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Expression and characterization of an epoxide hydrolase from Anopheles gambiae with high activity on epoxy fatty acids

机译:冈比亚按蚊环氧活性高的环氧脂肪酸的表达与表征

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摘要

In insects, epoxide hydrolases (EHs) play critical roles in the metabolism of xenobiotic epoxides from the food resources and in the regulation of endogenous chemical mediators, such as juvenile hormones. Using the baculovirus expression system, we expressed and characterized an epoxide hydrolase from Anopheles gambiae (AgEH) that is distinct in evolutionary history from insect juvenile hormone epoxide hydrolases (JHEHs). We partially purified the enzyme by ion exchange chromatography and isoelectric focusing. The experimentally determined molecular weight and pI were estimated to be 35kD and 6.3 respectively, different than the theoretical ones. The AgEH had the greatest activity on long chain epoxy fatty acids such as 14,15-epoxyeicosatrienoic acids (14,15-EET) and 9,10-epoxy-12Z-octadecenoic acids (9,10-EpOME or leukotoxin) among the substrates evaluated. Juvenile hormone III, a terpenoid insect growth regulator, was the next best substrate tested. The AgEH showed kinetics comparable to the mammalian soluble epoxide hydrolases, and the activity could be inhibited by AUDA [12-(3-adamantan-1-yl-ureido) dodecanoic acid], a urea-based inhibitor designed to inhibit the mammalian soluble epoxide hydrolases. The rabbit serum generated against the soluble epoxide hydrolase of Mus musculus can both cross-react with natural and denatured forms of the AgEH, suggesting immunologically they are similar. The study suggests there are mammalian sEH homologs in insects, and epoxy fatty acids may be important chemical mediators in insects.
机译:在昆虫中,环氧化物水解酶(EHs)在来自食物资源的异源环氧化物的代谢中以及在调节内源性化学介质(例如少年激素)中起关键作用。使用杆状病毒表达系统,我们表达和表征了冈比亚按蚊(AgEH)的环氧化物水解酶,该酶在进化史上与昆虫幼激素环氧化物水解酶(JHEHs)不同。我们通过离子交换色谱法和等电聚焦对酶进行了部分纯化。实验确定的分子量和pI分别为35kD和6.3,与理论值不同。 AgEH对底物中的长链环氧脂肪酸(例如14,15-环氧二十碳三烯酸(14,15-EET)和9,10-环氧-12Z-十八烯酸(9,10-EpOME或白细胞毒素))具有最大的活性。评估。少年类激素III(萜类昆虫生长调节剂)是次要测试的最佳底物。 AgEH显示出与哺乳动物可溶性环氧化物水解酶相当的动力学,其活性可以被AUDA [12-(3-金刚烷-1-基-脲基)十二烷酸]抑制,这是一种脲基抑制剂,旨在抑制哺乳动物可溶性环氧化物水解酶。抗小家鼠可溶性环氧水解酶产生的兔血清可以与天然和变性形式的AgEH发生交叉反应,这在免疫学上表明它们是相似的。研究表明,昆虫中存在哺乳动物的sEH同源物,环氧脂肪酸可能是昆虫中重要的化学介质。

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