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一种具有不同底物特异性的Δ9去饱和酶基因导致了黑腹果蝇表皮二烯碳氢化合物的多态性。

A delta 9 desaturase gene with a different substrate specificity is responsible for the cuticular diene hydrocarbon polymorphism in Drosophila melanogaster.

作者信息

Dallerac R, Labeur C, Jallon J M, Knipple D C, Roelofs W L, Wicker-Thomas C

机构信息

Université Paris-Sud, Unité Mixte de Recherche 8620, Neurobiologie et Apprentissage de la Mémoire et de la Communication, Orsa, France.

出版信息

Proc Natl Acad Sci U S A. 2000 Aug 15;97(17):9449-54. doi: 10.1073/pnas.150243997.

DOI:10.1073/pnas.150243997
PMID:10920187
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC16884/
Abstract

Drosophila melanogaster cuticular pheromones consist of unsaturated hydrocarbons with at least one double bond in position 7: 7 tricosene (T) in males and 7,11 heptacosadiene (HD) in females. However, in many African populations like the Tai strain, females possess low levels of 7,11 HD and high levels of its positional isomer 5,9 HD. We have previously isolated a desaturase gene, desat1, from the Canton-S strain (CS), a 7,11 HD-2-rich morph of D. melanogaster. This desaturase is located in 87C, a locus that has been involved in the difference between 7,11 HD and 5,9 HD morphs. Therefore, we have searched for different desaturase isoforms in both strains. We first cloned desat1 in the Tai strain and report here functional expression of desat1 in CS and Tai. In both strains, the Desat1 enzymes have the same Delta9 specificity and preferentially use palmitate as a substrate, leading to the synthesis of omega7 fatty acids. Also found was a desaturase sequence, named desat2, with a homologous catalytic domain and a markedly different N-terminal domain compared with desat1. In CS genome, it lies 3.8 kb upstream of desat1 and is not transcribed in either sex. In the Tai strain, it is expressed only in females and acts preferentially on myristate, leading to the synthesis of omega5 fatty acids. We suggest, therefore, that desat2 might play a control role in the biosynthesis of 5,9 HD hydrocarbons in Tai females and could explain the dienic hydrocarbon polymorphism in D. melanogaster.

摘要

黑腹果蝇的表皮信息素由在第7位至少有一个双键的不饱和烃组成:雄性为7 - 二十三碳烯(T),雌性为7,11 - 二十七碳二烯(HD)。然而,在许多非洲种群如Tai品系中,雌性7,11 HD水平较低,而其位置异构体5,9 HD水平较高。我们之前从黑腹果蝇的一个富含7,11 HD - 2的品系Canton - S(CS)中分离出了一个去饱和酶基因desat1。这种去饱和酶位于87C,该位点与7,11 HD和5,9 HD形态之间的差异有关。因此,我们在这两个品系中寻找不同的去饱和酶同工型。我们首先在Tai品系中克隆了desat1,并在此报告desat1在CS和Tai中的功能表达。在这两个品系中,Desat1酶具有相同的Δ9特异性,并且优先使用棕榈酸作为底物,从而导致ω7脂肪酸的合成。还发现了一个去饱和酶序列,命名为desat2,与desat1相比,它具有同源催化结构域和明显不同的N端结构域。在CS基因组中,它位于desat1上游3.8 kb处,在两性中均不转录。在Tai品系中,它仅在雌性中表达,并且优先作用于肉豆蔻酸,从而导致ω5脂肪酸的合成。因此,我们认为desat2可能在Tai雌性中5,·9 HD碳氢化合物的生物合成中起控制作用,并可以解释黑腹果蝇中双烯碳氢化合物的多态性。

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