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Molecular Evolution of Protein Conformational Changes Revealed by a Network of Evolutionarily Coupled Residues

机译:蛋白质构象变化的分子进化由进化耦合的残基网络揭示。

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摘要

An improved understanding of protein conformational changes has broad implications for elucidating the mechanisms of various biological processes and for the design of protein engineering experiments. Understanding rearrangements of residue interactions is a key component in the challenge of describing structural transitions. Evolutionary properties of protein sequences and structures are extensively studied; however, evolution of protein motions, especially with respect to interaction rearrangements, has yet to be explored. Here, we investigated the relationship between sequence evolution and protein conformational changes and discovered that structural transitions are encoded in amino acid sequences as coevolving residue pairs. Furthermore, we found that highly coevolving residues are clustered in the flexible regions of proteins and facilitate structural transitions by forming and disrupting their interactions cooperatively. Our results provide insight into the evolution of protein conformational changes and help to identify residues important for structural transitions.
机译:对蛋白质构象变化的更好理解对于阐明各种生物学过程的机制以及蛋白质工程实验的设计具有广泛的意义。了解残基相互作用的重排是描述结构转变挑战的关键组成部分。蛋白质序列和结构的进化特性得到了广泛的研究。然而,蛋白质运动的进化,特别是在相互作用重排方面,尚待探索。在这里,我们研究了序列进化与蛋白质构象变化之间的关系,并发现结构转变在氨基酸序列中编码为共同进化的残基对。此外,我们发现高度协同进化的残基聚集在蛋白质的柔性区域中,并通过协同形成和破坏它们的相互作用来促进结构转变。我们的结果提供了对蛋白质构象变化演变的见解,并有助于鉴定对结构转变重要的残基。

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