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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Structure, redox, pK(a), spin. A golden tetrad for understanding metalloenzyme energetics and reaction pathways
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Structure, redox, pK(a), spin. A golden tetrad for understanding metalloenzyme energetics and reaction pathways

机译:结构,氧化还原,pK(a),自旋。了解金属酶能量和反应途径的黄金四分法

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摘要

After a review of the current status of density functional theory (DFT) for spin-polarized and spin-coupled systems, we focus on the resting states and intermediates of redox-active metalloenzymes and electron transfer proteins, showing how comparisons of DFT-calculated spectroscopic parameters with experiment and evaluation of related energies and geometries provide important information. The topics we examine include (1) models for the active-site structure of methane monooxygenase intermediate Q and ribonucleotide reductase intermediate X; (2) the coupling of electron transfer to proton transfer in manganese superoxide dismutase, with implications for reaction kinetics; (3) redox, pK(a), and electronic structure issues in the Rieske iron-sulfur protein, including their connection to coupled electron/proton transfer, and an analysis of how partial electron delocalization strongly alters the electron paramagnetic resonance spectrum; (4) the connection between protein-induced structural distortion and the electronic structure of oxidized highpotential 4Fe4S proteins with implications for cluster reactivity; (5) an analysis of cluster assembly and central-atom insertion into the FeMo cofactor center of nitrogenase based on DFT structural and redox potential calculations.
机译:在回顾了自旋极化和自旋耦合系统的密度泛函理论(DFT)的现状后,我们重点研究了氧化还原活性金属酶和电子转移蛋白的静止状态和中间体,展示了DFT计算光谱的比较实验参数以及相关能量和几何形状的评估提供了重要的信息。我们研究的主题包括(1)甲烷单加氧酶中间体Q和核糖核苷酸还原酶中间体X的活性位点结构模型; (2)锰超氧化物歧化酶中电子转移与质子转移的耦合,影响反应动力学; (3)Rieske铁硫蛋白中的氧化还原,pK(a)和电子结构问题,包括它们与耦合的电子/质子传递的联系,以及对部分电子离域如何强烈改变电子顺磁共振谱的分析; (4)蛋白质诱导的结构变形与氧化的高电位4Fe4S蛋白质的电子结构之间的联系,对簇反应性有影响; (5)基于DFT结构和氧化还原电势的计算分析了簇组装和中心原子插入到固氮酶的FeMo辅因子中心。

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