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Fast Protein Motions Are Coupled to Enzyme H-Transfer Reactions

机译:快速的蛋白质运动与酶H转移反应耦合

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摘要

Coupling of fast protein dynamics to enzyme chemistry is controversial and has ignited considerable debate, especially over the past 15 years in relation to enzyme-catalyzed H-transfer. H-transfer can occur by quantum tunneling, and the temperature dependence of kinetic isotope effects (KIEs) has emerged as the "gold standard" descriptor of these reactions. The anomalous temperature dependence of KIEs is often rationalized by invoking fast motions to facilitate H-transfer, yet crucially, direct evidence for coupled motions is lacking. The fast motions hypothesis underpinning the temperature dependence of KIEs is based on inference. Here, we have perturbed vibrational motions in pentaerythritol tetranitrate reductase (PETNR) by isotopic substitution where all non-exchangeable atoms were replaced with the corresponding heavy isotope (~(13)C, ~(15)N, and ~2H). The KIE temperature dependence is perturbed by heavy isotope labeling, demonstrating a direct link between (promoting) vibrations in the protein and the observed KIE. Further we show that temperature-independent KIEs do not necessarily rule out a role for fast dynamics coupled to reaction chemistry. We show causality between fast motions and enzyme chemistry and demonstrate how this impacts on experimental KIEs for enzyme reactions.
机译:快速蛋白质动力学与酶化学的耦合是有争议的,并引发了相当多的争论,尤其是在过去的15年中,与酶催化的H转移有关。 H转移可通过量子隧穿发生,并且动力学同位素效应(KIE)的温度依赖性已成为这些反应的“金标准”描述符。通常通过调用快速运动来促进H转移来合理化KIE的温度依赖性异常,但是关键是,缺乏耦合运动的直接证据。支撑KIE的温度依赖性的快速运动假设是基于推断的。在这里,我们已经通过同位素取代扰动了季戊四醇四硝酸酯还原酶(PETNR)中的振动运动,其中所有不可交换的原子都被相应的重同位素(〜(13)C,〜(15)N和〜2H)取代。重同位素标记干扰了KIE的温度依赖性,这证明了(促进)蛋白质中的振动与观察到的KIE之间存在直接联系。进一步,我们表明,温度无关的KIE并不一定排除与反应化学耦合的快速动力学的作用。我们展示了快速运动与酶化学之间的因果关系,并展示了这如何影响酶反应的实验性KIE。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2013年第7期|2512-2517|共6页
  • 作者单位

    Department of Molecular Biology and Biotechnology, Krebs Institute, University of Sheffield, Sheffield S10 2TN, U.K.,Department of Biology and Biochemistry, University of Bath, Bath, BA2 7AY, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.,Department of Molecular Biology and Biotechnology, Krebs Institute, University of Sheffield, Sheffield S10 2TN, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.,Department of Molecular Biology and Biotechnology, Krebs Institute, University of Sheffield, Sheffield S10 2TN, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.;

    Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester Ml 7DN, U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:12:27

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