PMS2 or PMS2CL? Characterization of variants detected in the 3' of the PMS2 gene.

Genes Chromosomes Cancer

Centre Léon Bérard, Laboratory of Constitutional Genetics for Frequent Cancer HCL-CLB, Lyon, France.

Published: January 2024

AI Article Synopsis

  • PMS2 germline pathogenic variants are key contributors to Lynch syndrome and mismatch repair deficiencies, but identifying variants in the gene's 3' region is challenging due to the confusing similarities with the PMS2CL pseudogene.* -
  • A study of 42 NGS-detected variants in 76 patients showed that 32 were located on PMS2, while 6 on PMS2CL, highlighting the intricacies of variant classification and the potential for misinterpretation.* -
  • The research also unearthed two specific genomic alterations in PMS2 linked to unique mechanisms like Alu-mediated tandem duplication, emphasizing the need for specialized analyses to accurately identify the gene origin of variants.*

Article Abstract

PMS2 germline pathogenic variants are one of the major causes for Lynch syndrome and constitutional mismatch repair deficiencies. Variant identification in the 3' region of this gene is complicated by the presence of the pseudogene PMS2CL which shares a high sequence homology with PMS2. Consequently, short-fragment screening strategies (NGS, Sanger) may fail to discriminate variant's gene localization. Using a comprehensive analysis strategy, we assessed 42 NGS-detected variants in 76 patients and found 32 localized on PMS2 while 6 on PMS2CL. Interestingly, four variants were detected in either of them in different patients. Clinical phenotype was well correlated to genotype, making it very helpful in variant assessment. Our findings emphasize the necessity of more specific complementary analyses to confirm the gene origin of each variant detected in different individuals in order to avoid variant misinterpretation. In addition, we characterized two PMS2 genomic alterations involving Alu-mediated tandem duplication and gene conversion. Those mechanisms seemed to be particularly favored in PMS2 which contribute to frequent genomic rearrangements in the 3' region of the gene.

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Source
http://dx.doi.org/10.1002/gcc.23193DOI Listing

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