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酶与底物结合反应的动力学。

The kinetics of the combination reaction between enzyme and substrate.

作者信息

Kuo-Chen C

出版信息

Sci Sin. 1976 Jul-Aug;19(4):505-28.

PMID:824728
Abstract

A stochastic analysis has been made for enzyme-substrate combination reaction systems. The relationship between diffusion-encounter and effective collision has been discussed. A new equation, derived for calculating the combination rates of multiple-active-site reaction systems, will serve to provide a theoretical basis for experimentally investigating the combination activation energies of liquid phase fast reaction systems. The calculated results show that the usual method employed to estimate the combination rates of multiple-active-site reaction systems is applicable only to the large activation energy concerned, but not to the small. In the latter case, the coupling effect among active sites should not be overlooked. In this paper, the kinetic characteristics of liquid phase fast reaction systems involving conformational changes are further discussed. A new method of separation of kinetic constants has been suggested and the relationship between measuring signal and multi-barrier reaction analyzed. On such a basis, we have derived a general equation which takes into account both the effect of the diffusion-limit and the effects of conformational changes and of solvents, in an attempt to provide a kinetic basis for further investigating the whole process of enzyme-substrate combination reactions.

摘要

对酶 - 底物结合反应体系进行了随机分析。讨论了扩散相遇与有效碰撞之间的关系。推导了一个用于计算多活性位点反应体系结合速率的新方程,将为实验研究液相快速反应体系的结合活化能提供理论基础。计算结果表明,通常用于估算多活性位点反应体系结合速率的方法仅适用于相关的大活化能情况,而不适用于小活化能情况。在后一种情况下,活性位点之间的耦合效应不可忽视。本文进一步讨论了涉及构象变化的液相快速反应体系的动力学特征。提出了一种分离动力学常数的新方法,并分析了测量信号与多势垒反应之间的关系。在此基础上,我们推导了一个综合考虑扩散限制效应、构象变化效应和溶剂效应的通用方程,试图为进一步研究酶 - 底物结合反应的全过程提供动力学基础。

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