首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Proton-coupled electron transfer: a unifying mechanism for biological charge transport, amino acid radical initiation and propagation, and bond making/breaking reactions of water and oxygen
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Proton-coupled electron transfer: a unifying mechanism for biological charge transport, amino acid radical initiation and propagation, and bond making/breaking reactions of water and oxygen

机译:质子耦合电子转移:生物电荷传输,氨基酸自由基引发和扩散以及水和氧的键形成/断裂反应的统一机制

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摘要

Redox-driven proton pumps, radical initiation and propagation in biology, and small-molecule activation processes all involve the coupling of electron transfer to proton transport. A mechanistic framework in which to interpret these processes is being developed by examining proton-coupled electron transfer (PCET) in model and natural systems. Specifically, PCET investigations are underway on the following three fronts: (1) the elucidation of the PCET reaction mechanism by time-resolved laser spectroscopy of electron donors and acceptors juxtaposed by a proton transfer interface; (2) the role of amino acid radicals in biological catalysis with the radical initiation and transport processes of E. coli ribonucleotide reductase (RNR) as a focal point; and (3) the application of PCET towards small–molecule activation with emphasis on biologically relevant bond-breaking and bond-making processes involving oxygen and water. A review of recent developments in each of these areas is discussed.
机译:氧化还原驱动的质子泵,生物学中的自由基引发和扩散以及小分子活化过程都涉及电子传递与质子传递的耦合。通过检查模型和自然系统中的质子耦合电子转移(PCET),正在开发一种解释这些过程的机制框架。具体而言,正在进行以下三个方面的PCET研究:(1)通过时间分辨激光光谱法对质子转移界面并置的电子供体和受体进行PCET反应机理的阐明; (2)以大肠杆菌核糖核苷酸还原酶(RNR)的自由基引发和转运过程为基础,氨基酸自由基在生物催化中的作用; (3)PCET在小分子活化中的应用,重点是涉及氧气和水的生物学相关的键断裂和键形成过程。讨论了这些领域中每个领域的最新发展。

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