首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure, function, and evolution of transient and obligate protein-protein interactions.
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Structure, function, and evolution of transient and obligate protein-protein interactions.

机译:暂时性和专性蛋白质-蛋白质相互作用的结构,功能和进化。

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摘要

Recent analyses of high-throughput protein interaction data coupled with large-scale investigations of evolutionary properties of interaction networks have left some unanswered questions. To what extent do protein interactions act as constraints during evolution of the protein sequence? How does the type of interaction, specifically transient or obligate, play into these constraints? Are the mutations in the binding site of an interacting protein correlated with mutations in the binding site of its partner? We address these and other questions by relying on a carefully curated dataset of protein complex structures. Results point to the importance of distinguishing between transient and obligate interactions. We conclude that residues in the interfaces of obligate complexes tend to evolve at a relatively slower rate, allowing them to coevolve with their interacting partners. In contrast, the plasticity inherent in transient interactions leads to an increased rate of substitution for the interface residues and leaves little or no evidence of correlated mutations across the interface.
机译:最近对高通量蛋白质相互作用数据的分析,以及对相互作用网络进化特性的大规模研究,留下了一些未解决的问题。在蛋白质序列进化过程中,蛋白质相互作用在多大程度上起约束作用?相互作用的类型,特别是短暂或专一的相互作用如何影响这些约束?相互作用蛋白结合位点的突变是否与其伴侣结合位点的突变相关?我们通过精心策划的蛋白质复杂结构数据集来解决这些问题和其他问题。结果指出了区分短暂相互作用和专性相互作用的重要性。我们得出结论,专性复合物界面中的残基倾向于以相对较慢的速度演化,从而使它们能够与相互作用的伴侣一起进化。相反,瞬时相互作用中固有的可塑性导致界面残基的取代率增加,并且几乎没有或没有证据表明整个界面存在相关突变。

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