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Summarizing lecture: factors influencing enzymatic H-transfers analysis of nuclear tunnelling isotope effects and thermodynamic versus specific effects

机译:总结性演讲:影响酶促H转移的因素核隧穿同位素效应以及热力学与特定效应的分析

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摘要

In the articles in this Discussion, a wide variety of topics are treated, including reorganization energy, initially introduced for electron transfers (‘environmentally assisted tunnelling’), nuclear tunnelling, H/D and C12/C13 kinetic isotope effects (KIEs), the effect of changes of distal and nearby amino acid residues using site-directed mutagenesis, and dynamics versus statistical effects. A coordinate-free form of semi-classical theory is used to examine topics on data such as tunnelling versus ‘over-the-barrier’ paths and temperature and pressure effects on KIEs. The multidimensional semi-classical theory includes classically allowed and classically forbidden transitions. More generally, we address the question of relating kinetic to thermodynamic factors, as in the electron transfer field, so learning about specific versus thermodynamic effects in enzyme catalysis and KIEs.
机译:在本讨论的文章中,讨论了各种各样的主题,包括重组能,最初是为电子转移引入的(环境辅助隧穿),核隧穿,H / D和C12 / C13动力学同位素效应(KIE),使用定点诱变影响远端和附近氨基酸残基变化的影响,以及动力学与统计作用。半古典理论的无坐标形式用于检查有关数据的主题,例如隧道与“越障”路径以及温度和压力对KIE的影响。多维半经典理论包括经典允许和经典禁止的过渡。更笼统地说,我们解决了将动力学与热力学因素联系起来的问题,例如在电子转移领域,因此了解了酶催化和KIE中的特定动力学效应与热力学效应。

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