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细胞色素P450 2D6对3,4-亚甲二氧基-N-烷基苯丙胺的代谢区域和立体选择性:计算机模拟预测与实验验证

Metabolic regio- and stereoselectivity of cytochrome P450 2D6 towards 3,4-methylenedioxy-N-alkylamphetamines: in silico predictions and experimental validation.

作者信息

Keizers Peter H J, de Graaf Chris, de Kanter Frans J J, Oostenbrink Chris, Feenstra K Anton, Commandeur Jan N M, Vermeulen Nico P E

机构信息

Leiden Amsterdam Center for Drug Research (LACDR)/Division of Molecular Toxicology and Division of Organic and Inorganic Chemistry, Department of Chemistry and Pharmacochemistry, Vrije Universiteit, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.

出版信息

J Med Chem. 2005 Sep 22;48(19):6117-27. doi: 10.1021/jm050338+.

Abstract

A series of 3,4-methylenedioxy-N-alkylamphetamines (MDAAs) were automatically docked and subjected to molecular dynamics (MD) simulations in a cytochrome P450 2D6 (CYP2D6) protein model. The predicted substrate binding orientations, sites of oxidation, and relative reactivities were compared to the experimental data of wild-type and Phe120Ala mutant CYP2D6. Automated docking results were not sufficient to accurately rationalize experimental binding orientations of 3,4-methylenedioxy-N-methylamphetamine (MDMA) in the two enzymes as measured with spin lattice relaxation NMR. Nevertheless, the docking results could be used as starting structures for MD simulations. Predicted binding orientations of MDMA and sites of oxidation of the MDAAs derived from MD simulations matched well with the experimental data. It appeared the experimental results were best described in MD simulations considering the nitrogen atoms of the MDAAs in neutral form. Differences in regioselectivity and stereoselectivity in the oxidative metabolism of the MDAAs by the Phe120Ala mutant CYP2D6 were correctly predicted, and the effects of the Phe120Ala mutation could be rationalized as well.

摘要

一系列3,4-亚甲二氧基-N-烷基苯丙胺(MDAAs)在细胞色素P450 2D6(CYP2D6)蛋白模型中进行自动对接并进行分子动力学(MD)模拟。将预测的底物结合方向、氧化位点和相对反应活性与野生型和Phe120Ala突变型CYP2D6的实验数据进行比较。自动对接结果不足以准确解释用自旋晶格弛豫核磁共振测量的3,4-亚甲二氧基-N-甲基苯丙胺(MDMA)在这两种酶中的实验结合方向。然而,对接结果可作为MD模拟的起始结构。MD模拟得出的MDMA预测结合方向和MDAAs氧化位点与实验数据吻合良好。在MD模拟中,考虑中性形式的MDAAs的氮原子时,似乎能最好地描述实验结果。正确预测了Phe120Ala突变型CYP2D6对MDAAs氧化代谢的区域选择性和立体选择性差异,并且Phe120Ala突变的影响也能得到合理的解释。

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