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Published on: July 28, 2010
MSH3: a confirmed predisposing gene for adenomatous polyposis
Marie-Charlotte Villy1, Julien Masliah-Planchon2, Anne Schnitzler2
1Department of Genetics, Université Paris Cité, Institut Curie, Paris, France marie-charlotte.villy@curie.fr.
Background:
The MSH3 gene is part of the DNA mismatch repair system, but has never been shown to be involved in Lynch syndrome. A first report of four patients from two families, bearing biallelic MSH3 germline variants, with a phenotype of attenuated colorectal adenomatous polyposis raised the question of its involvement in hereditary cancer predisposition. The patients' tumours exhibited elevated microsatellite alterations at selected tetranucleotide repeats (EMAST), a hallmark of MSH3 deficiency.
Methods:
We report five new unrelated patients with MSH3-associated polyposis. We describe their personal and familial history and study the EMAST phenotype in various normal and tumour samples, which are relevant findings based on the rarity of this polyposis subtype so far.
Results:
All patients had attenuated colorectal adenomatous polyposis, with duodenal polyposis in two cases. Both women had breast carcinomas. EMAST phenotype was present at various levels in different samples of the five patients, confirming the MSH3 deficiency, with a gradient of instability in polyps depending on their degree of dysplasia. The negative EMAST phenotype ruled out the diagnosis of germline MSH3 deficiency for two patients: one homozygous for a benign variant and one with a monoallelic large deletion.
Conclusion:
This report lends further credence to biallelic MSH3 germline pathogenic variants being involved in colorectal and duodenal adenomatous polyposis. Large-scale studies may help clarify the tumour spectrum and associated risks. Ascertainment of EMAST may help with the interpretation of variants of unknown significance. We recommend adding MSH3 to dedicated diagnostic gene panels.
Insights
Biallelic variants in the MSH3 gene are linked to hereditary colorectal and duodenal polyposis. This discovery aids in understanding cancer predisposition and interpreting genetic variants.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- The MSH3 gene, part of DNA mismatch repair, was not previously linked to Lynch syndrome.
- A prior report suggested MSH3's role in hereditary cancer predisposition due to biallelic germline variants causing attenuated colorectal adenomatous polyposis.
- Tumors in these patients showed elevated microsatellite alterations at selected tetranucleotide repeats (EMAST), indicating MSH3 deficiency.
Purpose of the Study:
- To report on new patients with MSH3-associated polyposis.
- To investigate the EMAST phenotype in patients with MSH3 deficiency.
- To further establish the link between MSH3 variants and hereditary polyposis.
Main Methods:
- Reporting on five new unrelated patients with MSH3-associated polyposis.
- Detailed personal and familial history collection.
- Analysis of the EMAST phenotype in various normal and tumor samples.
Main Results:
- All five patients presented with attenuated colorectal adenomatous polyposis; two also had duodenal polyposis.
- Breast carcinomas were observed in both female patients.
- EMAST was detected in various samples, confirming MSH3 deficiency, with instability correlating with polyp dysplasia. Two patients were ruled out for germline MSH3 deficiency based on negative EMAST results.
Conclusions:
- Biallelic MSH3 germline pathogenic variants are implicated in colorectal and duodenal adenomatous polyposis.
- Further large-scale studies are needed to define the tumor spectrum and risks associated with MSH3 deficiency.
- EMAST testing can aid in interpreting variants of unknown significance, and MSH3 should be included in diagnostic gene panels.
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