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A Pathogenic Variant Reclassified to the Pseudogene PMS2P1 in a Patient with Suspected Hereditary Cancer
Veronica Fragoso-Ontiveros1, Marcela Angelica De la Fuente-Hernandez1, Vincent Gonzalez-Osnaya1
1Hereditary Cancer Clinic, National Cancer Institute, San Fernando 22, Sección XVI, Tlalpan, Mexico City 14070, Mexico.
Abstract:
The PMS2 gene is involved in DNA repair by the mismatch repair pathway. Deficiencies in this mechanism have been associated with Lynch Syndrome (LS), which is characterized by a high risk for colorectal, endometrial, ovarian, breast, and other cancers. Germinal pathogenic variants of PMS2 are associated with up to 5% of all cases of LS. The prevalence is overestimated for the existence of multiple homologous pseudogenes. We report the case of a 44-year-old woman diagnosed with breast cancer at 34 years without a relevant cancer family history. The presence of pathogenic variant NM_000535.7:c.1A > T, (p.Met1Leu) in PMS2 was determined by next-generation sequencing analysis with a panel of 322 cancer-associated genes and confirmed by capillary sequencing in the patient. The variant was determined in six family members (brothers, sisters, and a son) and seven non-cancerous unrelated individuals. Analysis of the amplified region showed high homology of PMS2 with five of its pseudogenes. We determined that the variant is associated with the PMS2P1 pseudogene following sequence alignment analysis. We propose considering the variant c.1A > T, (p.Met1Leu) in PMS2 for reclassification as not hereditary cancer-related, given the impact on the diagnosis and treatment of cancer patients and families carrying this variant.
Insights
A PMS2 gene variant, initially thought to cause Lynch Syndrome (LS), was found to be associated with a pseudogene. This finding suggests reclassification, impacting cancer diagnosis and family genetic counseling.
Area of Science:
- Genetics
- Cancer Biology
- Molecular Diagnostics
Background:
- The PMS2 gene is crucial for DNA mismatch repair, and its deficiencies are linked to Lynch Syndrome (LS), increasing cancer risk.
- Germline pathogenic variants in PMS2 account for a significant portion of LS cases, but pseudogene interference can complicate prevalence estimates.
Observation:
- A patient with early-onset breast cancer, lacking family history, carried a PMS2 variant (NM_000535.7:c.1A > T, p.Met1Leu).
- Next-generation sequencing and capillary sequencing identified this variant in the patient and several relatives.
- Sequence alignment revealed high homology between PMS2 and its pseudogenes, specifically PMS2P1.
Findings:
- The identified PMS2 variant (c.1A > T, p.Met1Leu) was determined to be located in the PMS2P1 pseudogene, not the functional PMS2 gene.
- This pseudogene association challenges the variant's role as a cause of hereditary cancer.
Implications:
- Reclassification of the PMS2 c.1A > T (p.Met1Leu) variant as non-hereditary cancer-related is proposed.
- Accurate variant classification is critical for appropriate cancer diagnosis, risk assessment, and treatment strategies for patients and families.
- Distinguishing pathogenic variants from pseudogene-related sequences is essential for reliable genetic testing in hereditary cancer syndromes.
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