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Loss of MSH2 and MSH6 due to heterozygous germline defects in MSH3 and MSH6
Monika Morak1,2, Sarah Käsbauer1, Martina Kerscher1
1Medizinische Klinik und Poliklinik IV, Campus Innenstadt, Klinikum der Universität München, Ziemssenstr. 1, 80336, Munich, Germany.
Abstract:
Lynch Syndrome (LS) is the most common dominantly inherited colorectal cancer (CRC) predisposition and is caused by a heterozygous germline defect in one of the DNA mismatch repair (MMR) genes MLH1, MSH2, MSH6, or PMS2. High microsatellite instability (MSI-H) and loss of MMR protein expression in tumours reflecting a defective MMR are indicators for LS, as well as a positive family history of early onset CRC. MSH2 and MSH6 form a major functional heterodimer, and MSH3 is an alternative binding partner for MSH2. So far, the role of germline MSH3 variants remains unclear, as to our knowledge heterozygous truncating variants are not regarded causative for LS, but were detected in patients with CRC, and recently biallelic MSH3 defects have been identified in two patients with adenomatous polyposis. By gene screening we investigated the role of MSH3 in 11 LS patients with truncating MSH6 germline variants and an unexplained MSH2 protein loss in their corresponding MSI-H tumours. We report the first two LS patients harbouring heterozygous germline variants c.1035del and c.2732T>G in MSH3 coincidentally with truncating variants in MSH6. In the patient with truncating germline variants in MSH3 and MSH6, two additional somatic second hits in both genes abrogate all binding partners for the MSH2 protein which might subsequently be degraded. The clinical relevance of MSH3 germline variants is currently under re-evaluation, and heterozygous MSH3 defects alone do not seem to induce a LS phenotype, but might aggravate the MSH6 phenotype in affected family members.
Insights
Lynch Syndrome (LS) is linked to DNA mismatch repair gene defects. This study finds heterozygous MSH3 variants may worsen LS in MSH6 variant carriers, but don't cause LS alone.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Lynch Syndrome (LS) is the most common inherited colorectal cancer (CRC) predisposition.
- It arises from defects in DNA mismatch repair (MMR) genes (MLH1, MSH2, MSH6, PMS2).
- The role of MSH3 variants in LS is not fully understood.
Purpose of the Study:
- To investigate the role of MSH3 in LS patients with MSH6 variants and MSH2 loss.
- To identify potential genetic interactions affecting MMR deficiency.
Main Methods:
- Gene screening in 11 LS patients with MSH6 variants and MSH2 loss.
- Analysis of germline and somatic variants in MSH3 and MSH6.
Main Results:
- Identified two LS patients with heterozygous MSH3 and MSH6 germline variants.
- One patient had additional somatic hits in MSH3 and MSH6, affecting MSH2 binding.
- Heterozygous MSH3 defects alone do not appear to cause LS.
Conclusions:
- MSH3 germline variants may modify the LS phenotype, potentially aggravating MSH6-related effects.
- The clinical relevance of MSH3 variants in LS requires further evaluation.
- MSH3's role in MMR and cancer predisposition is complex and context-dependent.
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