首页> 外文期刊>The Journal of biological chemistry >An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors
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An ionic lock and a hydrophobic zipper mediate the coupling between an insect pheromone receptor BmOR3 and downstream effectors

机译:离子锁和疏水性拉链介导昆虫信息素受体Bmor3和下游效应之间的偶联

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Pheromone receptors (PRs) recognize specific pheromone compounds to guide the behavioral outputs of insects, which are the most diverse group of animals on earth. The activation of PRs is known to couple to the calcium permeability of their coreceptor (Orco) or putatively with G proteins; however, the underlying mechanisms of this process are not yet fully understood. Moreover, whether this transverse seven transmembrane domain (7TM)-containing receptor is able to couple to arrestin, a common effector for many conventional 7TM receptors, is unknown. Herein, using the PR BmOR3 from the silk moth Bombyx mori and its coreceptor BmOrco as a template, we revealed that an agonist-induced conformational change of BmOR3 was transmitted to BmOrco through transmembrane segment 7 from both receptors, resulting in the activation of BmOrco. Key interactions, including an ionic lock and a hydrophobic zipper, are essential in mediating the functional coupling between BmOR3 and BmOrco. BmOR3 also selectively coupled with Gi proteins, which was dispensable for BmOrco coupling. Moreover, we demonstrated that trans-7TM BmOR3 recruited arrestin in an agonist-dependent manner, which indicates an important role for BmOR3– BmOrco complex formation in ionotropic functions. Collectively, our study identified the coupling of G protein and arrestin to a prototype trans-7TM PR, BmOR3, and provided important mechanistic insights into the coupling of active PRs to their downstream effectors, including coreceptors, G proteins, and arrestin.
机译:信息素受体(PRS)识别特定的信息素化合物以引导昆虫的行为产出,这是地球上最多样化的动物组。已知对PRS的激活耦合到其团簇(ORCO)的钙渗透性或借助于G蛋白;然而,该过程的潜在机制尚未完全理解。此外,该横向七跨膜结构域(7TM)致盲临床是否能够将许多常规7TM受体的共同效应耦合,是未知的。这里,使用来自丝绸蛾Bombyx森及其团簇Bmorco作为模板的Pr Bmor3,我们揭示了通过来自两个受体的跨膜段7传递给Bmorco的激动剂诱导的构象变化,从而导致Bmorco的激活。关键相互作用,包括离子锁和疏水性拉链,对于介导BMOR3和BMORCO之间的功能耦合是必不可少的。 BMOR3还选择性地与GI蛋白结合,可分配用于BMORCO偶联。此外,我们证明Trans-7TM Bmor3以激动剂依赖性方式募集诱导,这表明BMOR3- BMORCO复合物在离子统定功能中的重要作用。统称,我们的研究将G蛋白和捕获的偶联与原型Trans-7TM PR,BMOR3的偶联,并为其下游效应器的偶联提供了重要的机械洞察,包括团簇,G蛋白和诱导。

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