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A cytochrome P450 from the mustard leaf beetles hydroxylates geraniol, a key step in iridoid biosynthesis

机译:来自芥末叶甲虫的细胞色素P450羟基甲基醇,虹膜中的一个关键步骤生物合成

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Larvae of the leaf beetle Phaedon cochleariae synthesize the iridoid chysomelidial via the mevalonate pathway to repel predators. The normal terpenoid biosynthesis is integrated into the dedicated defensive pathway by the omega-hydroxylation of geraniol to (2E,6E)-2,6-dimethylocta-2,6-diene-1,8-diol (omega-OH-geraniol). Here we identify and characterize the P450 monooxygenase CYP6BH5 as the geraniol hydroxylase using integrated transcriptomics, proteomics and RNA interference (RNAi). In the fat body, 73 cytochrome P450s were identified, and CYP6BH5 was among those that were expressed specifically in fat body. Double stranded RNA mediated knockdown of CYP6BH5 led to a significant reduction of omega-hydroxygeraniol glucoside in the hemolymph and, later, of the chrysomelidial in the defensive secretion. Heterologously expressed CYP6BH5 converted geraniol to omega-OH-geraniol. In addition to geraniol, CYP6BH5 also catalyzes hydroxylation of other monoterpenols, such as nerol and citronellol to the corresponding alpha,omega-dihydroxy compounds.
机译:叶片甲虫幼耳幼耳的幼虫通过甲丙酸盐途径合成伊瓦替替偶核细胞蛋白,以排斥捕食者。正常的三萜类生物合成通过大烷的ω-羟基化综合成为巨大的防御性途径(2E,6e)-2,6-二甲基-2,6-二烯-1,8-二醇(Omega-Oh-Geraniol)。在这里,我们使用集成的转录组织,蛋白质组学和RNA干扰(RNAi)鉴定并表征P450单氧基酶CYP6BH5作为Geraniol羟化物。在脂肪体中,鉴定了73个细胞色素P450s,CYP6BH5是特异性在脂肪体中表达的CYP6BH5。双链RNA介导的CYP6BH5的敲低导致血淋巴中的ω-羟基醇葡萄糖苷的显着降低,后来,在防守分泌中的菊粉。异源表达的CYP6BH5转化为ω-OH-GERANIOL的Geraniol。除了甲苯醇之外,CYP6BH5还催化于其他单波培酚的羟基化,例如Nerol和Citronellol至相应的α,ω-二羟基化合物。

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