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昆虫蜕皮激素受体对配体具有高度的立体选择性,与其广泛的激动剂谱形成鲜明对比。

Exquisite ligand stereoselectivity of a juvenile hormone receptor contrasts with its broad agonist repertoire.

机构信息

From the Biology Center of the Czech Academy of Sciences, Institute of Entomology, Ceske Budejovice 370 05, Czech Republic and.

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Prague 166 10, Czech Republic.

出版信息

J Biol Chem. 2019 Jan 11;294(2):410-423. doi: 10.1074/jbc.RA118.005992. Epub 2018 Nov 19.

Abstract

The sesquiterpenoid juvenile hormone (JH) is vital to insect development and reproduction. Intracellular JH receptors have recently been established as basic helix-loop-helix transcription factor (bHLH)/PAS proteins in known as germ cell-expressed (Gce) and its duplicate paralog, methoprene-tolerant (Met). Upon binding JH, Gce/Met activates its target genes. Insects possess multiple native JH homologs whose molecular activities remain unexplored, and diverse synthetic compounds including insecticides exert JH-like effects. How the JH receptor recognizes its ligands is unknown. To determine which structural features define an active JH receptor agonist, we tested several native JHs and their nonnative geometric and optical isomers for the ability to bind the JH receptor Gce, to induce Gce-dependent transcription, and to affect the development of the fly. Our results revealed high ligand stereoselectivity of the receptor. The geometry of the JH skeleton, dictated by two stereogenic double bonds, was the most critical feature followed by the presence of an epoxide moiety at a terminal position. The optical isomerism at carbon C11 proved less important even though Gce preferentially bound a natural JH enantiomer. The results of receptor-ligand-binding and cell-based gene activation assays tightly correlated with the ability of different geometric JH isomers to induce gene expression and morphogenetic effects in the developing insects. Molecular modeling supported the requirement for the proper double-bond geometry of JH, which appears to be its major selective mechanism. The strict stereoselectivity of Gce toward the natural hormone contrasts with the high potency of synthetic Gce agonists of disparate chemistries.

摘要

倍半萜类保幼激素 (JH) 对昆虫的发育和繁殖至关重要。最近在已知的生殖细胞表达 (Gce) 和其重复的旁系同源物,即对灭幼脲 (Met) 中,细胞内 JH 受体被确立为基本螺旋-环-螺旋转录因子 (bHLH)/PAS 蛋白。在与 JH 结合后,Gce/Met 激活其靶基因。昆虫具有多种未被探索的天然 JH 同系物,其分子活性仍不清楚,并且包括杀虫剂在内的多种合成化合物具有类 JH 作用。JH 受体如何识别其配体尚不清楚。为了确定哪些结构特征定义了活性 JH 受体激动剂,我们测试了几种天然 JH 及其非天然的几何和光学异构体与 JH 受体 Gce 的结合能力、诱导 Gce 依赖性转录的能力以及对苍蝇发育的影响。我们的结果显示受体对配体具有高度的立体选择性。由两个手性双键决定的 JH 骨架的几何形状是最关键的特征,其次是末端环氧基团的存在。碳 C11 的光学异构性虽然不太重要,但 Gce 更倾向于结合天然 JH 对映体。受体-配体结合和基于细胞的基因激活测定的结果与不同几何 JH 异构体在诱导发育中昆虫基因表达和形态发生效应的能力紧密相关。分子建模支持 JH 适当双键几何形状的要求,这似乎是其主要的选择性机制。Gce 对天然激素的严格立体选择性与不同化学性质的合成 Gce 激动剂的高效力形成对比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cb2/6333893/5460fe7b59ec/zbc0031999260001.jpg

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