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Design of BRC analogous peptides based on the complex BRC8-RAD51 and the preliminary study on the peptide structures

机译:基于复合BRC8-RAD51的BRC类似肽的设计及肽结构的初步研究

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BRCA2 is an important tumor suppressor gene that plays a critical role in preserving the stability of cellular genetic information, participating in DNA repair by engaging in binding interactions with RAD51 proteins. However, the lack of structural data on BRCA2 and RAD51 makes the study of their interaction mechanism still a great challenge. We characterize the structure of the BRC8-RAD51 complex using ZDOCK protein docking software and identify the potential non-conserved active site of BRC8 via virtual alanine scanning, utilizing the obtained results to synthesize BRC8, its six analogous peptides (BRC8-1 to BRC8-6), and critical peptide fragment of RAD51 (RAD51(231-260)) by Fmoc solid-phase synthesis. The analogous peptides are found to exhibit a secondary structure significantly different from that of BRC8 by circular dichroism spectroscopy, which indicates that mutation sites determined by computer-aided simulation correspond to key amino acid residues substantially affecting polypeptide structure. On the other hand, the secondary structure of RAD51(231-260) was also considerably influenced by its interaction with BRC8 and analogs, e.g., the fraction of the alpha-helical structure in RAD51(231-260) increased to 23.6, 15.1, and 13.5% upon interaction with BRC8-1, BRC8-3, and BRC8-6, respectively. The results show that the properties of C-terminal amino acid residues significantly influence peptide-peptide interactions, in agreement with the results of virtual alanine scanning. Therefore, computer-aided simulation was confirmed to be a technique that is useful for narrowing down the range of sites responsible for interactions between peptides or proteins, and provides new inspirations for the design of peptides with strong interactions.
机译:BRCA2是一种重要的肿瘤抑制基因,其在保留细胞遗传信息的稳定性方面发挥着关键作用,通过从与RAD51蛋白接合结合相互作用来参与DNA修复。然而,BRCA2和RAD51上的结构数据缺乏对其相互作用机制的研究仍然是一个巨大的挑战。我们使用Zdock蛋白对接软件表征BRC8-RAD51复合物的结构,并通过虚拟丙氨酸扫描识别BRC8的潜在非保守的活性位点,利用所得结果合成BRC8,其六种类似肽(BRC8-1至BRC8-- 6)和RAD51的临界肽片段通过FMOC固相合成来(RAD51(231-260))。发现类似肽的二级结构与BRC8的圆形二色性光谱显着不同,这表明通过计算机辅助模拟确定的突变位点对应于基本上影响多肽结构的关键氨基酸残基。另一方面,RAD51(231-260)的二次结构也通过其与BRC8的相互作用和类似物的相互作用影响,例如,RAD51(231-260)中的α-螺旋结构的级分增加至23.6,15.1,与BRC8-1,BRC8-3和BRC8-6相互作用,13.5%。结果表明,与虚拟丙氨酸扫描的结果一致,C-末端氨基酸残基的性质显着影响肽 - 肽相互作用。因此,确认计算机辅助模拟是一种可用于缩小负责肽或蛋白质之间相互作用的部位范围的技术,并为具有强相互作用的肽设计提供新的灵感。

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