...
首页> 外文期刊>PLoS Computational Biology >Interrogation of the Protein-Protein Interactions between Human BRCA2 BRC Repeats and RAD51 Reveals Atomistic Determinants of Affinity
【24h】

Interrogation of the Protein-Protein Interactions between Human BRCA2 BRC Repeats and RAD51 Reveals Atomistic Determinants of Affinity

机译:人类BRCA2 BRC重复和RAD51之间的蛋白质相互作用的审讯揭示了亲和力的原子决定因素。

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The breast cancer suppressor BRCA2 controls the recombinase RAD51 in the reactions that mediate homologous DNA recombination, an essential cellular process required for the error-free repair of DNA double-stranded breaks. The primary mode of interaction between BRCA2 and RAD51 is through the BRC repeats, which are ~35 residue peptide motifs that interact directly with RAD51 in vitro. Human BRCA2, like its mammalian orthologues, contains 8 BRC repeats whose sequence and spacing are evolutionarily conserved. Despite their sequence conservation, there is evidence that the different human BRC repeats have distinct capacities to bind RAD51. A previously published crystal structure reports the structural basis of the interaction between human BRC4 and the catalytic core domain of RAD51. However, no structural information is available regarding the binding of the remaining seven BRC repeats to RAD51, nor is it known why the BRC repeats show marked variation in binding affinity to RAD51 despite only subtle sequence variation. To address these issues, we have performed fluorescence polarisation assays to indirectly measure relative binding affinity, and applied computational simulations to interrogate the behaviour of the eight human BRC-RAD51 complexes, as well as a suite of BRC cancer-associated mutations. Our computational approaches encompass a range of techniques designed to link sequence variation with binding free energy. They include MM-PBSA and thermodynamic integration, which are based on classical force fields, and a recently developed approach to computing binding free energies from large-scale quantum mechanical first principles calculations with the linear-scaling density functional code onetep. Our findings not only reveal how sequence variation in the BRC repeats directly affects affinity with RAD51 and provide significant new insights into the control of RAD51 by human BRCA2, but also exemplify a palette of computational and experimental tools for the analysis of protein-protein interactions for chemical biology and molecular therapeutics.
机译:乳腺癌抑制物BRCA2在介导同源DNA重组的反应中控制重组酶RAD51,这是无错修复DNA双链断裂所需的基本细胞过程。 BRCA2和RAD51之间的主要相互作用方式是通过BRC重复序列,它们是〜35个残基的肽基序,它们在体外与RAD51直接相互作用。人BRCA2与其哺乳动物的直系同源物一样,包含8个BRC重复序列,其序列和间隔在进化上是保守的。尽管序列保守,但有证据表明不同的人BRC重复序列具有结合RAD51的独特能力。先前发表的晶体结构报告了人类BRC4和RAD51催化核心结构域之间相互作用的结构基础。但是,尚无关于其余七个BRC重复序列与RAD51结合的结构信息,也不知道为什么BRC重复序列显示与RAD51的结合亲和力有显着变化,尽管序列变化很小。为了解决这些问题,我们进行了荧光偏振测定法以间接测量相对结合亲和力,并应用计算模拟来询问八种人类BRC-RAD51复合物的行为,以及一整套与BRC癌症相关的突变。我们的计算方法涵盖了一系列旨在将序列变异与结合自由能联系起来的技术。它们包括基于经典力场的MM-PBSA和热力学积分,以及最近开发的通过线性比例密度功能码onetep从大规模量子力学第一原理计算中计算结合自由能的方法。我们的发现不仅揭示了BRC重复序列的变化如何直接影响与RAD51的亲和力,并为人类BRCA2对RAD51的控制提供了重要的新见解,而且还举例说明了用于分析蛋白质与蛋白质相互作用的一系列计算和实验工具化学生物学和分子疗法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号