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Structural basis for juvenile hormone biosynthesis by the juvenile hormone acid methyltransferase

机译:青少年激素甲基转移酶幼年激素生物合成的结构基础

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Juvenile hormone (JH) acid methyltransferase (JHAMT) is a rate-limiting enzyme that converts JH acids or inactive precursors of JHs to active JHs at the final step of JH biosynthesis in insects and thus presents an excellent target for the development of insect growth regulators or insecticides. However, the three-dimensional properties and catalytic mechanism of this enzyme are not known. Herein, we report the crystal structure of the JHAMT apoenzyme, the three-dimensional holoprotein in binary complex with its cofactor S-adenosyl-Lhomocysteine, and the ternary complex with S-adenosyl-L-homocysteine and its substrate methyl farnesoate. These structures reveal the ultrafine definition of the binding patterns for JHAMT with its substrate/cofactor. Comparative structural analyses led to novel findings concerning the structural speci- ficity of the progressive conformational changes required for binding interactions that are induced in the presence of cofactor and substrate. Importantly, structural and biochemical analyses enabled identification of one strictly conserved catalytic Gln/His pair within JHAMTs required for catalysis and further provide a molecular basis for substrate recognition and the catalytic mechanism of JHAMTs. These findings lay the foundation for the mechanistic understanding of JH biosynthesis by JHAMTs and provide a rational framework for the discovery and development of specific JHAMT inhibitors as insect growth regulators or insecticides.
机译:幼年激素(JH)酸甲基转移酶(JHAMT)是一种速率限制酶,其在昆虫中的JH生物合成的最后步骤中将JH酸或惰性前体转化为活性JHS,因此提出了昆虫生长调节剂的发育的优异靶标或杀虫剂。然而,该酶的三维性质和催化机制是未知的。在此,我们将JHAMT雌性的晶体结构报告,二元络合物中的三维全蛋白酶与其辅助腺体S-腺苷 - Lhomocysteine以及与S-腺苷-1-同型半胱氨酸的三元络合物及其底物甲基芳烃。这些结构揭示了JHAMT与其基材/辅因子的结合图案的超细定义。对比结构分析导致了关于在辅因子和底物存在下诱导的结合相互作用所需的渐进构象变化的结构规范的新发现。重要的是,结构和生化分析能够在催化所需的jHamts内识别一个严格保守的催化Gln /他对,并进一步为底物识别和jhamts的催化机制提供分子基础。这些发现为JHAMTS对JH生物合成的机械理解的基础,并为发现和开发特定的JHAMT抑制剂作为昆虫生长调节剂或杀虫剂提供了理性框架。

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