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通过共振拉曼光谱研究布呋洛尔、右美沙芬和3,4-亚甲基二氧甲基苯丙胺与野生型和F120A突变型细胞色素P450 2D6的结合。

Binding of bufuralol, dextromethorphan, and 3,4-methylenedioxymethylamphetamine to wild-type and F120A mutant cytochrome P450 2D6 studied by resonance Raman spectroscopy.

作者信息

Bonifacio Alois, Keizers Peter H J, Commandeur Jan N M, Vermeulen Nico P E, Robert Bruno, Gooijer Cees, van der Zwan Gert

机构信息

Laser Centre/Analytical Chemistry and Applied Spectroscopy, Vrije Universiteit Amsterdam, The Netherlands.

出版信息

Biochem Biophys Res Commun. 2006 May 12;343(3):772-9. doi: 10.1016/j.bbrc.2006.03.027. Epub 2006 Mar 20.

Abstract

Cytochrome P450 2D6 (CYP2D6) is one of the most important drug-metabolizing enzymes in humans. Resonance Raman data, reported for the first time for CYP2D6, show that the CYP2D6 heme is found to be in a six-coordinated low-spin state in the absence of substrates, and it is perturbed to different extents by bufuralol, dextromethorphan, and 3,4-methylenedioxymethylamphetamine (MDMA). Dextromethorphan and MDMA induce in CYP2D6 a significant amount of five-coordinated high-spin heme species and reduce the polarity of its heme-pocket, whereas bufuralol does not. Spectra of the F120A mutant CYP2D6 suggest that Phe120 is involved in substrate-binding of dextromethorphan and MDMA, being responsible for the spectral differences observed between these two compounds and bufuralol. These differences could be explained postulating a different substrate mobility for each compound in the CYP2D6 active site, consistently with the role previously suggested for Phe120 in binding dextromethorphan and MDMA.

摘要

细胞色素P450 2D6(CYP2D6)是人体内最重要的药物代谢酶之一。首次报道的CYP2D6的共振拉曼数据表明,在没有底物的情况下,CYP2D6血红素处于六配位低自旋状态,并且它受到布非洛尔、右美沙芬和3,4-亚甲二氧基甲基苯丙胺(摇头丸)的不同程度的扰动。右美沙芬和摇头丸在CYP2D6中诱导产生大量的五配位高自旋血红素物种,并降低其血红素口袋的极性,而布非洛尔则不会。F120A突变体CYP2D6的光谱表明,苯丙氨酸120参与右美沙芬和摇头丸的底物结合,这是这两种化合物与布非洛尔之间观察到的光谱差异的原因。这些差异可以通过假设每种化合物在CYP2D6活性位点具有不同的底物迁移率来解释,这与之前提出的苯丙氨酸120在结合右美沙芬和摇头丸中的作用一致。

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