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蛋白质折叠理论:能量景观视角。

Theory of protein folding: the energy landscape perspective.

作者信息

Onuchic J N, Luthey-Schulten Z, Wolynes P G

机构信息

Department of Physics, University of California at San Diego, La Jolla 92093-0319, USA.

出版信息

Annu Rev Phys Chem. 1997;48:545-600. doi: 10.1146/annurev.physchem.48.1.545.

Abstract

The energy landscape theory of protein folding is a statistical description of a protein's potential surface. It assumes that folding occurs through organizing an ensemble of structures rather than through only a few uniquely defined structural intermediates. It suggests that the most realistic model of a protein is a minimally frustrated heteropolymer with a rugged funnel-like landscape biased toward the native structure. This statistical description has been developed using tools from the statistical mechanics of disordered systems, polymers, and phase transitions of finite systems. We review here its analytical background and contrast the phenomena in homopolymers, random heteropolymers, and protein-like heteropolymers that are kinetically and thermodynamically capable of folding. The connection between these statistical concepts and the results of minimalist models used in computer simulations is discussed. The review concludes with a brief discussion of how the theory helps in the interpretation of results from fast folding experiments and in the practical task of protein structure prediction.

摘要

蛋白质折叠的能量景观理论是对蛋白质势能面的一种统计描述。它假定折叠是通过组织一系列结构而发生的,而非仅通过少数几个明确定义的结构中间体。该理论表明,蛋白质最现实的模型是一种受挫程度最低的杂聚物,其具有崎岖的漏斗状景观,偏向于天然结构。这种统计描述是利用无序系统、聚合物以及有限系统相变的统计力学工具发展而来的。我们在此回顾其分析背景,并对比均聚物、无规杂聚物以及在动力学和热力学上能够折叠的类蛋白质杂聚物中的现象。还讨论了这些统计概念与计算机模拟中使用的简约模型结果之间的联系。综述最后简要讨论了该理论如何有助于解释快速折叠实验的结果以及蛋白质结构预测的实际任务。

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