AI Article Synopsis

  • - Lynch syndrome (LS) is a genetic condition caused by mutations in DNA mismatch repair (MMR) genes, which increases cancer risk; identifying harmful mutations is crucial for diagnosis.
  • - Missense variants can complicate diagnosis due to their uncertain effects on disease progression, necessitating research to understand their impact on protein function.
  • - The study developed a new in-cellulo functional assay using CRISPR-Cas9 to analyze specific MSH2 variants in human stem cells, successfully evaluating the MMR function of eight out of ten variants, which may help identify patients at higher risk for LS.

Article Abstract

Lynch syndrome (LS) predisposes patients to cancer and is caused by germline mutations in the DNA mismatch repair (MMR) genes. Identifying the deleterious mutation, such as a frameshift or nonsense mutation, is important for confirming an LS diagnosis. However, discovery of a missense variant is often inconclusive. The effects of these variants of uncertain significance (VUS) on disease pathogenesis are unclear, though understanding their impact on protein function can help determine their significance. Laboratory functional studies performed to date have been limited by their artificial nature. We report here an in-cellulo functional assay in which we engineered site-specific MSH2 VUS using clustered regularly interspaced short palindromic repeats-Cas9 gene editing in human embryonic stem cells. This approach introduces the variant into the endogenous MSH2 loci, while simultaneously eliminating the wild-type gene. We characterized the impact of the variants on cellular MMR functions including DNA damage response signaling and the repair of DNA microsatellites. We classified the MMR functional capability of eight of 10 VUS providing valuable information for determining their likelihood of being bona fide pathogenic LS variants. This human cell-based assay system for functional testing of MMR gene VUS will facilitate the identification of high-risk LS patients.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6810757PMC
http://dx.doi.org/10.1002/humu.23848DOI Listing

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