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实验与理论凸显了天然态拓扑结构在SH3折叠中的作用。

Experiment and theory highlight role of native state topology in SH3 folding.

作者信息

Riddle D S, Grantcharova V P, Santiago J V, Alm E, Ruczinski I, Baker D

机构信息

Department of Biochemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

Nat Struct Biol. 1999 Nov;6(11):1016-24. doi: 10.1038/14901.

Abstract

We use a combination of experiments, computer simulations and simple model calculations to characterize, first, the folding transition state ensemble of the src SH3 domain, and second, the features of the protein that determine its folding mechanism. Kinetic analysis of mutations at 52 of the 57 residues in the src SH3 domain revealed that the transition state ensemble is even more polarized than suspected earlier: no single alanine substitution in the N-terminal 15 residues or the C-terminal 9 residues has more than a two-fold effect on the folding rate, while such substitutions at 15 sites in the central three-stranded beta-sheet cause significant decreases in the folding rate. Molecular dynamics (MD) unfolding simulations and ab initio folding simulations on the src SH3 domain exhibit a hierarchy of folding similar to that observed in the experiments. The similarity in folding mechanism of different SH3 domains and the similar hierarchy of structure formation observed in the experiments and the simulations can be largely accounted for by a simple native state topology-based model of protein folding energy landscapes.

摘要

我们运用实验、计算机模拟和简单模型计算相结合的方法,首先来表征src SH3结构域的折叠过渡态系综,其次确定决定其折叠机制的蛋白质特征。对src SH3结构域57个残基中52个残基的突变进行动力学分析发现,过渡态系综比之前怀疑的更加极化:在N端15个残基或C端9个残基中,没有单个丙氨酸取代对折叠速率有超过两倍的影响,而在中央三链β-折叠中的15个位点进行这样的取代会导致折叠速率显著降低。对src SH3结构域进行的分子动力学(MD)去折叠模拟和从头折叠模拟展现出与实验中观察到的相似的折叠层次结构。不同SH3结构域折叠机制的相似性以及在实验和模拟中观察到的相似的结构形成层次结构,在很大程度上可以由一个基于天然态拓扑结构的简单蛋白质折叠能量景观模型来解释。

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