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使用四环素调控表达系统实现兔CYP2E1的严格调控和诱导表达。

Tightly regulated and inducible expression of rabbit CYP2E1 using a tetracycline-controlled expression system.

作者信息

Huan J Y, Koop D R

机构信息

Department of Physiology and Pharmacology, Oregon Health Sciences University, Portland, Oregon 97201, USA.

出版信息

Drug Metab Dispos. 1999 Apr;27(4):549-54.

Abstract

A tetracycline (Tc)-controlled gene expression system that quantitatively controls gene expression in eukaryotic cells () was used to express cytochrome P-450 2E1 (CYP2E1) in HeLa cells in culture. The rabbit CYP2E1 cDNA was subcloned into the Tc-controlled expression vector (pUHD10-3) and transfected into a HeLa cell line constitutively expressing the Tc-controlled transactivator, a positive regulator of expression in the absence of Tc. The expression of CYP2E1 was tightly regulated. There was a time-dependent induction of CYP2E1 after removal of Tc. In the absence of Tc, the enzyme was induced more than 100-fold and expressed about 18 pmol of CYP2E1/mg microsomal protein. At maximal levels of expression the enzyme catalyzed the formation of 158 pmol 6-hydroxychlorzoxazone/min/mg total cellular protein. In addition, the level of the enzyme could be modulated by the concentration of Tc in the media. In the absence of Tc, exposure of cells to N-nitrosodimethylamine caused a significant dose-dependent decrease in cell viability. In contrast, menadione, a redox cycling toxicant, was less toxic to the cells after induction of CYP2E1 when compared with noninduced cells. Pulse-chase studies conducted 72 h after removal of Tc indicated a rapid turnover of CYP2E1 with a half-life of 3.9 h. Addition of the ligand, 4-methylpyrazole, and the suicide substrate, 1-aminobenzotrizole, decreased the degradation of CYP2E1. This cell line offers a useful system to examine the role of CYP2E1 in the cytotoxicity of xenobiotics and to investigate post-translational regulation of the enzyme.

摘要

一种能在真核细胞中定量控制基因表达的四环素(Tc)调控基因表达系统()被用于在培养的HeLa细胞中表达细胞色素P-450 2E1(CYP2E1)。将兔CYP2E1 cDNA亚克隆到Tc调控表达载体(pUHD10-3)中,并转染到组成性表达Tc调控反式激活因子的HeLa细胞系中,该反式激活因子在无Tc时是表达的正调控因子。CYP2E1的表达受到严格调控。去除Tc后,CYP2E1呈时间依赖性诱导。在无Tc的情况下,该酶被诱导超过100倍,表达量约为18 pmol CYP2E1/毫克微粒体蛋白。在最大表达水平时,该酶催化形成158 pmol 6-羟基氯唑沙宗/分钟/毫克总细胞蛋白。此外,该酶的水平可通过培养基中Tc的浓度进行调节。在无Tc的情况下,细胞暴露于N-亚硝基二甲胺会导致细胞活力显著剂量依赖性下降。相比之下,与未诱导的细胞相比,维生素K3(一种氧化还原循环毒物)在诱导CYP2E1后对细胞的毒性较小。去除Tc 72小时后进行的脉冲追踪研究表明,CYP2E1周转迅速,半衰期为3.9小时。添加配体4-甲基吡唑和自杀底物1-氨基苯并三唑可减少CYP2E1的降解。该细胞系为研究CYP2E1在异源生物毒性中的作用以及研究该酶的翻译后调控提供了一个有用的系统。

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