolog of mammalian ret and should play important roles in neurogenesis.

Molecular characterization of RET/PTC3; a novel rearranged version of the RETproto-oncogene in a human thyroid papillary carcinoma.

The RET proto-oncogene encodes a transmembrane receptor of the tyrosine kinase family and has frequently been found activated in human thyroid carcinomas of the papillary subtype. In most cases the activation consisted of the fusion of its tyrosine-kinase domain with the 5 -terminal region of a gene designated H4 or D10S170. We have named the resulting H4/RET chimeric oncogene RET/PTC. Another activated form of the RET oncogene has subsequently been found in a thyroid carcinoma and is now referred to as RET/PTC2. Here we report the identification and cloning of a novel rearranged version of the RET oncogene in a human thyroid papillary carcinoma. In this case the tyrosine-kinase domain of RET was fused to a sequence 790 bp long belonging to a new gene that we have named RFG (RET Fused Gene). This novel chimeric oncogene has been designated RET/PTC3. In order to have more insights into the function of RFG we have completely cloned and sequenced its cDNA. RFG predicted amino-acid sequence does not have any significant homology to any already known genes and is ubiquitously expressed in human and mouse tissues. Finally we provide evidence indicating that the rearrangement leading to the generation of RET/PTC3 occurred in vivo in the original tumor DNA.

Expression of the c-ret proto-oncogene during mouse embryogenesis.

The c-ret proto-oncogene encodes a receptor tyrosine kinase whose normal function has yet to be determined. To begin to investigate the potential role of this gene in vertebrate development, we have isolated cDNA clones representing the murine c-ret gene, and have analyzed the pattern of expression during mouse embryogenesis, using northern blotting, in situ hybridization to histological sections and whole-mount hybridization histochemistry. c-ret transcripts were detected beginning at day 8.5 of embryogenesis, and were observed in a number of cell lineages in the developing peripheral and central nervous systems, as well as in the excretory system. In the cranial region at day 8.5-9.5, c-ret mRNA was restricted to a population of neural crest cells migrating from rhombomere 4 and forming the anlage of the facioacoustic ganglion, as well as to a closely associated domain of surface ectoderm and pharyngeal endoderm. At later stages (10.5-14.5 days), c-ret mRNA was observed in ALL cranial ganglia. In the peripheral nervous system of the trunk, c-ret was expressed in the autonomic ganglia and in subsets of cells in the dorsal root ganglia. In the enteric nervous system, c-ret was expressed in the presumptive enteric neuroblasts of the vagal crest (day 9.0-11.5), and in the myenteric ganglia of the gut (day 13.5-14.5). c-ret mRNA was observed in several regions of the central nervous system, including the undifferentiated neuroepithelial cells of the ventral neural tube (8.5 days), the motor neurons in the spinal cord and the hindbrain (10.5-14.5 days), the embryonic neuroretina (day 13.5) and the layers of the postnatal retina containing ganglion, amacrine and horizontal cells. Outside the nervous system, c-ret was expressed in the nephric (Wolffian) duct at day 8.5-10.5, the ureteric bud epithelium (but not the surrounding metanephric mesenchyme) at day 11.0-11.5, and the growing tips of the renal collecting ducts (but not the previously formed, subcortical portions of the collecting ducts, or the mesenchyme-derived renal vesicles) at day 13.5-17.5. Our results suggest that the c-ret gene may encode the receptor for a factor involved in the proliferation, migration, differentiation or survival of a variety of neuronal cell lineages, as well as in inductive interactions during organogenesis of the kidney.

In vitro irradiation is able to cause RET oncogene rearrangement.

Elevated risk of thyroid cancers among the atomic bomb survivors as compared to the nonexposed population suggests that some genetic events related to thyroid cancer must be caused by ionizing radiation. Accordingly, inducibility of RET oncogene rearrangements, i.e., the generation of the RET-PTC oncogene, specific for thyroid cancer, was investigated among human undifferentiated thyroid carcinoma cells (8505C), which do not have RET oncogene rearrangement, after 0, 10, 50, and 100 Gy of in vitro X-irradiation by means of reverse transcription polymerase chain reaction. After testing 10(8) cells at each dose point, 3 independent samples obtained with 50 Gy of X-irradiation and 6 independent samples obtained with 100 Gy of X-irradiation showed a rearranged RET oncogene amplified band. No rearranged transcripts were obtained from cells irradiated with 0 or 10 Gy. ALL of the transcripts were sequenced and found to contain the D10S170 and RET sequence. Interestingly, two types of rearrangements were included in these transcripts: one is specific for thyroid cancer and the other, which contains a 150-base pair insert, is atypical, not usually seen in vivo. This insert was found to be the exon of D10S170. Furthermore, in fibrosarcoma cells (HT1080), X-irradiation also induced RET oncogene rearrangements, which included the same two types of rearrangements observed in the X-irradiated thyroid cells (8505C). These results are in favor of the hypothesis that some radiation-induced thyroid cancers, including those among atomic bomb survivors, might have developed when a growth advantage was obtained through a specific form of RET oncogene rearrangement induced by radiation exposure.

Involvement of RET oncogene in human tumours: specificity of RET activation to thyroid tumours.

Non-thyroid neoplasia were analysed by Southern blot of genomic DNA and DNA prepared by reverse transcription and amplification by polymerase chain reaction (RT/PCR) for the activation of the RET oncogene. It is known that the rearrangement of RET occurs in about 10%-20% of human thyroid papillary carcinomas. None of 528 non-thyroid tumours showed rearrangement of the RET proto-oncogene, whereas three out of 30 thyroid papillary carcinomas were positive for RET activation. Therefore the activation of RET seems to be a somatic cell mutation specific to human thyroid carcinomas.

Structural analysis of the human ret proto-oncogene using exon trapping.

A genomic contig of the human ret protooncogene was created with four overlapping cosmid clones isolated from two libraries. After southern analysis with portions of the ret cDNA, eight cosmid fragments were analysed in detail for the presence of ret exons using exon trapping. PCR products corresponding to spliced exons were isolated and subcloned. Exon boundaries were delineated by comparison of the PCR product sequence and the published ret cDNA sequence. The exons were initially positioned on a genomic map defined by BamHI, EcoRI and HindIII restriction sites. The positions of the exons were then refined by amplifying genomic DNA using primer pairs derived from one or more exons along the ret gene, the length of the PCR product indicating the approximate genomic distance between the exon sequences. The ret proto-oncogene is composed of at least 20 exons, ranging in size from 60 bp to 287 bp, distributed along 30 kb of genomic DNA. The extracellular domain is encoded by 10 exons and the cytoplasmic domain by 9 exons. The transmembrane domain is encoded by a single exon.

Motifs of cadherin- and fibronectin type III-related sequences and evolution of the receptor-type-protein tyrosine kinases: sequence similarity between proto-oncogene ret and cadherin family.

Immunoglobulin (Ig)-, fibronectin type III (FN-III)-, and cadherin-related sequences are often found in multiple repeats in the extracellular regions of various cell adhesion molecules. The amino acid sequences of 82 different cadherin-like repeats from 13 known members of the cadherin superfamily were compared for six highly conserved regions, and a frequency matrix represented as amino acids versus position matrix was calculated based on the alignment. With the frequency matrix, further members of the cadherin superfamily were searched for in the protein data base. It was found that the ret protein, a receptor-type-protein tyrosine kinase, contains cadherin-like repeats in the extracellular region. A similar analysis was also carried out for the FN-III superfamily. Nine receptor-type-protein tyrosine kinases were shown to exhibit significant similarities, in terms of sequence, with known FN-III-like repeats. Several receptor-type-protein tyrosine kinases have already been reported to have Ig-like repeats in their extracellular regions. Thus these receptor-type-protein tyrosine kinases--together with the remaining receptors, whose structures are not yet characterized--may be classified into at least four distinct groups based on the structural differences in the extracellular domains. A molecular phylogenetic tree inferred from the shared kinase domains of these receptor-type-protein tyrosine kinases revealed a close relationship between the branching patterns and the grouping based on the structural differences of the extracellular region.

Characterization of the ret proto-oncogene products expressed in mouse L cells.

The ret proto-oncogene (proto-ret) encodes a receptor type tyrosine kinase with a cadherin-related sequence in the extracellular domain. To investigate whether the proto-Ret protein functions as a cell adhesion molecule like cadherins, we transfected the human proto-ret gene fused to the SV40 promoter or cytomegalovirus (CMV) promoter into mouse L cells in which cadherins are not expressed. Three transfectants with high levels of expression of the proto-Ret proteins were obtained. The proto-Ret proteins were expressed as 150 kDa and 170 kDa glycoproteins in transfectants as observed in human neuroblastoma cells. Cell fractionation experiments revealed that the 170 kDa protein but not the 150 kDa protein was detected predominantly in the plasma membrane fraction, indicating that the 170 kDa protein represents the mature glycosylated form of the proto-Ret protein present on the cell surface. Both 150 kDa and 170 kDa proto-Ret proteins showed tyrosine kinase activity in immunocomplex kinase assay. It is known that cadherins have Ca(2+)-dependent homophilic binding activity and are resistant to trypsinization in the presence of Ca2+. When L cells expressing the proto-Ret proteins were treated with trypsin in the presence of Ca2+, the 170 kDa protein was resistant to its digestion. On the other hand, it was completely digested in the presence of EGTA, suggesting the possibility that the proto-Ret protein interacts with Ca2+ like cadherins. However, the transfectants did not show clear adhesive properties in cell aggregation assays.

cDNA cloning of mouse ret proto-oncogene and its sequence similarity to the cadherin superfamily.

We report the nucleotide sequence of the mouse ret proto-oncogene (proto-ret) and the deduced amino acid sequence. It encodes a transmembrane tyrosine kinase of 1115 amino acids that shows 83% homology with the human proto-Ret protein. The amino acid sequence revealed that the structures of the extracellular domain as well as the tyrosine kinase domain are similar in human and mouse proto-Ret proteins. Interestingly, the extracellular domains of both human and mouse proto-Ret proteins contain a cadherin-related sequence that is known to be important for Ca(2+)-dependent homophilic binding of the cadherins. When we examined transcription of the proto-ret gene in a variety of mouse tissues, it was detected in lymph nodes of C3H/HeJ-gld/gld mice and in normal mouse spinal cord. Furthermore, its transcription was found in the Neuro-2a mouse neuroblastoma cell line but not in 13 other rodent cell lines surveyed. Western blot analysis showed that proto-Ret proteins are expressed as 140-kDa and 160-kDa glycoproteins in Neuro-2a cells.

Mutations in the cysteine-rich region of the RET proto-oncogene in patients diagnosed as having sporadic medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) and pheochromocytoma appear in either a sporadic or a hereditary form as components of multiple endocrine neoplasia (MEN). Many germline mutations of the RET proto-oncogene have been reported in patients with MEN 2A and 2B, and familial MTC (FMTC). To elucidate the etiological roles in tumorigenesis of sporadic MTCs and pheochromocytomas, mutations in the cysteine-rich region of the RET proto-oncogene were analyzed by using polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analysis. Exons 10 and 11 were studied in genomic DNAs from 3 clinically apparent sporadic MTCs, MTCs and pheochromocytomas from 2 patients with MEN 2A, 1 with FMTC, 4 with MEN 2B, 3 with neurofibromatosis type 1 (NF1), 12 sporadic pheochromocytomas and an MTC cell line, TT. ALL tumors from two patients with MEN 2A and one patient with FMTC had mutations at codon 618 and 634 as well as their leukocytes, reflecting their germline mutations. In this region, no mutations were detected in any tumors from patients with MEN 2B and NF1, and sporadic pheochromocytomas. But mutations were detected and identified in 3 clinically apparent sporadic MTCs and TT cells. A 6 base pair (bp) deletion causing the loss of a cysteine residue at codon 634 and a mutation causing substitution from cysteine to tyrosine at codon 634 were detected in 2 sporadic MTCs as somatic events. In a female patient diagnosed as having sporadic MTC, a mutation at codon 618 was detected not only in tumor tissues, but also in her leukocytes, suggesting a germline mutation of the RET proto-oncogene.(ABSTRACT TRUNCATED AT 250 WORDS)FAU - Kimura, T

Mutations of the RET proto-oncogene in multiple endocrine neoplasia type 2A (Sipple s syndrome).

Genetic linkage analyses have traced the loci for multiple endocrine neoplasia type 2A (MEN 2A) to an interval on chromosome 10q11.2. This region encompasses the RET proto-oncogene, a receptor tyrosine kinase gene expressed in medullary thyroid carcinoma (MTC) and pheochromocytoma. By means of genomic polymerase chain reaction (PCR) amplification and DNA sequencing, we have analysed 19 individuals from two Japanese MEN 2A families for mutations of the RET proto-oncogene in exons 10 and 11. We conducted single-strand conformational polymorphism (SSCP) analysis of the RET proto-oncogene amplified from affected and unaffected family members. The DNA alterations in the RET proto-oncogene caused substitution of a cysteine for a serine at codon 620 in the exon 10 in three patients in one MEN 2A family, 1, and of a cysteine for a tyrosine at codon 634 in the exon 11 in six patients in the MEN 2A family, 2. We could find two asymptomatic MEN2A gene carriers who had no symptoms or signs of MEN 2A by DNA analysis of the RET proto-oncogene. No mutations in these exons were detected in any unaffected normal members of MEN 2A. A DNA alteration in the RET proto-oncogene coding sequence in exon 10 caused a shift on SSCP gels that was characteristic of the disease chromosome in the MEN 2A family, present only in affected members of the family. The DNA change could also be detected by restriction enzyme digestion with RsaI in family 2. Two MEN 2A patients with a cysteine for a tyrosine substitution at codon 634 in the exon 11 had parathyroid hyperplasia. We conclude that the identification of a DNA alteration in the MEN2A gene will permit predictive molecular testing of individuals at risk in these MEN 2A families and the PCR-restriction enzyme system will be useful for genetic diagnosis of members of these MEN 2A families. This information, by providing diagnostic certainty, should improve medical care for affected family members.

Mutation analysis of the RET proto-oncogene in Dutch families with MEN 2A, MEN 2B and FMTC: two novel mutations and one de novo mutation for MEN 2A.

Hereditary C-cell carcinoma is encountered in multiple endocrine neoplasia type 2A (MEN 2A), MEN 2B, and familial medullary thyroid carcinoma (FMTC). mutations of the RET proto-oncogene are associated with ALL three diseases. To obtain an insight into the molecular heterogeneity of MEN 2 syndromes and FMTC in the Netherlands, probands of 20 MEN 2A families, two FMTC families, and seven MEN 2B families were analyzed by the polymerase chain reaction (PCR), DNA sequencing, and restriction enzyme digestion for abnormalities in the RET proto-oncogene. RET mutations were found in ALL cases. ALL MEN 2A families had a mutation involving one of five cysteine codons in exons 10 and 11 of RET. Two novel dinucleotide mutations and a de novo mutation were found. Both FMTC families had a mutation of the Cys at codon 618. ALL MEN 2B probands carried a Met to Thr mutation in exon 16. ALL mutations could be confirmed by restriction enzyme digestion of PCR amplicons. Identification of the RET mutation in the Dutch population with hereditary C-cell carcinoma facilitates genetic testing for families or individuals at risk for MEN 2A, FMTC, and MEN 2B.

Expression of the RET oncogene induces differentiation of SK-N-BE neuroblastoma cells.

expression of the RET proto-oncogene, a cell surface receptor for an as yet unknown ligand, is associated with tumors, tissues, and cell lines of neural crest origin. Accumulating evidence suggests that RET activity is involved in the process of neuronal differentiation. Moreover, induction of phenotypic differentiation of neuroblastoma cell lines is associated with the rapid accumulation of RET transcripts. To verify the role of RET in neuronal differentiation, we introduced into the human neuroblastoma cell line SK-N-BE four versions of the RET oncogene, activated by different mechanisms: RET/PTC1 and RET/PTC3, which are activated by rearrangement with heterologous genes; and two activated RET mutants, which carry the single amino acid substitution found associated to the inheritance of the multiple endocrine neoplasia type 2A (retMEN2A allele) and type2B (retMEN2B allele), respectively. We demonstrate that, after transfection with the RET oncogenes, SK-N-BE cells display a reduced growth rate and acquire a neurite-bearing phenotype accompanied by enhanced expression of the axonal growth-associated protein, GAP-43, and the high molecular weight neurofilament, NF200. These results indicate that, when activated, RET is able to cause growth inhibition and to promote neuronal differentiation of neuroblastoma cells.

Oncogenic activation of the ret protooncogene in thyroid cancer.

Recent studies have established that the ret protooncogene is involved in the development of thyroid tumors, including medullary and papillary thyroid carcinomas. Germ line mutations of the ret protooncogene were identified in multiple endocrine neoplasia (MEN) types 2A and 2B that share the clinical feature of medullary thyroid carcinoma and pheochromocytoma. MEN 2A mutations involved cysteine residues in the extracellular domain and induced disulfide-linked homodimerization of the Ret protein on the cell surface, leading to activation of its intrinsic tyrosine kinase. On the other hand, a single point mutation in the tyrosine kinase domain was found in MEN 2B, as well as in 30 to 40% of sporadic medullary carcinoma. This mutation also resulted in activation of Ret tyrosine kinase without the formation of its covalent homodimerization. Differences in the mechanisms of ret activation might account for the different phenotypes observed in MEN 2A and MEN 2B. In addition, somatic rearrangement of the ret protooncogene was frequently detected in papillary thyroid carcinoma, particularly from adult Europeans. A recent report demonstrated that the same rearrangement was observed in approximately 60% of papillary carcinomas of children from areas contaminated by the Chernobyl accident, suggesting that ret rearrangement was induced as a direct consequence of radiation exposure. In this review, I focus on the ret mutations detected in thyroid cancer and discuss the mechanisms of its oncogenic activation.

Putting the bits and pieces of the RET proto-oncogene puzzle together.

