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Imaging Mismatch Repair and Cellular Responses to DNA Damage in Bacillus subtilis
Published on: February 8, 2010
Tumour characteristics provide evidence for germline mismatch repair missense variant pathogenicity
Shuwei Li1, Dajun Qian1, Bryony A Thompson2,3
1Bioinformatics, Ambry Genetics Corp, Aliso Viejo, California, USA.
Background:
Pathogenic variants in mismatch repair (MMR) genes (MLH1, MSH2, MSH6 and PMS2) increase risk for Lynch syndrome and related cancers. We quantified tumour characteristics to assess variant pathogenicity for germline MMR genes.
Methods:
Among 4740 patients with cancer with microsatellite instability (MSI) and immunohistochemical (IHC) results, we tested MMR pathogenic variant association with MSI/IHC status, and estimated likelihood ratios which we used to compute a tumour characteristic likelihood ratio (TCLR) for each variant. Predictive performance of TCLR in combination with in silico predictors, and a multifactorial variant prediction (MVP) model that included allele frequency, co-occurrence, co-segregation, and clinical and family history information was assessed.
Results:
Compared with non-carriers, carriers of germline pathogenic/likely pathogenic (P/LP) variants were more likely to have abnormal MSI/IHC status (p<0.0001). Among 150 classified missense variants, 73.3% were accurately predicted with TCLR alone. Models leveraging in silico scores as prior probabilities accurately classified >76.7% variants. Adding TCLR as quantitative evidence in an MVP model (MVP +TCLR Pred) increased the proportion of accurately classified variants from 88.0% (MVP alone) to 98.0% and generated optimal performance statistics among all models tested. Importantly, MVP +TCLR Pred resulted in the high yield of predicted classifications for missense variants of unknown significance (VUS); among 193 VUS, 62.7% were predicted as P/PL or benign/likely benign (B/LB) when assessed according to American College of Medical Genetics and Genomics/Association for Molecular Pathology guidelines.
Conclusion:
Our study demonstrates that when used separately or in conjunction with other evidence, tumour characteristics provide evidence for germline MMR missense variant assessment, which may have important implications for genetic testing and clinical management.
Insights
Tumor characteristics aid in assessing mismatch repair (MMR) gene variants for Lynch syndrome risk. Combining tumor data with other factors significantly improves variant classification accuracy, aiding genetic testing and clinical management.
Area of Science:
- Genetics and Genomics
- Oncology
- Molecular Diagnostics
Background:
- Pathogenic variants in mismatch repair (MMR) genes (MLH1, MSH2, MSH6, PMS2) are linked to Lynch syndrome and associated cancers.
- Accurate assessment of germline MMR gene variants is crucial for cancer risk prediction and management.
Purpose of the Study:
- To quantify tumor characteristics for assessing the pathogenicity of germline MMR gene variants.
- To evaluate the effectiveness of a multifactorial variant prediction (MVP) model incorporating tumor data.
Main Methods:
- Analyzed 4740 cancer patients with microsatellite instability (MSI) and immunohistochemical (IHC) results.
- Calculated tumor characteristic likelihood ratios (TCLR) and assessed predictive models including in silico predictors and MVP.
- Evaluated MVP combined with TCLR (MVP +TCLR_Pred) for variant classification accuracy.
Main Results:
- Germline pathogenic/likely pathogenic (P/LP) MMR variants were significantly associated with abnormal MSI/IHC status.
- The MVP +TCLR_Pred model achieved 98.0% accuracy in classifying variants, outperforming MVP alone (88.0%).
- This model effectively classified 62.7% of missense variants of unknown significance (VUS) as pathogenic or benign.
Conclusions:
- Tumor characteristics provide valuable evidence for germline MMR missense variant assessment.
- The enhanced MVP model improves the accuracy of variant pathogenicity prediction.
- These findings have significant implications for genetic testing and clinical management of Lynch syndrome.
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