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离子对与嗜热菌蛋白质的耐热性:热环境下的“交通规则”

Ion pairs and the thermotolerance of proteins from hyperthermophiles: a "traffic rule" for hot roads.

作者信息

Karshikoff A, Ladenstein R

机构信息

Centre for Structural Biochemistry, Karolinska Institutet, NOVUM, 14157 Huddinge, Sweden.

出版信息

Trends Biochem Sci. 2001 Sep;26(9):550-6. doi: 10.1016/s0968-0004(01)01918-1.

Abstract

The proteins from hyperthermophilic organisms maintain their biologically active structure at temperatures that are significantly higher than the denaturation temperatures of their mesophilic counterparts. The fact that there is usually a high degree of sequence and structural homology between these two classes of proteins suggests that the source of this extreme thermal tolerance is hidden in the delicate balance of the non-covalent interactions. Among the large number of factors identified in the literature as being responsible for the thermostability of these proteins, this article focuses on electrostatic interactions. It demonstrates that the optimization of electrostatic interactions by increasing of the number of salt bridges is a driving force for enhancement of the thermotolerance of proteins from hyperthermophilic microorganisms. This feature is less evident in proteins from thermophilic organisms and is absent from mesophile-derived proteins.

摘要

来自嗜热生物的蛋白质在显著高于其嗜温对应物变性温度的温度下维持其生物活性结构。这两类蛋白质通常在序列和结构上具有高度同源性,这一事实表明这种极端耐热性的来源隐藏在非共价相互作用的微妙平衡中。在文献中确定的众多导致这些蛋白质热稳定性的因素中,本文重点关注静电相互作用。结果表明,通过增加盐桥数量来优化静电相互作用是增强嗜热微生物蛋白质耐热性的驱动力。这一特征在嗜热生物的蛋白质中不太明显,而嗜温生物来源的蛋白质中则不存在。

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