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吴茱萸次碱在人细胞色素P450酶作用下的氧化代谢

Oxidative metabolism of the alkaloid rutaecarpine by human cytochrome P450.

作者信息

Ueng Yune-Fang, Don Ming-Jaw, Jan Woan-Ching, Wang Shu-Yun, Ho Li-Kang, Chen Chieh-Fu

机构信息

National Research Institute of Chinese Medicine, 155-1, Li-Nong Street, Sec. 2, Taipei 112, Taiwan, ROC.

出版信息

Drug Metab Dispos. 2006 May;34(5):821-7. doi: 10.1124/dmd.105.007849. Epub 2006 Feb 24.

Abstract

Rutaecarpine is the main active alkaloid of the herbal medicine, Evodia rutaecarpa. To identify the major human cytochrome P450 (P450) participating in rutaecarpine oxidative metabolism, human liver microsomes and bacteria-expressed recombinant human P450 were studied. In liver microsomes, rutaecarpine was oxidized to 10-, 11-, 12-, and 3-hydroxyrutaecarpine. Microsomal 10- and 3-hydroxylation activities were strongly inhibited by ketoconazole. The 11- and 12-hydroxylation activities were inhibited by alpha-naphthoflavone, quinidine, and ketoconazole. These results indicated that multiple hepatic P450s including CYP1A2, CYP2D6, and CYP3A4 participate in rutaecarpine hydroxylations. Among recombinant P450s, CYP1A1 had the highest rutaecarpine hydroxylation activity. Decreased metabolite formation at high substrate concentration indicated that there was substrate inhibition of CYP1A1- and CYP1A2-catalyzed hydroxylations. CYP1A1-catalyzed rutaecarpine hydroxylations had V(max) values of 1,388 to approximately 1,893 pmol/min/nmol P450, K(m) values of 4.1 to approximately 9.5 microM, and K(i) values of 45 to approximately 103 microM. These results indicated that more than one molecule of rutaecarpine is accessible to the CYP1A active site. The major metabolite 10-hydroxyrutaecarpine decreased CYP1A1, CYP1A2, and CYP1B1 activities with respective IC(50) values of 2.56 +/- 0.04, 2.57 +/- 0.11, and 0.09 +/- 0.01 microM, suggesting that product inhibition might occur during rutaecarpine hydroxylation. The metabolite profile and kinetic properties of rutaecarpine hydroxylation by human P450s provide important information relevant to the clinical application of rutaecarpine and E. rutaecarpa.

摘要

吴茱萸碱是草药吴茱萸的主要活性生物碱。为了确定参与吴茱萸碱氧化代谢的主要人细胞色素P450(P450),对人肝微粒体和细菌表达的重组人P450进行了研究。在肝微粒体中,吴茱萸碱被氧化为10-、11-、12-和3-羟基吴茱萸碱。酮康唑强烈抑制微粒体10-和3-羟基化活性。11-和12-羟基化活性受到α-萘黄酮、奎尼丁和酮康唑的抑制。这些结果表明,包括CYP1A2、CYP2D6和CYP3A4在内的多种肝P450参与了吴茱萸碱的羟基化反应。在重组P450中,CYP1A1具有最高的吴茱萸碱羟基化活性。在高底物浓度下代谢产物形成减少,表明存在对CYP1A1和CYP1A2催化的羟基化反应的底物抑制。CYP1A1催化的吴茱萸碱羟基化反应的V(max)值为1388至约1893 pmol/分钟/纳摩尔P450,K(m)值为4.1至约9.5 microM,K(i)值为45至约103 microM。这些结果表明,CYP1A活性位点可容纳不止一个吴茱萸碱分子。主要代谢产物10-羟基吴茱萸碱分别以2.56±0.04、2.57±0.11和0.09±0.01 microM的IC(50)值降低CYP1A1、CYP1A2和CYP1B1活性,表明在吴茱萸碱羟基化过程中可能发生产物抑制。人P450对吴茱萸碱羟基化的代谢产物谱和动力学性质为吴茱萸碱和吴茱萸的临床应用提供了重要信息。

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