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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Cytochrome P450-catalyzed metabolism of ezlopitant alkene (CJ-12,458), a pharmacologically active metabolite of ezlopitant: enzyme kinetics and mechanism of an alkene hydration reaction.
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Cytochrome P450-catalyzed metabolism of ezlopitant alkene (CJ-12,458), a pharmacologically active metabolite of ezlopitant: enzyme kinetics and mechanism of an alkene hydration reaction.

机译:细胞色素P450催化的ezlopitant烯烃的代谢(CJ-12,458),ezlopitant的药理活性代谢产物:酶动力学和烯烃水合反应的机理。

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Experiments were conducted to characterize the metabolism of ezlopitant alkene (CJ-12,458), an active metabolite of ezlopitant, in human liver microsomes. In incubations with human liver microsomes and cofactors required for cytochrome P450 (CYP) activity, CJ-12,458 was converted to two metabolites: a diol (CP-611,781) and a 1 degrees alcohol (CP-616,762). In human liver microsomes, apparent K(M) values of 5.4 and 8.5 microM were determined for the formation of diol and 1 degrees alcohol metabolites, respectively. High K(M) activities were also observed for formation of these metabolites; however, the aforementioned low K(M) activities accounted for greater than 90% of the total intrinsic clearance. In pooled human liver microsomes, formation of both metabolites was partially inhibited by both quinidine and ketoconazole, suggesting that CYP2D6 and CYP3A enzymes are involved in the metabolism of CJ-12,458. This evidence was corroborated through the use of heterologously expressed CYP enzymes and correlation analysis with a panel of human liver microsomes. The data suggest that CYP2D6 is quantitatively more important than CYP3A in the metabolism of CJ-12,458 by a factor of about 2 to 1. The conversion of an alkene to a 1 degrees alcohol represents a novel biotransformation reaction. Incubations using (18)O(2), (2)H(2)O, [(2)H(5)]CJ-12,458, and [(2)H]NADPH were conducted and the 1 degrees alcohol product was characterized by ion trap mass spectrometry. From these data, a mechanism for this reaction is proposed involving epoxidation, an exocyclic hydride shift, and reduction at the benzylic position.
机译:进行实验以表征人肝微粒体中依斯洛皮坦的活性代谢产物-依斯洛皮坦的烯烃(CJ-12,458)的代谢。在与细胞色素P450(CYP)活性所需的人肝微粒体和辅因子一起温育时,CJ-12,458被转化为两种代谢物:二醇(CP-611,781)和1度酒精(CP-616,762)。在人肝微粒体中,确定形成二醇和1度酒精代谢物的表观K(M)值分别为5.4和8.5 microM。还观察到高K(M)活性形成这些代谢物;但是,上述低K(M)活性占总固有清除率的90%以上。在合并的人肝微粒体中,两种代谢物的形成均被奎尼丁和酮康唑均部分抑制,这表明CYP2D6和CYP3A酶参与了CJ-12458的代谢。通过使用异源表达的CYP酶和与一组人肝微粒体的相关性分析,证实了这一证据。数据表明,在CJ-12,458的代谢中,CYP2D6在定量上比CYP3A更重要,比例约为2-1。烯烃向1度醇的转化代表了一种新的生物转化反应。进行了使用(18)O(2),(2)H(2)O,[(2)H(5)] CJ-12,458和[(2H)] NADPH的孵育,并表征了1度酒精产物通过离子阱质谱。根据这些数据,提出了该反应的机制,包括环氧化,环外氢化物转移和苄基位置的还原。

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