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Chemical-Induced Skin Carcinogenesis Model Using Dimethylbenz[a]Anthracene and 12-O-Tetradecanoyl Phorbol-13-Acetate (DMBA-TPA)
Published on: December 19, 2019
The role of polycyclic aromatic hydrocarbon-DNA adducts in inducing mutations in mouse skin
Dhrubajyoti Chakravarti1, Divya Venugopal, Paula C Mailander
1Eppley Institute for Research in Cancer and Allied Diseases, Omaha, NE 68198-6805, USA. dchakrav@unmc.edu
Abstract:
Polycyclic aromatic hydrocarbons (PAH) form stable and depurinating DNA adducts in mouse skin to induce preneoplastic mutations. Some mutations transform cells, which then clonally expand to establish tumors. Strong clues about the mutagenic mechanism can be obtained if the PAH-DNA adducts can be correlated with both preneoplastic and tumor mutations. To this end, we studied mutagenesis in PAH-treated early preneoplastic skin (1 day after exposure) and in the induced papillomas in SENCAR mice. Papillomas were studied by PCR amplification of the H-ras gene and sequencing. For benzo[a]pyrene (BP), BP-7,8-dihydrodiol (BPDHD), 7,12-dimethylbenz[a]anthracene (DMBA) and dibenzo[a,l]pyrene (DB[a,l]P), the codon 13 (GGC to GTC) and codon 61 (CAA to CTA) mutations in papillomas corresponded to the relative levels of Gua and Ade-depurinating adducts, despite BP and BPDHD forming significant amounts of stable DNA adducts. Such a relationship was expected for DMBA and DB[a,l]P, as they formed primarily depurinating adducts. These results suggest that depurinating adducts play a major role in forming the tumorigenic mutations. To validate this correlation, preneoplastic skin mutations were studied by cloning H-ras PCR products and sequencing individual clones. DMBA- and DB[a,l]P-treated skin showed primarily A.T to G.C mutations, which correlated with the high ratio of the Ade/Gua-depurinating adducts. Incubation of skin DNA with T.G-DNA glycosylase eliminated most of these A.T to G.C mutations, indicating that they existed as G.T heteroduplexes, as would be expected if they were formed by errors in the repair of abasic sites generated by the depurinating adducts. BP and its metabolites induced mainly G.C to T.A mutations in preneoplastic skin. However, PCR over unrepaired anti-BPDE-N(2)dG adducts can generate similar mutations as artifacts of the study protocol, making it difficult to establish an adduct-mutation correlation for determining which BP-DNA adducts induce the early preneoplastic mutations. In conclusion, this study suggests that depurinating adducts play a major role in PAH mutagenesis.
Insights
Depurinating DNA adducts, formed by polycyclic aromatic hydrocarbons (PAH), are key drivers of mutations leading to skin tumors. This study highlights their significant role in PAH-induced mutagenesis.
Area of Science:
- Environmental Toxicology
- Molecular Carcinogenesis
- Genetics
Background:
- Polycyclic aromatic hydrocarbons (PAH) are environmental mutagens known to cause DNA damage.
- PAH-DNA adducts can lead to mutations that initiate cancer development.
- Understanding the specific types of adducts and their mutagenic mechanisms is crucial for cancer prevention.
Purpose of the Study:
- To correlate specific polycyclic aromatic hydrocarbon (PAH)-DNA adducts with mutations in mouse skin tumors and preneoplastic lesions.
- To elucidate the role of depurinating versus stable DNA adducts in PAH-induced mutagenesis.
- To identify the primary mutagenic adducts responsible for initiating skin cancer.
Main Methods:
- SENCAR mice were treated with various PAHs (BP, BPDHD, DMBA, DB[a,l]P).
- H-ras gene mutations in induced papillomas were analyzed using PCR amplification and sequencing.
- Mutations in early preneoplastic skin were studied by cloning and sequencing H-ras PCR products.
- DNA glycosylase treatment was used to identify specific mutation types.
Main Results:
- Tumor mutations in papillomas correlated with depurinating guanine and adenine adducts for DMBA and DB[a,l]P.
- Benzo[a]pyrene (BP) and its metabolites induced primarily G.C to T.A mutations in preneoplastic skin, with potential artifactual mutations complicating correlation.
- A.T to G.C mutations in DMBA- and DB[a,l]P-treated skin were linked to depurinating adducts and likely arose from repair of abasic sites.
Conclusions:
- Depurinating DNA adducts play a major role in polycyclic aromatic hydrocarbon (PAH) mutagenesis and tumor formation.
- The type of PAH-DNA adduct formed dictates the specific mutations induced.
- Further research is needed to definitively link BP-DNA adducts to early preneoplastic mutations due to potential experimental artifacts.
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