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Contributions of the RAD51 N-terminal domain to BRCA2-RAD51 interaction

机译:RAD51 N末端结构域对BRCA2-RAD51相互作用的贡献

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RAD51 DNA strand exchange protein catalyzes the central step in homologous recombination, a cellular process fundamentally important for accurate repair of damaged chromosomes, preservation of the genetic integrity, restart of collapsed replication forks and telomere maintenance. BRCA2 protein, a product of the breast cancer susceptibility gene, is a key recombination mediator that interacts with RAD51 and facilitates RAD51 nucleoprotein filament formation on single-stranded DNA generated at the sites of DNA damage. An accurate atomistic level description of this interaction, however, is limited to a partial crystal structure of the RAD51 core fused to BRC4 peptide. Here, by integrating homology modeling and molecular dynamics, we generated a structure of the full-length RAD51 in complex with BRC4 peptide. Our model predicted previously unknown hydrogen bonding patterns involving the N-terminal domain (NTD) of RAD51. These interactions guide positioning of the BRC4 peptide within a cavity between the core and the NTDs; the peptide binding separates the two domains and restricts internal dynamics of RAD51 protomers. The model's depiction of the RAD51-BRC4 complex was validated by free energy calculations and in vitro functional analysis of rationally designed mutants. All generated mutants, RAD51(E42A), RAD51(E59A), RAD51(E237A), RAD51(E59A/E237A) and RAD51(E42A/E59A/E237A) maintained basic biochemical activities of the wild-type RAD51, but displayed reduced affinities for the BRC4 peptide. Strong correlation between the calculated and experimental binding energies confirmed the predicted structure of the RAD51-BRC4 complex and highlighted the importance of RAD51 NTD in RAD51-BRCA2 interaction.
机译:RAD51 DNA链交换蛋白催化同源重组的核心步骤,这是对受损染色体的准确修复,遗传完整性的保留,折叠叉的重启和端粒的维持至关重要的细胞过程。 BRCA2蛋白是乳腺癌易感基因的产物,是与RAD51相互作用并促进在DNA损伤部位产生的单链DNA上RAD51核蛋白细丝形成的关键重组介体。但是,这种相互作用的精确原子水平描述仅限于RAD51核心与BRC4肽融合的部分晶体结构。在这里,通过整合同源性建模和分子动力学,我们生成了全长RAD51与BRC4肽复合的结构。我们的模型预测了以前未知的涉及RAD51 N末端结构域(NTD)的氢键结合模式。这些相互作用指导BRC4肽在核心和NTD之间的腔内的定位。肽结合将两个结构域分开,并限制了RAD51启动子的内部动力学。 RAD51-BRC4复合物的模型描述已通过自由能计算和合理设计的突变体的体外功能分析得到了验证。所有生成的突变体RAD51(E42A),RAD51(E59A),RAD51(E237A),RAD51(E59A / E237A)和RAD51(E42A / E59A / E237A)都保持了野生型RAD51的基本生化活性,但对RAD51(E42A)的亲和力降低BRC4肽。计算和实验结合能之间的强相关性证实了RAD51-BRC4复合物的预测结构,并突出了RAD51 NTD在RAD51-BRCA2相互作用中的重要性。

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