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球状蛋白和无序蛋白中的盐桥网络:可设计相互作用的特征趋势

Salt-bridge networks within globular and disordered proteins: characterizing trends for designable interactions.

作者信息

Basu Sankar, Mukharjee Debasish

机构信息

Department of Biochemistry, University of Calcutta, 35, Ballygunge Circular Rd, Ballygunge, Kolkata, West Bengal, 700019, India.

Computational Science Division, Saha Institute of Nuclear Physics, 1/AF, BidhanNagar, Kolkata, West Bengal, 700064, India.

出版信息

J Mol Model. 2017 Jul;23(7):206. doi: 10.1007/s00894-017-3376-y. Epub 2017 Jun 19.

Abstract

There has been considerable debate about the contribution of salt bridges to the stabilization of protein folds, in spite of their participation in crucial protein functions. Salt bridges appear to contribute to the activity-stability trade-off within proteins by bringing high-entropy charged amino acids into close contacts during the course of their functions. The current study analyzes the modes of association of salt bridges (in terms of networks) within globular proteins and at protein-protein interfaces. While the most common and trivial type of salt bridge is the isolated salt bridge, bifurcated salt bridge appears to be a distinct salt-bridge motif having a special topology and geometry. Bifurcated salt bridges are found ubiquitously in proteins and interprotein complexes. Interesting and attractive examples presenting different modes of interaction are highlighted. Bifurcated salt bridges appear to function as molecular clips that are used to stitch together large surface contours at interacting protein interfaces. The present work also emphasizes the key role of salt-bridge-mediated interactions in the partial folding of proteins containing long stretches of disordered regions. Salt-bridge-mediated interactions seem to be pivotal to the promotion of "disorder-to-order" transitions in small disordered protein fragments and their stabilization upon binding. The results obtained in this work should help to guide efforts to elucidate the modus operandi of these partially disordered proteins, and to conceptualize how these proteins manage to maintain the required amount of disorder even in their bound forms. This work could also potentially facilitate explorations of geometrically specific designable salt bridges through the characterization of composite salt-bridge networks. Graphical abstract ᅟ.

摘要

尽管盐桥参与了关键的蛋白质功能,但关于盐桥对蛋白质折叠稳定性的贡献仍存在大量争论。盐桥似乎通过在其功能过程中使高熵带电氨基酸紧密接触,从而在蛋白质的活性 - 稳定性权衡中发挥作用。当前的研究分析了球状蛋白质内部以及蛋白质 - 蛋白质界面处盐桥的关联模式(从网络角度)。虽然最常见且普通的盐桥类型是孤立盐桥,但分叉盐桥似乎是一种具有特殊拓扑结构和几何形状的独特盐桥基序。分叉盐桥在蛋白质和蛋白质间复合物中普遍存在。文中突出了呈现不同相互作用模式的有趣且引人注目的例子。分叉盐桥似乎起着分子夹的作用,用于在相互作用的蛋白质界面处拼接大的表面轮廓。本研究还强调了盐桥介导的相互作用在含有长无序区域的蛋白质部分折叠中的关键作用。盐桥介导的相互作用似乎对于促进小的无序蛋白质片段中的“无序到有序”转变及其结合后的稳定至关重要。这项工作所获得的结果应有助于指导阐明这些部分无序蛋白质的作用方式,并理解这些蛋白质如何即使在其结合形式下仍能维持所需的无序量。这项工作还可能通过对复合盐桥网络的表征,促进对几何形状特定的可设计盐桥的探索。图形摘要ᅟ

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