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A kinetic study of irreversible enzyme inhibition by an inhibitor that is rendered unstable by enzymic catalysis. The inhibition of polyphenol oxidase by L-cysteine.

机译:抑制剂对不可逆酶的抑制作用的动力学研究,该抑制剂由于酶催化而变得不稳定。 L-半胱氨酸对多酚氧化酶的抑制作用。

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摘要

A kinetic study of the irreversible inhibition of an enzyme by an inhibitor that is depleted in the medium by its reaction with the product of enzymic analysis was made. The model is illustrated by the study of the inhibition of catecholase activity of polyphenol oxidase by L-cysteine. The inhibition is characterized by an initial lag period followed by a concomitant decrease in enzymic activity expressed when the steady state is reached, both kinetic parameters being modulated by enzyme, substrate and inhibitor concentrations. There is no analytical solution to the non-linear differential-equation system that describes the kinetics of the reaction, and so computer simulations of this dynamic behaviour are presented. The results obtained show that the system here studied presents kinetic co-operativity for a target enzyme that follows the simple Michaelis-Menten mechanism in its action on the substrate.
机译:动力学研究了一种抑制剂对酶的不可逆抑制作用,该抑制剂由于其与酶分析产物的反应而耗尽了培养基。通过研究L-半胱氨酸对多酚氧化酶的儿茶酚酶活性的抑制作用来说明该模型。抑制作用的特征是初始滞后期,随后达到稳态时表达的酶活性随之下降,这两个动力学参数均受酶,底物和抑制剂浓度的调节。非线性微分方程系统没有描述反应动力学的解析解决方案,因此提供了此动力学行为的计算机模拟。获得的结果表明,此处研究的系统具有针对目标酶的动力学协同作用,该酶遵循简单的Michaelis-Menten机制作用于底物。

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