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CYP2E1 基因多态性:CYP2E1 活性的人群分布。

Genetic polymorphism in CYP2E1: Population distribution of CYP2E1 activity.

机构信息

University of Connecticut, Storrs, USA.

出版信息

J Toxicol Environ Health B Crit Rev. 2009;12(5-6):362-88. doi: 10.1080/10937400903158359.

Abstract

Cytochrome P-450 2E1 (CYP2E1) is a key enzyme in the metabolic activation of a variety of toxicants including nitrosamines, benzene, vinyl chloride, and halogenated solvents such as trichloroethylene. CYP2E1 is also one of the enzymes that metabolizes ethanol to acetaldehyde, and is induced by recent ethanol ingestion. There is evidence that interindividual variability in the expression and functional activity of this cytochrome (CYP) may be considerable. Genetic polymorphisms in CYP2E1 were identified and linked to altered susceptibility to hepatic cirrhosis induced by ethanol and esophageal and other cancers in some epidemiological studies. Therefore, it is important to evaluate how such polymorphisms affect CYP2E1 function and whether it is possible to construct a population distribution of CYP2E1 activity based upon the known effects of these polymorphisms and their frequency in the population. This analysis is part of the genetic polymorphism database project described in the lead article in this series and followed the approach described in that article (Ginsberg et al., 2009, this issue). Review of the literature found that there are a variety of CYP2E1 variant alleles but the functional significance of these variants is still unclear. Some, but not all, studies suggest that several upstream 5' flanking mutations affect gene expression and response to inducers such as ethanol or obesity. None of the coding-region variants consistently affects enzyme function. Part of the reason for conflicting evidence regarding genotype effect on phenotype may be due to the wide variety of exposures such as ethanol or dietary factors and physiological factors including body weight or diabetes that modulate CYP2E1 expression. In conclusion, evidence is too limited to support the development of a population distribution of CYP2E1 enzyme activity based upon genotypes. Health risk assessments may best rely upon data reporting interindividual variability in CYP2E1 function for input into physiologically based pharmacokinetic (PBPK) models involving CYP2E1 substrates.

摘要

细胞色素 P-450 2E1(CYP2E1)是多种毒物代谢激活的关键酶,包括亚硝胺、苯、氯乙烯和三氯乙烯等卤代溶剂。CYP2E1 也是将乙醇代谢为乙醛的酶之一,并且会被最近的乙醇摄入诱导。有证据表明,这种细胞色素(CYP)的表达和功能活性的个体间差异可能相当大。在一些流行病学研究中,已经确定了 CYP2E1 的遗传多态性,并将其与乙醇诱导的肝硬化和食管及其他癌症的易感性改变联系起来。因此,评估这些多态性如何影响 CYP2E1 功能以及是否有可能根据这些多态性的已知影响及其在人群中的频率构建 CYP2E1 活性的人群分布是很重要的。本分析是本系列开篇文章中描述的遗传多态性数据库项目的一部分,并遵循了该文章中描述的方法(Ginsberg 等人,2009 年,本期)。文献综述发现,CYP2E1 存在多种变体等位基因,但这些变体的功能意义仍不清楚。一些(但不是全部)研究表明,几个上游 5' 侧翼突变影响基因表达和对乙醇或肥胖等诱导剂的反应。编码区的变异没有一个一致地影响酶的功能。基因型对表型影响的证据相互矛盾的部分原因可能是由于广泛的暴露,如乙醇或饮食因素以及生理因素,包括体重或糖尿病,这些因素调节 CYP2E1 的表达。总之,证据还很有限,无法支持根据基因型开发 CYP2E1 酶活性的人群分布。健康风险评估可能最好依赖于报告 CYP2E1 功能个体间变异性的数据,以便将其输入涉及 CYP2E1 底物的基于生理学的药代动力学(PBPK)模型。

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