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An epoxide hydrolase involved in the biosynthesis of an insect sex attractant and its use to localize the production site

机译:涉及昆虫性引诱剂生物合成的环氧化物水解酶及其在生产场所的定位

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摘要

Epoxide hydrolases (EHs) are enzymes occurring in virtually any living organism. They catalyze the hydrolysis of epoxide containing lipids and are involved in crucial mechanisms, such as the detoxification of xenobiotics or the regulation of inflammation and blood pressure. Here, we describe a function of a putative EH gene in the biosynthesis of a sex attractant in the jewel wasp Nasonia vitripennis and use this gene to localize the site of pheromone production. Males of this parasitic wasp release a mixture of (4R,5R)-(threo-) and (4R,5S)-(erythro-)5-hydroxy-4-decanolide (HDL) to attract virgin females. Using a stable isotope labeled precursor, we demonstrated that vernolic acid (erythro-12,13-epoxy-octadec-9Z-enoic acid) is converted by N. vitripennis males to threo-HDL. This suggested the involvement of an EH in hydrolyzing the fatty acid epoxide under inversion of the stereochemistry into the respective diol, which might be further processed by chain shortening and lactonization to HDL. We cloned a putative N. vitripennis EH gene (Nasvi-EH1) encoding 470 amino acids and localized its transcripts in the male rectal papillae by in situ RT-PCR. Chemical analyses and histological studies confirmed that males synthesize the sex attractant in the rectal vesicle and release it via the anal orifice. Involvement of Nasvi-EH1 in HDL biosynthesis was established by RNAi-mediated gene silencing. Injection of Nasvi-EH1 dsRNA into male abdomens inhibited pheromone biosynthesis by 55% and suppressed the targeted gene transcripts in the rectal vesicle by 95%.
机译:环氧水解酶(EHs)是实际上存在于任何活生物体中的酶。它们催化含环氧化物的脂质的水解,并参与重要的机制,例如异生物素的解毒或炎症和血压的调节。在这里,我们描述了假定的EH基因在珠宝黄蜂Nasonia vitripennis中的性引诱剂的生物合成中的功能,并使用该基因来定位信息素的生产位置。这种寄生性黄蜂的雄性释放(4R,5R)-(苏-)和(4R,5S)-(赤-)5-羟基-4-癸醇化物(HDL)的混合物以吸引处女。使用稳定的同位素标记的前体,我们证明了vernolic acid(erythro-12,13-epoxy-octadec-9Z-enoic acid)是由triptripennis男性转化为苏式-HDL的。这表明在立体化学转化为相应的二醇的过程中,EH参与了水解脂肪酸环氧化物的过程,这可能通过链缩短和内酯化为HDL进一步处理。我们克隆了推定的N. vitripennis EH基因(Nasvi-EH1),编码470个氨基酸,并通过原位RT-PCR将其转录本定位在雄性直肠乳头中。化学分析和组织学研究证实,男性合成了直肠囊泡中的性引诱剂,并通过肛门口将其释放。通过RNAi介导的基因沉默建立了Nasvi-EH1在HDL生物合成中的参与。将Nasvi-EH1 dsRNA注入雄性腹部可抑制信息素的生物合成55%,并抑制直肠囊泡中的目标基因转录本95%。

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