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Relationship between interindividual differences in nicotine metabolism and CYP2A6 genetic polymorphism in humans.

机译:个体间尼古丁代谢差异与CYP2A6基因多态性之间的关系。

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BACKGROUND: Nicotine is mainly metabolized to cotinine by cytochrome P450 (CYP) 2A6. Previously, we found that the CYP2A6 gene was deleted homozygously in one subject who was deficient in cotinine formation from nicotine. OBJECTIVE: Our objective was to clarify the relationship between interindividual differences in nicotine metabolism and CYP2A6 genetic polymorphism. METHODS: Nicotine was administered to 92 healthy Japanese subjects in the form of 1 piece of nicotine gum to investigate the potency of nicotine metabolism. The cotinine-nicotine ratio of the plasma concentration 2 hours after chewing was calculated as an index of nicotine metabolism. The genotypes of CYP2A6 gene, CYP2A6*1A, CYP2A6*1B, CYP2A6*2, CYP2A6*3, CYP2A6*4, and CYP2A6*5, were determined with polymerase chain reaction-restriction fragment length polymorphism. RESULTS: A large interindividual difference in nicotine metabolism was observed. Allele frequencies of CYP2A6*1A, CYP2A6*1B, and CYP2A6*4 were 42.4%, 37.5%, and 20.1%, respectively. The CYP2A6*2, CYP2A6*3, and CYP2A6*5 alleles were not found. Three subjects genotyped as CYP2A6*4/CYP2A6*4 were completely deficient in cotinine formation. The heterozygotes of the CYP2A6*4 allele tend to show lower capacities for cotinine formation. The subjects with CYP2A6*1A/CYP2A6*1B appeared to have higher capacities of cotinine formation than subjects with CYP2A6*1A/CYP2A6*1A, although the difference was not significant. The probit plot of the cotinine-nicotine ratio was not linear; this possibly indicated the existence of a novel mutation in the CYP2A6 gene genotyped as CYP2A6*1B/CYP2A6*4. CONCLUSIONS: The relationship between interindividual differences in nicotine metabolism and CYP2A6 genetic polymorphism in humans was proved.
机译:背景:尼古丁主要通过细胞色素P450(CYP)2A6代谢为可替宁。以前,我们发现一位烟碱缺乏可替宁形成的受试者中,CYP2A6基因被纯合缺失。目的:我们的目的是阐明尼古丁代谢的个体差异与CYP2A6基因多态性之间的关系。方法:以92例健康的日本受试者1片尼古丁胶的形式服用尼古丁,以研究尼古丁代谢的潜力。咀嚼后2小时的血浆浓度的可替宁-尼古丁比被计算为尼古丁代谢的指标。用聚合酶链反应-限制性片段长度多态性确定CYP2A6基因的基因型,CYP2A6 * 1A,CYP2A6 * 1B,CYP2A6 * 2,CYP2A6 * 3,CYP2A6 * 4和CYP2A6 * 5。结果:观察到个体间尼古丁代谢差异很大。 CYP2A6 * 1A,CYP2A6 * 1B和CYP2A6 * 4的等位基因频率分别为42.4%,37.5%和20.1%。找不到CYP2A6 * 2,CYP2A6 * 3和CYP2A6 * 5等位基因。基因型为CYP2A6 * 4 / CYP2A6 * 4的三个受试者完全缺乏可替宁的形成。 CYP2A6 * 4等位基因的杂合子倾向于显示较低的可替宁形成能力。 CYP2A6 * 1A / CYP2A6 * 1B的受试者似乎比CYP2A6 * 1A / CYP2A6 * 1A的受试者具有更高的可替宁形成能力,尽管差异不显着。可替宁-尼古丁比例的概率图不是线性的;这可能表明在基因型为CYP2A6 * 1B / CYP2A6 * 4的CYP2A6基因中存在新的突变。结论:证明了人体内尼古丁代谢的个体差异与CYP2A6基因多态性之间的关系。

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