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果蝇中乙醇脱氢酶水平的遗传控制。

Genetic control of alcohol dehydrogenase levels in Drosophila.

作者信息

Maroni G

出版信息

Biochem Genet. 1978 Jun;16(5-6):509-23. doi: 10.1007/BF00484215.

Abstract

Among the progeny of Drosophila flies heterozygous for two noncomplementing Adh-negative alleles, two individuals were found that had recovered appreciable alcohol dehydrogenase activity, thereby surviving the ethanol medium used as a screen. The most likely explanation is that these Adh-positive flies are the product of intracistronic recombination within the Adh locus. Judging by the distribution of outside markers, one of the crossovers would have been a conventional reciprocal exchange while the other appears to have been an instance of nonreciprocal recombination. The enzymes produced in strains derived from the original survivors can be easily distinguished from wild-type enzymes ADH-S and ADH-F on the basis of their sensitivity to denaturing agents. None of various physical and catalytic properties tested revealed differences between the enzymes of the survivor strains except that in one of them the level of activity is 55--65% of the other. Quantitative immunological determinations of ADH gave estimates of enzyme protein which are proportional to the measured activity levels. These results are interpreted to indicate that different amounts of ADH protein are being accumulated in the two strains.

摘要

在两个非互补的乙醇脱氢酶(Adh)阴性等位基因杂合的果蝇后代中,发现有两个个体恢复了可观的乙醇脱氢酶活性,从而在用作筛选的乙醇培养基中存活下来。最可能的解释是,这些Adh阳性果蝇是Adh基因座内顺反子内重组的产物。从外部标记的分布判断,其中一次交换是常规的相互交换,而另一次似乎是非相互重组的实例。根据它们对变性剂的敏感性,很容易将源自原始存活者的菌株中产生的酶与野生型酶ADH-S和ADH-F区分开来。除了其中一个菌株的活性水平是另一个的55%-65%之外,所测试的各种物理和催化特性均未显示存活菌株的酶之间存在差异。对ADH进行的定量免疫测定得出的酶蛋白估计值与测得的活性水平成正比。这些结果被解释为表明两种菌株中积累的ADH蛋白量不同。

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