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黑腹果蝇中与乙醇脱氢酶(ADH)和醛酮还原酶(AKR)活性相关的对1-戊烯-3-醇和1-戊烯-3-酮的耐受性。

Tolerance to 1-pentene-3-ol and to 1-pentene-3-one in relation to alcohol dehydrogenase (ADH) and aldo keto reductase (AKR) activities in Drosophila melanogaster.

作者信息

Garrido J J, Barbancho M

机构信息

Departamento de Genética, Facultad de Ciencias, Universidad de Córdoba, Spain.

出版信息

Biochem Genet. 1990 Oct;28(9-10):513-22. doi: 10.1007/BF00554379.

Abstract

The detoxification of 1-pentene-3-ol (pentenol) and 1-pentene-3-one (pentenone) by Drosophila melanogaster adult flies has been studied in two homozygous lines for the AdhF and AdhS alleles (LRC lines), in their respective lines selected for tolerance to ethanol (LRSe lines) and in a homozygous strain for the Adhn4 null allele. For each line, the genotype and sex LDs50 of both compounds were estimated. Then, in order to explain the differences in LD50, both alcohol dehydrogenase (ADH) and aldo keto reductase (AKR) activities were assayed. In addition, the effects of pentenone on AKR activity were also studied. Our results show that ADH-positive flies exhibit a much higher sensitivity to pentenol than ADH-null flies. However, both ADH-positive and ADH-null flies show a similar tolerance to pentenone. Our results show that flies selected for improving tolerance to ethanol also have increased tolerance to pentenol (FF and SS flies) and pentenone (SS flies). However, this improved ability to tolerate pentenol and/or pentenone cannot be explained by changes in ADH or AKR activities. On the other hand, we have observed a beneficial effect of pentenol, but not of pentenone, in n4 flies. We also show that AKR activity is not modified by the administration of pentenone. These results suggest that, in the absence of ADH activity, pentenol may be transformed into a compound that is less toxic than pentenone and that pentenone itself might also be transformed into a less toxic compound.

摘要

在两个分别为AdhF和AdhS等位基因的纯合品系(LRC品系)、各自选择的乙醇耐受性品系(LRSe品系)以及Adhn4无效等位基因的纯合菌株中,研究了黑腹果蝇成虫对1 - 戊烯 - 3 - 醇(戊烯醇)和1 - 戊烯 - 3 - 酮(戊烯酮)的解毒作用。对于每个品系,估计了两种化合物的基因型和性别半数致死剂量(LD50)。然后,为了解释LD50的差异,测定了乙醇脱氢酶(ADH)和醛酮还原酶(AKR)的活性。此外,还研究了戊烯酮对AKR活性的影响。我们的结果表明,ADH阳性的果蝇对戊烯醇的敏感性比ADH缺失的果蝇高得多。然而,ADH阳性和ADH缺失的果蝇对戊烯酮的耐受性相似。我们的结果表明,选择提高乙醇耐受性的果蝇对戊烯醇(FF和SS果蝇)和戊烯酮(SS果蝇)的耐受性也有所提高。然而,这种对戊烯醇和/或戊烯酮耐受性的提高不能用ADH或AKR活性的变化来解释。另一方面,我们在n4果蝇中观察到了戊烯醇的有益作用,但未观察到戊烯酮的有益作用。我们还表明,给予戊烯酮不会改变AKR活性。这些结果表明,在缺乏ADH活性的情况下,戊烯醇可能转化为毒性比戊烯酮小的化合物,并且戊烯酮本身也可能转化为毒性较小的化合物。

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