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.

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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