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An Autoregulatory Loop Controlling CYP1A1 Gene Expression: Role of H2O2and NFI
- Source :
- Molecular and Cellular Biology. 19:6825-6832
- Publication Year :
- 1999
- Publisher :
- Informa UK Limited, 1999.
-
Abstract
- Cytochrome P450 1A1 (CYP1A1), like many monooxygenases, can produce reactive oxygen species during its catalytic cycle. Apart from the well-characterized xenobiotic-elicited induction, the regulatory mechanisms involved in the control of the steady-state activity of CYP1A1 have not been elucidated. We show here that reactive oxygen species generated from the activity of CYP1A1 limit the levels of induced CYP1A1 mRNAs. The mechanism involves the repression of the CYP1A1 gene promoter activity in a negative-feedback autoregulatory loop. Indeed, increasing the CYP1A1 activity by transfecting CYP1A1 expression vectors into hepatoma cells elicited an oxidative stress and led to the repression of a reporter gene driven by the CYP1A1 gene promoter. This negative autoregulation is abolished by ellipticine (an inhibitor of CYP1A1) and by catalase (which catalyzes H2O2 catabolism), thus implying that H2O2 is an intermediate. Down-regulation is also abolished by the mutation of the proximal nuclear factor I (NFI) site in the promoter. The transactivating domain of NFI/CTF was found to act in synergy with the arylhydrocarbon receptor pathway during the induction of CYP1A1 by 2,3,7,8-tetrachloro-p-dibenzodioxin. Using an NFI/CTF-Gal4 fusion, we show that NFI/CTF transactivating function is decreased by a high activity of CYP1A1. This regulation is also abolished by catalase or ellipticine. Consistently, the transactivating function of NFI/CTF is repressed in cells treated with H2O2 ,a novel finding indicating that the transactivating domain of a transcription factor can be targeted by oxidative stress. In conclusion, an autoregulatory loop leads to the fine tuning of the CYP1A1 gene expression through the down-regulation of NFI activity by CYP1A1-based H2O2 production. This mechanism allows a limitation of the potentially toxic CYP1A1 activity within the cell. Cytochrome P450 monooxygenases are drug-metabolizing enzymes that play a major role in the detoxification and elimination of hydrophobic xenobiotics. Paradoxically, these enzymes also generate reactive metabolites which can form DNA adducts and lead to mutations (26). CYP1A1 is a ubiquitous member of the P450 superfamily which is among the products
- Subjects :
- Transcriptional Activation
Biology
Response Elements
Gene expression
Benzo(a)pyrene
Cytochrome P-450 CYP1A1
Tumor Cells, Cultured
polycyclic compounds
Humans
heterocyclic compounds
RNA, Messenger
NFI Transcription Factors
Molecular Biology
Transcription factor
Transcriptional Regulation
Reporter gene
Expression vector
Models, Genetic
Nuclear factor I
Ccaat-enhancer-binding proteins
RNA-Binding Proteins
Promoter
Hydrogen Peroxide
Cell Biology
respiratory system
Molecular biology
Protein Structure, Tertiary
Liver
Receptors, Aryl Hydrocarbon
Mutation
CCAAT-Enhancer-Binding Proteins
Reactive Oxygen Species
Signal Transduction
Transcription Factors
Subjects
Details
- ISSN :
- 10985549
- Volume :
- 19
- Database :
- OpenAIRE
- Journal :
- Molecular and Cellular Biology
- Accession number :
- edsair.doi.dedup.....39b298ae253656daddeb4271275dd274
- Full Text :
- https://doi.org/10.1128/mcb.19.10.6825