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首页> 外文期刊>Journal of Medicinal Chemistry >Design of potent inhibitors of human RAD51 recombinase based on BRC motifs of BRCA2 protein: Modeling and experimental validation of a chimera peptide
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Design of potent inhibitors of human RAD51 recombinase based on BRC motifs of BRCA2 protein: Modeling and experimental validation of a chimera peptide

机译:基于BRCA2蛋白的BRC基序的人RAD51重组酶有效抑制剂的设计:嵌合体肽的建模和实验验证

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摘要

We have previously shown that a 28-amino acid peptide derived from the BRC4 motif of BRCA2 tumor suppressor inhibits selectively human RAD51 recombinase (HsRad51). With the aim of designing better inhibitors for cancer treatment, we combined an in silico docking approach with in vitro biochemical testing to construct a highly efficient chimera peptide from eight existing human BRC motifs. We built a molecular model of all BRC motifs complexed with HsRad51 based on the crystal structure of the BRC4 motif-HsRad51 complex, computed the interaction energy of each residue in each BRC motif, and selected the best amino acid residue at each binding position. This analysis enabled us to propose four amino acid substitutions in the BRC4 motif. Three of these increased the inhibitory effect in vitro, and this effect was found to be additive. We thus obtained a peptide that is about 10 times more efficient in inhibiting HsRad51-ssDNA complex formation than the original peptide.
机译:先前我们已经表明,源自BRCA2肿瘤抑制因子的BRC4基序的28个氨基酸的肽选择性抑制人RAD51重组酶(HsRad51)。为了设计用于癌症治疗的更好的抑制剂,我们将计算机对接方法与体外生化测试相结合,以从八个现有的人BRC基序构建高效的嵌合体肽。我们基于BRC4基序-HsRad51复合物的晶体结构,构建了与HsRad51复合的所有BRC基序的分子模型,计算了每个BRC基序中每个残基的相互作用能,并在每个结合位置选择了最佳的氨基酸残基。该分析使我们能够提出BRC4基序中的四个氨基酸取代。其中三个增加了体外抑制作用,并且发现这种作用是累加的。因此,我们获得的肽在抑制HsRad51-ssDNA复合物形成方面的效率是原始肽的10倍左右。

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