Suppr超能文献

在表达人细胞色素P4502E1(CYP2E1)的转染HepG2细胞中细胞色素P4502E1周转的表征

Characterization of cytochrome P4502E1 turnover in transfected HepG2 cells expressing human CYP2E1.

作者信息

Yang M X, Cederbaum A I

机构信息

Department of Biochemistry, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

Arch Biochem Biophys. 1997 May 1;341(1):25-33. doi: 10.1006/abbi.1997.9907.

Abstract

The aim of the present study was to characterize human CYP2E1 turnover and examine the possible proteolytic pathways responsible for the rapid degradation of CYP2E1 in a transfected HepG2 cell line expressing human CYP2E1. Two methods were used to study the CYP2E1 turnover; after addition of cycloheximide, the half-life of the CYP2E1 in the intact cells was about 6 h as detected by PNP catalytic activity assay and immunoblot analysis of apoprotein content. CYP2E1 substrates or ligands such as 4-methylpyrazole, ethanol, glycerol, and dimethyl sulfoxide protected CYP2E1 against this rapid degradation, whereas CCl4 accelerated this process. The second procedure involved pulse-chase experiments after labeling CYP2E1 with [35S]methionine and immunoprecipitation with anti-human CYP2E1 IgG. The half-life of CYP2E1 was about 2.5 h, and the various substrates or ligands modified the turnover process within intact cells as described for the cycloheximide experiments. More than 20 different reagents including antioxidants, physiological metabolites, lysosomal inhibitors, and protease inhibitors were screened for possible effects on CYP2E1 proteolytic degradation. Dibutyryl cAMP had no effect on CYP2E1 activity or turnover. Among those reagents tested so far, the serine protease inhibitor 1-chloro-3-tosylamido-7-amino-2-heptanone hydrochloride exhibited some protection against CYP2E1 degradation. To demonstrate whether the proteasome complex is involved in this process, Czb-Ile-Glu(OtBu)-Ala-leucinal (PSI) as a cell penetrating aldehydic proteasome inhibitor and Czb-Leu-norleucinal (calpeptin inhibitor) as an aldehydic nonproteosomal protease inhibitor were used to examine their effect on both the normal and the CCl4-stimulated CYP2E1 proteolytic degradation pathways. Treatment with PSI at concentrations ranging from 5 to 80 microM resulted in a dose-dependent protection against the loss of both the normal CYP2E1 and the CCl4-modified CYP2E1. The maximum protection by PSI at a concentration of 80 microM after a 12-h chase period was about 60% in cells treated with 2 mM CCl4 or 75% in cells without CCl4 treatment. Calpeptin inhibitor afforded little or no protection against CYP2E1 degradation in the absence or presence of CCl4. PSI did not inhibit CYP2E1 catalytic activity, suggesting that it was not a ligand for CYP2E1. These results indicate that human CYP2E1 has a short half-life span and that substrates can significantly modify its turnover rate in intact HepG2 cells. The proteasome proteolytic pathway may be involved in the degradation process of both the normal and the CCl4-modified human CYP2E1 in this model.

摘要

本研究的目的是表征人细胞色素P450 2E1(CYP2E1)的周转情况,并研究在表达人CYP2E1的转染HepG2细胞系中,可能导致CYP2E1快速降解的蛋白水解途径。采用两种方法研究CYP2E1的周转情况;加入环己酰亚胺后,通过对硝基苯酚(PNP)催化活性测定和脱辅基蛋白含量的免疫印迹分析检测,完整细胞中CYP2E1的半衰期约为6小时。CYP2E1底物或配体,如4 - 甲基吡唑、乙醇、甘油和二甲基亚砜,可保护CYP2E1免受这种快速降解,而四氯化碳(CCl4)则加速这一过程。第二个实验步骤是在用[35S]甲硫氨酸标记CYP2E1并使用抗人CYP2E1 IgG进行免疫沉淀后进行脉冲追踪实验。CYP2E1的半衰期约为2.5小时,各种底物或配体在完整细胞内对周转过程的影响与环己酰亚胺实验中描述的情况相同。筛选了20多种不同的试剂,包括抗氧化剂、生理代谢物、溶酶体抑制剂和蛋白酶抑制剂,以研究它们对CYP2E1蛋白水解降解的可能影响。二丁酰环磷腺苷(dibutyryl cAMP)对CYP2E1活性或周转没有影响。在目前测试的这些试剂中,丝氨酸蛋白酶抑制剂盐酸1 - 氯 - 3 - 甲苯磺酰氨基 - 7 - 氨基 - 2 - 庚酮对CYP2E1降解表现出一定的保护作用。为了证明蛋白酶体复合物是否参与这一过程,使用细胞穿透性醛类蛋白酶体抑制剂Czb - Ile - Glu(OtBu) - Ala - 亮氨醛(PSI)和醛类非蛋白酶体蛋白酶抑制剂Czb - Leu - 正亮氨醛(钙蛋白酶抑制剂)来研究它们对正常和CCl4刺激的CYP2E1蛋白水解降解途径的影响。用浓度范围为5至80μM的PSI处理导致对正常CYP2E1和CCl4修饰的CYP2E1损失的剂量依赖性保护。在12小时的追踪期后,80μM浓度的PSI对用2 mM CCl4处理的细胞的最大保护作用约为60%,对未用CCl4处理的细胞约为75%。在有无CCl4的情况下,钙蛋白酶抑制剂对CYP2E1降解几乎没有或没有保护作用。PSI不抑制CYP2E1催化活性,表明它不是CYP2E1的配体。这些结果表明,人CYP2E1半衰期较短,底物可显著改变其在完整HepG2细胞中的周转速率。在该模型中,蛋白酶体蛋白水解途径可能参与正常和CCl4修饰的人CYP2E1的降解过程。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验