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探究BRCA1羧基末端区域错义变体中的结构-功能关系。

Probing structure-function relationships in missense variants in the carboxy-terminal region of BRCA1.

作者信息

Carvalho Renato S, Abreu Renata B V, Velkova Aneliya, Marsillac Sylvia, Rodarte Renato S, Suarez-Kurtz Guilherme, Iversen Edwin S, Monteiro Alvaro N A, Carvalho Marcelo A

机构信息

Cancer Epidemiology Program, H. Lee Moffitt Cancer Center & Research Institute, Tampa, Florida, United States of America; Programa de Farmacologia, Instituto Nacional de Câncer, Rio de Janeiro, RJ, Brazil.

Programa de Farmacologia, Instituto Nacional de Câncer, Rio de Janeiro, RJ, Brazil.

出版信息

PLoS One. 2014 May 20;9(5):e97766. doi: 10.1371/journal.pone.0097766. eCollection 2014.

Abstract

Germline inactivating variants in BRCA1 lead to a significantly increased risk of breast and ovarian cancers in carriers. While the functional effect of many variants can be inferred from the DNA sequence, determining the effect of missense variants present a significant challenge. A series of biochemical and cell biological assays have been successfully used to explore the impact of these variants on the function of BRCA1, which contribute to assessing their likelihood of pathogenicity. It has been determined that variants that co-localize with structural or functional motifs are more likely to disrupt the stability and function of BRCA1. Here we assess the functional impact of 37 variants chosen to probe the functional impact of variants in phosphorylation sites and in the BRCT domains. In addition, we perform a meta-analysis of 170 unique variants tested by the transcription activation assays in the carboxy-terminal domain of BRCA1 using a recently developed computation model to provide assessment for functional impact and their likelihood of pathogenicity.

摘要

BRCA1基因种系失活变异会使携带者患乳腺癌和卵巢癌的风险显著增加。虽然许多变异的功能效应可从DNA序列推断出来,但确定错义变异的效应是一项重大挑战。一系列生化和细胞生物学检测已成功用于探究这些变异对BRCA1功能的影响,这有助于评估其致病可能性。已确定与结构或功能基序共定位的变异更有可能破坏BRCA1的稳定性和功能。在此,我们评估了37个变异的功能影响,这些变异旨在探究磷酸化位点和BRCT结构域中变异的功能影响。此外,我们使用最近开发的计算模型,对通过BRCA1羧基末端结构域转录激活检测所测试的170个独特变异进行荟萃分析,以评估其功能影响及其致病可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e9b/4028255/e2c63a2bd542/pone.0097766.g001.jpg

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