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果蝇中的乙醇脱氢酶多态性:产物抑制的酶动力学

Alcohol dehydrogenase polymorphism in Drosophila: enzyme kinetics of product inhibition.

作者信息

Heinstra P W, Scharloo W, Thorig G E

机构信息

Department of Population and Evolutionary Biology, University of Utrecht, The Netherlands.

出版信息

J Mol Evol. 1988;28(1-2):145-50. doi: 10.1007/BF02143506.

Abstract

Because natural populations of Drosophila melanogaster are polymorphic for different allozymes of alcohol dehydrogenase (ADH) and because D. melanogaster is more tolerant to the toxic effects of ethanol than its sibling species D. simulans, information regarding the sensitivities of the different forms of ADH to the products of ethanol degradation are of ecological importance. ADH-F, ADH-S, ADH-71k of D. melanogaster and the ADH of D. simulans were inhibited by NADH, but the inhibition was relieved by NAD+. The order of sensitivity to NADH was ADH-F less than ADH-71k, ADH-S less than ADH-simulans with ADH-F being about four times less sensitive than the D. melanogaster enzymes and 12 times less sensitive than the D. simulans enzyme. Acetaldehyde inhibited the ethanol-to-acetaldehyde activity of the ADHs, but at low acetaldehyde concentrations ethanol and NAD+ reduced the inhibition. ADH-71k and ADH-F were more subject to the inhibitory action of acetaldehyde than ADH-S and ADH-simulans, with ADH-71k being seven times more sensitive than ADH-S. The pattern of product inhibition of ADH-71k suggests a rapid equilibrium random mechanism for ethanol oxidation. Thus, although the ADH variants only differ by a few amino acids, these differences exert a far larger impact on their intrinsic properties than previously thought. How differences in product inhibition may be of significance in the evolution of the ADHs is discussed.

摘要

由于黑腹果蝇的自然种群对于乙醇脱氢酶(ADH)的不同等位酶具有多态性,并且由于黑腹果蝇比其近缘种拟果蝇对乙醇的毒性作用更具耐受性,因此有关不同形式的ADH对乙醇降解产物敏感性的信息具有重要的生态学意义。黑腹果蝇的ADH-F、ADH-S、ADH-71k以及拟果蝇的ADH均受到NADH的抑制,但NAD+可缓解这种抑制作用。对NADH的敏感顺序为ADH-F小于ADH-71k,ADH-S小于拟果蝇的ADH,其中ADH-F的敏感性比黑腹果蝇的酶低约四倍,比拟果蝇的酶低12倍。乙醛抑制了ADH的乙醇转化为乙醛的活性,但在低乙醛浓度下,乙醇和NAD+可减轻这种抑制作用。ADH-71k和ADH-F比ADH-S和拟果蝇的ADH更容易受到乙醛的抑制作用,ADH-71k的敏感性比ADH-S高七倍。ADH-71k的产物抑制模式表明乙醇氧化存在快速平衡随机机制。因此,尽管ADH变体仅相差几个氨基酸,但这些差异对其内在特性的影响比以前认为的要大得多。本文讨论了产物抑制差异在ADH进化中可能具有的重要性。

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