The RET proto-oncogene has been implicated in the causation of papillary thyroid carcinoma, multiple endocrine neoplasia types 2A (MEN 2A) and 2B (MEN 2B), and Hirschsprung s disease. The mutations in these syndromes can be categorized into activating or inactivating mutations. Activating mutations of a cysteine-rich extracellular region cause enhanced dimerization of the RET tyrosine kinase receptor and autophosphorylation, and are causative for MEN 2A and familial medullary thyroid carcinoma (FMTC). An activating mutation of the tyrosine kinase domain causes increased autophosphorylation but does not affect the state of dimerization. A variety of inactivating mutations of the RET proto-oncogene, which result in defective protein formation, are causative for Hirschsprung s disease.

[The direct gene test in familial medullary thyroid gland carcinoma and in MEN syndromes. Detection of mutations in the ret proto-oncogene saves screening studies].

Multiple endocrine neoplasias, type 2A and type 2B (MEN2A, MEN2B), and familial medullary thyroid carcinoma (FMTC) have an autosomal dominant mode of inheritance. The risk of passing on the disease is almost 50%. Early diagnosis and surgical intervention largely prevents aggressive metastasis of thyroid carcinoma, the main cause of death. The diagnostic possibilities have been much improved by the implementation of direct gene testing. Exclusion of the inheritance of a parental mutation in the RET proto-oncogene removes the potential risk of progeny contracting the disease, and obviates the need for the usual annual screening from age 5 years onward. In many of those cases in whom a mutation is detected, prophylactic surgical intervention should be considered.

Rudolf-Virchow-Preis 1995. The role of RET proto-oncogene mutation analysis in the diagnosis of multiple endocrine neoplasia type 2 (MEN 2) gene carriers and in the discrimination of sporadic and familial medullary thyroid carcinomas and pheochromocytomas.

The RET proto-oncogene codes for a receptor-type tyrosine-kinase with to date unknown ligand. Recently, germline point-mutations in RET cysteine codons of the extracellular cysteine-rich domain (encoded by exons 10 and 11) and in the tyrosine-kinase domain (encoded by exon 16) at codon 918, have been associated with the syndromes of multiple endocrine neoplasia (MEN) type 2A, MEN type 2B and familial medullary thyroid carcinoma (FMTC). In our recent studies we have analyzed tumor and germline DNA extracted from formalin-fixed and paraffin-embedded specimens of 45 patients and additional blood samples of 38 possible MEN 2 gene carriers for the presence of RET point mutations in exons 10 and 11 by non-radioactive single strand conformation polymorphism analysis (PCR-SSCP) and for exon 16 by heteroduplex gel electrophoresis. mutational analysis was performed by fluorescence-based dideoxy terminator cycle sequencing of PCR-products with an automated DNA sequencer. Materials included 19 patients with MEN 2A associated tumors (13 medullary thyroid carcinomas, 6 pheochromocytomas), 3 patients with MEN 2B associated medullary thyroid carcinomas and 23 patients with clinically sporadic tumors (16 medullary thyroid carcinomas, 7 phenochromocytomas). In ALL 19 MEN 2A patients we found RET germline point-mutations either at cysteine codons 634 (14), 630 (1) in exon 11 or at codon 618 (4) in exon 10. ALL 3 MEN 2B patients demonstrated germline point mutations at codon 918 (Met-->Thr) in exon 16. In 2 patients with clinically sporadic medullary thyroid carcinomas we found a point mutation at codon 634 both in DNA of the tumor and normal tissue, indicating the presence of a de novo germline mutation. In 5 sporadic medullary thyroid carcinomas and 2 pheochromocytomas we found a somatic point mutations were identified in 11 patients. Our results indicate that mutational analysis of the RET proto-oncogene is not only suitable to identify and subtype MEN 2 gene carriers using blood DNA but also to distinguish sporadic from inherited medullary thyroid carcinomas and phenochromocytomas analyzing DNA extracted from archival tissue specimens.

RET oncogene puzzle in Chernobyl thyroid tumours.

In mice, expression of the transcription factor Oct-3 and the proto-oncogene c-mos is limited to germ cells, suggesting a specific role for these factors in gamete physiology and early embryonic development. We have studied the expression pattern of Oct-3 and c-mos in various reproductive as well as control tissues in the cynomolgus monkey, using reverse transcriptase polymerase chain reaction (RT-PCR) and Northern analysis. Analogously with the data from the mouse model, strong expression of Oct-3 and c-mos could be detected in monkey ovary and oocytes. Unexpectedly, strong expression of c-mos was demonstrable in the pituitary gland and the amount of mRNA expression in the pituitary was roughly equal to that found in the ovary. Of the tissues examined, the testicular expression of c-mos was the most intense. Weak signal for c-mos mRNA was also seen in hypothalamus and brain; however, ALL other tissue types examined were negative for c-mos expression. In addition to the oocytes, expression of Oct-3 mRNA was detected in the ovarian granulosa cells, fallopian tube, myometrium, cervix, breast, liver, adrenal gland, pituitary, hypothalamus, brain cortex, prostate, and in testis. Thus, in the cynomolgus monkey, Oct-3 is predominantly, but not specifically, expressed in reproductive tissues. In the female monkey reproductive organs, the expression of c-mos seems to be germ cell specific. Therefore, further characterization of c-mos and Oct-3 functions in primate reproductive physiology, especially in gametogenesis and early embryonic development, is highly warranted.

Obvious mRNA and protein expression but absence of mutations of the RET proto-oncogene in parathyroid tumors.

The study on the expression of the RET proto-oncogene in parathyroid tumors disclosed obvious mRNA expression by the reverse transcription (RT)-polymerase chain reaction (PCR) method and protein expression by Western blotting. To find out whether mutations in the cysteine-rich regions or tyrosine kinase domain of the RET proto-oncogene are etiological for parathyroid tumorigenesis, sporadic parathyroid adenomas and carcinomas, parathyroid tumors from multiple endocrine neoplasia 1, familial isolated hyperparathyroidism or hereditary hyperparathyroidism-jaw tumor syndrome were screened by PCR-single strand conformation polymorphism and PCR restriction fragment length polymorphism. Missense mutations in the cysteine-rich region, or codons 768 or 918 in the tyrosine kinase domain of the RET proto-oncogene, were not detected in any of the examined cases of parathyroid tumors. These results suggest that mutations of the RET proto-oncogene do not represent a frequent mechanism of tumorigenesis for parathyroid tumors.

Heterogeneous mutation of the RET proto-oncogene in subpopulations of medullary thyroid carcinoma.

mutations in the RET proto-oncogene are associated with the pathogenesis of medullary thyroid carcinoma (MTC). In an attempt to understand this process, we examined microdissected subpopulations from MTC and multiple metastases from these tumors. Approximately 80% of sporadic MTC s had at least one subpopulation with the RET codon 918 mutation, which is a mutation previously detected in sporadic MTC as a somatic mutation and in multiple endocrine neoplasia type 2B as a germline mutation. However, the distribution of this mutation was nonhomogeneous, occurring only in subpopulations in most tumors and among subsets of multiple metastases, thus implying that although the codon 918 mutation could be an early event, it is not necessarily an early or essential event in tumorigenesis. This heterogeneity suggests either that the codon 918 mutation can arise as an event in progression within a metastatic clone or within a single tumor, or that MTC can be of polyclonal origin. Of significance, one of two multiple endocrine neoplasia type 2A MTCs carried a somatic mutation at codon 918, in addition to the RET mutation present in the germline. We found no correlation between the presence of other somatic genetic events, such as loss of heterozygosity on chromosome arms 1p and 22q, and RET mutation status in the various subpopulations of MTC.

Oncogenic RET receptors display different autophosphorylation sites and substrate binding specificities.

The c-ret proto-oncogene encodes a receptor tyrosine kinase which plays an important role in neural crest as well as kidney development. Genetic studies have demonstrated that germ line mutations in the ret oncogene are the direct cause of multiple endocrine neoplasia (MEN) 2A and 2B, familial medullary thyroid carcinoma (FMTC), and Hirschsprung s disease. However, despite the large body of genetic and biological evidence suggesting the importance of RET in development and neoplastic processes, the signal transduction mechanisms of RET remain unknown. To begin to understand the molecular mechanisms of the disease states caused by mutations in RET, the patterns of autophosphorylation of the wild-type RET and the MEN mutants were studied using site-directed mutagenesis and phosphopeptide mapping. Among the 6 autophosphorylation sites found in the wild-type RET receptor, the MEN2B mutant lacked phosphorylation at Tyr-1096, leading to decreased Grb2 binding, while simultaneously creating a new phosphorylation site. These changes in autophosphorylation suggest that the MEN2B mutation may result in the more aggressive MEN2B phenotype by altering the receptor s signaling capabilities.

Development of thyroid papillary carcinomas secondary to tissue-specific expression of the RET/PTC1 oncogene in transgenic mice.

Gene rearrangements activating the RET proto-oncogene are frequently associated with human thyroid carcinomas belonging to the papillary subtype. These arrangements cause the fusion of the tyrosine-kinase domain of RET to the 5 -terminal region of different genes creating the RET/PTC chimeric oncogenes. Here we report the generation of transgenic mice lines expressing the RET/PTC1 oncogene under the control of the thyroid-specific rat thyroglobulin promoter. RET/PTC1-transgenic mice developed thyroid tumors displaying the histological aspect of papillary carcinomas. These tumors were slowly progressive and did not cause premature death of the animals. Two additional mice developed areas of thyroid hyperplasia. Immunohistochemical and reverse-transcriptase polymerase chain reaction analyses confirmed the thyroid-specific expression of the transgene. Given the frequency of activating rearrangements of RET in human papillary thyroid carcinomas we conclude that this animal system could be a good model for studying the neoplastic progression of thyroid carcinomas.

The full oncogenic activity of Ret/ptc2 depends on tyrosine 539, a docking site for phospholipase Cgamma.

RET/PTC oncogenes, generated by chromosomal rearrangements in papillary thyroid carcinomas, are constitutively activated versions of proto-RET, a gene coding for a receptor-type tyrosine kinase (TK) whose ligand is still unknown. RET/PTCs encode fusion proteins in which proto-RET TK and C-terminal domains are fused to different donor genes. The respective Ret/ptc oncoproteins display constitutive TK activity and tyrosine phosphorylation. We found that Ret/ptcs associate with and phosphorylate the SH2-containing transducer phospholipase Cgamma (PLCgamma). Two putative PLCgamma docking sites, Tyr-505 and Tyr-539, have been identified on Ret/ptc2 by competition experiments using phosphorylated peptides modelled on Ret sequence. Transfection experiments and biochemical analysis using Tyr-->Phe mutants of Ret/ptc2 allowed us to rule out Tyr-505 and to identify Tyr-539 as a functional PLCgamma docking site in vivo. Moreover, kinetic measurements showed that Tyr-539 is able to mediate high-affinity interaction with PLCgamma. mutation of Tyr-539 resulted in a drastically reduced oncogenic activity of Ret/ptc2 on NIH 3T3 cells (75 to 90% reduction) both in vitro and in vivo, which correlates with impaired ability of Ret/ptc2 to activate PLCgamma. In conclusion, this paper demonstrates that Tyr-539 of Ret/ptc2 (Tyr-761 on the proto-RET product) is an essential docking site for the full transforming potential of the oncogene. In addition, the present data identify PLCgamma as a downstream effector of Ret/ptcs and suggest that this transducing molecule could play a crucial role in neoplastic signalling triggered by Ret/ptc oncoproteins.

A novel somatic point mutation of the RET Proto-oncogene in tumor tissues of small cell lung cancer patients.

We examined whether the novel point mutation from GCC (Ala) to GAC (Asp) at codon 664 in exon 11 of RET proto-oncogene, which we had found in two small cell lung carcinoma (SCLC) cell lines, existed in genomic DNA of tumor tissues of the two SCLC patients from whom these SCLC cell lines were derived. Sequence analysis revealed that point mutation identical to that of the SCLC cell lines was present in amplified alleles of single-strand conformational variants in genomic DNA of the tumor tissues, whereas it was not detected in genomic DNA of non-tumor tissues of the patients. These results indicate that this mutation had initially occurred in the SCLC patients and was of somatic origin.

Identification of tyrosine residues that are essential for transforming activity of the ret proto-oncogene with MEN2A or MEN2B mutation.

The c-ret proto-oncogene with multiple endocrine neoplasia (MEN) 2A or 2B mutation can transform NIH3T3 cells with high efficiencies as a consequence of its constitutive activation. The MEN2A mutation induces ligand-independent homodimerization of the Ret protein on the cell surface while the MEN2B mutation appears to alter the catalytic activity without dimerization. In the present study, we investigated the role of tyrosine residues present in the kinase domain for the transforming activity of the mutant Ret proteins. Substitution of phenylalanine for tyrosine 905 (Y905F) that corresponds to tyrosine 416 of the Src protein abolished the transforming activity of Ret with the MEN2A mutation (MEN2A-Ret) but not with the MEN2B mutation (MEN2B-Ret). On the other hand, the transforming activity of MEN2B-Ret but not MEN2A-Ret significantly decreased by changing tyrosine 864 or 952 to phenylalanine. In addition, double mutations of these tyrosines (Y864/952F) completely abolished the activity of MEN2B-Ret. The Y905F and Y864/952F mutations resulted in severe impairment of the kinase activity of MEN2A-Ret and MEN2B-Ret, respectively. These results thus indicated that tyrosine residues essential for the transforming activity are different between MEN2A-Ret and MEN2B-Ret.

Functional receptor for GDNF encoded by the c-ret proto-oncogene.

Glial-cell-line-derived neutrophic factor (GDNF) promotes the survival and phenotype of central dopaminergic noradrenergic and motor neurons, as well as various subpopulations of peripheral sensory and sympathetic neurons. GDNF is structurally related to members of the transforming growth factor (TGF)-beta superfamily, several members of which have well-characterized receptor systems; however, GDNF receptors still remain undefined. Here we show that GDNF binds to, and induces tyrosine phosphorylation of, the product of the c-ret proto-oncogene, an orphan receptor tyrosine kinase, in a GDNF-responsive motor-neuron cell line. Ret protein could also bind GDNF and mediate survival and growth responses to GDNF upon transfection into naive fibroblasts. Moreover, high levels of c-ret mRNA expression were found in dopaminergic neurons of the adult substantia nigra, where exogenous GDNF protected Ret-positive neurons from 6-hydroxydopamine-induced cell death. Thus the product of the c-ret proto-oncogene encodes a functional receptor for GDNF that may mediate its neurotrophic effects on motor and dopaminergic neurons.

A mutation in the RET proto-oncogene in Hirschsprung s disease affects the tyrosine kinase activity associated with multiple endocrine neoplasia type 2A and 2B.

We demonstrate that a Hirschsprung (HSCR) mutation in the tyrosine kinase domain of the RET proto-oncogene abolishes in cis the tyrosine-phosphorylation associated with the activating mutation in multiple endocrine neoplasia type 2A (MEN2A) in transiently transfected Cos cells. Yet the double mutant RET2AHS retains the ability to form stable dimers, thus dissociating the dimerization from the phosphorylation potential. Co-transfection experiments with single and double mutants carrying plasmids RET2A and RET2AHS in different ratios drastically reduced the phosphorylation levels of the RET2A protein, suggesting a dominant-negative effect of the HSCR mutation. Also, the phosphorylation associated with the multiple endocrine neoplasia type 2B (MEN2B) allele was affected in experiments with single and double mutants carrying plasmids co-transfected under the same conditions. Finally, analysis of the enzymic activity of MEN2A and MEN2B tumours confirmed the relative levels of tyrosine phosphorylation observed in Cos cells, indicating that this condition, in vivo, may account for the RET transforming potential.

Role of the RET proto-oncogene in sporadic hyperparathyroidism and in hyperparathyroidism of multiple endocrine neoplasia type 2.

Parathyroid tumors occur either sporadically or as part of inherited syndromes such as multiple endocrine neoplasia (MEN) types 2A and 2B. The development of both of these familial syndromes has been related to specific germline gain-of-function mutations predominantly in exons 10 and 11 (MEN 2A) and 16 (MEN 2B) of the RET proto-oncogene. The same mutations have also been implicated in the pathogenesis of sporadic medullary thyroid carcinoma and sporadic pheochromocytoma. The RET mutations are thought to have a transforming effect only in cells of neural crest origin such as thyroid parafollicular (C-cells) and adrenal chromaffin cells, which normally express the RET proto-oncogene. expression of RET messenger RNA has not yet been studied in the parathyroid, however, we demonstrate in this study by a sensitive, semiquantitative RT-PCR technique and in situ hybridization, that RET is expressed in MEN 2A parathyroid tumors and in sporadic adenomas. Although DNA from a parathyroid tumor of a MEN 2A patient displayed an expected mutation, none of the previously described MEN 2A or 2B mutations were found in DNA of 34 sporadic adenomas. Our data suggest that parathyroid disease is an integral part of the MEN 2A syndrome, but that MEN 2 mutations in RET rarely play a part in the pathogenesis of sporadic parathyroid tumors.

C618R mutation in exon 10 of the RET proto-oncogene in a kindred with multiple endocrine neoplasia type 2A and Hirschsprung s disease.

The cosegregation of multiple endocrine neoplasia (MEN) type 2A with Hirschsprung s disease (HSCR), two diseases associated with mutation of the RET proto-oncogene, is infrequent. A 30-yr-old man was referred for screening of MEN 2A. Surgery for HSCR was performed at 4 yr of age. Basal and pentagastrin-stimulated calcitonin levels were abnormal. Histological examination of the thyroid confirmed bilateral medullary thyroid carcinoma. Screening of family members revealed six subjects with medullary thyroid carcinoma or abnormal pentagastrin-stimulated calcitonin test; one had an unilateral pheochromocytoma and two were affected with HSCR. DNA sequence analysis showed a heterozygote C618R mutation in exon 10 of the RET proto-oncogene in the proband and his mother, as well as in second-degree relatives with MEN 2A phenotype or HSCR. In this study, we report on a novel kindred with MEN 2A and HSCR phenotype associated with a point mutation (C618R) in one of the cysteine codons at the extracellular domain of the RET proto-oncogene.

[Endocrine surgery. Series 6: Alteration of RET proto-oncogene and clinical implication in medullary thyroid carcinoma. Genetic screening of family members at risk for inherited medullary thyroid carcinoma].

