Karlgren Maria, Miura Shin-ichi, Ingelman-Sundberg Magnus
Division of Molecular Toxicology, Institute of Environmental Medicine, Karolinska Institutet, SE-171 77 Stockholm, Sweden.
Toxicol Appl Pharmacol. 2005 Sep 1;207(2 Suppl):57-61. doi: 10.1016/j.taap.2004.12.022.
The cytochrome P450 enzymes are highly expressed in the liver and are involved in the metabolism of xenobiotics. Because of the initiatives associated with the Human Genome Project, a great progress has recently been seen in the identification and characterization of novel extrahepatic P450s, including CYP2S1, CYP2R1, CYP2U1 and CYP2W1. Like the hepatic enzymes, these P450s may play a role in the tissue-specific metabolism of foreign compounds, but they may also have important endogenous functions. CYP2S1 has been shown to metabolize all-trans retinoic acid and CYP2R1 is a major vitamin D 25-hydroxylase. Regarding their metabolism of xenobiotics, much remains to be established, but CYP2S1 metabolizes naphthalene and it is likely that these P450s are responsible for metabolic activation of several different kinds of xenobiotic chemicals and contribute to extrahepatic toxicity and carcinogenesis.
细胞色素P450酶在肝脏中高度表达,参与外源性物质的代谢。由于人类基因组计划相关举措,最近在新型肝外P450酶(包括CYP2S1、CYP2R1、CYP2U1和CYP2W1)的鉴定和特性描述方面取得了巨大进展。与肝脏酶一样,这些P450酶可能在异物的组织特异性代谢中发挥作用,但它们也可能具有重要的内源性功能。CYP2S1已被证明可代谢全反式维甲酸,CYP2R1是主要的维生素D 25-羟化酶。关于它们对外源性物质的代谢,仍有许多有待确定之处,但CYP2S1可代谢萘,这些P450酶很可能负责几种不同类型外源性化学物质的代谢活化,并导致肝外毒性和致癌作用。