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Published on: November 15, 2013
CYP2C8 Is a Novel Target of Peroxisome Proliferator-Activated Receptor α in Human Liver
Ngome L Makia1, Joyce A Goldstein2
1Human Metabolism Group, Laboratory of Signal Transduction, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina.
Abstract:
Human cytochrome P450 (CYP) 2C enzymes metabolize ∼30% of clinically prescribed drugs and various environmental chemicals. CYP2C8, an important member of this subfamily, metabolizes the anticancer drug paclitaxel, certain antidiabetic drugs, and endogenous substrates, including arachidonic acid, to physiologically active epoxyeicosatrienoic acids. Previous studies from our laboratory showed that microRNA 107 (miR107) and microRNA 103 downregulate CYP2C8 post-transcriptionally. miR107 is located in intron 5 of the pantothenate kinase 1 (PANK1) gene. p53 has been reported to coregulate the induction of PANK1 and miR107. Here, we examine the possible downregulation of CYP2C8 by drugs capable of inducing miR107. Hypolipidemic drugs, such as bezafibrate, known activators of the peroxisome proliferator-activated receptor α (PPARα), induce both the PANK1 gene and miR107 (∼2.5-fold) in primary human hepatocytes. Surprisingly, CYP2C8 mRNA and protein levels were induced by bezafibrate. CYP2C8 promoter activity was increased by ectopic expression of PPARα in HepG2 cells, with a further increase after bezafibrate (∼18-fold), 4-chloro-6-(2,3-xylidino)-2-pyrimidinylthio acetic acid (∼10-fold) treatment, or the antidiabetic drug rosiglitazone, all known PPAR activators. Promoter sequence analyses, deletion studies, mutagenesis studies, and electrophoretic mobility shift assays identified a PPARα response element located at position -2109 base pair relative to the translation start site of CYP2C8. Chromatin immunopreciptation assay analysis confirmed recruitment of PPARα to this PPARα response element after bezafibrate treatment of human hepatocytes. Thus, we show for the first time that CYP2C8 is transcriptionally regulated by PPARα, suggesting the potential for drug-drug interactions due to upregulation of CYP2C8 by PPAR activators.
Insights
PPARα activators, like bezafibrate, surprisingly induce CYP2C8 expression, contradicting previous microRNA downregulation findings. This study reveals direct transcriptional regulation of CYP2C8 by PPARα, highlighting potential drug-drug interactions.
Area of Science:
- Pharmacology
- Molecular Biology
- Drug Metabolism
Background:
- Cytochrome P450 (CYP) 2C enzymes are crucial for metabolizing approximately 30% of clinical drugs.
- CYP2C8 metabolizes anticancer drugs, antidiabetic agents, and endogenous compounds like arachidonic acid.
- Previous research indicated microRNA 107 (miR107) and miR103 post-transcriptionally downregulate CYP2C8.
Purpose of the Study:
- To investigate the potential downregulation of CYP2C8 by drugs that induce miR107.
- To explore the transcriptional regulation of CYP2C8 by peroxisome proliferator-activated receptor α (PPARα) activators.
Main Methods:
- Primary human hepatocytes were treated with bezafibrate, a PPARα activator.
- CYP2C8 mRNA and protein levels were quantified.
- Reporter assays, promoter analysis, mutagenesis, electrophoretic mobility shift assays, and chromatin immunoprecipitation were employed to identify and confirm PPARα binding sites.
Main Results:
- Bezafibrate treatment unexpectedly induced CYP2C8 mRNA and protein levels in human hepatocytes.
- PPARα activators, including bezafibrate and rosiglitazone, significantly increased CYP2C8 promoter activity.
- A functional PPARα response element was identified at -2109 bp in the CYP2C8 promoter, with PPARα recruitment confirmed.
Conclusions:
- CYP2C8 is transcriptionally regulated by PPARα, independent of previously identified microRNA-mediated downregulation.
- PPARα activators can upregulate CYP2C8 expression.
- This finding suggests a potential for significant drug-drug interactions involving CYP2C8 and PPARα-activating drugs.
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