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模拟蛋白质折叠过程中几何效应与能量效应之间的相互作用。

Modeling the interplay between geometrical and energetic effects in protein folding.

作者信息

Suzuki Yoko, Onuchic José N

机构信息

Department of Physics, Faculty of Physical Sciences and Engineering, Meisei University, 2-1-1 Hodokubo, Hino-shi, Tokyo 191-8506, Japan.

出版信息

J Phys Chem B. 2005 Sep 1;109(34):16503-10. doi: 10.1021/jp0512863.

Abstract

A theoretical framework is constructed with the aid of a free-energy functional method that is capable of describing the interplay between geometrical and energetic effects on protein folding. In this paper, we generalize a free-energy functional model based on polymer theory to make it more appropriate for comparison with protein folding simulations and experiments. This generalization is made by introducing cooperativity into the configurational entropy and the internal energy. Modifications to configurational entropy enable the model to account for the loop-loop interactions, a contribution neglected in the original model. Modifications to the internal energy introduce many-body corrections, which are needed to establish quantitative contact to simulations as well as experimental observations. To demonstrate the efficiency of the modified analytical model, we compare our results with C(alpha) structure-based (Go) model simulations of chymotrypsin inhibitor II and the SH3 domain of src.

摘要

借助一种能够描述几何效应和能量效应在蛋白质折叠过程中相互作用的自由能泛函方法,构建了一个理论框架。在本文中,我们对基于聚合物理论的自由能泛函模型进行了推广,使其更适合与蛋白质折叠模拟和实验进行比较。这种推广是通过在构型熵和内能中引入协同性来实现的。对构型熵的修正使模型能够考虑环-环相互作用,这是原始模型中被忽略的一个贡献。对内能的修正引入了多体修正,这是与模拟以及实验观测建立定量联系所必需的。为了证明修正后的分析模型的有效性,我们将我们的结果与基于糜蛋白酶抑制剂II和src的SH3结构域的C(α)结构(Go)模型模拟结果进行了比较。

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