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基于结构的蛋白质动力学分析:溶菌酶理论结果与X射线衍射和核磁共振弛豫数据的比较。

Structure-based analysis of protein dynamics: comparison of theoretical results for hen lysozyme with X-ray diffraction and NMR relaxation data.

作者信息

Haliloglu T, Bahar I

机构信息

Polymer Research Center and Chemical Engineering Department, Bogazici University, Istanbul, Turkey.

出版信息

Proteins. 1999 Dec 1;37(4):654-67. doi: 10.1002/(sici)1097-0134(19991201)37:4<654::aid-prot15>3.0.co;2-j.

Abstract

An analytical approach based on Gaussian network model (GNM) is proposed for predicting the rotational dynamics of proteins. The method, previously shown to successfully reproduce X-ray crystallographic temperature factors for a series of proteins is extended here to predict bond torsional mobilities and reorientation of main chain amide groups probed by 15N-H nuclear magnetic resonance (NMR) relaxation. The dynamics of hen egg-white lysozyme (HEWL) in the folded state is investigated using the proposed approach. Excellent agreement is observed between theoretical results and experimental (X-ray diffraction and NMR relaxation) data. The analysis reveals the important role of coupled rotations, or cross-correlations between dihedral angle librations, in defining the relaxation mechanism on a local scale. The crystal and solution structures exhibit some differences in their local motions, but their global motions are identical. Hinge residues mediating the cooperative movements of the alpha- and beta-domains are identified, which comprise residues in helix C, Glu35 and Ser36 on the loop succeeding helix B, Ile55 and Leu56 at the turn between strands II and III. The central part of the beta-domain long loop and the turn between strands I and II display an enhanced mobility. Finally, kinetically hot residues and key interactions are identified, which point at helix B and beta-strand III as the structural elements underlying the stability of the tertiary structure.

摘要

提出了一种基于高斯网络模型(GNM)的分析方法来预测蛋白质的旋转动力学。该方法先前已成功再现了一系列蛋白质的X射线晶体学温度因子,在此将其扩展以预测通过15N-H核磁共振(NMR)弛豫探测的主链酰胺基团的键扭转迁移率和重新定向。使用所提出的方法研究了折叠状态下的鸡蛋清溶菌酶(HEWL)的动力学。理论结果与实验(X射线衍射和NMR弛豫)数据之间观察到了极好的一致性。分析揭示了耦合旋转或二面角摆动之间的交叉相关性在局部尺度上定义弛豫机制中的重要作用。晶体结构和溶液结构在局部运动上表现出一些差异,但它们的整体运动是相同的。确定了介导α-和β-结构域协同运动的铰链残基,其中包括螺旋C中的残基、螺旋B之后环上的Glu35和Ser36、链II和III之间转角处的Ile55和Leu56。β-结构域长环的中心部分以及链I和II之间的转角显示出增强的迁移率。最后,确定了动力学热点残基和关键相互作用,它们指向螺旋B和β-链III作为三级结构稳定性的基础结构元件。

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