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Enzymatic reaction rate limits with constraints on equilibrium constants and experimental parameters

机译:限制平衡常数和实验参数的酶反应速率极限

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A general methodology is presented for estimating maximum rates of enzymatic reactions based on general characteristics of enzymatic reaction mechanisms, kinetic limits and thermodynamics. The useful range of experimentally derived kinetic parameters can also be extended by the methodology. The methodology divides the reaction mechanism into physical and chemical steps. Maximum rates that comply with kinetic and thermodynamic constraints are calculated by setting the physical rate constants to their diffusion limits and optimising the chemical rate constants subject to constraints of the reaction mechanism and overall equilibrium constant. Rate estimates from this methodology can be subject to additional constraints from experimental data, and thus conform to the distinctive features of the enzymatic reaction. The methodology is demonstrated using a reversible enzymatic reaction model involving ordered binding of two reactants and ordered release of two products (bi-bi mechanism). Numerical results are shown for alcohol dehydrogenase (EC 1.1.1.1), which has abi-bi mechanism. Pyrophosphatase (EC 3.6.1.1) with a uni-bi mechanism and triosephosphate isomerase (EC 5.3.1.1) with a uni-uni mechanism are also examined: (C) 1998 Elsevier Science Ireland Ltd. All rights reserved. [References: 23]
机译:提出了一种基于酶促反应机理,动力学极限和热力学的一般特征估算酶促反应最大速率的通用方法。实验得出的动力学参数的有用范围也可以通过该方法扩展。该方法将反应机理分为物理和化学步骤。通过将物理速率常数设置为其扩散极限,并根据反应机理和总体平衡常数的约束来优化化学速率常数,可以计算出符合动力学和热力学约束的最大速率。这种方法的速率估算可能会受到实验数据的其他限制,因此符合酶促反应的独特特征。使用涉及两个反应物的有序结合和两种产物的有序释放(双向机制)的可逆酶促反应模型证明了该方法。数值结果显示了具有abi-bi机制的醇脱氢酶(EC 1.1.1.1)。还研究了具有单-双机理的焦磷酸酶(EC 3.6.1.1)和具有单-双机理的三糖磷酸异构酶(EC 5.3.1.1):(C)1998 Elsevier Science Ireland Ltd.保留所有权利。 [参考:23]

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