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Parallel dynamics and evolution: Protein conformational fluctuations and assembly reflect evolutionary changes in sequence and structure

机译:并行动力学和进化:蛋白质构象的波动和组装反映了序列和结构的进化变化

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摘要

Protein structure is dynamic: the intrinsic flexibility of polypeptides facilitates a range of conformational fluctuations, and individual protein chains can assemble into complexes. Proteins are also dynamic in evolution: significant variations in secondary, tertiary and quaternary structure can be observed among divergent members of a protein family. Recent work has highlighted intriguing similarities between these structural and evolutionary dynamics occurring at various levels. Here we review evidence showing how evolutionary changes in protein sequence and structure are often closely related to local protein flexibility and disorder, large-scale motions and quaternary structure assembly. We suggest that these correspondences can be largely explained by neutral evolution, while deviations between structural and evolutionary dynamics can provide valuable functional insights. Finally, we address future prospects for the field and practical applications that arise from a deeper understanding of the intimate relationship between protein structure, dynamics, function and evolution.
机译:蛋白质结构是动态的:多肽的固有柔韧性促进了一系列构象波动,并且单个蛋白质链可以组装成复合物。蛋白质在进化中也是动态的:在蛋白质家族的不同成员之间,可以观察到二级,三级和四级结构的显着变化。最近的工作强调了在各个层次上发生的这些结构动力学和进化动力学之间的有趣相似性。在这里,我们审查的证据表明蛋白质序列和结构的进化变化通常与局部蛋白质的柔韧性和紊乱,大规模运动和四级结构组装密切相关。我们建议,这些对应关系在很大程度上可以由中性进化来解释,而结构动力学和进化动力学之间的偏差可以提供有价值的功能见解。最后,我们对蛋白质结构,动力学,功能和进化之间的亲密关系有了更深入的了解,从而提出了该领域和实际应用的未来前景。

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