双底物希尔方程预测变构改性剂饱和度的实验证据。

A J Hanekom, J H S Hofmeyr, J L Snoep, J M Rohwer
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引用次数: 0

摘要

比较了在变构抑制条件下,双底物Hill方程和双底物Monod-Wyman-Changeux (MWC)方程预测的协同酶反应速率。从理论上讲,Hill方程预测当达到一定底物条件下的最大抑制效果时,变构抑制剂浓度的增加对反应速率没有影响,即Hill方程表明变构抑制剂饱和。这种饱和抑制效应不存在于MWC方程中。丙酮酸激酶的体外实验数据,是一种双底物合作酶,是变构抑制,提出。该酶也显示抑制剂饱和,因此作为实验证据,双底物Hill方程比双底物MWC方程更能预测变构抑制剂的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evidence for allosteric modifier saturation as predicted by the bi-substrate Hill equation.

The cooperative enzyme reaction rates predicted by the bi-substrate Hill equation and the bi-substrate Monod-Wyman-Changeux (MWC) equation when allosterically inhibited are compared in silico. Theoretically, the Hill equation predicts that when the maximum inhibitory effect at a certain substrate condition has been reached, an increase in allosteric inhibitor concentration will have no effect on reaction rate, that is the Hill equation shows allosteric inhibitor saturation. This saturating inhibitory effect is not present in the MWC equation. Experimental in vitro data for pyruvate kinase, a bi-substrate cooperative enzyme that is allosterically inhibited, are presented. This enzyme also shows inhibitor saturation, and therefore serves as experimental evidence that the bi-substrate Hill equation predicts more realistic allosteric inhibitor behaviour than the bi-substrate MWC equation.

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