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由 P450 酶代谢辣椒素环产生的反应中间体。

Reactive intermediates produced from the metabolism of the vanilloid ring of capsaicinoids by p450 enzymes.

机构信息

Department of Pharmacology and Toxicology, University of Utah , 30 S. 2000 E., Room 201 Skaggs Hall, Salt Lake City, Utah 84112, United States.

出版信息

Chem Res Toxicol. 2013 Jan 18;26(1):55-66. doi: 10.1021/tx300366k. Epub 2012 Nov 6.

Abstract

This study characterized electrophilic and radical products derived from the metabolism of capsaicin by cytochrome P450 and peroxidase enzymes. Multiple glutathione and β-mercaptoethanol conjugates (a.k.a., adducts), derived from the trapping of quinone methide and quinone intermediates of capsaicin, its analogue nonivamide, and O-demethylated and aromatic hydroxylated metabolites thereof, were produced by human liver microsomes and individual recombinant human P450 enzymes. Conjugates derived from concomitant dehydrogenation of the alkyl terminus of capsaicin were also characterized. Modifications to the 4-OH substituent of the vanilloid ring of capsaicinoids largely prevented the formation of electrophilic intermediates, consistent with the proposed structures and mechanisms of formation for the various conjugates. 5,5'-Dicapsaicin, presumably arising from the bimolecular coupling of free radical intermediates was also characterized. Finally, the analysis of hepatic glutathione conjugates and urinary N-acetylcysteine conjugates from mice dosed with capsaicin confirmed the formation of glutathione conjugates of O-demethylated quinone methide and 5-OH-capsaicin in vivo. These data demonstrated that capsaicin and structurally similar analogues are converted to reactive intermediates by certain P450 enzymes, which may partially explain conflicting reports related to the cytotoxic, pro-carcinogenic, and chemoprotective effects of capsaicinoids in different cells and/or organ systems.

摘要

本研究对辣椒素在细胞色素 P450 和过氧化物酶作用下的代谢所生成的亲电和自由基产物进行了研究。通过人肝微粒体和重组人 P450 酶,生成了大量与谷胱甘肽和β-巯基乙醇结合的产物(又称加合物),这些产物是由辣椒素、类似物胡椒酰胺及其 O-去甲基化和芳族羟化代谢物的醌亚甲醚和醌中间体捕获而来。还对辣椒素烷基端同时脱氢生成的轭合物进行了表征。辣椒素类化合物香草基环 4-OH 取代基的修饰在很大程度上阻止了亲电中间体的形成,这与各种轭合物的结构和形成机制一致。5,5'-二辣椒素(推测是自由基中间体的双分子偶联所致)也得到了表征。最后,对给予辣椒素的小鼠肝谷胱甘肽轭合物和尿 N-乙酰半胱氨酸轭合物的分析证实了体内 O-去甲基化醌亚甲醚和 5-OH-辣椒素的谷胱甘肽轭合物的形成。这些数据表明,某些 P450 酶可将辣椒素和结构相似的类似物转化为活性中间体,这可能部分解释了在不同细胞和/或器官系统中辣椒素类化合物在细胞毒性、促癌和化学保护作用方面相互矛盾的报道。

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