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分子建模证据表明 His438 在丁酰胆碱酯酶滞后行为机制中的翻转。

Molecular modeling evidence for His438 flip in the mechanism of butyrylcholinesterase hysteretic behavior.

机构信息

Computer Modeling of Biomolecular Systems Lab, N.M. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, 4 Kosygina St., 119334, Moscow, Russia,

出版信息

J Mol Neurosci. 2014 Mar;52(3):434-45. doi: 10.1007/s12031-013-0178-2. Epub 2013 Dec 6.

Abstract

Cholinesterases display a hysteretic behavior with certain substrates and irreversible inhibitors. For years, this behavior has remained puzzling. However, several lines of evidence indicated that it is caused by perturbation of the catalytic triad and its water environment. In the present study, using molecular dynamics simulations of Ala328Cys BuChE mutant and wild-type BuChE in the absence and presence of a co-solvent (sucrose, glycerol), we provide evidence that hysteresis originates in a flip of the catalytic triad histidine (His438). This event is controlled by water molecules that interact with active site residues. The physiological significance of this phenomenon is still an issue.

摘要

胆碱酯酶在某些底物和不可逆抑制剂存在下表现出滞后行为。多年来,这种行为一直令人费解。然而,有几条证据表明,它是由催化三联体及其水环境的扰动引起的。在本研究中,通过对 Ala328Cys BuChE 突变体和野生型 BuChE 在有无共溶剂(蔗糖、甘油)存在下的分子动力学模拟,我们提供了证据表明滞后现象起源于催化三联体组氨酸(His438)的翻转。这一事件由与活性位点残基相互作用的水分子控制。这种现象的生理意义仍然是一个问题。

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