Infection with different types of human papillomavirus (HPV) is associated with neoplasia at different anatomic sites. The "low-risk" HPVs (LR-HPV) are responsible for benign genital lesions such as condyloma acuminata. In order to clarify the tumorigenic mechanism of LR-HPV, the HPV infection status was investigated and the expression of the c-jun proto-oncogene in different HPV-related skin and genital lesions analyzed. Of the 17 condyloma specimens analyzed by Western blotting, 13 cases (76.5%) exhibited overexpression of the c-jun gene. ALL 13 cases harbored high copy numbers of the LR-HPV genome with an average of 926 copies per cell, whereas the other four cases had an average of 12 copies of LR-HPV per cell (P < 0.001). Further typing of HPV by Southern blotting revealed that HPV-6 and HPV-11 infections predominated in c-jun positive cases. The c-jun protein was detected much less frequently in cervical cancers (three of 29, or 10.3%) and skin warts (one of 10), and was not detected in five genital polyps or in five normal cervical tissues. These findings suggest a type 6/11-specific induction of c-jun gene expression in HPV-related neoplastic lesions.

Mutations of the RET proto-oncogene in multiple endocrine neoplasia type 2.

The effects of 2 ,5 -oligoadenilates (2,5A) on the survival of Wistar rats inoculated with Svec leukemia cells and the proliferation of tumoral cells were investigated. An agreement between the expression of c-myc protooncogene and inhibition of leukemic cell proliferation by 2,5A was found.

Somatic mutations in the RET proto-oncogene in sporadic medullary thyroid carcinoma.

OBJECTIVE: We have determined the frequency of specific mutations in the RET proto-oncogene in sporadic medullary thyroid carcinomas (MTCs) and correlated the presence or absence of a codon 918 mutation with the clinical characteristics of these tumours. DESIGN: Thirty paraffin-embedded sporadic MTCs and two frozen MTCs were collected for analysis of specific mutations in the RET proto-oncogene in codons 609, 611, 618 and 620 (exon 10); 630 and 634 (exon 11); 768 (exon 13); 883 (exon 15) and 918 (exon 16). A novel primer was designed which introduced a restriction site for Rsal in the presence of the specific codon 918 mutation (ATG-->ACG) in these tumour samples. A clinical-genetic correlation was performed comparing the presence of absence of the codon 918 mutation with the following clinical characteristics: age at diagnosis, tumour size, presence or absence of metastases, MTC related morbidity, and base line calcitonin levels at diagnosis or most recent follow-up. PATIENTS: Patients were classified as having sporadic MTC if there was no family history of C-cell hyperplasia, MTC, phaeochromocytoma or parathyroid disease. Retrospective review of patient records enabled complete clinical data to be obtained in 28 of 32 patients. MEASUREMENTS: Base line calcitonin levels were measured by radioimmunoassay or calcitonin enzyme linked immunoassay. Cysteine codons in exons 10 and 11, specifically codons 609, 611, 618, 620, 630 and 634, were screened for the presence of mutations by sequence analysis. Specific mutations occurring at codons 768, 883 and 918 were screened for by restriction endonuclease digestion of PCR products. RESULTS: The mutation at codon 918ATG-->ACG was found in 21 of 32 (66%) MTCs and the mutation at codon 883GCT-->TTT was found in one of 32 MTCs. Where possible, the presence of germline-type mutations in codons 609, 611, 618, 620, 630 and 634 were excluded. Ten MTCs did not have a mutation in codons 768, 883 or 918 of the RET proto-oncogene. The presence or absence of the somatic mutation at codon 918 did not correlate with any of the above clinical characteristics. CONCLUSION: Somatic mutations in the RET protooncogene occur frequently in sporadic MTCs.

Absence of mutations at codon 768 of the RET proto-oncogene in sporadic and hereditary pheochromocytomas.

Sixteen sporadic pheochromocytomas, 3 pheochromocytomas in neurofibromatosis 1, and 4 pheochromocytomas in multiple endocrine neoplasia (MEN) 2A or 2B were screened for mutations at codon 768 of the RET proto-oncogene by AluI digestion of polymerase chain reaction PCR products and mutations in exon 13 by PCR-single strand conformation polymorphism (SSCP) analysis. Although mutations at codon 768 (GAG --> GAC; Glu --> Asp) of the RET proto-oncogene were recently reported to be found in 40% of sporadic medullary thyroid carcinomas (MTCs), the absence of missense mutations at codon 768 was confirmed both with PCR-restriction fragment length polymorphism (RFLP) and PCR-SSCP analysis in ALL examined cases of pheochromocytomas. These results suggest that mutations at codon 768 of the RET proto-oncogene do not represent a frequent mechanism of tumorigenesis for both sporadic and hereditary pheochromocytomas.

Ret and trk proto-oncogene activation in thyroid papillary carcinomas in French patients from the Champagne-Ardenne region.

OBJECTIVES: To investigate the presence of ret and trk proto-oncogene rearrangements in thyroid tumors. DESIGN AND METHODS: High-molecular-weight DNA was extracted from 36 thyroid tumors (1 multinodular goiter, 14 follicular adenomas, 16 papillary carcinomas, 1 lymph node metastasis of a papillary carcinoma, 1 follicular carcinoma, and 3 medullary carcinomas) and 22 adjacent tissues. Southern blot analysis was performed after digestion with EcoR1 or BamH1, using specific probes for ret and trk. RESULTS: Only 2 ret rearrangements were found in 2 papillary carcinomas (overall frequency: 6%; papillary carcinoma frequency: 13%). ALL normal or tumor samples were negative for the presence of a trk rearrangement. CONCLUSIONS: The previous data from the literature are highly conflicting, ranging from 0 to 30% of activation. Our results could be, therefore, classified as medium between these extreme values. It seems, therefore, that genetic and/or geographical factors could play a role in ret and trk proto-oncogene activation.

[Detection of RET-proto-oncogene mutations in the diagnosis of Type 2 endocrine neoplasia (MEN 2)].

We have analyzed 95 blood- and 25 paraffin-derived DNA samples of 120 individuals from Switzerland (MEN 2 family members and patients with medullary thyroid carcinoma or pheochromocytoma) for the presence of RET protooncogene mutations in exons 10, 11, 13, 14 and 16, where recently germline point mutations have been identified in more than 95% of patients with MEN 2A, familial medullary thyroid carcinoma (FMTC) and MEN 2B. Molecular DNA screening of samples was performed by non-radioactive single strand conformation polymorphism (SSCP) and heteroduplex gel electrophoresis method followed by mutation analysis of PCR products by direct cycle sequencing using an automated DNA sequencer. We identified 12 MEN 2A/FMSC and 6 MEN 2B families with 29 gene carriers. Ten different types of mutations were identified in the MEN 2A/FMTC families (620 Cys-->Arg, 618 Cys-->Ser, Gly, 611 Cys-->Tyr; 634 Cys-->Arg, Tyr, Trp, Phe, Ser, Gly) and ALL 6 MEN 2B families had a 918 Met-->Thr point mutation. Our results indicate that PCR-based DNA testing for RET point mutations is a rapid, accurate and reproducible method of identifying MEN 2 gene carriers using blood or tissue DNA. Early detection of gene carriers allows preventive thyroidectomy without neck dissection or parathyroid transplantation, and non-gene carriers can be released from biochemical testing. Furthermore, it is shown that the distribution and localization of RET mutations in MEN 2 families from Switzerland concur with combined results of larger series and that a "founder effect" of MEN 2 can be excluded for this country.

Seminars in medicine of the Beth Israel Hospital, Boston. The RET proto-oncogene in multiple endocrine neoplasia type 2 and Hirschsprung s disease.

The aim of this report was to investigate the expression of the p53 and mdm-2 oncoproteins in astrocytic gliomas and to assess their interrelation to proliferating activities. Using monoclonal antibodies directed against p53 and mdm-2, these proteins were stained immunohistochemically in 60 astrocytic brain tumors with different histologic grade. Positive p53 stained nuclei were detected in 25.4% of the tumor cases. Mdm-2 staining products were only localized in 10.5% of specimens. Significant correlations could be found between p53, MIB-1, PCNA and mitotic index on the one hand, and tumor grade on the other hand. There were no clear relations between mdm-2 expression and proliferation markers. The grade of ploidy has a lower priority for the proliferating activity. In most cases mdm-2 immunoreactivity was strongly associated with a low or negative p53 expression.

Germline mutations of the RET proto-oncogene in pedigree with MEN type 2A: DNA analysis and its implications for pediatric surgery.

To assess the feasibility of screening for multiple endocrine neoplasia type 2A (MEN 2A), the authors used DNA sequence analysis to evaluate the RET proto-oncogene in a kindred with MEN 2A. The kindred consisted of 95 members (1 to 79 years of age) and their spouses, and spanned five generations. Genomic DNA was extracted from peripheral blood lymphocytes or lymphoblastoid cell lines established from the family members, and the RET gene was amplified by polymerase chain reaction (PCR) using RET-specific primers (10q 11.2) and was sequenced. Periodic endocrine screening also was performed, by measuring the plasma calcitonin concentration after provocation with pentagastrin (0.5 microgram/kg intravenously) to assess its reliability for detecting the associated neoplasms. Nineteen patients were confirmed to have MEN 2A by medical records or the screening program. The DNA sequence of the PCR products from clinically established MEN 2A patients showed a mutation at codon 634 (TGC-->CGC) that resulted in an amino acid change from cysteine to arginine. Endocrine screening tests showed that six other family members had a mutated RET protooncogene. DNA sequencing can detect high-risk cases at a preclinical stage of the disease. The establishment of mutated MEN 2A gene carriers allows pediatric surgeons to consider total thyroidectomy at a very early stage of neoplasm development (C-cell hyperplasia) or even prophylactically.

RET oncogene.

RET mutations have been identified as the underlying cause of two congenital diseases that predominately affect tissues of neural crest origin: the MEN 2 cancer syndromes and a proportion of cases of dominantly inherited Hirschsprung disease, a disorder of gut development. This review summarizes the disease-causing mutations and our present understanding of their possible effects on RET protein function.

Distinction between sporadic and hereditary medullary thyroid carcinoma (MTC) by mutation analysis of the RET proto-oncogene. "Study Group Multiple Endocrine Neoplasia Austria (SMENA)".

Germline and somatic mutations of the RET proto-oncogene are important pathogenetic factors in hereditary and sporadic forms of medullary thyroid carcinoma (MTC). We have therefore analysed exons 10, 11, 13, 14 and 16 of this gene in 85 individuals from 16 Austrian families who, according to clinical criteria, were at risk of suffering from hereditary forms of MTC. We found mutations (codons 620,634 and 804) in the germline of 3 families with familial medullary thyroid carcinoma (FMTC), of 5 with multiple endocrine neoplasia type 2A (MEN 2A; codon 634) and of 2 with multiple endocrine neoplasia type 2B (MEN 2B; codon 918). The codon 804 mutation in one FMTC family led to the substitution of Val (GTG) for Met (ATG) and has not been reported previously. Within these 10 families, 32 carriers and 32 non-carriers were identified. Somatic mutations in the tumors of 3 other families suggested a sporadic origin of the neoplasms. In the remaining 3 families, no mutations were identified. Fifty-nine individuals with an apparently sporadic MTC lacked germline mutations in the RET gene, whereas 7 of 24 available tumors (29%) contained a somatic mutation in codon 918. Our findings provide further evidence that molecular genetic evaluation of hereditary and sporadic forms of MTC is a necessary prerequisite for counselling and management of patients and their families.

Developmental and denervation changes in c-ret proto-oncogene expression in chick motoneurons.

Receptor tyrosine kinases (RTKs) play important roles in cellular differentiation, survival, and proliferation. To search for genes involved in the survival of motoneurons, we isolated the RTKs specifically expressed on them. We used RT-PCR, by which RNA was obtained from purified embryonic day 5 (E5) chick motoneurons, and screened by in situ hybridization. Of 17 RTK cDNA clones, c-ret expression gradually increased in the motoneurons of the spinal cord during development. Compared with the expression of the neurotrophin receptor, TrkC, that of c-ret was very high in motoneurons from around E17 to adulthood. The level of c-ret expression on the motoneurons was unaffected by deafferentation at E2, but changed after denervation at post-hatching day 2. The in situ hybridization signal for c-ret mRNA increased slightly at day 1, then decreased progressively up to day 8, and increased again 2 weeks after sciatic nerve denervation in the motoneurons of the lumbar spinal cord. There were also changes in the signal of the lesioned sciatic nerve. In the most distal part from the lesioned site, the signal for c-ret mRNA significantly increased from day 3 on after denervation. These results suggested that the c-ret gene may encode the receptor for a factor involved in motoneuron differentiation and the promotion of regeneration of injured peripheral nerves.

Molecular and biochemical analysis of RET/PTC4, a novel oncogenic rearrangement between RET and ELE1 genes, in a post-Chernobyl papillary thyroid cancer.

A post-Chernobyl papillary thyroid cancer, displaying a novel ELE1/RET oncogenic rearrangement with an anomalous fusion transcript, was molecularly characterized. In spite of the presence of a normal breakpoint in exon 5 of the activating ELE1 gene, the sequence of the rearranged genomic DNA showed a previously unreported intra-exonic breakpoint in the RET protooncogene. As a consequence, a cDNA sequence 93 nucleotides larger than the regular one, and with the exon 5 of ELE1 joined to exon 11 instead of exon 12 of RET, is formed. To characterize the product of this new oncogenic ELE1/RET rearrangement, here designated as RET/PTC4, we performed an immunoprecipitation and Western blot analysis on cell extracts from NIH3T3 transfectants. The results showed the presence of two isoforms of the chimeric protein, displaying a constitutive tyrosine phosphorylation. As expected, the molecular weight of this protein was higher than that of RET/ PTC3 protein (p80 and p85, instead of p76 and p81). Previous reports, from our and other laboratories, showed that post-Chernobyl papillary thyroid carcinomas are characterized by a high frequency (about 60%) of RET oncogenic rearrangements (Fugazzola et al., 1995; Klugbauer et al., 1995; Ito et al., 1994). These events predominantly involve ELE1 activating sequence, thus producing RET/PTC3 oncogene (Fugazzola et al., 1995; Klugbauer et al., 1995). Hence, this elevated frequency of RET rearrangements could increase the probability of selecting unusual events as that here described. Alternatively, targeted radiation effects could be responsible for the atypical RET rearrangement producing RET/PTC4 oncogene.

Diagnosis of multiple endocrine neoplasia [MEN] 2A, 2B and familial medullary thyroid cancer [FMTC] by multiplex PCR and heteroduplex analyses of RET proto-oncogene mutations.

Multiple endocrine neoplasia type 2 [MEN 2] is an autosomal dominant cancer syndrome with two subtypes, 2A and 2B. MEN 2A and medullary thyroid cancer [MTC] are caused by > 25 different point mutations in exons 10, 11, and 13 of the RET proto-oncogene, whereas MEN 2B is caused by a single exon 16-point mutation. Various molecular methods have been used to identify the different mutations, including DNA sequencing, restriction enzymatic analyses, chemical cleavage mismatch, Single Stranded Conformational Polymorphism [SSCP], and Denaturing Gradient Gel Electrophoresis [DGGE]. These techniques, although useful and accurate, are labor intensive and some involve the use of radioactivity. We have developed a multiplex PCR assay simultaneously to amplify exons 10, 11, and 13 of the RET proto-oncogene. The multiplex PCR product is then analyzed on a modified mutation Detection Enhancement [MDE] matrix for heteroduplex identification and visualized with ethidium bromide. Distinct heteroduplexes were detected for each known RET proto-oncogene mutation available in our laboratory (nine in exon 10, five in exon 11, one in exon 13, and the single exon 16 mutation). Presymptomatic DNA diagnosis of MEN 2 is essential since pentagastrin-stimulated calcitonin studies can occasionally produce false positive results and lead to unnecessary thyroidectomies. Prophylactic thyroidectomy is recommended by age 5 or 6 once a mutation is identified in a patient, since penetrance is very high. MDE heteroduplex detection provides a quick, efficient, and inexpensive method of screening for RET mutations in MTC patients with unknown mutations, or for presymptomatic diagnosis in individuals at risk for inheriting a known RET mutation. Confirmation of the specific mutation can be achieved by restriction enzymatic digestion (if feasible) or by DNA sequencing.

Diagnosis and management of pheochromocytomas in patients with multiple endocrine neoplasia type 2-relevance of specific mutations in the RET proto-oncogene.

It has been suggested that specific mutations in the RET proto-oncogene correlate with clinical manifestation of the multiple endocrine neoplasia type 2 (MEN 2) syndrome. We retrospectively analyzed 61 patients with MEN 2, 28 with associated pheochromocytoma, regarding the relevance of specific mutations in the RET proto-oncogene and the diagnostic sensitivity of catecholamine screening and localization procedures. The present study shows that the position of the RET mutation is related to disease phenotype; codon 634 mutations are predictive of families predisposed to pheochromocytoma. In 18% of our patients, the diagnosis of pheochromocytoma preceded detection of medullary thyroid carcinoma. Therefore, mutation analysis of the RET gene should be performed in apparently "sporadic" cases of pheochromocytoma to confirm or exclude MEN 2. The most sensitive biochemical marker for pheochromocytoma in MEN 2 is 24-h urinary epinephrine excretion. Computed tomography, magnetic resonance imaging and MIBG scintigraphy are ALL highly sensitive methods to localize pheochromocytoma. We conclude that, in ALL families with MEN 2, mutational analysis of the RET proto-oncogene should be performed, both to identify gene carriers for MEN 2 and to identify specific mutations that are more strongly associated with pheochromocytoma.

Mutations in the RET proto-oncogene and the von Hippel-Lindau disease tumour suppressor gene in sporadic and syndromic phaeochromocytomas.

