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首页> 外文期刊>Bulletin of Mathematical Biology >Mean Lifetime and First-Passage Time of the Enzyme Species Involved in an Enzyme Reaction. Application to Unstable Enzyme Systems
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Mean Lifetime and First-Passage Time of the Enzyme Species Involved in an Enzyme Reaction. Application to Unstable Enzyme Systems

机译:参与酶反应的酶物种的平均寿命和首次通过时间。应用于不稳定的酶系统

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Taking as starting point the complete analysis of mean residence times in linear compartmental systems performed by Garcia-Meseguer et al. (Bull. Math. Biol. 65:279–308, 2003) as well as the fact that enzyme systems, in which the interconversions between the different enzyme species involved are of first or pseudofirst order, act as linear compartmental systems, we hereby carry out a complete analysis of the mean lifetime that the enzyme molecules spend as part of the enzyme species, forms, or groups involved in an enzyme reaction mechanism. The formulas to evaluate these times are given as a function of the individual rate constants and the initial concentrations of the involved species at the onset of the reaction. We apply the results to unstable enzyme systems and support the results by using a concrete example of such systems. The practicality of obtaining the mean times and their possible application in a kinetic data analysis is discussed.
机译:以Garcia-Meseguer等人在线性隔室系统中平均停留时间的完整分析为起点。 (Bull。Math。Biol。65:279–308,2003)以及以下事实:在此酶系统中,涉及的不同酶种类之间的相互转化是一级或伪一级,我们特此承担完整分析了酶分子作为酶反应机制所涉及的酶种类,形式或基团的一部分所花费的平均寿命。根据这些速率常数和反应开始时所涉及物质的初始浓度,给出了评估这些时间的公式。我们将结果应用于不稳定的酶系统,并通过使用此类系统的具体示例来支持该结果。讨论了获取平均时间的实用性及其在动力学数据分析中的可能应用。

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