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Hirschsprung disease in MEN 2A: increased spectrum of RET exon 10 genotypes and strong genotype-phenotype correlation
R A Decker1, M L Peacock, P Watson
1The Charlie Hays Division of Cancer Research, The Decker Foundation, 7536 Forsyth Boulevard, St Louis, MO 63105, USA. r-decker2@nwu.edu
Abstract:
The RET proto-oncogene encodes a transmembrane receptor with tyrosine kinase activity. Germline mutations in RET are responsible for a number of inherited diseases. These include the dominantly inherited cancer syndromes multiple endocrine neoplasia types 2A and 2B (MEN 2A and MEN 2B) and familial medullary thyroid carcinoma (FMTC), as well as some cases of familial Hirschsprung disease (HSCR1). RET mutations in HSCR1 have been shown to cause a loss of RET function, while the cancer syndromes result in RET oncogenic activation. Occasionally MEN 2A or FMTC occurs in association with HSCR1, albeit with low penetrance. An initial report linked HSCR1 in MEN 2A solely to the C618R and C620R RET mutations. In this study we have analyzed 44 families with MEN 2A. HSCR1 co-segregated with MEN 2A in seven (16%) of the 44 families. The predisposing RET mutation in all seven families had been previously reported in MEN 2A or FMTC and occurred in exon 10 at codons 609, 618 or 620, resulting in C609Y, C618S, C620R or C620W substitution. MEN 2A families with RET exon 10 Cys mutations had a substantially greater risk of developing HSCR1 than those with the more common RET exon 11 Cys634 or exon 14 c804 mutations (P = 0.0005). These findings suggest that expression of HSCR1 in MEN 2A may be peculiar to RET exon 10 Cys mutations . However, HSCR1 in MEN 2A is not exclusive to C618R or C620R RET mutations and can occur with other exon 10 Cys amino acid substitutions. The strong correlation between disease phenotype and position of the MEN 2A RET mutation suggests that oncogenic activation of RET alone is insufficient to account for co-expression of the diseases.
Insights
Germline RET mutations cause inherited diseases like MEN 2A and Hirschsprung disease (HSCR1). This study finds HSCR1 in MEN 2A is strongly linked to specific RET exon 10 mutations, not just oncogenic activation.
Area of Science:
- Genetics
- Oncology
- Developmental Biology
Background:
- The RET proto-oncogene is crucial for development and its mutations cause inherited disorders.
- Germline RET mutations lead to multiple endocrine neoplasia (MEN) types 2A/2B and familial medullary thyroid carcinoma (FMTC), characterized by RET oncogenic activation.
- RET mutations also cause familial Hirschsprung disease (HSCR1), typically involving a loss of RET function.
Purpose of the Study:
- To investigate the specific RET mutations associated with the co-occurrence of MEN 2A and HSCR1.
- To determine if specific RET mutation locations or types correlate with HSCR1 expression in MEN 2A patients.
Main Methods:
- Analysis of 44 families with MEN 2A.
- Co-segregation analysis of HSCR1 with known MEN 2A-associated RET mutations.
- Statistical comparison of HSCR1 incidence across different RET mutation sites.
Main Results:
- HSCR1 co-segregated with MEN 2A in 16% of families studied.
- All seven families with co-occurring HSCR1 and MEN 2A had RET mutations in exon 10 (codons 609, 618, or 620).
- MEN 2A families with RET exon 10 Cys mutations showed a significantly higher risk of HSCR1 compared to other RET mutation sites (P = 0.0005).
Conclusions:
- HSCR1 in MEN 2A appears strongly associated with RET exon 10 cysteine mutations.
- The co-occurrence of HSCR1 and MEN 2A is not limited to specific C618R/C620R mutations but occurs with other exon 10 substitutions.
- RET oncogenic activation alone is insufficient to explain the co-expression of MEN 2A and HSCR1, suggesting a role for mutation location.
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