Phaeochromocytomas may occur sporadically, or as part of the inherited cancer syndromes multiple endocrine neoplasia (MEN) type 2, von Hippel-Lindau disease (VHL), and, rarely, in type 1 neurofibromatosis. In MEN 2, germline missense mutations have been found in one of eight codons within exons 10, 11, 13, 14, and 16 of the RET proto-oncogene. In VHL, germline mutations within one of the three exons are responsible for the majority of cases. To determine if somatic mutations similar to those seen in the germline in MEN 2 or VHL disease play a role in the pathogenesis of sporadic or familial phaeochromocytomas, we analysed 48 sporadic tumours and tumours from 17 MEN 2 and five VHL patients for mutations in RET exons 9, 10, 11, 13, 14, 15, and 16, and the entire coding sequence of VHL. Five of 48 sporadic phaeochromocytomas had RET mutations within exons 10, 11, and 16. Of these, one was proven to be germline and two were proven to be somatic mutations. Four of 48 had VHL mutations; these included both the bilateral cases in the series (one was proven to be a germline mutation) and two others, of which one was proven somatic.

The RET proto-oncogene in sporadic pheochromocytomas.

In order to evaluate the role of RET proto-oncogene in the development and growth of pheochromocytomas, we examined mutations in RET and expression of RET in 7 cases of sporadic pheochromocytomas. tumors were screened for mutations in exons 10 and 11 and codon 918 which are identified in multiple endocrine neoplasia types 2A and 2B. No mutations were found in these regions in ALL of the sporadic pheochromocytomas examined. On the other hand, RET mRNA was detected in ALL pheochromocytomas and the levels of RET expression were higher in 5 of 7 pheochromocytomas than in normal adrenal medulla, indicating that RET is overexpressed in a sizable portion of sporadic pheochromocytomas. These results suggest that high levels of expression of RET may have relevance to the development or growth of sporadic pheochromocytomas.

Relevance of RET proto-oncogene mutations in sporadic medullary thyroid carcinoma.

Analysis of peripheral blood or tumor DNA samples from 101 patients with apparent sporadic medullary thyroid carcinoma (MTC) was performed to assess the frequency of RET proto-oncogene mutations in this patient population. Peripheral blood and/or tumor DNA was amplified by polymerase chain reaction. DNA sequence or restriction enzyme analysis was performed to detect mutations of RET proto-oncogene codons 609, 611, 618, 620, 634, 768, and 918. Six of 101 patients with apparent sporadic MTC had peripheral blood DNA mutations more commonly associated with hereditary MTC. In 4 patients, these mutations led to the identification of previously unrecognized kindreds. The remaining 2 patients were examples of de novo mutations. A codon 918 mutation was found in 14 of 57 (approximately 25%) tumor DNA samples. mutations were not identified in the remaining patients. In this large cancer center population, approximately 6% of patients with sporadic MTC carry peripheral blood DNA mutations, either inherited or de novo, more commonly associated with MEN 2A or familial MTC. Seven additional gene carriers were identified as a direct result of these studies, a 2-fold multiplying effect. We conclude routine application of RET proto-oncogene testing should be included in ALL cases of apparent sporadic MTC.

Somatic mutations of the RET proto-oncogene are not required for tumor development in multiple endocrine neoplasia type 2 (MEN 2) gene carriers.

Germ line mutations in one allele of the RET proto-oncogene predispose to the multiple endocrine neoplasia type 2 (MEN 2) syndromes. To investigate whether these inherited mutations alone can cause the development of tumors in vivo (oncogene model) or whether somatic mutations in the homologous RET allele are required for tumorigenesis (tumor suppressor gene model), we analyzed the entire coding region of both alleles of the RET gene in two MEN 2A and two MEN 2B tumors by reverse transcription-PCR and direct sequencing. No tumor-specific mutations could be detected in either allele of the RET gene in these tumors. Unlike the molecular mechanism in other hereditary tumor syndromes, somatic mutations in the homologous allele are apparently not required in MEN 2 tumorigenesis. Thus, RET genes with MEN 2-specific germ line mutations act as dominantly transforming oncogenes in vivo.

The MEN II syndromes and the role of the ret proto-oncogene.

To assess the normal function of the c-maf protooncogene product, we examined its tissue distribution during fetal growth and organogenesis of the chicken using an immunohistochemical technique. Nuclei of neuronal cells in the optic lobe and in the outer granular layer of the cerebral cortex were efficiently stained by anti-Maf serum throughout ALL developmental stages examined. In the lung, mesenchymal cells were stained intensely by the antiserum, with the most intense staining around embryonic day 15. During the embryonic period, nuclei of mesenchymal cells in the perichondrial and periosteal tissues as well as intestinal submucosa were also stained specifically by the antiserum. In addition, we detected substantial Maf immunoreactivity in nuclei of renal glomerular and proximal-tubular epithelial cells. These results suggest that c-Maf protein plays some important roles in the development of the central nervous system and tissues of mesodermal origin such as connective and renal tissues.

Expression of the RET proto-oncogene in normal human tissues, pheochromocytomas, and other tumors of neural crest origin.

In order to evaluate the roles of the RET proto-oncogene in normal human tissues and tumors derived from the neural crest cells, we examined the expression of RET in a variety of adult human tissues, pheochromocytomas, medullary thyroid carcinomas (MTCs), ganglioneuromas, and a neurinoma. Northern blot analysis demonstrated that RET is normally expressed in the adrenal medulla and cerebellum among adult human tissues. RET transcripts were detected in ALL of 11 sporadic and one familial pheochromocytomas. The levels of RET mRNA were higher in 8 of 12 pheochromocytomas than in the normal adrenal medulla, indicating that RET is overexpressed in the majority of sporadic pheochromocytomas. There was a considerable difference in the level of RET expression in each pheochromocytoma ranging from 0.2 to 10 times the transcripts found in the normal adrenal medulla. The sizes of the transcripts of 7.0, 6.0, 4.5, and 3.9 kb were the same as those found in the adrenal medulla, suggesting no rearrangements of the RET gene in pheochromocytomas. Southern blot analysis revealed neither amplification nor gross structural changes in the RET gene. RET was also expressed at high levels in four MTCs examined, whereas its transcripts were detected at low abundance in only one of three ganglioneuromas. RET was not expressed in a neurinoma. These results suggest that RET may play some roles in a limited range of adult human tissues, and that its high levels of expression may have relevance to development or growth of pheochromocytomas and MTCs.

A novel deletion in the RET proto-oncogene found in sporadic medullary thyroid carcinoma.

Germ line point mutations in the RET proto-oncogene have been implicated in four inherited disorders: multiple endocrine neoplasia 2A (MEN 2A) and 2B (MEN 2B); familial medullary thyroid carcinoma (FMTC); and Hirschprung s disease, a congenital lack of enteric plexus neurons. Oncogenically activated RET has also been demonstrated in some sporadic medullary thyroid tumors, which show somatic missense mutations in the same regions as those found in MEN 2B. Upon screening archival sporadic MTC tumor tissue by nonradioactive single-strand conformational polymorphism analysis (SSCP), a markedly divergent exon 11 pattern was found in an unusually aggressive neoplasm. Sequencing of PCR amplified DNA revealed the deletion of nine bases encompassing a key cysteine codon at position 1831-3, often altered in MEN 2A. Normal thyroid tissue from the same patient showed a normal SSCP pattern and sequence for this exon. This novel somatic mutation further implicates the RET proto-oncogene in the development of MTC.

The relationship between specific RET proto-oncogene mutations and disease phenotype in multiple endocrine neoplasia type 2. International RET mutation consortium analysis.

OBJECTIVE: Multiple endocrine neoplasia type 2 (MEN 2) is an autosomal dominant disorder. The 3 recognized subtypes include MEN 2A, characterized by medullary thyroid carcinoma (MTC), pheochromocytoma (pheo), and hyperparathyroidism (HPT); MEN 2B, by MTC, pheo, and characteristic stigmata; and familial MTC (FMTC), by the presence of MTC only. The purpose of this study was to establish the relationship between specific mutations and the presence of certain disease features in MEN 2 which could help in clinical decision making. DESIGN: Correlative survey study of 477 MEN 2 families. SETTING: Eighteen tertiary referral centers worldwide. PATIENTS: A total of 477 independent MEN 2 families. MAIN OUTCOME MEASURES: Association between the position and type of germline mutation in the RET proto-oncogene and the presence or absence of MTC, pheo, HPT, and/or other features in a family. RESULTS: There is a statistically significant association between the presence of any mutation at a specific position (codon 634) and the presence of pheo and HPT. The presence of a specific mutation, CGC at codon 634, has yet to be associated with FMTC. Conversely, mutations at codons 768 and 804 are thus far seen only with FMTC, while codon 918 mutation is MEN 2B--specific. Rare families with both MEN 2 and Hirschsprung disease were found to have MEN 2-specific codon mutations. Patients with Hirschsprung disease presenting with such mutations should be monitored for the possible development of MEN 2 tumors. CONCLUSIONS: This consortium analysis suggests that genotype-phenotype correlations do exist and, if made reliably absolute, could prove useful in the future in clinical management with respect to screening, surveillance, and prophylaxis, as well as provide insight into the genetic effects of particular mutations.

Development of mammary and cutaneous gland tumors in transgenic mice carrying the RET/PTC1 oncogene.

RET/PTC1 is a chimeric oncogene created by the fusion of the tyrosine kinase domain of RET to the 5 -terminal region of another gene named H4. So far, this oncogene has been found activated only in human papillary thyroid carcinomas. In order to investigate its transforming properties in vivo, we have produced transgenic mice carrying RET/PTC1 under the control of the H4 promoter. The transgene was expressed in several tissues, consistently with the ubiquitous expression of the wild type H4 gene. Mammary adenocarcinomas and, less frequently, hyperplasia of sebaceous glands and rare benign skin tumors, named pilomatrixomas, developed in these mice. The tumors were shown to express the transgene both at the RNA and protein level. These results demonstrate that the transforming ability of the RET/PTC1 oncogene is not restricted to the thyroid epithelium in vivo. Despite its ubiquitous expression, however, RET/PTC1 was able to induce only a limited number of tumor types; specifically mammary epithelium was affected by transgene expression, thus suggesting that RET/PTC1 is able to couple with transforming pathways specific for these glandular cells.

RET proto-oncogene point mutations in sporadic neuroendocrine tumors.

We investigated the possible role of the RET proto-oncogene, which has recently been identified as the susceptibility gene for multiple endocrine neoplasia type 2, in the development of sporadic neuroendocrine tumors from different locations. DNA extracted from paraffin-embedded specimens of 112 neuroendocrine tumors was screened for somatic RET point mutations in exons 10, 11, 13, 15, and 16, where recently oncogenic mutations have been described in a subset of sporadic medullary thyroid carcinomas and pheochromocytomas. Methods employed included nonisotopic PCR-based single strand conformation polymorphism (PCR-SSCP) analysis, heteroduplex gel electrophoresis, and restriction enzyme digestion. The nucleotide sequence of samples with aberrant band patterns was identified by nonisotopic direct sequencing of PCR-amplified DNA. Forty-four percent (7/16) of sporadic medullary thyroid carcinomas and 15% (3/20) of pheochromocytomas contained a somatic, heterozygous point mutation at codon 918 of exon 16 (ATG --> ACG) causing a Met --> Thr substitution. None of the remaining 4 parathyroid adenomas, 8 pituitary adenomas, 17 pancreatic neuroendocrine tumors, 11 pulmonary and 10 gastrointestinal carcinoids, 7 small cell lung carcinomas, 5 neuroblastomas, 10 malignant melanomas, or 4 schwannomas contained mutations in any of the five RET exons tested. Although the numbers of each investigated neuroendocrine tumor type are small, our data indicate that oncogenic RET proto-oncogene mutations are involved in the formation of a subset of sporadically occurring medullary thyroid carcinomas and pheochromocytomas but do not appear to be generally important in the formation of other types of sporadically occurring neuroendocrine tumors.

Analysis of the RET proto-oncogene in sporadic parathyroid adenomas.

Missense germline mutations of the RET proto-oncogene have recently been identified in the hereditary cancer syndromes MEN2A, MEN2B, and FMTC, ALL characterized by medullary carcinoma, but also including phaeochromocytoma in MEN2A and MEN2B and parathyroid disease in MEN2A. In addition, somatic RET proto-oncogene mutations have been identified in a subset of sporadic medullary carcinomas and phaeochromocytomas. This study investigated the possibility that RET plays a role in sporadic parathyroid neoplasia. Firstly, normal and neoplastic parathyroid tissues were screened for expression of the RET proto-oncogene, using an RT-PCR approach on autopsy material. Secondly, 20 archival parathyroid adenomas were screened for somatic mutations in the transmembrane region of RET, the region associated with germline mutations in MEN2A and hence parathyroid disease, using a PCR-solid phase direct sequencing approach. RET expression was identified in ALL the parathyroid tissues analysed. However, no mutations were identified in any of the 20 adenomas, suggesting either that other mechanisms of RET activation occur, such as translocation, or that RET plays a more minor role in the growth control of the parathyroid cells than in C cells or phaeochromocytes.

[Ret proto-oncogene mutation found in the Czech population and its predictive value for offspring of patients with medullary carcinoma of the thyroid gland].

The authors completed a total of 23 pedigrees with the clinical diagnosis of medullary thyroid carcinoma (5 MEN 2A pedigrees, 11 FMTC pedigrees and 7 MTC pedigrees). Using the method of polymerase chain reaction (PCR), it was possible to define the rate of the most frequent mutations in exons 10, 11 and 16 of Ret-protooncogene present in the Czech population. The most frequent hereditary mutation found in MEN 2A and FMTC groups is substitution of thymine for cytosine in position 2095 of the transmembranous domain of the Ret-tyrosine kinase gene. Another six types of known mutations were tested.

Mouse ret finger protein (rfp) proto-oncogene is expressed at specific stages of mouse spermatogenesis.

Many proteins involved in the regulation of cell growth and differentiation possess structural motifs that participate in specific molecular interactions. The human rfp (ret finger protein) has a tripartite motif, consisting of two novel zinc fingers (the RING linger and the B box) and a coiled-coil domain, and belongs to the B box zinc finger protein family. Rfp becomes oncogenic when its tripartite motif is recombined with the tyrosine kinase domain from the c-ret proto-oncogene. To further understand the function of rfp during normal development and cellular differentiation, we cloned the mouse rfp cDNA and analyzed its pattern of expression and subcellular distribution. We found that the mouse rfp cDNA shared a 98.4% homology with the human sequence. The gene mapped to human chromosome 6 and mouse chromosome 13 indicating that it was linked to a several other genes encoding proteins that possess common domains. rfp transcripts and protein were ubiquitous in day 10.5-13.5 mouse embryos, however, they were restricted in adult mice, with the highest level of expression in pachytene spermatocytes and round spermatids of differentiating sperm. The rfp protein was detected within cell nuclei as nuclear bodies similar to the PODs (PML oncogenic domains) observed with another B box family member, PML (promyelocytic leukemia protein). These results suggest that rfp may function in the regulation of cell growth and differentiation during mouse embryogenesis and sperm differentiation.

The RET proto-oncogene: a challenge to our understanding of disease pathogenesis.

RET gene alterations as disease-causative mutations have been demonstrated in five different disease entities: Hirschsprung s disease (HD); papillary thyroid carcinoma; and three types of inherited cancer syndromes: multiple endocrine neoplasia (MEN) 2A, MEN 2B, and familial medullary thyroid carcinoma. RET is expressed during embryogenesis in a temporally and spatially regulated manner, and plays an important role in the normal development of a variety of cell lineages, particularly in the establishment of the enteric nervous system. RET mutations observed in patients with HD are scattered along the gene without any hot spots, and possess a loss-of-function effect. RET mutations are detected with a higher incidence among familial cases (50%) than sporadic cases (15%-20%), and are more closely associated with long-segment HD than short-segment disease. In contrast to HD mutations, missense mutations observed in MEN 2 syndromes occur at specific codons, and gene rearrangements are characteristic in papillary thyroid carcinoma. Both missense mutations and gene rearrangements act in a dominant fashion, and cause constitutive phosphorylation on the tyrosine of RET and highly enhance RET kinase activity, leading to transforming or oncogenic activity.

Mutations of the RET proto-oncogene in the multiple endocrine neoplasia type 2 syndromes, related sporadic tumours, and hirschsprung disease.

The RET proto-oncogene codes for a receptor tyrosine kinase thought to play a role in the development of neural crest and its derivatives. mutations in the RET proto-oncogene have been found in patients with the multiple endocrine neoplasia type 2 syndromes (MEN 2), the related sporadic tumours medullary thyroid carcinoma and pheochromocytoma, and familial and sporadic Hirschsprung disease, a syndrome of congenital absence of enteric innervation. Germline mutations in one of eight codons within RET cause the three subtypes of MEN 2, namely, MEN 2A, MEN 2B, and familial medullary thyroid carcinoma. Somatic mutation in an overlapping group of nine codons have been found in a proportion of sporadic medullary thyroid carcinoma and pheochromocytoma. In contrast to MEN 2, approximately 25% of patients with Hirschsprung disease have germline mutations scattered throughout the length of RET.

Treatment of minute medullary thyroid carcinoma in multiple endocrine neoplasia 2A families first diagnosed by DNA analysis of RET proto-oncogene mutations: a case report.

Multiple endocrine neoplasia (MEN) 2A is an inherited disease characterized by the development of medullary thyroid carcinoma, pheochromocytoma and hyperparathyroidism. It has recently been shown to be associated with germ-line mutations in the RET proto-oncogene. We describe a 21-year-old man from a MEN 2A family who was found by DNA analysis to be a gene carrier of MEN 2A and then was diagnosed, using a stimulated calcitonin test, as having presymptomatic medullary thyroid carcinoma. His morbidity seems to have been cured by total thyroidectomy as postoperative calcitonin levels after stimulation are normal. It is concluded that direct genetic analysis for mutations in the RET proto-oncogene should be the diagnostic test of choice for identifying family members at risk for MEN 2A.

Germline mutation of the RET proto-oncogene in children with total intestinal aganglionosis.

To clarify the pathogenesis of total intestinal aganglionosis, an extremely severe from of neural crest-derived cell migration disorder of the gut, the authors studied possible germline mutations of the RET proto-oncogene (10q11.2) in five pedigrees at high risk for congenital aganglionosis. ALL five patients analyzed were boys, and one had a family history of Hirschsprung s disease. Genomic DNA was extracted from lymphoblastoid cell lines established from patients and their relatives. Polymerase chain reaction (PCR) products, which were amplified using specific primers (RET; exon 1 approximately 20), were electrophoresed to analyze the single-strand conformational polymorphism (SSCP) patterns. DNA sequences were determined in pedigrees showing abnormal SSCP bands. Among the five patients, three germline mutations were found in the receptor tyrosine kinase domain (exon 15; codons 884, 897, and 904). Amino acid substitutions of the Ret protein were predicted based on the mutated nucleotide changes. Phenotypic variations of congenital aganglionosis may depend on the RET mutation pattern and other genetic or environmental determinants. In our series of patients, male sexuality and germline mutation of the RET tyrosine kinase domain were the most likely factors contributing to this form of Hirschsprung s disease.

