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三甲胺氧化物(TMAO)对蛋白质的稳定作用分子机制及其抵消尿素作用的能力。

The molecular mechanism of stabilization of proteins by TMAO and its ability to counteract the effects of urea.

作者信息

Zou Qin, Bennion Brian J, Daggett Valerie, Murphy Kenneth P

机构信息

Department of Biochemistry, University of Iowa College of Medicine, Iowa City, Iowa 52242, USA.

出版信息

J Am Chem Soc. 2002 Feb 20;124(7):1192-202. doi: 10.1021/ja004206b.

Abstract

Trimethylamine n-oxide (TMAO) is a naturally occurring osmolyte that stabilizes proteins and offsets the destabilizing effects of urea. To investigate the molecular mechanism of these effects, we have studied the thermodynamics of interaction between TMAO and protein functional groups. The solubilities of a homologous series of cyclic dipeptides were measured by differential refractive index and the dissolution heats were determined calorimetrically as a function of TMAO concentration at 25 degrees C. The transfer free energy of the amide unit (-CONH-) from water to 1 M TMAO is large and positive, indicating an unfavorable interaction between the TMAO solution and the amide unit. This unfavorable interaction is enthalpic in origin. The interaction between TMAO and apolar groups is slightly favorable. The transfer free energy of apolar groups from water to TMAO consists of favorable enthalpic and unfavorable entropic contributions. This is in contrast to the contributions for the interaction between urea and apolar groups. Molecular dynamics simulations were performed to provide a structural framework for the interpretation of these results. The simulations show enhancement of water structure by TMAO in the form of a slight increase in the number of hydrogen bonds per water molecule, stronger water hydrogen bonds, and long-range spatial ordering of the solvent. These findings suggest that TMAO stabilizes proteins via enhancement of water structure, such that interactions with the amide unit are discouraged.

摘要

氧化三甲胺(TMAO)是一种天然存在的渗透溶质,可稳定蛋白质并抵消尿素的去稳定作用。为了研究这些作用的分子机制,我们研究了TMAO与蛋白质官能团之间相互作用的热力学。通过示差折光率测量了一系列同系环状二肽的溶解度,并在25℃下量热测定了作为TMAO浓度函数的溶解热。酰胺单元(-CONH-)从水转移到1M TMAO的自由能很大且为正值,表明TMAO溶液与酰胺单元之间存在不利的相互作用。这种不利的相互作用起源于焓。TMAO与非极性基团之间的相互作用略有有利。非极性基团从水转移到TMAO的自由能由有利的焓贡献和不利的熵贡献组成。这与尿素和非极性基团之间相互作用的贡献形成对比。进行了分子动力学模拟,以提供解释这些结果的结构框架。模拟显示TMAO以每个水分子氢键数量略有增加、水氢键更强以及溶剂的长程空间有序化的形式增强了水的结构。这些发现表明,TMAO通过增强水的结构来稳定蛋白质,从而抑制与酰胺单元的相互作用。

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