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Accurate classification ofMLH1/MSH2missense variants with multivariate analysis of protein polymorphisms-mismatch repair (MAPP-MMR)

机译:具有多变量分析蛋白质多态性 - 不匹配修复(MAPP-MMR)的CMLH1 / MSH2missense型变体的准确分类

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摘要

Lynch syndrome, also known as hereditary nonpolyposis colon cancer (HNPCC), is the most common known genetic syndrome for colorectal cancer (CRC). MLH1/MSH2 mutations underlie approximately 90% of Lynch syndrome families. A total of 24% of these mutations are missense. Interpreting missense variation is extremely challenging. We have therefore developed multivariate analysis of protein polymorphisms–mismatch repair (MAPP-MMR), a bioinformatic algorithm that effectively classifies MLH1/MSH2 deleterious and neutral missense variants. We compiled a large database (n>300) of MLH1/MSH2 missense variants with associated clinical and molecular characteristics. We divided this database into nonoverlapping training and validation sets and tested MAPP-MMR. MAPP-MMR significantly outperformed other missense variant classification algorithms (sensitivity, 94%; specificity, 96%; positive predictive value [PPV] 98%; negative predictive value [NPV], 89%), such as SIFT and PolyPhen. MAPP-MMR is an effective bioinformatic tool for missense variant interpretation that accurately distinguishes MLH1 / MSH2 deleterious variants from neutral variants. Hum Mutat 29(6), 852–860, 2008. © 2008 Wiley-Liss, Inc.
机译:Lynch综合征,也称为遗传性非息肉结肠直肠癌(HNPCC),是已知的遗传综合征结肠直肠癌(CRC)的最常见的。 MLH1 / MSH2突变背后Lynch综合征家庭的约90%。总共有这些突变的24%是错义。解读错义变化极具挑战性。因此,我们已经开发了蛋白多态性,错配修复(MAPP-MMR),生物信息学算法,有效地分类MLH1 / MSH2有害的和中性的错义变异的多元分析。我们编译MLH1 / MSH2错义的大型数据库(N> 300)相关联的临床和分子特征的变体。我们把这个数据库变成不重叠的训练和验证集和测试MAPP-MMR。 MAPP-MMR显著优于其他错义变异体分类算法(敏感性,94%,特异性96%;阳性预测值[PPV] 98%;阴性预测值[NPV],89%),如SIFT和PolyPhen。 MAPP-MMR是错义变异体解释,即准确区分中性变体MLH1 / MSH2有害变体的有效的生物信息学工具。哼声Mutat 29(6),852-860,2008年。©2008 WILEY-利斯公司

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