Daimon Takaaki, Shinoda Tetsuro
National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, Japan.
Biotechnol Appl Biochem. 2013 Jan-Feb;60(1):82-91. doi: 10.1002/bab.1058. Epub 2013 Jan 11.
Juvenile hormones (JHs) represent a family of sesquiterpenoid hormones in insects, and they play a key role in regulating development, metamorphosis, and reproduction. The last two steps of the JH biosynthetic pathway, epoxidation and methyl esterification of farnesoic acid to JH, are insect specific, and thus have long been considered a promising target for biorational insecticides. Recently, the enzymes involved in the last two steps have been molecularly identified: JH acid methyltransferase catalyzes the esterification step and the cytochrome P450 CYP15 enzyme catalyzes the epoxidation step. In this review, we describe the recent progress on the characterization of JH biosynthetic enzymes, with special focus on the function and diversity of the CYP15 family. CYP15 genes have evolved lineage-specific substrate specificity and regulatory mechanisms in insects, which appear to be associated with the lineage-specific acquisition of unique JH structure and function. In addition, the lack of CYP15 genes in crustacean (Daphnia pulex) and arachnid (Tetranychus urticae) species, whose genomes have been fully sequenced, may imply that CYP15 enzymes are an evolutionary innovation in insects to use the epoxide forms of methylated farnesoid molecules as their principal JHs. Molecular identification and characterization of CYP15 genes from broad taxa of insects have paved the way to the design of target-specific, biorational anti-JH agents.
保幼激素(JHs)是昆虫体内的一类倍半萜类激素,在调节发育、变态和繁殖过程中发挥着关键作用。保幼激素生物合成途径的最后两步,即法尼酸环氧化和甲基酯化形成保幼激素,是昆虫特有的,因此长期以来一直被认为是生物合理杀虫剂的一个有前景的靶点。最近,参与最后两步的酶已被分子鉴定:保幼激素酸甲基转移酶催化酯化步骤,细胞色素P450 CYP15酶催化环氧化步骤。在这篇综述中,我们描述了保幼激素生物合成酶表征方面的最新进展,特别关注CYP15家族的功能和多样性。CYP15基因在昆虫中进化出了谱系特异性的底物特异性和调控机制,这似乎与独特保幼激素结构和功能的谱系特异性获得有关。此外,在基因组已被完全测序的甲壳类动物(大型溞)和蛛形纲动物(二斑叶螨)物种中缺乏CYP15基因,这可能意味着CYP15酶是昆虫中的一种进化创新,用于将甲基化法尼醇分子的环氧化物形式用作其主要保幼激素。对广泛昆虫类群的CYP15基因进行分子鉴定和表征,为设计靶向特异性、生物合理的抗保幼激素剂铺平了道路。