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Reverse Yeast Two-hybrid System to Identify Mammalian Nuclear Receptor Residues that Interact with Ligands and/or Antagonists
Published on: November 15, 2013
The nuclear receptor REV-ERBα regulates CYP2E1 expression and acetaminophen hepatotoxicity
Li Zhang1, Fugui Zhang2, Yifei Xiao2
1College of Pharmacy, Jinan University, Guangzhou, China.
Abstract:
CYP2E1 plays an important role in drug metabolism and drug-induced hepatotoxicity. Here, we aimed to investigate a potential role for the nuclear receptor REV-ERBα in regulation of CYP2E1 expression and acetaminophen (APAP)-induced hepatotoxicity, and to determine the underlying mechanisms.Regulatory effects of REV-ERBα on CYP2E1 expression were assessed in vivo (using Rev-erbα-/- mice) and in vitro (using AML12 and HepG2 cells). In vitro microsomal CYP2E1 activity was probed using its specific substrate p-nitrophenol. Pharmacokinetic and acute toxicity studies were performed with Rev-erbα-/- and wild-type mice after APAP administration.We found that Rev-erbα ablation led to decreases in hepatic CYP2E1 expression and activity in mice. In line with this, APAP-induced hepatotoxicity was attenuated in Rev-erbα-deficient mice. The attenuated toxicity was due to down-regulation of APAP metabolism mediated by CYP2E1, which was evidenced by a decrease in formation of the toxic intermediate metabolite NAPQI (i.e. reduced APAP-cysteine and APAP-N-acetylcysteine levels). Furthermore, positive regulation of CYP2E1 expression by REV-ERBα was confirmed in both AML12 and HepG2 cells. Based on luciferase reporter assays, it was found that REV-ERBα regulated Cyp2e1 transcription and expression through repression of DEC2.In conclusion, REV-ERBα positively regulates CYP2E1 expression in mice, thereby affecting APAP metabolism and hepatotoxicity.
Insights
The nuclear receptor REV-ERBα positively regulates CYP2E1, impacting drug metabolism and acetaminophen toxicity. Its absence reduces CYP2E1 activity, thereby decreasing liver damage.
Area of Science:
- Biochemistry
- Pharmacology
- Hepatology
Background:
- Cytochrome P450 2E1 (CYP2E1) is crucial for drug metabolism and drug-induced liver injury.
- The nuclear receptor REV-ERBα's role in CYP2E1 regulation and its impact on acetaminophen (APAP)-induced hepatotoxicity remain unclear.
Purpose of the Study:
- To investigate the regulatory role of REV-ERBα in CYP2E1 expression.
- To determine the effect of REV-ERBα on APAP-induced hepatotoxicity and elucidate the underlying mechanisms.
Main Methods:
- Gene expression and activity analysis of CYP2E1 in wild-type and Rev-erbα knockout mice.
- In vitro studies using AML12 and HepG2 cells to assess REV-ERBα's regulatory effects.
- Luciferase reporter assays to identify transcriptional mechanisms.
- Pharmacokinetic and toxicity studies following APAP administration.
Main Results:
- Ablation of Rev-erbα significantly decreased hepatic CYP2E1 expression and activity in mice.
- APAP-induced hepatotoxicity was attenuated in Rev-erbα-deficient mice.
- Reduced formation of the toxic metabolite NAPQI was observed, indicating decreased APAP metabolism.
- REV-ERBα was confirmed to positively regulate CYP2E1 transcription, partly through repressing DEC2.
Conclusions:
- REV-ERBα positively regulates CYP2E1 expression in the liver.
- REV-ERBα influences APAP metabolism and plays a significant role in APAP-induced hepatotoxicity.
- Targeting REV-ERBα may offer a novel therapeutic strategy for managing drug-induced liver injury.
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