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KINETIC MODEL OF PHOSPHOFRUCTOKINASE-1 FROM ESCHERICHIA COLI

机译:大肠埃希氏菌中磷酸果糖激酶-1的动力学模型

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摘要

This paper presents a kinetic model of phosphofructokinase-1 from Escherichia coli. A complete catalytic cycle has been reconstructed based on available information on the oligomeric structure of the enzyme and kinetic mechanism of its monomer. Applying the generalization of the Monod–Wyman–Changeux approach proposed by Popova and Sel'kov35–37 to the reconstructed catalytic cycle rate equation has been derived. Dependence of the reaction rate on pH, magnesium, and effectors has been taken into account. Kinetic parameters have been estimated via fitting the rate equation against experimentally measured dependencies of initial rate on substrates, products, effectors, and pH available from the literature. The model of phosphofructokinase-1 predicts (1) cooperativity of binding both fructose-6-phosphate and ATPMg2-, (2) significant inhibition of the enzyme resulting from an increase in total concentration of ATP under the condition of fixed concentration of Mg2+ ions, and (3) dual effect of ADP consisting of allosteric activation and product inhibition of the enzyme. Moreover, the model developed can be used in the kinetic modeling of biochemical pathways containing phosphofructokinase-1.
机译:本文提出了大肠杆菌磷酸果糖激酶-1的动力学模型。基于有关该酶的低聚结构及其单体的动力学机理的可用信息,已经重建了一个完整的催化循环。将Popova和Sel'kov35-37提出的Monod-Wyman-Changeux方法的推广应用于重构的催化循环速率方程。已经考虑到反应速率对pH,镁和效应物的依赖性。通过将速率方程与实验测量的初始速率对可从文献中获得的底物,产物,效应物和pH的依赖性进行拟合来估算动力学参数。磷酸果糖激酶-1模型预测(1)结合果糖6-磷酸酯和ATPMg2-的协同作用,(2)在固定浓度的Mg2 +离子条件下,由于ATP总浓度的增加,对酶的显着抑制, (3)ADP的双重作用,包括变构激活和酶的产物抑制。此外,开发的模型可用于包含磷酸果糖激酶-1的生化途径的动力学建模。

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