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首页> 外文期刊>The biochemical journal >Rates of reactions catalysed by a dimeric enzyme. Effects of the reaction scheme and the kinetic parameters on co-operativity
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Rates of reactions catalysed by a dimeric enzyme. Effects of the reaction scheme and the kinetic parameters on co-operativity

机译:二聚酶催化的反应速率。反应方案和动力学参数对协同性的影响

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pFor the reaction S in equilibrium P catalysed by a dimeric enzyme, the reaction schemes are considered on the basis of the KNF model. For each of the ten possible schemes, the rate equation is derived on the basis of the combined steady-state and rapid-equilibrium assumptions. The curves of the plots of initial velocity v versus the substrate concentration [S] and the Hill coefficients h calculated from the rate equations depend strongly on the reaction scheme and the parameter X1. This parameter is defined by log (KS2/KS1) and is a measure of the relative affinities of the first and second protomers for the substrate. When X1 less than 0, v-[S] curves for some schemes exhibit negative co-operativity (h less than 1.0) and v-[S] curves for other schemes are similar to that of the Michaelis-Menten scheme, indicating that, even if there is interaction between the distinct protomers, sigmoidal rate behaviour is not necessarily observed. When X1 greater than 0, all the reaction schemes except one, which shows substrate-inhibition kinetic behaviour, exhibit sigmoidal kinetic behaviour (h greater than 1.0), and at the limit of X1 much greater than 0 the Hill coefficients attain the maximum possible value of 2.0. Furthermore, we have found that, even if X1 = 0, the v-[S] curve for almost all the schemes considered in the present work does not necessarily agree with that for the Michaelis-Menten scheme. This means that the deviation of the v-[S] curve from a hyperbola can be observed even if there is no interaction between the distinct protomers./p
机译:对于由二聚酶催化的平衡P中的反应S,在KNF模型的基础上考虑反应方案。对于这十种可能的方案中的每一种,速率方程式都是根据稳态和快速平衡假设的组合得出的。初始速度v相对于底物浓度[S]的曲线和根据速率方程计算的Hill系数h的曲线在很大程度上取决于反应方案和参数X1。该参数由log(KS2 / KS1)定义,并且是第一和第二protomer对底物的相对亲和力的量度。当X1小于0时,某些方案的v- [S]曲线表现出负的协同性(h小于1.0),而其他方案的v- [S]曲线与Michaelis-Menten方案的相似,表明:即使不同的protomers之间存在相互作用,也不一定会观察到S形速率行为。当X1大于0时,除一个显示底物抑制动力学行为的反应方案外,所有反应方案均呈现S形动力学行为(h大于1.0),并且在X1的极限值远大于0时,希尔系数达到最大可能值的2.0。此外,我们发现,即使X1 = 0,本文中考虑的几乎所有方案的v- [S]曲线也不一定与Michaelis-Menten方案的v- [S]曲线一致。这意味着即使不同的protomer之间没有相互作用,也可以观察到v- [S]曲线与双曲线的偏离。

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