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论蛋白质动力学与酶活性之间的间接关系。

On the indirect relationship between protein dynamics and enzyme activity.

作者信息

Zhao Qinyi

机构信息

Medical Institute, CRRC, Beijing PR China.

出版信息

Prog Biophys Mol Biol. 2017 May;125:52-60. doi: 10.1016/j.pbiomolbio.2017.02.001. Epub 2017 Feb 3.

Abstract

The behaviors of simple thermal systems have been well studied in physical chemistry and the principles obtained from such studies have been applied to complex thermal systems, such as proteins and enzymes. But the simple application of such principles is questionable and may lead to mistakes under some circumstances. In enzymology, the transition state theory of chemical reactions has been accepted as a fundamental theory, but the role of protein dynamics in enzyme catalysis is controversial in the context of transition state theory. By studying behaviors of complex thermal systems, we have revised the Arrhenius equation and transition state theory and our model is validated in enzymology. Formally speaking, the revised Arrhenius equation is apparently similar to a conventional Arrhenius equation, but the physical meanings of its parameters differ from that of traditional forms in principle. Within this model, the role of protein dynamics in enzyme catalysis is well defined and quantified.

摘要

简单热系统的行为在物理化学中已得到充分研究,并且从这些研究中获得的原理已应用于复杂热系统,如蛋白质和酶。但这些原理的简单应用存在问题,在某些情况下可能会导致错误。在酶学中,化学反应的过渡态理论已被视为基本理论,但在过渡态理论的背景下,蛋白质动力学在酶催化中的作用存在争议。通过研究复杂热系统的行为,我们修正了阿伦尼乌斯方程和过渡态理论,并且我们的模型在酶学中得到了验证。从形式上讲,修正后的阿伦尼乌斯方程显然类似于传统的阿伦尼乌斯方程,但其参数的物理意义原则上与传统形式不同。在这个模型中,蛋白质动力学在酶催化中的作用得到了明确界定和量化。

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