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首页> 外文期刊>Chemical Science International Journal >Kinetics and Entropy Production of Force-inducedOligomeric Enzyme Catalysis in a Single Trajectory:Effect of Multiple Substrates
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Kinetics and Entropy Production of Force-inducedOligomeric Enzyme Catalysis in a Single Trajectory:Effect of Multiple Substrates

机译:单一轨迹中力诱导的低聚酶催化的动力学和熵产生:多种底物的作用

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Here we have estimated the macroscopic entropy production for a mechanical force induced single oligomeric enzyme Kinetics with multiple substrate in a chemiostatic condition. This result is supported by the calculation of the single trajectory approach of forward and reverse path as a tool of stochastic thermodynamics. Through the approach for a particular reaction channel in the forward trajectory and the corresponding reverse reaction channel in the backward trajectory we explored the contribution of each and every sub-reactions or channels to the overall enzymatic processes and made the trajectory analysis of multiple kind of substrates. We have calculated the individual contribution of each sub-reaction in the overall medium entropy production which is exactly valid in the non-equilibrium steady state and it can give an insight about the mechanism of a complex chemical reaction in presence of an applied mechanical force on oligomeric enzyme kinetics.
机译:在这里,我们已经估计了在化学稳定条件下,机械力诱导的具有多个底物的单一寡聚酶动力学的宏观熵产生。作为随机热力学的工具,正向和反向路径的单轨迹方法的计算支持了该结果。通过对正向轨迹中的特定反应通道和向后轨迹中的相应反向反应通道的研究,我们探索了每个子反应或通道对整个酶促过程的贡献,并对多种类型的底物进行了轨迹分析。 。我们已经计算了每个子反应在整个介质熵产生中的个体贡献,这在非平衡稳态下是完全正确的,它可以提供关于在施加机械力的情况下复杂化学反应机理的见解。寡聚酶动力学。

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