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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.

Amino Acid Sequence

Papillary thyroid carcinoma, parathyroid adenoma, and unexplained hypercalcitoninemia: an unusual presentation of multiple endocrine neoplasia type 2A?

Multiple endocrine neoplasia type 2 (MEN 2) is a rare syndrome of medullary thyroid carcinoma (MTC) with pheochromocytoma and/or primary hyperparathyroidism (PHP), usually due to multigland hyperplasia. MEN 2 is associated with several RET protooncogene mutations. A 61-year-old woman with a family history of RET-positive MTC presented with a solitary thyroid nodule. Fine-needle aspiration biopsy was suspicious for neoplasm. Biochemical studies revealed basal hypercalcitoninemia (116 pg/mL [normal <26]) and PHP (serum calcium, 10.9 mg/dL; intact PTH, 113.2 pg/mL [10.0-65.0]). Pheochromocytoma screening was negative. A provisional diagnosis of MEN 2 was made, but at surgery, a single parathyroid adenoma was resected and frozen sections of several lymph nodes revealed papillary thyroid carcinoma (PTC). A total thyroidectomy was performed. Final histological diagnosis was PTC and parathyroid adenoma with no evidence of MTC. Postoperatively, RET mutation testing was positive. The basal calcitonin (CT) fell to 25 pg/mL, but peaked at 935 (normal <105) after pentagastrin infusion, consistent with occult MTC. After radioiodine ablation, CT decreased further. Octreotide scanning was negative. Faced with PHP, a thyroid nodule, and a family history of MTC, clinicians tend to diagnose MEN 2. This patient had a single parathyroid adenoma and nonmedullary thyroid cancer, which the literature actually suggests to be an association more frequent than MEN 2. Yet, there remains compelling data in favor of occult MTC, leaving open the possibility of an MEN 2 variant with the rare association of PTC.

Adenoma

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.

Base Sequence

Clinical screening as compared with DNA analysis in families with multiple endocrine neoplasia type 2A.

BACKGROUND: Multiple endocrine neoplasia type 2A (MEN-2A) is characterized by medullary thyroid carcinoma in combination with pheochromocytoma and sometimes parathyroid adenoma. Missense mutations in the RET proto-oncogene are associated with MEN-2A. Their detection by DNA analysis allows the identification of carriers of the gene, in whom the risk of medullary thyroid carcinoma is 100 percent. We compared the reliability of biochemical tests with that of DNA analysis in identifying carriers of the MEN2A gene. METHODS: Starting in 1975, we screened 300 subjects in four large families with MEN-2A for expression of the disease, using measurements of plasma calcitonin after stimulation with pentagastrin or calcium and urinary excretion of catecholamines and catecholamine metabolites. We tested for carrier status by DNA analysis, including linkage analysis, and more recently by analysis of mutations in the RET gene. RESULTS: Of 80 MEN2A gene carriers (in 61 of whom carrier status was proved by DNA analysis), 66 had abnormal plasma calcitonin values and medullary thyroid carcinoma. Fourteen young carriers had normal results of plasma calcitonin tests. In 8 of these 14, thyroidectomy revealed small foci of medullary thyroid carcinoma; the remaining 6 have not yet been operated on. Of the other 220 family members, 68 were found by DNA analysis not to carry the MEN2A gene. None of these 68 subjects had medullary thyroid carcinoma or pheochromocytoma; 6 had elevated plasma calcitonin concentrations and underwent thyroidectomy but had only C-cell hyperplasia. CONCLUSIONS: Unlike biochemical tests, DNA analysis permits the unambiguous identification of MEN2A gene carriers.

Adolescent

Development of medullary thyroid carcinoma in transgenic mice expressing the RET protooncogene altered by a multiple endocrine neoplasia type 2A mutation.

