Related Experiment Videos
Benzo[a]pyrene carcinogenicity is lost in mice lacking the aryl hydrocarbon receptor
Y Shimizu1, Y Nakatsuru, M Ichinose
1Department of Pathology, Faculty of Medicine, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Abstract:
The contribution of the aryl hydrocarbon receptor (AhR) in induction of a battery of xenobiotic-metabolizing enzymes has been studied extensively. However, no direct proof has been obtained that it plays a role in modulating carcinogenesis. To address the question of whether AhR is required for tumor induction, we have investigated the response of AhR-deficient mice to benzo[a]pyrene (B[a]P), a widely distributed environmental carcinogen. B[a]P treatment induced expression of the cytochrome P450 gene Cyp1a1 in the skin and liver of AhR-positive mice bearing +/+ and +/- genotypes and did not induce expression of the cytochrome P450 gene Cyp1a1 in AhR-null mice in either skin or liver. In contrast, Cyp1a2 gene expression was positive in liver irrespective of the presence or absence of the AhR gene, or B[a]P treatment, although its inducibility was lost in the AhR(-/-) mouse. All AhR-positive male mice of both +/+ and +/- genotypes that received subcutaneous injection of B[a]P (2 mg) on the first and the eighth days had developed subcutaneous tumors at the site of injection at the end of the 18-week experiment. In contrast, no tumors were apparent in any of the AhR-deficient mice. Likewise, topical application of B[a]P (200 microg) at weekly intervals to the skin of female mice for 25 weeks produced skin tumors only in the AhR-positive mice. Thus the carcinogenic action of B[a]P may be determined primarily by AhR, a transcriptional regulator of the gene for CYP1A1. The results of the present study provide direct evidence that AhR is involved in carcinogenesis.
Insights
The aryl hydrocarbon receptor (AhR) is essential for benzo[a]pyrene (B[a]P) to cause cancer. AhR-deficient mice did not develop tumors after B[a]P exposure, demonstrating AhR
Area of Science:
- Environmental Toxicology
- Molecular Carcinogenesis
- Biochemistry
Background:
- The aryl hydrocarbon receptor (AhR) regulates xenobiotic metabolism.
- Its role in chemical carcinogenesis remains incompletely understood.
- Benzo[a]pyrene (B[a]P) is a well-known environmental carcinogen.
Purpose of the Study:
- To determine if AhR is necessary for B[a]P-induced tumor formation.
- To investigate the role of AhR in mediating the carcinogenic effects of B[a]P.
Main Methods:
- Utilized AhR-deficient (null) and AhR-positive mice.
- Administered B[a]P via subcutaneous injection and topical skin application.
- Assessed tumor development and gene expression (Cyp1a1, Cyp1a2) in skin and liver.
Main Results:
- B[a]P induced Cyp1a1 expression in AhR-positive mice but not in AhR-null mice.
- AhR-positive mice developed tumors after B[a]P exposure, while AhR-null mice did not.
- Cyp1a2 expression was independent of B[a]P treatment but its inducibility was lost in AhR-null mice.
Conclusions:
- AhR is indispensable for B[a]P-induced carcinogenesis.
- AhR mediates the carcinogenic action of B[a]P, likely through regulating CYP1A1.
- This study provides direct evidence for AhR's involvement in chemical carcinogenesis.