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配体结合位点、蛋白质结构以及能量和构象波动的相关路径之间的关系。

Relationships between ligand binding sites, protein architecture and correlated paths of energy and conformational fluctuations.

机构信息

Chemical and Biological Engineering Department, Koc University Istanbul, Turkey.

出版信息

Phys Biol. 2011 Oct;8(5):056003. doi: 10.1088/1478-3975/8/5/056003. Epub 2011 Aug 10.

Abstract

The statistical thermodynamics basis of energy and residue position fluctuations is explained for native proteins. The protein and its surroundings are treated as a canonical system with emphasis on the effects of energy exchange between the two. Fluctuations of the energy are related to fluctuations of residue positions, which in turn are related to the connectivity matrix of the protein, thus establishing a connection between energy fluctuation pathways and protein architecture. The model gives the locations of hotspots for ligand binding and identifies the pathways of energy conduction within the protein. Results are discussed in terms of two sets of models, the BPTI and 12 proteins that contain the PDZ domain. A possible use of the model for determining functionally similar domains in a diverse set of proteins is pointed out.

摘要

本文为天然蛋白质解释了能量和残基位置波动的统计热力学基础。将蛋白质及其周围环境视为一个正则系统,重点研究两者之间能量交换的影响。能量波动与残基位置波动有关,而残基位置波动又与蛋白质的连接矩阵有关,从而在能量波动途径和蛋白质结构之间建立了联系。该模型给出了配体结合的热点位置,并确定了蛋白质内部的能量传导途径。结果分别用 BPTI 和包含 PDZ 结构域的 12 种蛋白质这两组模型进行了讨论。还指出了该模型在确定不同蛋白质中具有相似功能的结构域方面的可能应用。

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