A duplication of 12 bp in the critical cysteine rich domain of the RET proto-oncogene results in a distinct phenotype of multiple endocrine neoplasia type 2A.

Activating germline mutations in the cysteine-rich domain of the RET proto-oncogene are found in >92% of the cases of multiple endocrine neoplasia type 2A (MEN2A) and 85% of familial medullary thyroid carcinoma (FMTC). In virtually 100% of patients with identified mutations one of five cysteines is altered by a missense mutation. In a MEN2A family with 14 affected and 11 unaffected living members, hypercalcemia was diagnosed in eight patients and histological evaluation revealed parathyroid hyperplasia in ALL cases examined (10/10). No member of this family showed any evidence for the existence of pheochromocytoma. This is the first documentation of a family without pheochromocytoma but with a high incidence of parathyroid disease. Genetic analysis revealed the presence of an unusual heterozygous mutation in exon 11 of the RET proto-oncogene representing a duplication of 12 bp resulting in the insertion of four amino acids between codon 634 (Cys) and 635 (Arg), thus creating an additional cysteine residue.

A Cys634Gly substitution of the RET proto-oncogene in a family with recurrence of multiple endocrine neoplasia type 2A and cutaneous lichen amyloidosis.

Germ-line mutations of the RET proto-oncogene, involving five cysteine residues at codons 609, 611, 618, 620 and 634, are associated with two variants of the inherited cancer syndrome multiple endocrine neoplasia type 2: type 2A and familial medullary thyroid carcinoma. The association of multiple endocrine neoplasia type 2A with the dermatological disorder cutaneous lichen amyloidosis has already been reported, and mutations in the Cys634 have been identified in different families. We describe here an additional pedigree in which multiple endocrine neoplasia type 2A and cutaneous lichen amyloidosis cosegregate. A Cys634Gly was identified by direct sequencing of the RET proto-oncogene exon 11 in the affected individuals. The mutation creates a new HaeIII site, and restriction analysis performed on ALL family members rules out the presence of the altered allele in two children and consequently the risk of developing thyroid tumors. These results emphasize the role of molecular analysis of the RET proto-oncogene in diagnosing presymptomatically those individuals at risk of inheriting the disease allele.

Complementary and overlapping expression of glial cell line-derived neurotrophic factor (GDNF), c-ret proto-oncogene, and GDNF receptor-alpha indicates multiple mechanisms of trophic actions in the adult rat CNS.

Glial cell line-derived neurotrophic factor (GDNF), the most potent trophic factor yet described for both dopaminergic neurons of the substantia nigra and spinal motorneurons, has recently been shown to signal through a multireceptor complex composed of a novel glycosylphosphatidylinositol-anchored GDNF receptor-alpha (GDNFR-alpha) and the receptor tyrosine kinase product of the c-ret proto-oncogene (RET). Despite its importance, the individual expression patterns and the relationships between domains of expression of the different components of this trophic system are not understood. We show here by in situ hybridization that GDNF mRNA is expressed in the normal adult rat brain in several targets of substantia nigra neurons, including striatum, nucleus accumbens, thalamic nuclei, olfactory tubercle, hippocampus, cerebellum, and cingulate cortex as well as in the internal granular cell layer of the olfactory bulb. Within the basal ganglia we observe a pronounced segregation of regions expressing GDNF from those expressing GDNF receptors, suggesting that within these structures GDNF is functioning in its anticipated role as a target-derived trophic factor. In addition, the expression of GDNF and both GDNF receptors within the cerebellum, hippocampus, and olfactory bulb may indicate a paracrine mode of action. Importantly, we also see expression of RET mRNA in cellular populations within the cerebellum and the glomerular layer of the olfactory bulb, as well as in the subthalamic nucleus, which lack GDNFR-alpha expression, indicating that RET functions either independently of GDNFR-alpha or with GDNFR-alpha presented in trans. Conversely, GDNFR-alpha is widely expressed in many regions in which RET expression is absent, suggesting that GDNFR-alpha may associate with additional signaling receptors. Finally, RET and GDNFR-alpha show distinct patterns of regulated expression in the brain after kainic acid stimulation and in the sciatic nerve after nerve transection. Taken together these findings indicate that GDNF, RET, and GDNFR-alpha utilize multiple mechanisms to comprise physiologically relevant trophic circuits for different neuronal populations.

Distinct pattern of ret oncogene rearrangements in morphological variants of radiation-induced and sporadic thyroid papillary carcinomas in children.

In this study, we compare the morphological and genetic characteristics of 38 post-Chernobyl thyroid papillary carcinomas from Belarussian children 5-18 years old with those of 23 sporadic papillary carcinomas from the same age children without history of radiation exposure from Los Angeles and Cincinnati. Among radiation-induced tumors, solid variant of papillary carcinoma was found in 37%, follicular in 29%, typical papillary in 18%, and mixed and diffuse sclerosing variants in 8% each. In the sporadic group, a typical papillary pattern was prevalent in 70%, follicular in 17%, diffuse sclerosing variant in 9%, and solid in 4%. In both groups, the prevalence of ret rearrangements was high, but the frequency of specific types of rearrangement was significantly different. Among radiation-induced tumors, ret/PTC3 was found in 58%, ret/PTC1 in 16%, and ret/PTC2 in 3%, whereas among sporadic tumors, ret/PTC1 was found in 47% (P < 0.05), and ret/PTC3 was found in 18% (P = 0.01). The morphological variants of papillary carcinoma showed different prevalence of the specific types of ret rearrangement. Seventy-nine % of solid variant tumors had ret/PTC3, whereas only 7% had ret/PTC1 (P = 0.0007). Among typical papillary tumors, ret/PTC1 was found in 38%, ret/PTC3 in 19%, and ret/PTC2 in 5%. Thus, ret rearrangements are highly prevalent in pediatric papillary carcinomas from children exposed to radiation and in those occurring sporadically. However, the types of ret/PTC vary between these two populations, with ret/PTC3 present more commonly in post-Chernobyl tumors. Furthermore, solid variants have a high prevalence of ret/PTC3, whereas typical papillary carcinomas do not, suggesting that the different types of ret rearrangement confer neoplastic thyroid cells with distinct phenotypic properties.

RET proto-oncogene is important for the development of respiratory CO2 sensitivity.

Brain stem muscarinic cholinergic pathways are important in respiratory carbon dioxide (CO2) chemosensitivity. Defects in the muscarinic system have been reported in children with congenital/developmental disorders of respiratory control such as sudden infant death syndrome (SIDS) and congenital central hypoventilation syndrome (CCHS). This early onset of disease suggests a possible genetic basis. The muscarinic system is part of the autonomic nervous system which develops from the neural crest. Ret proto-oncogene is important for this development. Thus, a potential role for ret in the development of respiratory CO2 chemosensitivity was considered. Using plethysmography, we assessed the ventilatory response to inhaled CO2 in the unanesthetized offsprings of ret +/- mice. Fractional increases in minute ventilation during hypercapnia relative to isocapnia were 5.1 +/- 3.2, 3.0 +/- 1.6 and 1.4 +/- 0.8 for the ret +/+, ret +/- and ret +/- mice, respectively. The ret knockout mice have a depressed ventilatory response to inhaled CO2. Therefore, the ret gene is an important factor in the pathway of neuronal development which allow respiratory CO2 chemosensitivity.

Identification of a novel somatic mutation in the RET proto-oncogene in a patient with sporadic medullary thyroid carcinoma.

Hereditary papillary renal carcinoma (HPRC) is a recently recognized form of inherited kidney cancer characterized by a predisposition to develop multiple, bilateral papillary renal tumours. The pattern of inheritance of HPRC is consistent with autosomal dominant transmission with reduced penetrance. HPRC is histologically and genetically distinct from two other causes of inherited renal carcinoma, von Hippel-Lindau disease (VHL) and the chromosome translocation (3;8). Malignant papillary renal carcinomas are characterized by trisomy of chromosomes 7, 16 and 17, and in men, by loss of the Y chromosome. Inherited and sporadic clear cell renal carcinomas are characterized by inactivation of both copies of the VHL gene by mutation, and/or by hypermethylation. We found that the HPRC gene was located at chromosome 7q31.1-34 in a 27-centimorgan (cM) interval between D7S496 and D7S1837. We identified missense mutations located in the tyrosine kinase domain of the MET gene in the germline of affected members of HPRC families and in a subset of sporadic papillary renal carcinomas. Three mutations in the MET gene are located in codons that are homologous to those in c-kit and RET, proto-oncogenes that are targets of naturally-occurring mutations. The results suggest that missense mutations located in the MET proto-oncogene lead to constitutive activation of the MET protein and papillary renal carcinomas.

Molecular analysis of the RET proto-oncogene in patients with sporadic medullary thyroid carcinoma: a novel point mutation in the extracellular cysteine-rich domain.

Germline point mutations in the RET proto-oncogene are associated with multiple endocrine neoplasia type 2 (2A and 2B) and familial medullary thyroid carcinoma. On the other hand, somatic point mutations of RET have been described in a subset of sporadic medullary thyroid carcinomas (MTCs). We examined tumor and blood DNA of thirteen apparently sporadic MTC patients for mutations in RET exons 10, 11, 13, 15 and 16 to determine whether they had true sporadic tumors or either de novo or occult germline mutations. Three different somatic missense mutations were documented in seven patients. In five patients a mutation in exon 16, codon 918, (ATG-->ACG) causing a Met-->Thr substitution was found. In the remaining two patients the mutation affected exon 11: codon 630 in one case and codon 634 in the other. In both cases a T-->C transversion was identified causing a Cys-->Arg substitution. In conclusion, absence of a germline mutation in RET exons 10, 11, 13 or 16 is evidence against an inherited form in ALL cases. In seven patients, identification of a somatic mutation supported the previous clinical diagnosis of sporadic medullary thyroid carcinoma; in one of them we identified a hitherto undescribed somatic point mutation at codon 630.

RET proto-oncogene mutations in multiple endocrine neoplasia type 2 and medullary thyroid carcinoma.

Multiple endocrine neoplasia type 2 (MEN-2) is a familial cancer syndrome inherited in an autosomal dominant fashion with age-related penetrance. The main tumour type present in ALL manifestations of this syndrome. MEN-2A, MEN-2B and familial medullary thyroid carcinoma (FMTC), is medullary thyroid carcinoma (MTC). MTC arises from the parafollicular or C cells of the thyroid. MEN-2A is characterised by the triad of MTC, phaeochromocytoma, and parathyroid hyperplasia. MEN-2B is characterised by features similar to those of MEN-2A, except for the absence of clinically apparent parathyroid hyperplasia, and additional stigmata including a marfanoid habitus, mucosal neuromas and ganglioneuromatosis of the gastrointestinal tract. FMTC families have MTC as their only phenotype. Missense mutations affecting conserved cysteine codons adjacent to the transmembrane domain of the RET proto-oncogene have been identified in the germline DNA of patients with MEN-2A and FMTC. A single mutation at codon 918 in the tyrosine kinase domain of the RET receptor has been associated with the MEN-2B phenotype. In a small number of FMTC families, missense point mutations have also been identified in the intracellular domain of the RET protein. RET mutation analysis of MEN-2 families has allowed the identification of genotype-phenotype correlations. While 25% of ALL MTCs are hereditary, the great majority of MTCs, 75%, are sporadic. Various somatic RET mutations have been identified in sporadic MTCs. In a small number of hereditary MTCs with germline mutations in RET, an additional somatic missense RET mutation has been identified. The discovery of RET mutations in MEN-2 has made possible accurate DNA-based diagnosis and predictive testing. The clinical significance of somatic RET mutations has yet to be determined.

Genetic alterations of the RET proto-oncogene in familial and sporadic pheochromocytomas.

The identification of RET proto-oncogene mutations associated with multiple endocrine neoplasia type 2 (MEN-2) has provided a convenient screening test for MEN-2 in patients with pheochromocytoma (PH). In 120 patients with apparently sporadic PH, we analyzed RET exons 10, 11, 13 and 16 using denaturing gradient gel electrophoresis and found a Leu to Phe missense mutation at codon 790 (exon 13) in 1 case. A TaqI polymorphism located at exon 13 and an AluI polymorphism at exon 14 were present with a similar frequency in the 120 sporadic PH and in 94 unaffected normotensive Caucasian subjects. In 60 patients with PH, including 14 with documented MEN-2, we compared genetic testing with the pentagastrin stimulation test. The latter was 100% sensitive and 92% specific, whereas genetic testing was 88% sensitive and 100% specific. Additional somatic mutations were sought in 35 sporadic PH. Two missense mutations affecting RET exons 11 (C634R) and 16 (M918T) and three neutral mutations at codon 836 of exon 14 associated with the AluI polymorphism were detected. Detection of RET mutations in patients with PH is safe, specific and convenient. tumoral mutations of the RET gene may play a role in medullary tumorigenesis but seem to be less frequent than previously reported.

Absence of RET proto-oncogene mutations in a father and son with pheochromocytoma and pancreatic islet cell tumor.

BACKGROUND: We describe a father and son with a combination of pheochromocytoma and pancreatic islet cell tumor. Although its familial occurrence is rare, this syndrome could be called overlapping-type multiple endocrine neoplasia (MEN), since it fulfills the criteria for both type 1 and type 2 MEN. Recently, germ line mutations of the RET proto-oncogene (RET) were found to be related to tumorigenesis and disease phenotypes in type 2 MEN. METHODS: Using polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analysis, we looked for germ line mutations of RET in 8 members of this family, including the 2 patients. RESULTS: Analysis of RET exons 10, 11 and 16, which contain the hot-spot codons for MEN type 2, revealed no mutations in any individual examined. CONCLUSION: These findings suggest that these 3 exons in RET are not related to tumorigenesis in overlapping-type MEN.

Somatic in frame deletions not involving juxtamembranous cysteine residues strongly activate the RET proto-oncogene.

Somatic RET mutations have been identified in a variable proportion (about 30-70%) of sporadic Medullary Thyroid Carcinoma (MTC) cases. They are represented by the Met918Thr substitution (exon 16) typical of Multiple Endocrine Neoplasia type 2B (MEN2B) and, to a lesser extent, by nucleotide changes occurring at one of five critical cysteine residues (exons 10 and 11) typical of MEN type 2A (MEN2A). An in vitro transforming activity has already been demonstrated for these mutations. A few different MTC somatic mutations have been reported so far whose biological activity has still to be tested. In this paper we report the identification, in two MTC tumor samples, of two interstitial deletions of 48 bp and 6 bp occurred in exons 10 and 11 respectively. Both were somatic heterozygous in frame mutations, not involving any cysteine residue. Moreover, the expression of a full length RET cDNA carrying one of the two deletions demonstrated a strong transforming capacity in NIH3T3 cells.

Comparison of the breakpoint regions of ELE1 and RET genes involved in the generation of RET/PTC3 oncogene in sporadic and in radiation-associated papillary thyroid carcinomas.

The RET/PTC3 oncogene is an activated form of the RET protooncogene, which is frequently rearranged in papillary thyroid carcinoma. RET/PTC3 results from a structural rearrangement between the ELE1 and the RET genes, and it has been observed in both sporadic and radiation-associated post-Chernobyl tumors. To understand the molecular basis that predisposes RET and ELE1 genes to be recurrent targets of "illegitimate" recombination, we examined the genomic regions containing the ELE1/RET breakpoints of six sporadic and three post-Chernobyl tumors in two papillary carcinomas of different origins. Our data indicated, in both genes, a clustering of the breakpoints in regions designated ELE1-bcr (1.8 kb) and RET-bcr (1.9 kb). Notably, in ALL sporadic tumors and in one post-Chernobyl tumor the ELE1/RET recombination corresponded with short sequences of homology (3-7 nt) between the two rearranging genes. In addition, we observed an interesting distribution of the post-Chernobyl breakpoints in ELE1-bcr located within an Alu element, or in between two close Alu elements, and always in A+T-rich regions.

The role of the ret proto-oncogene in human disease.

The ret proto-oncogene encodes a receptor tyrosine kinase with a cadherin-like motif in the extracellular domain. Recently, it turned out that ret is the causative gene for the development of multiple endocrine neoplasia (MEN) type 2A and type 2B and Hirschsprung s disease. MEN 2A and MEN 2B mutations represent activating changes of ret whereas Hirschsprung mutations inactivate ret. In addition, another activating change of ret was found in papillary thyroid carcinoma, particularly in those cancers which developed in children from areas contaminated by the Chernobyl accident. This review summarizes the role of ret in the development of human disease.

Novel germline RET proto-oncogene mutations associated with medullary thyroid carcinoma (MTC): mutation analysis in Japanese patients with MTC.

Germ-like and somatic mutations in the RET proto-oncogene are associated with inherited and sporadic medullary thyroid carcinoma (MTC). The majority of patients with multiple endocrine neoplasia type 2A (MEN2A) and familial medullary thyroid carcinoma (FMTC) carry germ-line point mutations that result in the substitution of one of five cysteine residues. We investigated exons 10, 11, 13, 14 and 16 of the RET proto-oncogene in 33 unrelated Japanese patients with MTC. Eleven of the 33 cases (33%) were found to have germ-line mutations. Three previously unreported mutations in exon 10 and 11 were identified: one in codon 620, (TGC-->GGC), resulting in a cysteine to glycine substitution, and two in codon 630, (TGC-->TCC) and (TGC-->TAC), resulting in cysteine to serine and cysteine to tyrosine changes, respectively. The new mutations were present in the germ-line DNA of four unrelated patients for whom a family history of MTC had not been documented. Because the new RET alleles described here involve cysteine residues in a region of protein previously associated with FMTC and MEN2A, it is very likely that they represent mutations that predispose to the development of MTC.

