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The Genetics of Alcohol Metabolism: Role of Alcohol Dehydrogenase and Aldehyde Dehydrogenase Variants

机译:酒精代谢的遗传学:酒精脱氢酶和醛脱氢酶变体的作用

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摘要

The primary enzymes involved in alcohol metabolism are alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (ALDH). Both enzymes occur in several forms that are encoded by different genes; moreover, there are variants (i.e., alleles) of some of these genes that encode enzymes with different characteristics and which have different ethnic distributions. Which ADH or ALDH alleles a person carries influence his or her level of alcohol consumption and risk of alcoholism. Researchers to date primarily have studied coding variants in the ADH1B, ADH1C, and ALDH2 genes that are associated with altered kinetic properties of the resulting enzymes. For example, certain ADH1B and ADH1C alleles encode particularly active ADH enzymes, resulting in more rapid conversion of alcohol (i.e., ethanol) to acetaldehyde; these alleles have a protective effect on the risk of alcoholism. A variant of the ALDH2 gene encodes an essentially inactive ALDH enzyme, resulting in acetaldehyde accumulation and a protective effect. It is becoming clear that noncoding variants in both ADH and ALDH genes also may influence alcohol metabolism and, consequently, alcoholism risk; the specific nature and effects of these variants still need further study.
机译:参与酒精代谢的主要酶是酒精脱氢酶(ADH)和醛脱氢酶(ALDH)。两种酶都以几种不同的基因编码的形式存在。此外,这些基因中的一些基因存在变体(即等位基因),其编码具有不同特征并且具有不同种族分布的酶。一个人携带哪些ADH或ALDH等位基因会影响其饮酒水平和酗酒风险。迄今为止,研究人员主要研究了ADH1B,ADH1C和ALDH2基因中的编码变体,这些变体与所得酶的动力学特性相关。例如,某些ADH1B和ADH1C等位基因编码特别活跃的ADH酶,从而使醇(即乙醇)更快地转化为乙醛。这些等位基因对酗酒的风险具有保护作用。 ALDH2基因的变体编码一种基本无活性的ALDH酶,导致乙醛积累和保护作用。越来越明显的是,ADH和ALDH基因中的非编码变异也可能影响酒精代谢,因此也影响酒精中毒的风险。这些变体的具体性质和作用仍需进一步研究。

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