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通过刚性残基扫描识别蛋白质变构的关键残基。

Identifying key residues for protein allostery through rigid residue scan.

作者信息

Kalescky Robert, Liu Jin, Tao Peng

机构信息

Department of Chemistry, Center for Drug Discovery, Design, and Delivery (CD4), and Center for Scientific Computation, Southern Methodist University , 3215 Daniel Avenue, Dallas, Texas 75275, United States.

出版信息

J Phys Chem A. 2015 Mar 5;119(9):1689-700. doi: 10.1021/jp5083455. Epub 2014 Dec 11.

Abstract

Allostery is a ubiquitous process for protein regulatory activity in which a binding event can change a protein's function carried out at a distal site. Despite intensive theoretical and experimental investigation of protein allostery in the past five decades, effective methods have yet to be developed that can systematically identify key residues involved in allosteric mechanisms. In this study, we propose the rigid residue scan as a systematic approach to identify important allosteric residues. The third PDZ domain (PDZ3) in the postsynaptic density 95 protein (PSD-95) is used as a model system, and each amino acid residue is treated as a single rigid body during independent molecular dynamics simulations. Various indices based on cross-correlation matrices are used, which allow for two groups of residues with different functions to be identified. The first group is proposed as "switches" that are needed to "turn on" the binding effect of protein allostery. The second group is proposed as "wire residues" that are needed to propagate energy or information from the binding site to distal locations within the same protein. Among the nine residues suggested as important for PDZ3 intramolecular communication in this study, eight have been reported as critical for allostery in PDZ3. Therefore, the rigid residue scan approach is demonstrated to be an effective method for systemically identifying key residues in protein intramolecular communication and allosteric mechanisms.

摘要

变构是蛋白质调节活性中普遍存在的过程,其中一个结合事件可以改变蛋白质在远端位点执行的功能。尽管在过去五十年中对蛋白质变构进行了深入的理论和实验研究,但尚未开发出能够系统识别变构机制中关键残基的有效方法。在本研究中,我们提出刚性残基扫描作为一种系统方法来识别重要的变构残基。突触后致密蛋白95(PSD - 95)中的第三个PDZ结构域(PDZ3)用作模型系统,在独立的分子动力学模拟过程中,每个氨基酸残基都被视为单个刚体。使用基于互相关矩阵的各种指标,这使得能够识别具有不同功能的两组残基。第一组被认为是“开关”,是“开启”蛋白质变构结合效应所必需的。第二组被认为是“导线残基”,是将能量或信息从结合位点传播到同一蛋白质内远端位置所必需的。在本研究中被认为对PDZ3分子内通讯重要的九个残基中,有八个已被报道对PDZ3的变构至关重要。因此,刚性残基扫描方法被证明是一种系统识别蛋白质分子内通讯和变构机制中关键残基的有效方法。

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