Oncogenic activation of RET by two distinct FMTC mutations affecting the tyrosine kinase domain.

Multiple endocrine neoplasia type 2A (MEN 2A) and familial medullary thyroid carcinoma (FMTC) are two dominantly inherited disorders caused by germline mutations of the RET proto-oncogene. The RET gene codes for a receptor tyrosine kinase. The majority of MEN2A and FMTC mutations are clustered in the extra-cellular cysteine-rich domain and result in constitutive activation of the tyrosine kinase through the formation of disulfide-bonded RET homodimers. Recently, two novel point mutations have been identified in the germline of five distinct FMTC families. Both mutations occur within the catalytic domain of the RET kinase and lead to the substitution of either glutamic acid 768 or valine 804 by an aspartic acid and a leucine respectively. We have introduced each FMTC mutation in two RET isoforms: RET51 the long isoform (1114 aa) and RET9 the short isoform (1072 aa) which differ in the C-terminal region of the protein. The RET51 isoform carrying either E768D or V804L mutation was autophosphorylated, displayed a transforming activity upon expression in Rat1 fibroblasts and induced neuronal differentiation of PC12 cells. However, the transforming capacity of these RET51-FMTC mutants was found to be severalfold less potent compared to the same isoform carrying either the MEN2A mutation (C634R) or the MEN2B mutation (M918T). In contrast, RET9 containing mutations E768D or V804L was not autophosphorylated, exhibited a poor oncogenic potential in fibroblasts and did not promote neuritic outgrowth upon expression in PC12 cells. Overall, these findings demonstrate that mutations E768D and V804L are gain-of-function mutations that confer to the long RET isoform the capacity to exert a biological effect, although these mutations are more weakly activating than the MEN2A and MEN2B mutations. These results may provide a biochemical basis as to why the phenotypic consequences of these mutations are restricted to thyroid C-cells.

The RET proto-oncogene in medullary and papillary thyroid carcinoma. Molecular features, pathophysiology and clinical implications.

The evolution of cancer is a multistep phenomenon, and multiple cellular genetic lesions are involved in the emergence of the malignant neoplasm. Several early events have been implicated in the neoplastic transformation of thyrocytes, and recent reports have described the involvement of specific genetic alterations in different types of thyroid neoplasms: ras point mutations are frequently observed in tumours with follicular histology, gsp-the mutated form of the alpha subunit of the Gs-protein-is encountered in up to 73% of papillary or follicular thyroid carcinomas, and a high prevalence of p53 point mutations has been found in anaplastic thyroid carcinomas but not in differentiated follicular tumours. More recent studies revealed that the RET proto-oncogene is involved in the oncogenesis of medullary thyroid carcinoma (MTC) and papillary thyroid carcinoma (PTC) by activation of its tyrosine kinase either by point mutation or rearrangement. In this review the most important recently published data on alterations of the RET proto-oncogene in heritable and sporadic MTCs and in PTCs will be summarized. Emphasis will be directed to the pathophysiological mechanisms of tumour initiation, the indications and limitations of DNA testing, and the clinical implications of identified RET defects in thyroid lesions.

Cys 618 Arg mutation in the RET proto-oncogene associated with familial medullary thyroid carcinoma and maternally transmitted Hirschsprung s disease suggesting a role for imprinting.

The multiple endocrine neoplasia type 2 (MEN2) syndromes and Hirschsprung s disease (HSCR) are inherited neurocristopathies characterized by medullary thyroid carcinoma (MTC), pheochromocytoma, parathyroid disease, and gastrointestinal neuromatosis. mutations in the RET proto-oncogene are the underlying cause of the MEN2 syndromes and some cases of HSCR. In this report, we show that Cys 618 Arg mutation cosegregates with familial MTC and HSCR in two Moroccan Jewish families in which no involvement of pheochromocytoma or parathyroidism was observed. A single haplotype shared by chromosomes bearing the Cys 618 Arg mutation in both families strongly suggests a founder effect for this mutation. We have observed in our and in several other previously reported families, an excess of maternal over paternal mutated RET alleles in offsprings affected by HSCR. We suggest that parental imprinting may play a role in the ethiology of HSCR caused by mutations in the RET protooncogene.

Prenatal molecular diagnosis of RET proto-oncogene mutation in multiple endocrine neoplasia type 2A.

We report a case of multiple endocrine neoplasia type 2A (MEN 2A) diagnosed prenatally at 16 weeks gestation. The 35-year-old mother is a MEN 2A patient. She had had three prior pregnancies: one resulted in a stillbirth; one produced a genetically unaffected boy; and the third was terminated in the first trimester owing to a diagnosis of blighted ovum. Autopsy did not reveal the cause of death of the stillborn infant, who was also found to be affected with MEN 2A by molecular study of paraffin-embedded tissue. Because of poor obstetric history and the patient s age, amniocentesis for cytogenetic and molecular studies was performed at 16 weeks gestation during the pregnancy under discussion. As with other affected members in the mother s family, the missense mutation of TGC to TTC at codon 634 of the RET proto-oncogene was found in amniotic fluid cells. Analysis of DNA extracted from the lymphocytes of the infant s blood at birth confirmed the diagnosis. To our knowledge, this is the first report of prenatal diagnosis of MEN 2A.

A novel somatic mutation in the RET proto-oncogene in familial medullary thyroid carcinoma with a germline codon 768 mutation.

In individuals who carry germline mutations in tumor suppressor genes predisposing them to inherited cancer syndromes, occurrence of somatic mutations in the same genes contributes to tumorigenesis. Germline mutations in the RET proto-oncogene predispose individuals to multiple endocrine neoplasia (MEN) type 2 syndromes. Since these mutations are oncogenic by themselves, somatic mutations in the same gene had been thought unnecessary. Recently, a somatic mutation at codon 918 of RET was reported in medullary thyroid carcinoma (MTC) and C-cell hyperplasia in patients with MEN 2A or familial MTC (FMTC), suggesting its possible contribution to tumorigenesis. We describe here a novel somatic mutation at codon 919 in a patient with FMTC carrying a germline mutation at codon 768 that may also be related to tumor progression.

Genetic testing for familial cancer. Consequences of RET proto-oncogene mutation analysis in multiple endocrine neoplasia, type 2.

OBJECTIVE: To assess clinician use and acceptance of RET proto-oncogene mutation testing in multiple endocrine neoplasia, type 2 (MEN 2) family members. DESIGN: A retrospective survey of clinicians managing 26 MEN 2 families with documented RET mutations to assess the effect of genetic screening on subsequent investigation and management of family members. SETTING: Tertiary referral center for RET mutation testing. MAIN OUTCOME MEASURES: The screening procedures used by clinicians and the altered incidence of C-cell hyperplasia vs medullary thyroid carcinoma in genetically as opposed to biochemically identified affected family members. RESULTS: Among RET mutation-positive patients, thyroidectomy performed for clinical or biochemical indication disclosed medullary thyroid carcinoma in 44 (98%) of 45 patients and precursor C-cell hyperplasia in only 1 (2%) patient. When prophylactic thyroidectomy was performed based on a positive genetic result, medullary thyroid carcinoma occurred in 3 (43%) of 7 patients and C-cell hyperplasia in 4 (57%) of 7 patients (P < .001). RET mutation-negative patients were not subjected to further biochemical testing, but 4 had already undergone thyroidectomy based on abnormal results of pentagastrin stimulation tests, including 2 patients who were known to be RET mutation-negative at the time of surgery. RET mutation testing was well accepted and resulted in additional family members consenting to screening in more than 85% of families. CONCLUSIONS: Genetic screening for RET proto-oncogene mutations in MEN 2 is a powerful diagnostic tool that enables prophylactic thyroidectomy to be performed in RET mutation-positive patients at an earlier stage of the disease process than does traditional biochemical screening.

High prevalence of activating ret proto-oncogene rearrangements, in thyroid tumors from patients who had received external radiation.

A high frequency (about 60%) of ret rearrangements in papillary thyroid carcinomas of children exposed to radioactive fallout in Belarus after the Chernobyl accident, has been reported by three recent studies (Fugazzola et al., 1995; Ito et al., 1994; Klugbauer et al., 1995). These studies suggested that the radiation exposure may be a direct inducer of activating rearrangements in the ret gene. In order to confirm the postulated link between irradiation and the role of the ret proto-oncogene in thyroid tumorigenesis, we analysed for the presence of ret activating rearrangements using RT-PCR, XL-PCR, Southern blot and direct sequencing techniques, 39 human thyroid tumors (19 papillary carcinomas and 20 follicular adenomas), from patients who had received external radiation for benign or malignant conditions. As controls, we studied 39 spontaneous tumors (20 papillary carcinomas and 19 follicular adenomas). Our data concerning the radiation-associated tumors, showed that: (1) the overall frequency of ret rearrangements was 84% in papillary carcinomas (16/19) and 45% (9/20) in follicular adenomas; (2) in contrast with the results obtained in the Chernobyl tumors, the most frequently observed chimeric gene was RET/PTC1 instead of the RET/PTC3 and (3) ALL the tumors were negative for RET/PTC2. In the spontaneous tumors, only the papillary carcinomas presented a ret rearrangement (15%:3/20): 1 RET/PTC1, 1 RET/ PTC3 and 1 uncharacterized. In conclusion, our results confirm the crucial role played by the ret proto-oncogene activating rearrangements in the development of radiation-associated thyroid tumors appearing after therapeutic or accidental ionizing irradiation, and show, for the first time, the presence of RET/PTC genes in follicular adenomas appeared after external irradiation.

A case of metastatic medullary thyroid carcinoma: early identification before surgery of an RET proto-oncogene somatic mutation in fine-needle aspirate specimens.

Medullary thyroid carcinoma (MTC) management requires determination of the sporadic or familial nature of the disease. RET proto-oncogene mutation analysis in the tumor tissue obtained at surgery and in the peripheral blood identifies somatic vs. germinal mutations. We now report a case of MTC in which a RET somatic mutation at codon 918 was detected in fine-needle aspiration specimens obtained from both the thyroid nodule and two enlarged neck lymph nodes but not in peripheral blood. Therefore, a diagnosis of sporadic MTC was made before surgery. Thus, this approach, by excluding preoperatively multiple endocrine neoplasia disease, permitted immediate thyroidectomy without search for pheochromocytoma. PCR-based genetic analysis in fine-needle aspiration biopsy specimens, therefore, preoperatively identifies genetic abnormalities at an early and easily manageable stage and may well contribute to the management strategy of MTC.

Germline dinucleotide mutation in codon 883 of the RET proto-oncogene in multiple endocrine neoplasia type 2B without codon 918 mutation.

The autosomal dominant multiple endocrine neoplasia type 2 syndromes (MEN 2) comprise three clinically distinct entities, MEN 2A, familial medullary thyroid carcinoma and MEN 2B, which share a common clinical feature: medullary thyroid carcinoma (MTC). MEN 2B is considered to have the most aggressive form of MTC. Therefore, early detection of MEN 2B in order to prevent potentially lethal MTC is important. More than 95% of ALL MEN 2B cases are caused by germline mutation at codon 918 (M918T) in exon 16 of the RET proto-oncogene. In this study, we demonstrate the presence of germline codon 883 mutation (A883F) in 2 of 3 unrelated MEN 2B cases without codon 918 mutation. Our data demonstrate a novel etiologic event which may have roles in predisposition to MEN 2B when present in the germline and in the pathogenesis of sporadic MTC when somatic.

[Somatic ret proto-oncogene mutations in sporadic C-cell carcinoma of the thyroid gland].

Germline mutations of the RET proto-oncogene localized on chromosome 10q11.2 are the underlying cause of hereditary medullary thyroid carcinoma. In MEN 2A and FMTC, mutations can be found in exons 10, 11, 13 or 14. MEN 2B is characterized by a specific mutation in exon 16. In a significant number of sporadic MTC somatic mutations in codon 918 (exon 16) are detectable. Some rare sporadic MTC present somatic mutations in codons 611, 634, 768 and 883. Recently, deletion-insertion of the RET proto-oncogene in exon 11 and a deletion in exon 10 has been found. RET proto-oncogene mutations are not only responsible for the development of the familial MTC, but may also play an important role in the pathogenesis of sporadic MTC. However, the prognostic relevance of these somatic events is still unclear.

Detection of RET proto-oncogene codon 634 mutations using mass spectrometry.

mutations located in the RET proto-oncogene at codon 634 associated with multiple endocrine neoplasia type 2A and medullary thyroid carcinoma are detected by low-resolution and high-resolution mass spectrometry schemes not requiring labeling or electrophoretic separation of diagnostic products. The former requires measurement by matrix-assisted laser desorption ionization time-of-flight mass spectrometry of 21- to 27-mer oligonucleotides generated by a primer oligo base extension reaction. The latter is based upon direct measurement of artificial products which include the mutation site using matrix-assisted laser desorption ionization Fourier transform mass spectrometry. In this feasibility study a synthetic 25-mer representing the wildtype allele (7660.3 Da) was easily distinguished from G to A (7644.3 Da) and G to T (7635.3 Da) mutant alleles; the mutant alleles, which differed in mass by only 9.0 Da, were easily resolved when analyzed as a mixture. The results of both detection schemes were highly accurate and reliable, indicating mass spectrometry to be a high-quality alternative for future DNA diagnostics performed in clinical laboratories and genetic profiling studies.

Sequence and characterisation of the RET proto-oncogene 5 flanking region: analysis of retinoic acid responsiveness at the transcriptional level.

The RET proto-oncogene encodes a receptor tyrosine kinase expressed during neural crest development. RET expression is enhanced in vitro by several differentiating agents, including retinoic acid (RA), which up-regulates RET expression in neuroblastoma cell lines. In the present work we sequenced and analysed a 5 kbp genomic fragment 5 to RET. Three deletion fragments of this region were tested for their RA inducibility in transient transfection assays and failed to support the hypothesis of a direct transcriptional activation. Finally, our functional analysis of a candidate RA response element present in the RET promoter provides new hints for the understanding of the interaction between nuclear receptors and their specific recognition sites.

Expression of the RET/PTC1 oncogene impairs the activity of TTF-1 and Pax-8 thyroid transcription factors.

The most frequent genetic alterations described thus far in human papillary thyroid carcinomas are somatic rearrangements of the RET proto-oncogene, which generate the chimeric RET/PTC oncogenes. We recently found that the expression of the RET/PTC1 oncogene blocked the expression of the thyroid-differentiated phenotype in rat thyroid epithelial cell line PC CI 3 (PC). Here, we show that this block occurs at a transcriptional level; indeed, the thyroid-specific thyroglobulin and thyroperoxidase gene promoters were inactive in PC-PTC cells. Specific transcription factors, namely, TTF-1 and Pax-8, regulate the expression of differentiated functions in thyroid cells. Here, we show that Pax-8 is expressed at reduced levels in PC-PTC cells and that its adoptive overexpression is unable to restore the activity of target promoters. In contrast, TTF-1 expression is unaltered in PC-PTC cells; however, by using a synthetic promoter that contains its specific target sequence, we demonstrate that TTF-1 is inactive in PC-PTC cells. We conclude that the RET/PTC1 oncogene alters the expression of the thyroid-differentiated phenotype by at least two different mechanisms, ie., down-regulation of Pax-8 protein and mRNA expression and impaired function of TTF-1 and Pax-8, which occurs at a posttranslational level.

Mutation of RET proto-oncogene in Japanese patients with multiple endocrine neoplasia type 2B and sporadic medullary thyroid carcinoma.

To determine whether patients with medullary thyroid carcinoma (MTC) develop other endocrine neoplasms or their relatives develop MTC, we investigated the mutations in the RET proto-oncogene in patients with multiple endocrine neoplasia type 2B (MEN 2B, N = 1) and sporadic MTC (N = 6). DNA from MTC tissue and the peripheral blood was screened by polymerase chain reaction single-strand conformational polymorphism (PCR-SSCP) analysis of exons 10 and 11. PCR products of exons 13 and 16 were also analyzed by AluI and FokI restriction enzyme digestion methods, respectively, and then sequenced. We did not find structural abnormalities in exon 10 or 11, or at codon 768 in exon 13, but a mutation at codon 918, ATG to ACG, was found in the peripheral blood and the MTC tissue from a patient with MEN 2B. The same mutation was also found in tumor tissue from 2 of 6 patients with sporadic MTC, but not in their peripheral blood.

Cys 634 mutations in the RET proto-oncogene in Spanish families affected by MEN 2A.

Desferrioxamine (DFX) is an iron chelation agent widely used in the treatment of transfusional iron overload in patients with thalassaemia major and other severe refractory anaemias. DFX has been shown to induce inhibition of DNA synthesis and apoptosis in vitro; however, the molecular targets of DFX action are not well known. The c-myc proto-oncogene is involved in a number of cellular processes including proliferation, differentiation and apoptotic cell death. We have examined the expression of c-myc in peripheral blood mononuclear cells from 71 patients with homozygous beta-thalassaemia in regular transfusion and iron chelation therapy with DFX, 5 non-transfusion, non-chelation-dependent thalassaemic patients, and 15 healthy volunteers using an APAAP immunocytochemical method. We have found that mononuclear cells from thalassaemic patients receiving DFX express significantly lower levels of c-myc protein compared to control healthy volunteers or thalassaemics receiving no DFX. In vitro treatment of HL60 or K562 leukaemic cells with 100 microliters DFX also induced a rapid decrease in c-myc mRNA and protein levels, followed by apoptosis and inhibition of DNA synthesis. These effects were blocked by simultaneous addition of ferric chloride. Our data suggest that deprivation of cellular iron induces downregulation of c-myc expression in vitro and in vivo and may influence haemopoietic cell growth and survival.

Duplication of 9 base pairs in the critical cysteine-rich domain of the RET proto-oncogene causes multiple endocrine neoplasia type 2A.

