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首页> 外文期刊>Current Opinion in Structural Biology >Computational design of affinity and specificity at protein-protein interfaces
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Computational design of affinity and specificity at protein-protein interfaces

机译:蛋白质-蛋白质界面亲和力和特异性的计算设计

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The computer-based design of protein-protein interactions is a rigorous test of our understanding of molecular recognition and an attractive approach for creating novel tools for cell and molecular research. Considerable attention has been placed on redesigning the affinity and specificity of naturally occurring interactions. Several studies have shown that reducing the desolvation costs for binding while preserving shape complimentarity and hydrogen bonding is an effective strategy for improving binding affinities. In favorable cases specificity has been designed by focusing only on interactions with the target protein, while in cases with closely related off-target proteins it has been necessary to explicitly disfavor unwanted binding partners. The rational design of protein-protein interactions from scratch is still an unsolved problem, but recent developments in flexible backbone design and energy functions hold promise for the future.
机译:基于蛋白质的蛋白质相互作用的基于计算机的设计是对我们对分子识别的理解的严格测试,并且是创建用于细胞和分子研究的新工具的有吸引力的方法。人们已经对重新设计自然发生的相互作用的亲和力和特异性给予了极大的关注。几项研究表明,在保持形状互补性和氢键结合的同时降低结合的去溶剂化成本是提高结合亲和力的有效策略。在有利的情况下,通过仅关注与靶蛋白的相互作用来设计特异性,而在具有密切相关的脱靶蛋白的情况下,必须显着地使不需要的结合伴侣不利。从头开始进行蛋白质-蛋白质相互作用的合理设计仍然是一个尚未解决的问题,但是灵活的骨架设计和能量功能的最新发展为未来带来了希望。

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