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蛋白质适应的分子和热力学机制。

Molecular and thermodynamic mechanisms for protein adaptation.

机构信息

Medical Institute, CRRC, Beijing, People's Republic of China.

出版信息

Eur Biophys J. 2022 Dec;51(7-8):519-534. doi: 10.1007/s00249-022-01618-9. Epub 2022 Oct 1.

Abstract

Using thermal adaptation of enzymes as an example, we have proposed a molecular and thermodynamic model for protein adaptation. Key concepts: (1) The working mechanism of enzymatic reactions is not altered in protein adaptation, but the activity of the adapted enzyme is expressed under altered conditions. (2) The alteration of protein conformational stability induced by gene mutation is the fundamental cause of protein adaptation. (3) The population change in active conformations of enzymes induced by protein conformational stability in different temperature ranges is the major cause of protein adaptation. (4) The features of enzyme adaptation must be analyzed or judged by two different aspects: local population change in active conformations near a critical level of an environmental factor; and the position of the whole active conformational curve in the gradient of an environmental factor. (5) Protein adaptation represents a specific mechanism for protein regulation. Several other aspects of protein adaptation are also discussed and reviewed, and specific examples are given of enzymes showing particular types of adaptation.

摘要

以酶的热适应为例,我们提出了一种蛋白质适应的分子和热力学模型。关键概念:(1)在蛋白质适应过程中,酶的反应机制不会改变,但适应酶的活性在改变的条件下表达。(2)基因突变引起的蛋白质构象稳定性的改变是蛋白质适应的根本原因。(3)在不同温度范围内,蛋白质构象稳定性引起的酶活性构象的群体变化是蛋白质适应的主要原因。(4)酶适应的特征必须通过两个不同的方面来分析或判断:环境因素临界水平附近活性构象的局部群体变化;以及整个活性构象曲线在环境因素梯度中的位置。(5)蛋白质适应代表了蛋白质调节的一种特定机制。还讨论和回顾了蛋白质适应的其他几个方面,并给出了表现出特定适应类型的酶的具体例子。

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