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Elucidating the molecular basis of MSH2-deficient tumors by combined germline and somatic analysis
Gardenia M Vargas-Parra1, Maribel González-Acosta1, Bryony A Thompson2,3
1Hereditary Cancer Program, Catalan Institute of Oncology, IDIBELL, CIBERONC, Hospitalet de Llobregat, Spain.
Abstract:
In a proportion of patients presenting mismatch repair (MMR)-deficient tumors, no germline MMR mutations are identified, the so-called Lynch-like syndrome (LLS). Recently, MMR-deficient tumors have been associated with germline mutations in POLE and MUTYH or double somatic MMR events. Our aim was to elucidate the molecular basis of MSH2-deficient LS-suspected cases using a comprehensive analysis of colorectal cancer (CRC)-associated genes at germline and somatic level. Fifty-eight probands harboring MSH2-deficient tumors were included. Germline mutational analysis of MSH2 (including EPCAM deletions) and MSH6 was performed. Pathogenicity of MSH2 variants was assessed by RNA analysis and multifactorial likelihood calculations. MSH2 cDNA and methylation of MSH2 and MSH6 promoters were studied. Matched blood and tumor DNA were analyzed using a customized next generation sequencing panel. Thirty-five individuals were carriers of pathogenic or probably pathogenic variants in MSH2 and EPCAM. Five patients harbored 4 different MSH2 variants of unknown significance (VUS) and one had 2 novel MSH6 promoter VUS. Pathogenicity assessment allowed the reclassification of the 4 MSH2 VUS and 6 probably pathogenic variants as pathogenic mutations, enabling a total of 40 LS diagnostics. Predicted pathogenic germline variants in BUB1, SETD2, FAN1 and MUTYH were identified in 5 cases. Three patients had double somatic hits in MSH2 or MSH6, and another 2 had somatic alterations in other MMR genes and/or proofreading polymerases. In conclusion, our comprehensive strategy combining germline and somatic mutational status of CRC-associated genes by means of a subexome panel allows the elucidation of up to 86% of MSH2-deficient suspected LS tumors.
Insights
This study investigated Lynch-like syndrome (LLS) in patients with MSH2-deficient tumors. A comprehensive genetic analysis identified pathogenic mutations in 86% of suspected cases, clarifying the molecular basis of LLS.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Lynch-like syndrome (LLS) involves mismatch repair (MMR)-deficient tumors without identified germline MMR mutations.
- Recent research links MMR-deficient tumors to POLE/MUTYH mutations or double somatic MMR events.
- The molecular basis for MSH2-deficient suspected LS cases remains incompletely understood.
Purpose of the Study:
- To elucidate the molecular underpinnings of MSH2-deficient Lynch-like syndrome (LLS) cases.
- To comprehensively analyze colorectal cancer (CRC)-associated genes at both germline and somatic levels.
- To improve diagnostic yield in suspected LS patients with MSH2-deficient tumors.
Main Methods:
- Germline mutational analysis of MSH2 (including EPCAM deletions) and MSH6 in 58 probands.
- Assessment of MSH2 variant pathogenicity using RNA analysis and multifactorial likelihood calculations.
- Matched blood and tumor DNA analysis via a customized next-generation sequencing panel.
Main Results:
- Pathogenic or probably pathogenic variants in MSH2 and EPCAM identified in 35 individuals.
- Reclassification of variants of unknown significance (VUS) and probably pathogenic variants led to 40 LS diagnoses.
- Germline variants in BUB1, SETD2, FAN1, and MUTYH found in 5 cases; double somatic hits or other MMR gene alterations identified in 5 patients.
Conclusions:
- A comprehensive strategy combining germline and somatic analysis of CRC-associated genes is effective.
- This approach elucidates the molecular basis in up to 86% of MSH2-deficient suspected LS tumors.
- The findings enhance diagnostic capabilities for Lynch-like syndrome.
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