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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Linking protein structure and dynamics to catalysis: the role of hydrogen tunnelling
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Linking protein structure and dynamics to catalysis: the role of hydrogen tunnelling

机译:将蛋白质结构和动力学与催化联系起来:氢隧穿的作用

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摘要

Early studies of enzyme-catalysed hydride transfer reactions indicated kinetic anomalies that were initially interpreted in the context of a 'tunnelling correction'. An alternate model for tunnelling emerged following studies of the hydrogen atom transfer catalysed by the enzyme soybean lipoxygenase. This invokes full tunnelling of all isotopes of hydrogen, with reaction barriers reflecting the heavy atom, environmental reorganization terms. Using the latter approach, we offer an integration of the aggregate data implicating hydrogen tunnelling in enzymes (i.e. deviations from Swain-Schaad relationships and the semi-classical temperature dependence of the hydrogen isotope effect). The impact of site-specific mutations of enzymes plays a critical role in our understanding of the factors that control tunnelling in enzyme reactions.
机译:酶催化的氢化物转移反应的早期研究表明,动力学异常最初是在“隧道校正”的背景下解释的。在研究大豆脂氧合酶催化的氢原子转移之后,出现了另一种隧穿模型。这将引起氢的所有同位素的完全隧穿,反应壁垒反映了重原子,环境重组的术语。使用后一种方法,我们提供了涉及酶中氢隧穿(即偏离Swain-Schaad关系的偏差以及氢同位素效应的半经典温度依赖性)的汇总数据的集成。酶的位点特异性突变的影响在我们对控制酶反应中隧穿的因素的理解中起着至关重要的作用。

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