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生物电子传递将电子输送给细胞色素 P450 酶。

Bioelectronic delivery of electrons to cytochrome P450 enzymes.

机构信息

Department of Chemistry, University of Connecticut, Storrs, Connecticut 06269, United States.

出版信息

J Phys Chem B. 2011 Jul 7;115(26):8371-80. doi: 10.1021/jp201235m. Epub 2011 May 17.

Abstract

Cytochrome P450s (cyt P450s) are the major oxidative enzymes in human oxidative metabolism of drugs and xenobiotic chemicals. In nature, the iron heme cyt P450s utilize oxygen and electrons delivered from NADPH by a reductase enzyme to oxidize substrates stereo- and regioselectively. Significant research has been directed toward achieving these events electrochemically. This Feature Article discusses the direct electrochemistry of cyt P450s in thin films and the utilization of such films for electrochemically driven biocatalysis. Maintaining and confirming structural integrity and catalytic activity of cyt P450s in films is an essential feature of these efforts. We highlight here our efforts to elucidate the influence of iron heme spin state and secondary structure of human cyt P450s on voltammetric and biocatalytic properties, using methodologies to quantitatively describe the dynamics of these processes in thin films. We also describe the first cyt P450/reductase films that accurately mimic the natural biocatalytic pathway and show how they can be used with voltammetry to elucidate key mechanistic features. Such bioelectronic cyt P450 systems have high value for future drug development, toxicity screening, fundamental investigations, and chemical synthesis systems.

摘要

细胞色素 P450 酶(Cyt P450s)是人类药物和外源性化学物质氧化代谢中的主要氧化酶。在自然界中,铁血红素 Cyt P450s 利用来自 NADPH 的还原酶酶提供的氧气和电子,立体和区域选择性地氧化底物。大量的研究致力于电化学实现这些反应。本文讨论了 Cyt P450s 在薄膜中的直接电化学以及此类薄膜在电化学驱动生物催化中的应用。在薄膜中维持和确认 Cyt P450s 的结构完整性和催化活性是这些努力的重要特征。我们在这里强调我们努力阐明铁血红素自旋态和人 Cyt P450s 的二级结构对伏安和生物催化性质的影响,使用定量描述这些过程在薄膜中的动力学的方法。我们还描述了第一个准确模拟自然生物催化途径的 Cyt P450/还原酶膜,并展示了如何将它们与伏安法一起用于阐明关键的机制特征。这种生物电子 Cyt P450 系统对于未来的药物开发、毒性筛选、基础研究和化学合成系统具有很高的价值。

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