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首页> 外文期刊>Human mutation >Functional Analysis of Missense Variants in the Putative Breast Cancer Susceptibility Gene XRCC2
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Functional Analysis of Missense Variants in the Putative Breast Cancer Susceptibility Gene XRCC2

机译:乳腺癌敏感性基因XRCC2的畸形变种功能分析

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摘要

XRCC2 genetic variants have been associated with breast cancer susceptibility. However, association studies have been complicated because XRCC2 variants are extremely rare and consist mainly of amino acid substitutions whose grouping is sensitive to misclassification by the predictive algorithms. We therefore functionally characterized variants in XRCC2 by testing their ability to restore XRCC2-DNA repair deficient phenotypes using a cDNA-based complementation approach. While the protein-truncating variants p.Leu117fs, p.Arg215*, and p.Cys217* were unable to restore XRCC2 deficiency, 19 out of 23 missense variants showed no or just a minor (<25%) reduction in XRCC2 function. The remaining four (p.Cys120Tyr, p.Arg91Trp, p.Leu133Pro, and p.Ile95Leu) had a moderate effect. Overall, measured functional effects correlated poorly with those predicted by in silico analysis. After regrouping variants from published case-control studies based on the functional effect found in this study and reanalysis of the prevalence data, there was no longer evidence for an association with breast cancer. This suggests that if breast cancer susceptibility alleles of XRCC2 exist, they are likely restricted to protein-truncating variants and a minority of missense changes. Our study emphasizes the use of functional analyses of missense variants to support variant classification in association studies.
机译:XRCC2遗传变异与乳腺癌易感性有关。然而,关联研究一直很复杂,因为XRCC2变体极为罕见,主要由预测算法分组对错误分类敏感的氨基酸取代。因此,我们通过测试其使用基于cDNA的互补方法来测试其恢复XRCC2-DNA修复缺陷表型的能力,在XRCC2中使用功能表征变体。虽然蛋白截断变体P.Leu117FS,p.arg215 *和p.cys217 *无法恢复XRCC2缺陷,但是23个麦克信变体中的19个没有或仅在XRCC2功能中降低或仅次要(<25%)。剩下的四个(p.cys120tyr,p.arg91trp,p.leu133pro和p.ile95leu)具有中等的效果。总的来说,测量的功能效果与硅分析中预测的那些相关的功能效果相关。在基于本研究中发现的功能效果和患病率数据的重新分析的功能效果,重新组合出版物对照研究后,不再有乳腺癌联系的证据。这表明,如果存在XRCC2的乳腺癌易感性等位基因,它们可能仅限于蛋白质截断的变体和少数畸形变化。我们的研究强调了使用功能分析的密码变体来支持结社研究中的变体分类。

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