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细胞色素 P450 2A6、2A13 和 2E1 与毛果芸香碱的结构比较。

Structural comparison of cytochromes P450 2A6, 2A13, and 2E1 with pilocarpine.

机构信息

Department of Medicinal Chemistry, The University of Kansas, Lawrence, KS 66045, USA.

出版信息

FEBS J. 2012 May;279(9):1621-31. doi: 10.1111/j.1742-4658.2011.08412.x. Epub 2011 Nov 25.

Abstract

Human xenobiotic-metabolizing cytochrome P450 (CYP) enzymes can each bind and monooxygenate a diverse set of substrates, including drugs, often producing a variety of metabolites. Additionally, a single ligand can interact with multiple CYP enzymes, but often the protein structural similarities and differences that mediate such overlapping selectivity are not well understood. Even though the CYP superfamily has a highly canonical global protein fold, there are large variations in the active site size, topology, and conformational flexibility. We have determined how a related set of three human CYP enzymes bind and interact with a common inhibitor, the muscarinic receptor agonist drug pilocarpine. Pilocarpine binds and inhibits the hepatic CYP2A6 and respiratory CYP2A13 enzymes much more efficiently than the hepatic CYP2E1 enzyme. To elucidate key residues involved in pilocarpine binding, crystal structures of CYP2A6 (2.4 Å), CYP2A13 (3.0 Å), CYP2E1 (2.35 Å), and the CYP2A6 mutant enzyme, CYP2A6 I208S/I300F/G301A/S369G (2.1 Å) have been determined with pilocarpine in the active site. In all four structures, pilocarpine coordinates to the heme iron, but comparisons reveal how individual residues lining the active sites of these three distinct human enzymes interact differently with the inhibitor pilocarpine.

摘要

人类外源物质代谢细胞色素 P450(CYP)酶可以结合并单加氧化各种底物,包括药物,通常产生多种代谢物。此外,一种配体可以与多种 CYP 酶相互作用,但介导这种重叠选择性的蛋白质结构相似性和差异通常不为人所理解。尽管 CYP 超家族具有高度规范的全球蛋白质折叠,但活性位点的大小、拓扑结构和构象灵活性存在很大差异。我们已经确定了一组相关的三种人类 CYP 酶如何与一种常见的抑制剂,即毒蕈碱受体激动剂药物毛果芸香碱结合和相互作用。毛果芸香碱结合并抑制肝 CYP2A6 和呼吸 CYP2A13 酶的效率远高于肝 CYP2E1 酶。为了阐明毛果芸香碱结合的关键残基,我们已经确定了 CYP2A6(2.4 Å)、CYP2A13(3.0 Å)、CYP2E1(2.35 Å)和 CYP2A6 突变酶 CYP2A6 I208S/I300F/G301A/S369G(2.1 Å)的晶体结构,其中毛果芸香碱位于活性位点。在所有四种结构中,毛果芸香碱与血红素铁配位,但比较揭示了这三种不同的人类酶的活性位点中的个别残基如何与抑制剂毛果芸香碱不同地相互作用。

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