Desferrioxamine (DFX) is an iron chelation agent widely used in the treatment of transfusional iron overload in patients with thalassaemia major and other severe refractory anaemias. DFX has been shown to induce inhibition of DNA synthesis and apoptosis in vitro; however, the molecular targets of DFX action are not well known. The c-myc proto-oncogene is involved in a number of cellular processes including proliferation, differentiation and apoptotic cell death. We have examined the expression of c-myc in peripheral blood mononuclear cells from 71 patients with homozygous beta-thalassaemia in regular transfusion and iron chelation therapy with DFX, 5 non-transfusion, non-chelation-dependent thalassaemic patients, and 15 healthy volunteers using an APAAP immunocytochemical method. We have found that mononuclear cells from thalassaemic patients receiving DFX express significantly lower levels of c-myc protein compared to control healthy volunteers or thalassaemics receiving no DFX. In vitro treatment of HL60 or K562 leukaemic cells with 100 microliters DFX also induced a rapid decrease in c-myc mRNA and protein levels, followed by apoptosis and inhibition of DNA synthesis. These effects were blocked by simultaneous addition of ferric chloride. Our data suggest that deprivation of cellular iron induces downregulation of c-myc expression in vitro and in vivo and may influence haemopoietic cell growth and survival.

A GTG to ATG novel point mutation at codon 804 in exon 14 of the RET proto-oncogene in two families affected by familial medullary thyroid carcinoma.

Desferrioxamine (DFX) is an iron chelation agent widely used in the treatment of transfusional iron overload in patients with thalassaemia major and other severe refractory anaemias. DFX has been shown to induce inhibition of DNA synthesis and apoptosis in vitro; however, the molecular targets of DFX action are not well known. The c-myc proto-oncogene is involved in a number of cellular processes including proliferation, differentiation and apoptotic cell death. We have examined the expression of c-myc in peripheral blood mononuclear cells from 71 patients with homozygous beta-thalassaemia in regular transfusion and iron chelation therapy with DFX, 5 non-transfusion, non-chelation-dependent thalassaemic patients, and 15 healthy volunteers using an APAAP immunocytochemical method. We have found that mononuclear cells from thalassaemic patients receiving DFX express significantly lower levels of c-myc protein compared to control healthy volunteers or thalassaemics receiving no DFX. In vitro treatment of HL60 or K562 leukaemic cells with 100 microliters DFX also induced a rapid decrease in c-myc mRNA and protein levels, followed by apoptosis and inhibition of DNA synthesis. These effects were blocked by simultaneous addition of ferric chloride. Our data suggest that deprivation of cellular iron induces downregulation of c-myc expression in vitro and in vivo and may influence haemopoietic cell growth and survival.

Oncogenic rearrangements of the ret proto-oncogene in thyroid tumors induced after exposure to ionizing radiation.

A high frequency (approximately 60%) of ret rearrangements in Chernobyl papillary thyroid carcinomas (PTC) has been reported recently. The data suggested that the radiation exposure may be a direct inducer of activating rearrangements in the ret gene. In our study, we have analyzed for the presence of RET/PTC oncogenes using the RT-PCR, XL-PCR, Southern blot and direct sequencing techniques, 39 human thyroid tumors from patients who had received external radiation for benign or malignant conditions. As controls, we studied 39 spontaneous tumors. Our results indicate that: 1) the overall frequency of ret rearrangements was 84% in papillary carcinomas (16/19) and 45% (9/20) in follicular adenomas; 2) in contrast with the results obtained in the Chernobyl tumors, the most frequently observed chimeric gene was RET/PTC1; and 3) ALL the tumors were negative for RET/PTC2. In the spontaneous tumors, only the papillary carcinomas presented a ret rearrangement (15%: 3/20). Our data confirm the crucial role played by the ret proto-oncogene activating rearrangements in the development of radiation-associated thyroid tumors, and show, for the first time, the presence of RET/PTC genes in follicular adenomas appeared after external irradiation.

Risk and penetrance of primary hyperparathyroidism in multiple endocrine neoplasia type 2A families with mutations at codon 634 of the RET proto-oncogene. Groupe D etude des Tumeurs a Calcitonine.

Germline mutations of the RET proto-oncogene are responsible for multiple endocrine neoplasia type 2, including multiple endocrine type 2A (MEN 2A), type 2B (MEN 2B), and familial medullary thyroid carcinoma. The relationship between specific mutations and syndromic features has been established. In particular, the risk for pheochromocytoma and hyperparathyroidism (HPT) in MEN 2A patients is clearly associated with the presence of the RET mutation at a specific position, i.e. at codon 634. Also, a correlation between a specific mutation, C634R, and the development of HPT has been suggested but is still controversial. To further investigate the relationship between specific mutations of codon 634 and the development of HPT, we studied a population of 188 individuals, carrying mutations at codon 634, namely C634R (65 patients belonging to 10 families), C634Y (80 patients belonging to 11 families), or the less frequent codon 634 mutations [i.e. C634S, C634F, C634G, or C634W (43 patients belonging to 9 families)]. In this series of patients, we defined an overall HPT prevalence of 19.1% and found that this prevalence did not vary significantly, with respect to the nature of the mutation. However, irrespective of the particular mutation, the prevalence of HPT showed a high interfamilial variability. The statistical model that best fitted with the observed data was in favor of the heterogeneity of the risk for HPT, with 40% of the families showing an HPT risk of 34% and 60% of the families showing an HPT risk of 9%. In addition, our study clearly demonstrated that HPT could be an early component of the disease and provided the first estimate of age-specific and mutation-specific HPT penetrance in individuals with mutations of codon 634 of the RET proto-oncogene.

Occurrence of MEN 2a in familial Hirschsprung s disease: a new indication for genetic testing of the RET proto-oncogene.

PURPOSE: The association of the rare hereditary cancer syndrome, multiple endocrine neoplasia type 2a (MEN 2a) with Hirschsprung s disease, both linked to germline mutations in the RET proto-oncogene, has been reported recently. With the widespread availability of genetic screening for MEN 2a, it is necessary to define the indications for genetic testing of MEN 2a and population subgroups at high risk for inheriting the disease. The purpose of this study was to assess the prevalence of Hirschsprung s disease in MEN 2a and investigate the value of genetic analysis for MEN 2a in children with familial Hirschsprung s disease. METHODS: The ethnically diverse study group consisted of unselected consecutive patients (n=426) at risk for hereditary medullary thyroid cancer (MTC) referred to a single laboratory for genetic testing. Analysis used genomic DNA and a polymerase chain reaction-based heteroduplex mutation detection strategy for exons 10, 11, 13, and 14 of the RET proto-oncogene followed by direct DNA sequencing. Significance of RET genotype-phenotype correlation was determined by Fisher s two-tailed Exact test and a 2 x 2 contingency table. RESULTS: Thirty-six distinctly new MEN 2a kindreds were identified. Hirschsprung s disease cosegregated among siblings with MEN 2a in 15 patients from 6 of the 36 (17%) families. The extent of aganglionosis in the 15 patients ranged from midrectum to duodenum. Of the 15 patients with Hirschsprung s disease, 10 (six boys, four girls) underwent thyroidectomy for MTC (n=5) or C-cell hyperplasia (n = 5) at ages 2 to 47 years (mean, 15.6 years), and the remaining five patients died in childhood of complications related to the aganglionosis. In retrospect, Hirschsprung s disease was the presenting feature of MEN 2a in five of the six families rather than MTC or pheochromocytoma. In ALL six MEN 2a families expressing Hirschsprung s disease, the RET mutation predisposing to the combined phenotype occurred in exon 10 at codons 609 (n=2), 618 (n=3), or 620 (n = 1). By contrast, the MEN 2a with Hirschsprung s phenotype was not found in any of the 22 families with a RETexon 11, 13, or 14 mutation (P=.0007). CONCLUSIONS: The authors conclude that Hirschsprung s disease is a phenotypic marker for MEN 2a and possibly more common than originally appreciated. The expression of Hirschsprung s disease with MEN 2a may be uniquely linked to RETexon 10 mutations. The authors recommend that (1) patients affected with MEN 2a may be counseled regarding the potential risk of Hirschsprung s disease in offspring and (2) a family history of MTC be explored in children with familial Hirschsprung s disease and genetic screening for MEN 2a be considered.

RET/PTC oncogene activation defines a subset of papillary thyroid carcinomas lacking evidence of progression to poorly differentiated or undifferentiated tumor phenotypes.

Malignant tumors of the thyroid gland vary considerably in aggressiveness, ranging from a well-differentiated, clinically indolent, to an undifferentiated, often lethal phenotype. Undifferentiated (anaplastic) thyroid tumors are supposed to be derived, through a process of progression, from previously differentiated neoplasms. A common genetic alteration in thyroid tumors is the rearrangement of the tyrosine kinase-encoding RET proto-oncogene, leading to the generation of chimeric RET/PTC oncogenes. To define the characteristics of the thyroid tumor subset with RET rearrangements, we have investigated its activation by a combined immunohistochemistry and reverse transcription-PCR approach in a series of 316 well-characterized thyroid tumors representative of the main diagnostic groups. RET activation was detected in 81 of 201 (40.3%) papillary carcinomas. It correlated with tumors exhibiting the "classic" morphological features of papillary cancer or with the microcarcinoma subtype (P = 0.017). RET activation in papillary carcinoma was not associated with clinical markers (such as large tumor size, extrathyroidal extension, or metastases) of increased morbidity. Follicular-type neoplasms (61 adenomas and 22 carcinomas), as well as the aggressive poorly differentiated (15 cases) or undifferentiated (anaplastic) carcinomas (17 cases), were negative. This study demonstrates that ALL thyroid carcinomas harboring activating RET rearrangements exhibit a well-differentiated phenotype, that of papillary carcinoma, and indicates that the subset of RET/PTC-positive papillary carcinomas do not progress to more aggressive, less differentiated tumor phenotypes.

Altered expression of RET proto-oncogene product in prostatic intraepithelial neoplasia and prostate cancer.

BACKGROUND: The RET proto-oncogene encodes a protein that belongs to the tyrosine kinase growth factor receptor family. Germline point mutations in RET are found in individuals with multiple endocrine neoplasia (MEN) syndromes, and gene rearrangements have been reported in papillary thyroid cancers. We recently identified transcripts of the RET proto-oncogene in human prostate cancer xenografts and prostate cancer cell lines by means of reverse transcription-polymerase chain reaction analyses. The purpose of this study was to investigate Ret protein expression in human prostate tissue. METHODS: Ret protein expression was evaluated immunohistochemically in formalin-fixed, paraffin-embedded whole-prostate sections. The prostate specimens were obtained from 30 patients with prostate cancer after radical prostatectomies. Ret protein expression was compared in tumor foci and benign prostatic tissue. Medullary thyroid carcinoma tissue associated with an MEN syndrome and papillary thyroid cancer tissue served as positive controls. RESULTS: Ret appeared to be overexpressed in high-grade (histopathologically advanced) prostatic intraepithelial neoplasia (PIN) and prostate cancer when compared with its expression level in benign prostatic secretory epithelium. In addition, there was an apparent increase in Ret protein expression with decreased cellular differentiation, i.e., increasing Gleason pattern. CONCLUSION: expression of the RET proto-oncogene in benign prostatic epithelium, high-grade PIN, and histopathologically advanced prostate cancer suggests that RET may play a role in the growth of both benign and neoplastic prostate epithelial cells.

Multiple endocrine neoplasia 2B with glaucoma associated with codon 918 mutation of the RET proto-oncogene.

PURPOSE: We report the first case of a 35-year-old Japanese man with multiple endocrine neoplasia (MEN) 2B de novo to be associated with primary open angle glaucoma. METHODS: DNA was extracted from the patient s circulating leukocytes, specimens of the resected cervical lymph nodes, the neuroma of the eyelid, and of the conjunctival epithelium. mutation was assayed by PCR/restriction enzyme and direct sequencing. RESULTS: The glaucoma and MEN 2B were diagnosed at the same time, when the patient was 16 years old. The glaucoma was controlled by medical treatment. The codon 918 mutation (met918thr) in exon 16 of the RET proto-oncogene associated with MEN 2B was identified in ALL these tissues. CONCLUSION: This patient was found to have the germline mutation at codon 918 (met918thr) in the RET proto-oncogene. The association between the RET proto-oncogene and glaucoma remains unclear, since glaucoma is a rare manifestation of MEN 2B.

27-bp deletion in the ret proto-oncogene as a somatic mutation associated with medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) occurs as a sporadic tumor or in connection with the inherited cancer syndromes of multiple endocrine neoplasia (MEN) types 2A and 2B and familial MTC. Missense RET proto-oncogene mutations of one of cysteine codons in exons 10 and 11 are found in the majority of families with MEN 2A and or familial MTC. In MEN 2B, mutations at codon 918, exon 16, have been identified in most of the affected individuals. In a significant amount of sporadic MTC somatic codon 918 mutations appear. In addition to these, a 6-bp deletion including codon 630 and a 24-bp deletion including codon 634 combined with a 6-bp insertion have been observed. We report on a 27-bp deletion in exon 10 as a somatic mutation associated with a sporadic medullary thyroid carcinoma.

Germline and somatic mutations of the RET proto-oncogene in apparently sporadic medullary thyroid carcinomas.

Medullary thyroid carcinomas (MTC) occur sporadically or as part of inherited multiple endocrine neoplasia (MEN) type 2 syndromes. To recognize misdiagnosed familial cases and to establish the frequency of somatic mutations, a series of 50 patients, clinically diagnosed with sporadic MTC, were analyzed for mutations in the RET proto-oncogene. The clinical management of the patient and of the family is different in the two cases. Germline mutations were detected in three independent cases, demonstrating that they were associated to familial MTC. The mutations affected exon 11 in two cases and exon 14 in one case. Somatic mutations were detected in eight patients (30%) and they were indicative of sporadic MTC. In seven cases the mutation affected codon 918 of exon 16 and in one case codon 634 in exon 11. No RET mutations were detected in the remaining patients. A different genetic and clinical management is proposed for individuals with a diagnosis of familial or sporadic MTC.

Mutational analysis of the RET proto-oncogene in 71 Japanese patients with medullary thyroid carcinoma.

Multiple endocrine neoplasia types 2A and 2B (MEN2A and MEN2B) and familial medullary thyroid carcinomas (FMTC) are caused by germline mutations in the RET proto-oncogene. To investigate the spectrum of RET mutations among Japanese patients, we screened the RET gene in 71 patients with thyroid carcinomas. The panel included representatives of 44 families carrying FMTC or MEN2, 22 sporadic medullary thyroid carcinomas (MTCs), and five MTCs without familial information. mutations in nucleotide sequences encoding one of three specific cysteine residues in the extracellular domain of the RET protein were found in 33 of the 34 MEN2A patients and in five of the six FMTC patients examined. A mutation at codon 918, causing the substitution of threonine for methionine in the tyrosine kinase domain of the protein, was found in germline DNAs of ALL four patients with MEN2B and in two of the 22 patients with sporadic MTCs; codon 918 was mutated somatically in tumor DNAs from three other sporadic cases. Germline mutations of codon 768, GAG to GAC (Glu to Asp), were detected in one FMTC, in one patient with sporadic MTC, and in one of the patients without familial information. Two somatic mutations, an Asp to Gly substitution at codon 631 and a Cys to Arg substitution at codon 634, had not been reported previously. Of five germline mutations found among the 22 sporadic cases, four were confirmed as de novo mutations since in each case neither parent carried the mutation. As nearly one-fourth of the patients with sporadic MTCs carried germline mutations and 50% of their children are expected to develop MTC and other endocrine tumors, these results indicated the importance of careful clinical surveillance of family members of any patient with MTC.

RET proto-oncogene mutation analysis for multiple endocrine neoplasia, type 2.

Female transgenic mice lacking a functional c-mos proto-oncogene develop ovarian teratomas, indicating that c-mos may behave as a tumour-suppressor gene for this type of tumour. We have analysed the entire coding region of the c-MOS gene in a series of human ovarian teratomas to determine whether there are any cancer-causing alterations. DNA from twenty teratomas was analysed by single-strand conformational analysis (SSCA) and heteroduplex analysis (HA) to screen for somatic and germline mutations. In nine of these tumours the entire gene was also sequenced. A previously reported polymorphism and a single new sequence variant were identified, neither of which we would predict to be disease-causing alterations. These results suggest that mutations in the coding region of the c-MOS gene do not play a significant role in the genesis of human ovarian teratomas.

Novel point mutation in exon 10 of the RET proto-oncogene in a family with medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) may occur sporadically or as part of the autosomal dominant multiple endocrine neoplasia type 2 (MEN 2). Three hereditary forms of MEN 2 have been identified: MEN 2A, MEN 2B, and familial MTC (FMTC). Missense germ-line mutations in the RET proto-oncogene have been identified as cause of these endocrine diseases. mutations are found in exons 10 and 11 in MEN 2A and FMTC families and in a small number of families in exons 13, 14, and 15. Although a strong correlation between codon mutations and phenotypes has been described, not ALL the expected cystein codon mutations have been found. Therefore, the more mutations are found, the better it is possible to establish phenotype-genotype correlations. We report on a novel RET mutation at codon 611 in a family with MTC without other clinical manifestations and of rather benign course.

Analysis of RET proto-oncogene abnormalities in patients with MEN 2A, MEN 2B, familial or sporadic medullary thyroid carcinoma.

Medullary thyroid carcinoma (MTC) may occur either as a sporadic or familial (FMTC) disease. Multiple endocrine neoplasia (MEN) type 2, inherited as an autosomal dominant disease, is characterized by coexistence of MTC with other endocrine neoplasia. Activating mutations of the RET proto-oncogene, involving the somatic or the germinal cell lineage, are found in both inherited and acquired forms. In this study, RET mutations were screened in 47 individuals either affected by MTC or belonging to families with hereditary MTC. Exons 10, 11, 13, 14, 15 and 16 of the RET gene were amplified by polymerase chain reaction and examined by DNA sequence and/or restriction enzyme analysis to detect mutations in purified amplicons. Six MEN 2A families with a germline mutation at codon 634, one FMTC family carrying a mutation at codon 618 and two MEN 2B families with a mutation at codon 918 were identified. In affected members of a MEN 2A family no known RET mutations were observed. Besides, we identified a germline mutation in a patient with apparently sporadic MTC and in two out of three sons, indicating the presence of a sporadic misclassified familial disease. In ALL of the families examined we were able to distinguish the affected vs unaffected (not at risk) members. A somatic mutation of codon 918 was detected in three out of ten patients with apparently sporadic MTC.

