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Functional residues serve a dominant role in mediating the cooperativity of the protein ensemble

机译:功能残基在介导蛋白质整体的协同作用中起主要作用

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Conformational fluctuations in proteins have emerged as a potentially important aspect of biological function, although the precise relationship and the implications have yet to be fully explored. Numerous studies have reported that the binding of ligand can influence fluctuations. However, the role of the binding site in mediating these fluctuations is not known. Of particular interest is whether in addition to serving as structural scaffolds for recognition and catalysis, active-site residues may also play a role in modulating the cooperative network. To address this question, we employ an experimentally validated ensemble-based description of proteins to elucidate the extent to which perturbations at different sites can influence the cooperative network in the protein. Applying this method to a database of test proteins, it is found statistically that binding sites are located in regions most able to affect the cooperative network, even for cooperative interactions between residues distant to the binding sites. This indicates that the conformational manifold under native conditions is determined by the network of cooperative interactions within the protein and suggests that proteins have evolved to use these conformational fluctuations in carrying out their functions. Furthermore, because the energetic coupling pattern calculated for each protein is robust and relatively insensitive to sequence, these studies further suggest that binding sites evolved in regions of the protein that are inherently poised to take advantage of the fluctuations in the native structure.
机译:蛋白质的构象性波动已经成为生物学功能的潜在重要方面,尽管确切的关系和含意尚待充分研究。许多研究报告说,配体的结合会影响波动。但是,结合位点在介导这些波动中的作用尚不清楚。特别令人感兴趣的是,除了用作识别和催化的结构支架之外,活性位点残基是否还可能在调节协同网络中发挥作用。为了解决这个问题,我们采用了基于实验的基于集成体的蛋白质描述,以阐明不同位点的扰动可影响蛋白质中协同网络的程度。将这种方法应用于测试蛋白质的数据库,从统计上发现,即使对于远离结合位点的残基之间的协同相互作用,结合位点也位于最能影响协同网络的区域。这表明天然条件下的构象流形由蛋白质内的协作相互作用网络决定,并表明蛋白质已经进化为利用这些构象波动来行使其功能。此外,由于针对每种蛋白质计算出的能量耦合模式是稳健的,并且对序列相对不敏感,因此这些研究进一步表明,结合位点在蛋白质区域中进化,这些区域固有地准备利用天然结构的波动。

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