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苯丙氨酸120对细胞色素P450 2D6催化选择性和区域特异性的影响:在7-甲氧基-4-(氨甲基)-香豆素代谢中的关键作用。

Influence of phenylalanine 120 on cytochrome P450 2D6 catalytic selectivity and regiospecificity: crucial role in 7-methoxy-4-(aminomethyl)-coumarin metabolism.

作者信息

Keizers Peter H J, Lussenburg Barbara M A, de Graaf Chris, Mentink Letty M, Vermeulen Nico P E, Commandeur Jan N M

机构信息

LACDR/Division of Molecular Toxicology, Department of Pharmacochemistry, Vrije Universiteit, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.

出版信息

Biochem Pharmacol. 2004 Dec 1;68(11):2263-71. doi: 10.1016/j.bcp.2004.08.013.

Abstract

The polymorphic human debrisoquine hydroxylase, cytochrome P450 2D6 (CYP2D6), is one of the most important phase I drug metabolising enzymes. It is responsible for metabolising a large number of compounds that mostly share similarity in having a basic N-atom and an aromatic moiety. In homology modelling studies, it has been suggested that in fixation of this aromatic moiety, there may be an important role for phenylalanine 120 (Phe(120)). In this study, the role of Phe(120) in ligand binding and catalysis was experimentally examined by mutating it into an alanine. Strikingly, this substitution led to a completely abolished 7-methoxy-4-(aminomethyl)-coumarin (MAMC) O-demethylating activity of CYP2D6. On the other hand, bufuralol metabolism was hardly affected (K(m) of 1-hydroxylation mutant: 1.2 microM, wild-type: 2.9 microM, 4-hydroxylation mutant: 1.5 microM, and wild-type: 3.2 microM) and neither was affected dextromethorphan O-demethylation (K(m) mutant: 1.2 microM, wild-type: 2 microM, k(cat) mutant: 4.5 min(-1), and wild-type: 3.3 min(-1)). However, the Phe(120)Ala mutant also formed 3-hydroxymorphinan, the double demethylated form of dextromethorphan, which was not detected using wild-type CYP2D6. 3,4-Methylenedioxymethamphetamine (MDMA) was demethylenated by both mutant and wild-type CYP2D6 to 3,4-dihydroxymethamphetamine (3,4-OH-MA K(m) of mutant: 55 microM and wild-type: 2 microM). In addition, the mutant formed two additional metabolites; 3,4-methylenedioxyamphetamine (MDA) and N-hydroxy-3,4-methylenedioxymethamphetamine (N-OH-MDMA). Inhibition experiments of dextromethorphan O-demethylation showed a decreased affinity of the Phe(120)Ala mutant for quinidine (IC(50) mutant: 240 nM and wild-type, 40 nM), while IC(50)s for quinine were equal (1 microM). These data indicate the importance of Phe(120) in the selectivity and regiospecificity in substrate binding and catalysis by CYP2D6.

摘要

多态性的人类异喹胍羟化酶,细胞色素P450 2D6(CYP2D6),是最重要的I相药物代谢酶之一。它负责代谢大量化合物,这些化合物大多在具有碱性氮原子和芳香部分方面具有相似性。在同源建模研究中,有人提出在固定这种芳香部分时,苯丙氨酸120(Phe(120))可能起重要作用。在本研究中,通过将Phe(120)突变为丙氨酸,对其在配体结合和催化中的作用进行了实验研究。令人惊讶的是,这种取代导致CYP2D6的7-甲氧基-4-(氨基甲基)-香豆素(MAMC)O-脱甲基活性完全丧失。另一方面,丁呋洛尔代谢几乎没有受到影响(1-羟基化突变体的K(m):1.2 microM,野生型:2.9 microM,4-羟基化突变体:1.5 microM,野生型:3.2 microM),右美沙芬O-脱甲基也未受影响(K(m)突变体:1.2 microM,野生型:2 microM,k(cat)突变体:4.5 min(-1),野生型:3.3 min(-1))。然而,Phe(120)Ala突变体还形成了3-羟基吗啡喃,即右美沙芬的双脱甲基形式,而野生型CYP2D6未检测到这种形式。3,4-亚甲基二氧甲基苯丙胺(摇头丸,MDMA)被突变体和野生型CYP2D6脱亚甲基化为3,4-二羟基甲基苯丙胺(3,4-OH-MA,突变体的K(m):55 microM,野生型:2 microM)。此外,突变体还形成了另外两种代谢产物;3,4-亚甲基二氧苯丙胺(MDA)和N-羟基-3,4-亚甲基二氧甲基苯丙胺(N-OH-MDMA)。右美沙芬O-脱甲基抑制实验表明,Phe(120)Ala突变体对奎尼丁的亲和力降低(IC(50)突变体:240 nM,野生型:40 nM),而对奎宁的IC(50)相等(1 microM)。这些数据表明Phe(120)在CYP2D6底物结合和催化的选择性及区域特异性方面具有重要性。

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