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Redox and redox-coupled processes of heme proteins and enzymes at electrochemical interfaces

机译:血红素蛋白和酶在电化学界面上的氧化还原和氧化还原偶联过程

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Modern bioelectrochemical methods rely upon the immobilisation of redox proteins and enzymes on electrodes coated with biocompatible materials to prevent denaturation.However,even when protein denaturation is effectively avoided,heterogeneous protein electron transfer is often coupled to non-Faradaic processes like reorientation,conformational transitions or acid-base equilibria.Disentangling these processes requires methods capable of probing simultaneously the structure and reaction dynamics of the adsorbed species.Here we provide an overview of the recent developments in Raman and infrared surface-enhanced spectroelectrochemical techniques applied to the study of soluble and membrane bound redox heme proteins and enzymes.Possible biological implications of the findings are critically discussed.
机译:现代生物化学方法依靠氧化还原蛋白和酶固定在涂有生物相容性材料的电极上来防止变性。但是,即使有效地避免了蛋白质变性,异质蛋白质电子转移也常常与非法拉第过程耦合,例如重新定向,构象转变或酸碱平衡。解开这些过程需要能够同时探测被吸附物质的结构和反应动力学的方法。在此,我们概述了拉曼光谱和红外表面增强光谱电化学技术在可溶物和膜研究中的最新进展。结合氧化还原血红素血红蛋白和酶。

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