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Tunneling in enzymatic and nonenzymatic hydrogen transfer reactions

机译:酶促和非酶促氢转移反应中的隧穿

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This paper is a response to an invitation to share my viewpoint by writing an opinion piece (not a review) on proton tunneling, especially from the point of view of whether it has a greater importance in enzymatic reactions than in other reactions. The paper begins with a discussion of the emergence of a conceptual framework for including tunneling in reaction rate calculations; the framework is general enough to include not only transfer of protons but also transfer of hydrogen atoms and hydride ions and their isotopes, and not only enzymatically catalyzed reactions but also nonenzymatic reactions. Then the paper discusses the special issues that arise when the reaction rate under consideration is for an enzyme-catalyzed reaction. The emphasis is on physical considerations in reaction rate calculations, not on system-specific comparison of results for different modes of reaction. It is argued that enzymatic and nonenzymatic reactions may be treated within the same basic framework except that ensemble averaging, which is not usually required for gas-phase reactions, is essential for treating enzyme reactions. Enzymes explicitly discussed include methylamine dehydrogenase, aromatic amine dehydrogenase, E. coli dihydrofolate reductase, hyperthermophilic dihydrofolate reductase, liver alcohol dehydrogenase, methylmalonyl-CoA mutase, soybean lipoxygenase, copper amine oxidase, pentaerythritol tetranitrate reductase, morphinone reductase, enolase, xylose isomerase, and 4-oxalocrotonate tautomerase.
机译:本文是对邀请发表我的观点的回应,特别是从质子隧穿在酶促反应中比在其他反应中更重要的角度出发,发表了一篇有关质子隧穿的观点文章(而非评论)。本文首先讨论了在反应速率计算中包括隧穿的概念框架的出现。该框架足够通用,不仅包括质子的转移,还包括氢原子和氢化物离子及其同位素的转移,不仅包括酶催化反应,还包括非酶反应。然后,本文讨论了当考虑的反应速率用于酶催化反应时出现的特殊问题。重点是反应速率计算中的物理考虑因素,而不是针对不同反应模式的系统特定结果比较。有人认为,酶促反应和非酶促反应都可以在相同的基本框架内进行处理,只是集合平均法(气相反应通常不需要)对处理酶反应至关重要。明确讨论的酶包括甲胺脱氢酶,芳族胺脱氢酶,大肠杆菌二氢叶酸还原酶,超嗜热二氢叶酸还原酶,肝醇脱氢酶,甲基丙二酰-CoA变位酶,大豆脂氧合酶,铜胺氧化酶,季戊四醇四硝酸酯还原酶,吗啡酮异羟烯醇还原酶4-草酸巴豆酸酯互变异构酶。

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