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一种关于配体在蛋白质流体动力学环境中通过的细胞自动机模型。

A cellular automata model of ligand passage over a protein hydrodynamic landscape.

作者信息

Kier Lemont B, Cheng Chao-Kun, Testa Bernard

机构信息

Center for the Study of Biological Complexity, Virginia Commonwealth University, Richmond, VA 23298, USA.

出版信息

J Theor Biol. 2002 Apr 21;215(4):415-26. doi: 10.1006/jtbi.2001.2525.

Abstract

The subject of ligand passage to an active site on a protein is addressed. Current views on the mechanism and the possible role of surface water are discussed. A theory is presented in which the pattern of hydropathic states of protein surface amino acid side chains is invoked as the influence on the relative hydrophobic effects of nearby water. The theory describes a ligand passage through the hydrodynamic near-surface water which exhibits temporary organized cavities resembling the chreodes introduced by Waddington. The passage of the ligand to the active site is facilitated by this dynamic mechanism. Cellular automata models of preferential directional diffusion through these chreodes support the theory. The theory may be invoked to explain a number of ligand-active site observations and serves as an idea for further studies.

摘要

本文探讨了配体传递至蛋白质活性位点的问题。讨论了目前关于表面水的作用机制及可能作用的观点。提出了一种理论,其中蛋白质表面氨基酸侧链的亲水性状态模式被认为会影响附近水的相对疏水效应。该理论描述了配体通过流体动力学近表面水的过程,这种水表现出类似于沃丁顿引入的轨线的临时有序空腔。这种动态机制促进了配体向活性位点的传递。通过这些轨线的优先定向扩散的细胞自动机模型支持了该理论。该理论可用于解释一些配体 - 活性位点的观察结果,并为进一步研究提供思路。

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