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[多酶体系中的反应动力学。III. 电子传递过程]

[Kinetics of reactions in polyenzyme systems. III. Electron transport processes].

作者信息

Varfolomeev S D, Naki A, Berezin I V

出版信息

Mol Biol (Mosk). 1977 Sep-Oct;11(5):1100-23.

PMID:221802
Abstract

Kinetic relationships of electron transport processes in biological systems have been analysed. Formal-kinetic description and discrimination of the two main models of electron transport processes in systems of homogeneously distributed carriers and in systems of structurally bound carriers is presented including steady-state and non-steady-state reaction kinetics. Methods of determination of limit-stage rate constant and rate constants for all elementary steps of the reaction are given. Dependencies of the degree of electron carriers reduction on donor and acceptor concentrations and the influence of reduction or oxidation of carriers on the kinetic properties of electron transport chain (electron influence factor) in the system of structurally-bound carriers have been analyzed. On the basis of kinetic models a molecular-kinetic interpretation of activation effect of mitochondrial respiratory chain during the process of electron transport is offered.

摘要

已对生物系统中电子传递过程的动力学关系进行了分析。给出了均匀分布载体系统和结构结合载体系统中电子传递过程的两种主要模型的形式动力学描述及区分,包括稳态和非稳态反应动力学。给出了反应所有基本步骤的极限阶段速率常数和速率常数的测定方法。分析了结构结合载体系统中电子载体还原程度对供体和受体浓度的依赖性,以及载体还原或氧化对电子传递链动力学性质(电子影响因子)的影响。基于动力学模型,对电子传递过程中线粒体呼吸链的激活效应进行了分子动力学解释。

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