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结合特异性决定了咪康唑经细胞色素 P450 3A4 介导的对映体选择性代谢。

Binding Specificity Determines the Cytochrome P450 3A4 Mediated Enantioselective Metabolism of Metconazole.

机构信息

College of Environmental and Resource Sciences, Zhejiang University , Hangzhou 310058, China.

Computational Biology Center, IBM TJ Watson Research Center , Yorktown Heights, New York 10598, United States.

出版信息

J Phys Chem B. 2018 Jan 25;122(3):1176-1184. doi: 10.1021/acs.jpcb.7b11170. Epub 2018 Jan 12.

Abstract

Cytochrome P450 3A4 (CYP3A4) is a promiscuous enzyme, mediating the biotransformations of ∼50% of clinically used drugs, many of which are chiral molecules. Probing the interactions between CYP3A4 and chiral chemicals is thus essential for the elucidation of molecular mechanisms of enantioselective metabolism. We developed a stepwise-restrained-molecular-dynamics (MD) method to model human CYP3A4 in a complex with cis-metconazole (MEZ) isomers and performed conventional MD simulations with a total simulation time of 2.2 μs to probe the molecular interactions. Our current study, which employs a combined experimental and theoretical approach, reports for the first time on the distinct conformational changes of CYP3A4 that are induced by the enantioselective binding of cis-MEZ enantiomers. CYP3A4 preferably metabolizes cis-RS MEZ over the cis-SR isomer, with the resultant enantiomer fraction for cis-MEZ increasing rapidly from 0.5 to 0.82. cis-RS MEZ adopts a more extended structure in the active pocket with its Cl atom exposed to the solvent, whereas cis-SR MEZ sits within the hydrophobic core of the active pocket. Free-energy-perturbation calculations indicate that unfavorable van der Waals interactions between the cis-MEZ isomers and the CYP3A4 binding pocket predominantly contribute to their binding-affinity differences. These results demonstrate that binding specificity determines the cytochrome P450 3A4 mediated enantioselective metabolism of cis-MEZ.

摘要

细胞色素 P450 3A4(CYP3A4)是一种混杂酶,介导约 50%的临床使用药物的生物转化,其中许多是手性分子。因此,研究 CYP3A4 与手性化学物质的相互作用对于阐明对映选择性代谢的分子机制至关重要。我们开发了一种逐步约束分子动力学(MD)方法,用于模拟人 CYP3A4 与顺式咪康唑(MEZ)异构体的复合物,并进行了总计 2.2 μs 的常规 MD 模拟,以探测分子相互作用。我们的当前研究采用了结合实验和理论的方法,首次报道了 CYP3A4 的独特构象变化,这些变化是由顺式-MEZ 对映异构体的对映选择性结合引起的。CYP3A4 优先代谢顺式-RS MEZ 而不是顺式-SR 异构体,导致顺式-MEZ 的对映体分数从 0.5 迅速增加到 0.82。顺式-RS MEZ 在活性口袋中呈现更伸展的结构,其 Cl 原子暴露于溶剂中,而顺式-SR MEZ 位于活性口袋的疏水性核心内。自由能微扰计算表明,顺式-MEZ 异构体与 CYP3A4 结合口袋之间的不利范德华相互作用主要导致它们的结合亲和力差异。这些结果表明,结合特异性决定了细胞色素 P450 3A4 介导的顺式-MEZ 的对映选择性代谢。

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