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糖酵解中的振荡和控制特征:一个综合模型的数值分析

Oscillations and control features in glycolysis: numerical analysis of a comprehensive model.

作者信息

Termonia Y, Ross J

出版信息

Proc Natl Acad Sci U S A. 1981 May;78(5):2952-6. doi: 10.1073/pnas.78.5.2952.

Abstract

We present an analysis of glycolysis based on experimental findings and an interpretation based on concepts of efficiency, resonance response, and control features available in highly nonlinear reaction kinetics. We begin with a model for the glycolytic mechanism that is comprehensive, includes a large number of known activations and inhibitions of enzymes by metabolites, and couples the phosphofructokinase (PFKase) and the pyruvate kinase (PKase) reactions. The PFKase and PKase reactions and the coupling between them are modeled according to experimental information, but we do not attempt to model the glyceraldehyde-3-phosphate dehydrogenase-3-phosphoglycerate kinase reaction. We use experimental data to obtain the best estimates for the kinetic parameters and test the model by calculating the concentration variations of the intermediate metabolites. We confirm oscillatory behavior and calculate the ATP/ADP ratio and the free-energy dissipation for an extended range of the kinetic parameters as a function of the driving force for the glycolytic pathway, a measure of which is the total adenine nucleotide concentration. We find agreement of the calculated results with experimental findings except for the insufficiently represented reactions. Our model shows that the average ATP/ADP ratio is increased and the average free-energy dissipation is decreased in an oscillatory compared with a steady state mode of operation. The average values of the ATP/ADP ratio and of the free energy dissipation change abruptly past the onset of sustained oscillations.

摘要

我们基于实验结果对糖酵解进行了分析,并基于高度非线性反应动力学中可用的效率、共振响应和控制特征概念进行了解释。我们从一个全面的糖酵解机制模型开始,该模型包括大量已知的代谢物对酶的激活和抑制作用,并将磷酸果糖激酶(PFKase)和丙酮酸激酶(PKase)反应耦合在一起。PFKase和PKase反应及其之间的耦合根据实验信息进行建模,但我们不尝试对甘油醛-3-磷酸脱氢酶-3-磷酸甘油酸激酶反应进行建模。我们使用实验数据来获得动力学参数的最佳估计值,并通过计算中间代谢物的浓度变化来测试该模型。我们确认了振荡行为,并计算了在广泛的动力学参数范围内,作为糖酵解途径驱动力函数的ATP/ADP比值和自由能耗散,衡量该驱动力的一个指标是总腺嘌呤核苷酸浓度。除了反应表示不足外,我们发现计算结果与实验结果一致。我们的模型表明,与稳态操作模式相比,振荡模式下平均ATP/ADP比值增加,平均自由能耗散降低。在持续振荡开始后,ATP/ADP比值和自由能耗散的平均值会突然变化。

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