Adenovirus mediated overexpression of CYP2E1 increases sensitivity of HepG2 cells to acetaminophen induced cytotoxicity

被引:0
作者
Jingxiang Bai
Arthur I. Cederbaum
机构
[1] Mount Sinai School of Medicine,Department of Pharmacology and Biological Chemistry
[2] Mount Sinai School of Medicine,Department of Pharmacology and Biological Chemistry
来源
Molecular and Cellular Biochemistry | 2004年 / 262卷
关键词
acetaminophen; adenovirus; apoptosis; BSO; CYP2E1; HepG2; toxicity;
D O I
暂无
中图分类号
学科分类号
摘要
To study the biochemical and toxicological properties of cytochrome P450 2E1 (CYP2E1), an adenovirus containing human CYP2E1 cDNA (Ad-CYP2E1) was constructed and was shown to successfully mediate the overexpression of CYP2E1 in HepG2 cells. Acetaminophen (APAP) toxicity to HepG2 cells infected with Ad-CYP2E1 was characterized as a preliminary proof of principle experiment to validate the functionality of the CYP2E1 adenovirus. Compared with cells infected with Ad-LacZ, HepG2 cells infected with Ad-CYP2E1 were more sensitive to APAP induced necrosis and apoptosis when the cells were depleted of intracellular reduced glutathione (GSH). The APAP cytotoxicity was dependent on both the concentration of APAP and the multiplicity of infection of the Ad-CYP2E1 virus. Apoptosis induced by APAP in HepG2 cells overexpressing CYP2E1 was caspase dependent and could be inhibited by the pan-caspase inhibitor Z-VAD-fmk. After treatment with APAP, mitochondrial membrane potential was dramatically decreased in the CYP2E1-expressing cells. APAP protein adducts were elevated in HepG2 cells infected with Ad-CYP2E1 compared with that in cells infected with Ad-LacZ; two bands around 90 KD were found only in the CYP2E1-expressing cells. These results demonstrate that adenovirus-mediated overexpression of human CYP2E1 activates APAP to reactive metabolites which damage mitochondria, form protein adducts, and result in toxicity to HepG2 cells. The Ad-CYP2E1 may be useful for studies designed to investigate the role of CYP2E1 in APAP and alcoholic liver injury and to further characterize the actions and effects of CYP2E1. (Mol Cell Biochem 262: 165–176, 2004)
引用
收藏
页码:165 / 176
页数:11
相关论文
共 252 条
[1]  
Bessems JG(2001)Paracetamol (acetaminophen)-induced toxicity: Molecular and biochemical mechanisms, analogues and protective approaches Crit Rev Toxicol 31 55-138
[2]  
Vermeulen NP(1983)Paracetamol overdosage. Pharmacological considerations and clinical management Drugs 25 290-314
[3]  
Prescott LF(1984)Acetaminophen hepatotoxicity Annu Rev Med 35 577-593
[4]  
Black M(1989)Acetaminophen activation by human liver cytochromes P450IIE1 and P450IA2 Arch Biochem Biophys 271 270-283
[5]  
Raucy JL(1982)Synthesis, decomposition kinetics, and preliminary toxicological studies of pure N-acetyl-p-benzoquinone imine, a proposed toxic metabolite of acetaminophen J Med Chem 25 885-886
[6]  
Lasker JM(1978)Paracetamol metabolism and toxicity in isolated hepatocytes from rat and mouse Biochem Pharmacol 27 2859-2863
[7]  
Lieber CS(1986)Paracetamol, 3-monoalkyl-and 3,5-dialkyl derivatives. Comparison of their microsomal cytochrome P-450 dependent oxidation and toxicity in freshly isolated hepatocytes Biochem Pharmacol 35 3693-3699
[8]  
Black M(1985)Identification of the major covalent adduct formed in vitro and in vivo between acetaminophen and mouse liver proteins Mol Pharmacol 27 566-573
[9]  
Dahlin DC(1995)Mechanisms of acetaminophen toxicity: Immunochemical detection of drug-protein adducts Drug Metab Rev 27 72-92
[10]  
Nelson SD(1988)Dissociation of covalent binding from the oxidative effects of acetaminophen. Studies using dimethylated acetaminophen derivatives Biochem Pharmacol 37 3383-3393