Magnetic resonance study of the structure and functions of cytochrome P450.

L M Weiner
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引用次数: 25

Abstract

Cytochrome P450 is a membrane-bound enzyme providing oxidation of numerous organic compounds in organisms. The objective of this review is to show the wide possibilities that are provided by Electron Spin Resonance (ESR) and Nuclear Magnetic Resonance (NMR) techniques to the study of the structure and functions of this unique enzyme. High sensitivity of ESR spectra of cytochrome P450 to its functional state and interaction with substrates and inhibitors is illustrated. NMR and proton relaxation make it possible to obtain unique information about the structure of the active center of cytochrome P450 under physiological conditions. ESR and NMR methods allow one to obtain structural data on location of substrates, inhibitors, and their spin-labeled analogs with respect to Fe3+ ions in the enzyme-active center. Of special interest seems to be coupling of ESR with the affinity modification method. For this purpose, the spin-labeled analogs of cytochrome P450 substrates containing alkylating groups were used. As a result, an important datum has been obtained on the structure of active centers of cytochrome P450 in microsomes and in a highly purified state. In conclusion, the problems of the structure and functions of cytochrome P450, which can be most efficiently resolved with the use of magnetic resonance methods, are discussed.
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细胞色素P450结构与功能的磁共振研究。
细胞色素P450是一种膜结合酶,在生物体中提供许多有机化合物的氧化。本文综述的目的是展示电子自旋共振(ESR)和核磁共振(NMR)技术为研究这种独特酶的结构和功能提供的广泛可能性。细胞色素P450的ESR光谱对其功能状态及其与底物和抑制剂的相互作用具有很高的敏感性。核磁共振和质子弛豫使得在生理条件下获得细胞色素P450活性中心结构的独特信息成为可能。ESR和NMR方法允许人们获得底物、抑制剂及其自旋标记类似物在酶活性中心的位置的结构数据。特别令人感兴趣的似乎是ESR与亲和修饰方法的耦合。为此,使用了含有烷基化基团的细胞色素P450底物的自旋标记类似物。因此,获得了细胞色素P450活性中心在微粒体中的结构和高度纯化状态的重要数据。最后,对细胞色素P450的结构和功能问题进行了讨论,这些问题可以用磁共振方法最有效地解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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