Multiple endocrine neoplasia type 2 (MEN 2) is a dominantly inherited cancer syndrome that comprises three clinical subtypes: MEN type 2A (MEN-2A), MEN type 2B (MEN-2B), and familial medullary thyroid carcinoma (FMTC). Medullary thyroid carcinoma (MTC), a malignant tumor arising from calcitonin-secreting thyroid C cells, is the cardinal disease feature of this syndrome, and mortality in affected MEN-2 patients is mainly caused by this malignancy. Germ-line mutations of the RET protooncogene, which encodes a receptor tyrosine kinase, are responsible for these three neoplastic-prone disorders. MEN2 mutations convert the RET protooncogene in a dominantly acting oncogene as a consequence of the ligand-independent activation of the tyrosine kinase. The majority of MEN2A and FMTC mutations are located in the extracellular domain and cause the replacement of one of five juxtamembrane cysteines by a different amino acid. To examine whether expression of a MEN2A allele of RET results in transformation of C cells, we have used the transgenic approach. Expression of the RET gene altered by a MEN2A mutation was targeted in C cells by placing the transgene under the control of the calcitonin gene-related peptide/calcitonin promoter. Animals of three independent transgenic mouse lines, which expressed the transgene in the thyroid, displayed overt bilateral C cell hyperplasia as early as 3 weeks of age and subsequently developed multifocal and bilateral MTC. Moreover, these tumors were morphologically and biologically similar to human MTC which afflicts MEN2 individuals. These findings provide evidence that the MEN2A mutant form of RET is oncogenic in parafollicular C cells and suggest that these transgenic mice should prove a valuable animal model for hereditary MTC.

Animals

Preoperative diagnosis of occult parathyroid hyperplasia by calcium infusion in patients with multiple endocrine neoplasia, type 2a.

Hereditary multiple endocrine neoplasia, type 2 (MEN 2) comprises medullary thyroid carcinoma (MTC) and bilateral pheochromocytoma; the syndrome includes two major variants, MEN 2a (normal appearance, parathyroid disease common) and MEN 2b (mucosal neuromas, Marfanoid habitus, parathyroid disease rate). Patients with MEN 2a may be normocalcemic, with normal basal serum immunoreactive parathyroid hormone (iPTH) levels, yet have parathyroid hyperplasia discovered during thyroid surgery. In an attempt to predict the presence of this occult parathyroid hyperplasia, we performed calcium infusion (15 mg Ca++/kg/4 hours) in six patients with MEN 2a, seven patients with MEN 2b, and eight normal subjects. iPTH was measured in samples taken at one hour intervals during the infusion with a sensitive radioimmunoassay (antiserum GP 1M [Arnaud]). The iPTH values (expressed as per cent of the basal value) in the normal, MEN 2a, and MEN 2b groups at the fourth hour were 38.0 +/- 3.8% (mean +/- SE), 79.2 +/- 7.2%, and 47.8 +/- 5.2%. These iPTH values for patients with MEN 2a were significantly different from normal (P less than 0.001) and from those of the patients with MEN 2b (P less than 0.001). All MEN 2a patients had parathyroid hyperplasia at cervical exploration; parathyroid histology in the MEN 2b patients was normal. Failure of iPTH suppressibility in the MEN 2a patients was not due either to the plasma calcitonin or to achieved serum calcium concentrations. The normal iPTH suppressibility in MEN 2b is consistent with the concept that the parathyroid disease in MEN 2a is genetically determined, and not secondary to MTC and high plasma calcitonin concentration. Calcium infusion combined with the measurement of serum iPTH levels may detect occult parathyroid hyperplasia in patients with MEN 2a, normocalcemia, and normal basal iPTH values. The identification and follow-up of similar patients should establish the natural history of this unusual parathyroid disease.

Adolescent

[Multiple endocrine neoplasia type 2a and 2b].

Multiple endocrine neoplasia type 2a and 2b (MEN 2a and 2b) are rare diseases, inherited as autosomal dominant traits. The neoplasias in MEN 2a are medullary thyroid carcinoma, pheochromocytoma and hyperparathyroidism. In MEN 2b a characteristic phenotype is seen in combination with medullary thyroid carcinoma and pheochromocytoma. Through screening the diseases can be detected at an early stage, hereby improving prognosis. This is important as the diseases are inherited and occur in young individuals. In this review, epidemiology, clinical features, diagnosis and treatment are discussed.

Carcinoma, Medullary

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.

DNA

Genomic and yeast artificial chromosome long-range physical maps linking six loci in 10q11.2 and spanning the multiple endocrine neoplasia type 2A (MEN2A) region.

