The mechanism of tumor induction by unsymmetric nitrosamines is poorly understood. Alpha-hydroxylation activates these carcinogens to DNA alkylating agents by generating a metabolite that decomposes to an aldehyde and a diazohydroxide. The diazohydroxide, presumably via a diazonium ion, alkylates DNA. Unsymmetric nitrosamines have two alpha- hydroxylation pathways that lead to two different types of DNA adducts. Interactions between these two pathways likely contribute to the carcinogenic activity of the nitrosamine. Our studies indicate that there are interactions between the two activation pathways of the carcinogen 4-(methylnitrosamino)-1-(3-pyridyl)- 1 butanone (NNK). This tobacco-specific nitrosamine selectively induces lung tumors in laboratory animals and is a possible human carcinogen. NNK is activated to either a methylating agent or a pyridyloxobutylating agent. Experimental data support a carcinogenic mechanism for this compound in which the formation of O/6-methylguanine (O/6-mG) is important for the initiation of tumorigenesis in target tissues. Pyridyloxobutylating compounds, such as 4-(acetoxymethylnitrosamino)-1-(3- pyridyl)-1-butanone (NNKOAc), can enhance the lung tumorigenic activity of methylating agents in A/J mice by increasing the levels of O/6-mG in lung DNA. Interestingly, pyridyloxobutyl DNA adducts are capable of interfering with the ability of O/6-alkylguanine-DNA alkyltransferase (AGT) to repair O/6-mG in vitro. Our hypothesis is that the pyridyloxobutyl DNA adducts generated from NNK contribute to the lung tumorigenic activity of NNK in the A/J mouse by interfering with O/6-mG repair by AGT in vivo. To test this hypothesis, we will: 1) determine the relative level of AGT reactive pyridyloxobutyl DNA adducts to O/6-mG in lung DNA isolated from NNK-treated A/J mice; 2) investigate the involvement of AGT in the repair of pyridyloxobutyl DNA adducts in vivo; 3) use an in vitro system to determine whether these adduct levels are sufficient to affect the repair of O/6-mG; 4) elucidate the mechanism by which pyridyloxobutyl DNA adducts interact with AGT. The results of our studies will lead to a better understanding of mechanisms of lung cancer induction by NNK. In addition, this mechanism is likely applicable to other unsymmetric nitrosamines as well as carcinogenic mixtures such as tobacco smoke, a known human carcinogen.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA059887-09
Application #
6489258
Study Section
Chemical Pathology Study Section (CPA)
Program Officer
Poland, Alan P
Project Start
1993-05-05
Project End
2003-04-07
Budget Start
2002-01-01
Budget End
2003-04-07
Support Year
9
Fiscal Year
2002
Total Cost
$212,174
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Type
Schools of Public Health
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Peterson, Lisa A (2017) Context Matters: Contribution of Specific DNA Adducts to the Genotoxic Properties of the Tobacco-Specific Nitrosamine NNK. Chem Res Toxicol 30:420-433
Peterson, Lisa A; Urban, Anna M; Vu, Choua C et al. (2013) Role of aldehydes in the toxic and mutagenic effects of nitrosamines. Chem Res Toxicol 26:1464-73
Tubbs, Julie L; Latypov, Vitaly; Kanugula, Sreenivas et al. (2009) Flipping of alkylated DNA damage bridges base and nucleotide excision repair. Nature 459:808-13
Peterson, Lisa A; Wagener, Tanja; Sies, Helmut et al. (2007) Decomposition of S-nitrosocysteine via S- to N-transnitrosation. Chem Res Toxicol 20:721-3
Coulter, Richard; Blandino, Maureen; Tomlinson, Jessica M et al. (2007) Differences in the rate of repair of O6-alkylguanines in different sequence contexts by O6-alkylguanine-DNA alkyltransferase. Chem Res Toxicol 20:1966-71
Mijal, Renee S; Kanugula, Sreenivas; Vu, Choua C et al. (2006) DNA sequence context affects repair of the tobacco-specific adduct O(6)-[4-Oxo-4-(3-pyridyl)butyl]guanine by human O(6)-alkylguanine-DNA alkyltransferases. Cancer Res 66:4968-74
Choi, Jeong-Yun; Chowdhury, Goutam; Zang, Hong et al. (2006) Translesion synthesis across O6-alkylguanine DNA adducts by recombinant human DNA polymerases. J Biol Chem 281:38244-56
Mijal, Renee S; Loktionova, Natalia A; Vu, Choua C et al. (2005) O6-pyridyloxobutylguanine adducts contribute to the mutagenic properties of pyridyloxobutylating agents. Chem Res Toxicol 18:1619-25
Mijal, Renee S; Thomson, Nicole M; Fleischer, Nancy L et al. (2004) The repair of the tobacco specific nitrosamine derived adduct O6-[4-Oxo-4-(3-pyridyl)butyl]guanine by O6-alkylguanine-DNA alkyltransferase variants. Chem Res Toxicol 17:424-34
Thomson, Nicole M; Mijal, Renee S; Ziegel, Rebecca et al. (2004) Development of a quantitative liquid chromatography/electrospray mass spectrometric assay for a mutagenic tobacco specific nitrosamine-derived DNA adduct, O6-[4-Oxo-4-(3-pyridyl)butyl]-2'-deoxyguanosine. Chem Res Toxicol 17:1600-6

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