Presence of the 918 mutation in the RET proto-oncogene in a Mexican patient with multiple endocrine neoplasia type 2B.

The dominantly inherited Multiple Endocrine Neoplasia cancer syndrome type 2B (MEN2B) is characterized by the presence of medullary thyroid carcinoma (MTC), phaechromocytoma (PHAEO), mucosal neuromas, ganglioneuromas of the intestinal tract, skeletal and ophthalmic abnormalities. MEN2B has been associated with a specific point mutation in the tyrosine kinase domain of the RET proto-oncogene (918RET mutation). We investigated a Mexican patient MEN2B for the presence of the 918RET mutation using the polymerase chain reaction followed by restriction endonuclease digestion. We have detected this mutation in DNA from the patient s MTC, PHAEO, and peripheral blood cells, but not in DNA from the patient s mother, suggesting that this mutation arose de novo. Our results are in agreement with the suggestion that the 918RET mutation is present in a vast majority of MEN2B cases around the world.

Alterations of RET oncogene in human adrenal tumors.

Previous studies have revealed specific activations of the RET oncogene in multiple endocrine neoplasia type 2 (MEN 2) and thyroid tumors. To understand the role of the RET proto-oncogene activation in sporadic adrenal tumors, we analyzed the alterations of the RET proto-oncogene in the cysteine-rich extracellular domain (exons 6 and 10), the terminal region of the extracellular domain and transmembrane domain (exon 11) and the tyrosine kinase domain (exons 12-17) in 35 cases of adrenal tumors (including 18 Conn s syndrome, 3 Cushing s syndrome, 2 non-functional adrenocortical tumor and 12 pheochromocytomas by polymerase chain reaction-single strand conformational polymorphism and sequencing methods. One case with pheochromocytoma and one with Conn s syndrome had point mutation. We also detected the rearrangement of the RET gene by reverse transcription-polymerase chain reaction and Southern hybridization. One case with Conn s syndrome and one with Cushing s syndrome were found to harbor RET/PTC1 (RET tyrosine kinase domain rearranged with H4 gene). The above results indicate that RET proto-oncogene mutations and RET/PTC1 are involved in the pathogenesis of sporadic adrenal tumors. mutations at codon 634 of the RET gene were also found in adrenal tumors. This suggests that the RET oncogene may also play a role in the tumorigenesis of adrenal tumors, and this possibility requires further investigation.

[Early diagnosis of multiple endocrine neoplasia type 2 (MEN 2) by detection of mutated RET proto-oncogene carriers].

RET proto-oncogene mutation results in a dominant autosomic inherited syndrome (MEN 2) presenting three distinct subtypes: MEN 2A, MEN 2B, and familial medullary thyroid carcinoma (FMTC). Detection of RET proto-oncogene mutation is a predictor before clinical or biochemical evidence of the disease is present and leads to preventive thyroid removal since there is no effective treatment for metastases. The aim of the present study was to characterize mutations in the RET proto-oncogene in affected patients and to identify potential carriers in their families. Two families with FMTC (5 and 6 members), 4 with MEN 2A (5, 5, 4 and 3 members) and 2 with MEN 2B (5 and 1 members), were studied. DNA was obtained from blood samples in ALL patients and from thyroid or from pheonochromocytoma tissues in patients submitted to surgery. PCR amplification was performed using specific primers for exons 10, 11 and 16, followed by direct sequencing. mutations at codon 634 in exon 11 were found in 16 subjects with FMTC and MEN 2A: TGC --> CGC (cysteine to arginine) in 9 cases, TGC --> TAC (cysteine to tyrosine) in 3, and TGC --> TTC (cysteine to phenilalanine) in 4. A unique mutation of codon 918 in exon 16, ATG --> ACG (methionine to threonine), was found in both MEN 2B affected patients. The mutations detected in DNA from peripheral blood were the same as those present in DNA extracted from tumor material. RET mutations were detected in ALL affected patients, confirming the diagnosis, and in 10 members of their families. In five of the carriers total thyroidectomy was performed. Anatomopathological study showed C-cells hyperplasia or in-situ microcarcinoma in two children (9 and 12 y) with no clinical signs of diseases and medullary thyroid carcinoma in three adults, who were previously unaware of the presence of thyroid nodules. The early detection of RET mutation followed by total thyroidectomy may prevent the development of the disease, specially in affected families, and avoid the fatal outcome of delayed medullary thyroid carcinoma diagnosis.

Multiple endocrine neoplasia type 2-associated RET proto-oncogene mutations do not contribute to the pathogenesis of sporadic parathyroid tumors.

BACKGROUND: Parathyroid disease occurs sporadically or as part of hereditary multiple endocrine neoplasia (MEN) syndrome. The aim of this study was to evaluate the possible role of the RET proto-oncogene not only in hereditary MEN 2-associated hyperparathyroidism but also in different forms of sporadic hyperparathyroidism. METHODS: We investigated 22 patients with parathyroid disease whose family history and results of laboratory and clinical examinations excluded MEN 2 syndrome. DNA extractions of histologically confirmed tumor tissue of patients with primary hyperparathyroidism (n = 18), renal hyperparathyroidism (n = 2), and parathyroid carcinoma (n = 2) were performed. Using solid phase DNA sequencing, mutation analysis of polymerase chain reaction amplified products focused on exons 10, 11, and 16 of the RET proto-oncogene. Parathyroid tissue from four patients with known MEN 2A served as positive controls. RESULTS: No mutations of the codons 609, 611, 618, 620, 634, and 918 were found in the sporadic parathyroid tumors analyzed. DNA sequencing revealed heterozygous mutations in codon 634 of the RET proto-oncogene in four parathyroid glands from four patients with MEN 2A. CONCLUSIONS: mutations of the RET proto-oncogene contributing to MEN 2 syndromes are absent in sporadic parathyroid tumors. Our data in conjunction with the literature suggest at least three different modes of tumorigenesis in parathyroid disease.

Prognostic value of RET proto-oncogene point mutations in malignant and benign, sporadic phaeochromocytomas.

Somatic mutations in the RET proto-oncogene are involved in the pathogenesis of an important subset (40-60%) of sporadic medullary thyroid carcinomas (MTCs) and less frequently (0-31%) in benign, sporadic phaeochromocytomas. Since limited data exist regarding the significance of somatic RET mutations in malignant phaeochromocytomas, we analysed a multicentre series of proven malignant (i.e., metastasised) phaeochromocytomas. Analogous with MTCs, where RET mutations lead to an aggressive behaviour, we hypothesised that somatic mutations would occur more frequently in malignant than in benign phaeochromocytomas. Paraffin-embedded tissue was available from 29 malignant and 27 benign phaeochromocytomas. Exons 10, 11 and 16 were analysed by non-radioactive single-strand conformation polymorphism, heteroduplex gel electrophoresis, restriction enzyme digestion and aberrant band patterns by non-isotopic sequencing. In only 1 of 29 malignant phaeochromocytomas was a mis-sense mutation found (at codon 634 of exon 11), whereas in 15% (4/27) of the benign tumours a point mutation was detected (in 3 tumours in exon 16 at codon 918 and in 1 tumour in exon 10 at codon 618). Absence of these mutations in non-tumourous DNA proved their somatic origin. Contrary to what has been reported for MTCs, oncogenic RET mutations are not associated with an aggressive tumour behaviour in sporadic phaeochromocytomas.

[A new inherited RET proto-oncogene mutation associated with familial medullary thyroid carcinoma and polymorphisms in adjacent regions].

A new point mutation, TCG(Ser)-->GCG(Ala) in codon 891, exon 15 of the RET protooncogene was revealed in two patients from a pedigree with familial medullary thyroid carcinoma (FMTC), but not in healthy persons. A linkage analysis with two well-known and two new intragene polymorphisms showed that informative polymorphic markers, the phenotypic expression of the disease, and the mutation are cosegregated in the studied pedigree. Two new polymorphisms, G/A at position-24 of intron 14 and C/T in codon 836 of exon 14, were found in the RET protooncogene. The frequencies of allele 1 of the polymorphic site in codon 836 were the same (0.96) in the Russian and German populations. This was also characteristic of two polymorphisms revealed earlier, namely, the sites in codons 691 (0.80 and 0.81, respectively) and 904 (0.21 and 0.22). However, the frequency of allele 1 of the polymorphisms in intron 14 differed significantly (0.87 and 0.77, respectively).

Germline RET proto-oncogene mutations in two Taiwanese families with multiple endocrine neoplasia type 2A.

To elucidate the germline RET proto-oncogene mutations in Taiwanese families with multiple endocrine neoplasia type 2A (MEN 2A), we extracted DNA from peripheral blood leukocytes of 28 members of two families with MEN 2A. Oligonucleotide primers for exons 10 and 11 were used to analyze the nucleotide sequence of codons 609, 611, 618, and 620 of exon 10, and codon 634 of exon 11 of the RET proto-oncogene. Two fragments of genomic DNA were amplified by polymerase chain reaction (PCR). The amplified PCR products were separated and purified from primers and free nucleotides in agarose gels, and the expected 187-bp and 234-bp bands were cut from the gels and sequenced. Thirteen family members in the two MEN 2A kindreds had mutations in codon 634 of exon 11. In kindred 1 (15 members available for this study), a heterozygous codon 634 mutation in nine members and a homozygous codon 634 mutation in one member led to the substitution of Phe (TTC) for Cys (TGC). Three members of kindred 2 (13 members available for this study) had a heterozygous base pair change in codon 634, which led to the substitution of Arg (CGC) for Cys (TGC). In this study, we found two mutation events occurring in two MEN 2A kindreds and also discovered a homozygous point mutation in one woman that led to heterozygous mutations in ALL of her children.

Papillary thyroid carcinoma oncogene (RET/PTC) alters the nuclear envelope and chromatin structure.

Current evidence suggests the papillary thyroid carcinoma oncogene (RET/PTC) generates papillary thyroid carcinomas in one genetic step. We tested a resulting prediction that RET/PTC expression in thyroid epithelium should be sufficient to cause the changes in nuclear morphology diagnostic of this tumor. Primary cultures of human thyroid epithelial cells were infected with a RET/PTC retroviral construct. Morphological scoring by two independent cytopathologists shows RET/PTC expression by immunohistochemistry to be highly associated (p << 0.0001) with an irregular nuclear contour and a euchromatic appearance compared with non-expressing cells in the same cultures. The altered nuclear morphology is not due to gene transfer or transformation per se as primary thyroid cell cultures infected with a retroviral H-RAS construct differ from RET/PTC-infected cells by showing round nuclear envelopes and coarser chromatin, as determined by the independent scoring of two cytopathologists (p << 0.0001). In addition, RET/ PTC-transfected cells appear to disperse, whereas RAS-transfected cells grow as discrete colonies. The results provide additional support for the hypothesis that RET/PTC is sufficient to cause papillary thyroid carcinomas. A signaling pathway downstream of RET/ PTC leads to restructuring of the nuclear envelope and chromatin, and the signal does not depend entirely, if at all, on a RAS pathway.

The RET/PTC3 oncogene: metastatic solid-type papillary carcinomas in murine thyroids.

Our research goal is to better understand the mechanisms controlling the initiation and progression of thyroid diseases. One such disease, papillary thyroid carcinoma (PTC), is the leading endocrine malignancy in the United States. Recently, a family of related fusion proteins, RET/PTC1-5, has been implicated in the early stages of PTC. Although ALL five members of this family have the c-RET proto-oncogene kinase domain in their COOH terminus, little is known about how these genes alter follicular cell biology. Consequently, to answer questions related to the mechanism of the RET/PTC fusion protein action, we have devised a molecular genetic strategy to study PTC using a mouse model of thyroid disease. A new member of this fusion oncogene family, RET/PTC3, which has been implicated in more cases of solid tumor carcinoma (79%) than PTC1 or PTC2 and predominates (80%) in radiation-induced thyroid cancer of children, was investigated in our study. We have generated transgenic mice expressing human RET/PTC3 exclusively in the thyroid. These mice develop thyroid hyperplasia, solid tumor variants of papillary carcinoma and metastatic cancer. This new transgenic line will be useful in deciphering the molecular and biological mechanisms that cause PTC and histological variations in humans.

Mutation of the RET proto-oncogene is correlated with RET immunostaining in subpopulations of cells in sporadic medullary thyroid carcinoma.

mutations in the RET proto-oncogene, which encodes a receptor tyrosine kinase, are associated with the pathogenesis of medullary thyroid carcinoma (MTC). Somatic mutations in RET, predominantly at codon 918, and very rarely at codon 883, have been found in a proportion of sporadic MTC. We have previously shown that approximately 80% of sporadic MTCs had at least one subpopulation with a somatic RET mutation. Uneven distribution of somatic mutation within a single tumor or among metastases from a single individual was notable. In the present study, we sought to correlate RET expression, as demonstrated by RET immunohistochemistry, with mutation status in sporadic MTC for each tumor. Seventy evaluable subpopulations, belonging to 28 unrelated sporadic cases, comprising primary MTC and metastases, were immunostained with two different polyclonal antibodies raised against the C-terminus of RET. The regional presence of codon 918 or 883 seemed to coincide with increased RET immunopositivity in at least 62 of 70 (89%, P < 0.000001) tumor subpopulations. The reasons for this concordance are not entirely clear but could be related to either RNA or protein stability. Preliminary studies have suggested that the presence of somatic codon 918 mutation in MTC has a prognostic significance. If these preliminary results prove true, then given our data, we can further explore the feasibility of RET immunocytochemistry as a rapid assessment for the presence of somatic codon 918 for molecular diagnostic and prognostic purposes.

Expression of the RET proto-oncogene in human embryos.

The patterns of RET proto-oncogene expression in mouse, rat, and chicken and the anomalies observed in targeted RET mutants suggest that RET plays a major role in development of mouse enteric nervous system and in kidney organogenesis. Here, we report on in situ hybridization studies describing the pattern of RET proto-oncogene expression during early development of human embryos between 23 and 42 days. We show that the RET gene is expressed in the developing kidney (nephric duct, mesonephric tubules, and ureteric bud), the presumptive enteric neuroblasts of the developing enteric nervous system, cranial ganglia (VII+VIII, IX, and X) and in the presumptive motor neurons of the spinal cord. Yet, despite the high level of RET gene expression in the kidney and in the motor neurons of the developing central nervous system in human embryos, only rare cases with renal agenesis have been reported in Hirschsprung disease patients, and no clinical evidence of spinal cord involvement has been shown in patients carrying RET germline mutations (i.e., multiple endocrine neoplasia syndromes and Hirschsprung disease).

RET proto-oncogene: role in kidney development and molecular pathology.

The entire ACTH receptor (ACTH-R) cDNA was amplified by RT/PCR from mouse Y-1 adrenocortical cells, subcloned into the pMOSBlue T vector, sequenced and inserted into the pSVK3 mammalian vector to obtain pSVACTHR. Balb 3T3 fibroblasts were co-transfected with pSVACTHR plus pSV2-neo and the transfectants were selected with G418 and cloned. Genomic integration of pSVACTHR and transcription of ACTH-R cDNA were checked by Southern blot and RT/PCR respectively. expression of active ACTH-R protein was tested by measuring cAMP production in response to ACTH. Two ACTH-R expressing transfectants (clones 03 and 07) increased cAMP accumulation in response to ACTH. They were morphologically identical to parental 3T3 cells, but required 10-20% FCS to grow. In these transfectants, ACTH induced c-FOS protein expression, but did not activate the ERK isoforms of MAP Kinase and did not stimulate DNA synthesis. Apparently, the ACTH-R in Balb 3T3 cells induces the c-fos gene by a pathway independent of cAMP/protein kinase A and ERK/MAP Kinase.

High prevalence of the C634Y mutation in the RET proto-oncogene in MEN 2A families in Spain.

The RET proto-oncogene encodes a receptor tyrosine kinase expressed in neural crest derived tissues. Germline mutations in the RET proto-oncogene are responsible for three different dominantly inherited cancer syndromes: multiple endocrine neoplasia type 2A (MEN 2A), type 2B (MEN 2B), and familial medullary thyroid carcinoma (FMTC). MTC can also occur sporadically. Molecular characterisation of the RET proto-oncogene has been performed by PCR-SSCP analysis, direct DNA sequencing, and restriction enzyme analysis in 49 unrelated, Spanish, MEN 2 families: 30 MEN 2A families, six FMTC families, and 13 families classified as "other". Germline missense mutations in one of six cysteine codons (609, 611, 618, and 620 in exon 10, and codons 630 and 634 in exon 11), which encode part of the extracellular cysteine rich domain of RET, have been detected in the majority of these families: 100% of MEN 2A families, 67% of FMTC families, and 54% of families classified as "other". No RET mutations in exons 10, 11, 13, 14, 15, or 16 were detected in the remaining families. The most frequent RET mutation in MEN 2A Spanish families is C634Y, occurring in 73% of cases. Haplotype analysis does not exclude the possibility of founder effects in Spanish MEN 2A families with the C634Y mutation.

[Ret (REarranged during Transfection). Oncogene].

The RET proto-oncogene encodes a receptor tyrosine kinase expressed in neural crest derived tissues. Germline mutations in the RET proto-oncogene are responsible for three different dominantly inherited cancer syndromes: multiple endocrine neoplasia type 2A (MEN 2A), type 2B (MEN 2B), and familial medullary thyroid carcinoma (FMTC). MTC can also occur sporadically. Molecular characterisation of the RET proto-oncogene has been performed by PCR-SSCP analysis, direct DNA sequencing, and restriction enzyme analysis in 49 unrelated, Spanish, MEN 2 families: 30 MEN 2A families, six FMTC families, and 13 families classified as "other". Germline missense mutations in one of six cysteine codons (609, 611, 618, and 620 in exon 10, and codons 630 and 634 in exon 11), which encode part of the extracellular cysteine rich domain of RET, have been detected in the majority of these families: 100% of MEN 2A families, 67% of FMTC families, and 54% of families classified as "other". No RET mutations in exons 10, 11, 13, 14, 15, or 16 were detected in the remaining families. The most frequent RET mutation in MEN 2A Spanish families is C634Y, occurring in 73% of cases. Haplotype analysis does not exclude the possibility of founder effects in Spanish MEN 2A families with the C634Y mutation.