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Nicotine N-glucuronidation relative to N-oxidation and C-oxidation and UGT2B10 genotype in five ethnic/racial groups
- Source :
- Carcinogenesis. 35(11)
- Publication Year :
- 2014
-
Abstract
- Nicotine metabolism influences smoking behavior and differences in metabolism probably contribute to ethnic variability in lung cancer risk. We report here on the proportion of nicotine metabolism by cytochrome P450 2A6-catalyzed C-oxidation, UDP-glucuronosyl transferase 2B10 (UGT2B10)-catalyzed N-glucuronidation and flavin monooxygenase 3-catalyzed N-oxidation in five ethnic/racial groups and the role of UGT2B10 genotype on the metabolic patterns observed. Nicotine and its metabolites were quantified in urine from African American (AA, n = 364), Native Hawaiian (NH, n = 311), White (n = 437), Latino (LA, n = 453) and Japanese American (JA, n = 674) smokers. Total nicotine equivalents, the sum of nicotine and six metabolites, and nicotine metabolism phenotypes were calculated. The relationship of UGT2B10 genotype to nicotine metabolic pathways was determined for each group; geometric means were computed and adjusted for age, sex, creatinine, and body mass index. Nicotine metabolism patterns were unique across the groups, C-oxidation was lowest in JA and NH (P < 0.0001), and N-glucuronidation lowest in AA (P < 0.0001). There was no difference in C-oxidation among Whites and AA and LA. Nicotine and cotinine glucuronide ratios were 2- and 3-fold lower in AA compared with Whites. Two UGT variants, a missense mutation (Asp67Tyr, rs61750900) and a splice variant (rs116294140) accounted for 33% of the variation in glucuronidation. In AA, the splice variant accounted for the majority of the reduced nicotine glucuronidation. UGT2B10 variant allele carriers had increased levels of C-oxidation (P = 0.0099). Our data indicate that the relative importance of nicotine metabolic pathways varies by ethnicity, and all pathways should be considered when characterizing the role of nicotine metabolism on smoking behavior and cancer risk.
- Subjects :
- Adult
Male
Cancer Research
Nicotine
Glucuronosyltransferase
Adolescent
Genotype
Glucuronidation
Glucuronates
Original Manuscript
Pharmacology
chemistry.chemical_compound
Risk Factors
Neoplasms
medicine
Ethnicity
Humans
biology
Chemistry
Smoking
Cytochrome P450
General Medicine
Monooxygenase
Middle Aged
biology.protein
Hepatocytes
Microsomes, Liver
Female
Cotinine
Glucuronide
medicine.drug
Subjects
Details
- ISSN :
- 14602180
- Volume :
- 35
- Issue :
- 11
- Database :
- OpenAIRE
- Journal :
- Carcinogenesis
- Accession number :
- edsair.doi.dedup.....52b22e81d2d030182926e6724eed5dfd