Varfaj Fatbardha, Zulkifli Siti N A, Park Hyoung-Goo, Challinor Victoria L, De Voss James J, Ortiz de Montellano Paul R
Department of Pharmaceutical Chemistry, University of California, San Francisco, California (F.V., H.P., P.R.O.M.); Department of Chemistry, University of Queensland, St. Lucia, Brisbane, Australia (S.N.A.Z., V.L.C., J.J.D.V.); and Department of Biological Sciences, Konkuk University, Seoul, Korea (H.P.).
Drug Metab Dispos. 2014 May;42(5):828-38. doi: 10.1124/dmd.114.056903. Epub 2014 Feb 28.
Carbon-carbon bond cleavage reactions are catalyzed by, among others, lanosterol 14-demethylase (CYP51), cholesterol side-chain cleavage enzyme (CYP11), sterol 17β-lyase (CYP17), and aromatase (CYP19). Because of the high substrate specificities of these enzymes and the complex nature of their substrates, these reactions have been difficult to characterize. A CYP1A2-catalyzed carbon-carbon bond cleavage reaction is required for conversion of the prodrug nabumetone to its active form, 6-methoxy-2-naphthylacetic acid (6-MNA). Despite worldwide use of nabumetone as an anti-inflammatory agent, the mechanism of its carbon-carbon bond cleavage reaction remains obscure. With the help of authentic synthetic standards, we report here that the reaction involves 3-hydroxylation, carbon-carbon cleavage to the aldehyde, and oxidation of the aldehyde to the acid, all catalyzed by CYP1A2 or, less effectively, by other P450 enzymes. The data indicate that the carbon-carbon bond cleavage is mediated by the ferric peroxo anion rather than the ferryl species in the P450 catalytic cycle. CYP1A2 also catalyzes O-demethylation and alcohol to ketone transformations of nabumetone and its analogs.
碳-碳键断裂反应可由羊毛甾醇14-脱甲基酶(CYP51)、胆固醇侧链裂解酶(CYP11)、甾醇17β-裂解酶(CYP17)和芳香化酶(CYP19)等催化。由于这些酶的底物特异性高且其底物性质复杂,这些反应一直难以表征。前药萘丁美酮转化为其活性形式6-甲氧基-2-萘乙酸(6-MNA)需要CYP1A2催化的碳-碳键断裂反应。尽管萘丁美酮在全球范围内作为抗炎药使用,但其碳-碳键断裂反应的机制仍不清楚。借助真实的合成标准品,我们在此报告该反应涉及3-羟基化、碳-碳键断裂生成醛以及醛氧化为酸,所有这些反应均由CYP1A2催化,或由其他P450酶低效催化。数据表明,碳-碳键断裂是由P450催化循环中的铁过氧阴离子而非铁酰基物种介导的。CYP1A2还催化萘丁美酮及其类似物的O-去甲基化以及醇到酮的转化。