Multiple endocrine neoplasia types 2A and 2B (MEN 2A and MEN 2B) and familial medullary thyroid carcinoma (FMTC) are dominantly inherited cancers that have in common the clinical feature of medullary thyroid carcinoma (MTC). We have performed both genomic long-range restriction mapping and yeast artificial chromosome (YAC) contig assembly and restriction mapping to establish physical linkage, order, and distances between six loci in 10q11.2 near the genes responsible for these hereditary cancers. RET, D10S94, D10S182, and D10S102 have been mapped in genomic DNA. RET, D10S94, D10S182, D10F38S3, and the 10q11.2 sequences detected by DNA marker DM124 are encompassed by a 1-Mb YAC contig. Six physically linked loci are within 1.4 Mb and have an order and orientation of 10cen, D10F38S3, DM124, RET, D10S94, D10S182, D10S102, 10qter. Mutations in the RET proto-oncogene have recently been demonstrated to be associated with MEN 2A and FMTC. RET is located within a genetically defined MEN2A candidate interval between D10S141 and D10S94; MEN2B has been mapped to a larger, overlapping region between D10S141 and a more distal locus, RBP3. Both our genomic physical map and our YAC contig span the entire MEN2A candidate region and overlap with that of MEN2B. These maps will facilitate the identification of genes that can be considered candidates for MEN2B and the identification of tumor-specific alterations important in sporadic MTC.

Base Sequence

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.

Base Sequence

[The molecular genetics of multiple endocrine neoplasia type 2A and 2B].

Multiple endocrine neoplasia (MEN) type 2A (MEN 2A) and type 2B (MEN 2B) are dominantly inherited with a predisposition to endocrine tumors. The responsible genes for MEN 2A and 2B have recently been localized to chromosome 10q 11.2 by genetic and physical mapping. The DNA segment encompasses the RET proto-oncogene. This is a receptor tyrosine kinase gene, which is expressed in medullary thyroid carcinoma and pheochromocytoma. Point mutations in the cysteine-rich domain of the RET were demonstrated in patients with MEN 2A. The cosegregation of these mutations and disease in MEN 2A families indicates that they possess a predisposition endocrine organs to develop into tumors. Biological assessment of the mutant forms in cell culture and transgenic mouse lines should provide further insight as to the role of the RET in the tumor development.

Animals

[Multiple endocrine neoplasia type 2A, type 2B and familial medullary thyroid carcinoma syndrome].

Recently, germline mutations in the RET proto-oncogene were found to be associated with multiple endocrine neoplasia (MEN) syndromes, MEN 2A, MEN 2B and Familial medullary thyroid carcinoma (FMTC). In patients with MEN 2A and FMTC different point mutations have been identified in exons 10 and 11 of the cysteine rich regions of RET. Patients with MEN 2B have a single point mutation (ATG to ACG) at codon 918 of RET. Therefore, a direct DNA testing has been developed to provide a highly accurate technique of detecting kindred members who have inherited a specific mutation associated with MEN 2A, MEN 2B or FMTC. In USA and Europe, prophylactic thyroidectomy has been performed on the basis of positive DNA testing, and the presence of a C-cell hyperplasia or a small medullary thyroid carcinoma was confirmed in each patient operated. Through nationwide survey in Japan, 233 patients with MEN 2 syndrome have been identified. They consisted of 180 MEN 2A, 18 MEN 2B, 13 FMTC and 22 unclassified patients. At follow-up, 47% of patients had recurrent medullary thyroid carcinoma and 5.7% of patients died of the disease. Genetic analysis was performed on 15 patients of 6 unrelated families in our series, and the results revealed that germinal mutations of RET as previously reported were also responsible for MEN 2 syndrome in Japanese. DNA analysis and prophylactic thyroidectomy for kindred members at risk for MEN 2 are likely to be beneficial in Japan as well.

Carcinoma

[The molecular pathology of RET protooncogene in families with multiple endocrine neoplasia type 2A].

BACKGROUND: Multiple endocrine neoplasm type 2A (MEN 2A) is an autosomal dominantly inherited disease characterized by medullary thyroid carcinoma, pheochromocytoma and hyperparathyroidism. Mutations have been identified in the extracellular domain of the RET proto-oncogen product (10q11.2) in MEN 2A patients. In each case a single base pair substitution results in replacement of cysteine with another amino acid. Most MEN 2A patients have mutations of codon 634. PATIENTS AND METHODS: Sixty-five unrelated MEN 2A patients from seven families were studied. Polymerase chain reaction, segregation, sequence analysis and restriction enzyme digestion were performed. RESULTS: Of seven families, four had the TGC to TAC transition, two families the TGC to TGG transversion and one family the TGC to CGC transition in codon 634 of RET. CONCLUSIONS: We found all the mutations in codon 634. The characterization of MEN 2A mutations allows early and presymptomatic diagnosis in this syndrome.

