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论酶协同性在代谢振荡中的作用:糖酵解周期性模型中希尔系数的分析

On the role of enzyme cooperativity in metabolic oscillations: analysis of the Hill coefficient in a model for glycolytic periodicities.

作者信息

Goldbeter A

出版信息

Biophys Chem. 1976 Dec;6(1):95-9. doi: 10.1016/0301-4622(76)80065-8.

Abstract

The role of enzyme cooperativity in the mechanism of metabolic oscillations is analyzed in a concerted allosteric model for the phosphofructokinase reaction. This model of a dimer enzyme activated by the reaction product accounts quantitatively for glycolytic periodicities observed in yeast and muscle. The Hill coefficient characteristic of enzyme-substrate interactions is determined in the model, both at the steady state and in the course of sustained oscillations. Positive cooperativity is a prerequisite for periodic behavior. A necessary condition for oscillation in a dimer K system is a Hill coefficient larger than 1.6 at the unstable stationary state. The analysis suggests that positive as well as negative effectors of phosphofructokinase inhibit glycolytic oscillations by inducing a decrease in enzyme cooperativity. The results are discussed with respect to glycolytic and other metabolic periodicities.

摘要

在磷酸果糖激酶反应的协同别构模型中,分析了酶协同性在代谢振荡机制中的作用。这种由反应产物激活的二聚体酶模型定量地解释了在酵母和肌肉中观察到的糖酵解周期性。在该模型中,确定了酶 - 底物相互作用的希尔系数,包括稳态和持续振荡过程中的情况。正协同性是周期性行为的先决条件。二聚体K系统振荡的必要条件是在不稳定稳态下希尔系数大于1.6。分析表明,磷酸果糖激酶的正效应物和负效应物都通过诱导酶协同性降低来抑制糖酵解振荡。结合糖酵解和其他代谢周期性对结果进行了讨论。

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