Base Sequence

Familial cutaneous lichen amyloidosis in association with multiple endocrine neoplasia type 2A: a new variant.

Multiple endocrine neoplasia type 2A (MEN 2A) is a rare hereditary disease transmitted in families as an autosomal dominant trait. We have identified a family in which the expression of a rare autosomal dominant form of cutaneous lichen amyloidosis appears to cosegregate with MEN 2A. In this family the skin lesion presented as multiple infiltrated papules overlying well demarcated plaques over the scapular area (right or left). Immunohistochemical studies demonstrated amyloid which stained for keratin but not calcitonin. A total of 19 members were screened. Three members of the family have the characteristic skin lesion and MEN 2A; two additional members have MEN 2A but have not manifested observable skin changes of lichen amyloidosis. Another unrelated Italian family with a similar type of pruritic skin rash and MEN 2A has been reported recently. Although the initial skin biopsies were negative for amyloidosis, subsequent biopsy established the association of MEN 2A with amyloidosis in this family also. When these kindreds are combined, several conclusions can be drawn. First, the syndrome of cutaneous amyloidosis and MEN 2A appears to be a clearly defined autosomal dominant hereditary syndrome. Whether this syndrome can be linked to chromosome 10 is not yet known. Second, the dermal amyloid appears to be caused by deposition of keratin-like peptides rather than calcitonin-like peptides. Third, we believe that patients with the hereditary form of cutaneous amyloid should be screened for medullary thyroid carcinoma to determine the true frequency of this syndrome.

Amyloidosis

Genetic analysis of 24 French families with multiple endocrine neoplasia type 2A.

The gene for multiple endocrine neoplasia type 2A (MEN2A) has been mapped to the pericentromeric region of chromosome 10 by linkage analysis. Thirty-four families with multiple cases of medullary carcinoma of the thyroid (MTC), including 24 families with origins in France, have been typed with nine polymorphic markers spanning the centromere of chromosome 10. No recombination was observed between the MEN2A locus and either of the four loci D10Z1 (lod score 12.79), D10S102 (lod score 6.38), D10S94 (lod score 7.76), and D10S34 (lod score 5.94). There was no evidence for genetic linkage heterogeneity in the panel of 34 families. Haplotypes were constructed for a total of 11 polymorphisms in the MEN2A region, for mutation-bearing chromosomes in 24 French families and for 100 spouse controls. One haplotype was present in four MEN2A families but was not observed in any control (P less than .01). Two additional families share a core segment of this haplotype near the MEN2A gene. It is likely that these six families have a common affected ancestor. Because the incidence of pheochromocytoma among carriers varies from 0% to 74% within these six families, it is probable that additional factors modify the expression of the MEN2A gene.

Adrenal Gland Neoplasms

A new polymorphic marker (D10S97) tightly linked to the multiple endocrine neoplasia type 2A (MEN2A) locus.

Familial multiple endocrine neoplasia type 2A (MEN 2A) is a cancer syndrome that is inherited as an autosomal dominant with high penetrance. Its clinical features are medullary carcinoma of the thyroid, pheochromocytomas, and hyperparathyroidism. A new polymorphic locus D10S97 (probe: KW6 delta SacI) detects a codominant EcoRI polymorphism that is tightly linked to the MEN2A locus. The peak lod score for linkage between D10S97 with MEN2A is 13.03 at theta = 0.00. The polymorphic locus D10S97 maps, by linkage analysis, into the previously defined interval between FNRB and RBP3 to which MEN2A has been assigned. We present physical mapping data showing that the probe pKW6 originates from 10p13 and that the polymorphic locus D10S97 in 10q11.2 is detected by cross-hybridization.

Animals

A linked genetic marker for multiple endocrine neoplasia type 2A on chromosome 10.

Multiple endocrine neoplasia type 2A (MEN2A) is an autosomal dominantly inherited cancer syndrome characterized by medullary carcinoma of the thyroid, phaeochromocytoma and hyperparathyroidism. Almost all gene carriers can be detected by screening tests before the age of 40, but the nature and location of the predisposing gene are unknown. Simpson et al. recently reported preliminary evidence for linkage between the DNA probe p9-12A on chromosome 10 and MEN2A. We now report linkage between the MEN2A locus and the interstitial retinol-binding protein gene, which is located on chromosome 10p11.2-q11.2.

Centromere