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Interaction of structure-specific and promiscuous G-protein–coupled receptors mediates small-molecule signaling in Caenorhabditis elegans

机译:结构特异性和混杂的G蛋白偶联受体的相互作用介导秀丽隐杆线虫中的小分子信号传导。

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摘要

A chemically diverse family of small-molecule signals, the ascarosides, control developmental diapause (dauer), olfactory learning, and social behaviors of the nematode model organism, Caenorhabditis elegans. The ascarosides act upstream of conserved signaling pathways, including the insulin, TGF-β, serotonin, and guanylyl cyclase pathways; however, the sensory processes underlying ascaroside function are poorly understood. Because ascarosides often are multifunctional and show strongly synergistic effects, characterization of their receptors will be essential for understanding ascaroside biology and may provide insight into molecular mechanisms that produce synergistic outcomes in small-molecule sensing. Based on DAF-8 immunoprecipitation, we here identify two G-protein–coupled receptors, DAF-37 and DAF-38, which cooperatively mediate ascaroside perception. daf-37 mutants are defective in all responses to ascr#2, one of the most potent dauer-inducing ascarosides, although this mutant responds normally to other ascarosides. In contrast, daf-38 mutants are partially defective in responses to several different ascarosides. Through cell-specific overexpression, we show that DAF-37 regulates dauer when expressed in ASI neurons and adult behavior when expressed in ASK neurons. Using a photoaffinity-labeled ascr#2 probe and amplified luminescence assays (AlphaScreen), we demonstrate that ascr#2 binds to DAF-37. Photobleaching fluorescent energy transfer assays revealed that DAF-37 and DAF-38 form heterodimers, and we show that heterodimerization strongly increases cAMP inhibition in response to ascr#2. These results suggest that that the ascarosides' intricate signaling properties result in part from the interaction of highly structure-specific G-protein–coupled receptors such as DAF-37 with more promiscuous G-protein–coupled receptors such as DAF-38.
机译:线虫模型线虫秀丽隐杆线虫的化学组成多样,由小分子信号分子组成,the螨甙可控制发育滞育(dauer),嗅觉学习和社交行为。 scar虫苷在保守的信号通路上游起作用,包括胰岛素,TGF-β,5-羟色胺和鸟苷酸环化酶通路。然而,关于a虫苷功能的感觉过程知之甚少。因为a虫苷通常是多功能的,并且显示出强烈的协同作用,所以其受体的表征对于理解a虫苷生物学将是必不可少的,并且可能提供对在小分子传感中产生协同结果的分子机制的见解。基于DAF-8免疫沉淀,我们在此处鉴定了两个G蛋白偶联受体DAF-37和DAF-38,它们协同介导a螨苷的感知。 daf-37突变体在对ascr#2的所有反应中均存在缺陷,ascr#2是最有效的诱导dauer的a虫病之一,尽管该突变体通常对其他a虫病也有反应。相反,daf-38突变体在对几种不同的a虫病的应答中部分缺陷。通过细胞特异性过表达,我们表明DAF-37在ASI神经元中表达时调节dauer,而在ASK神经元中表达时则调节成人行为。使用光亲和标记的ascr#2探针和放大的发光分析(AlphaScreen),我们证明了ascr#2与DAF-37结合。光漂白荧光能量转移测定揭示了DAF-37和DAF-38形成异二聚体,并且我们显示异二聚体强烈增加了对ascr#2的cAMP抑制。这些结果表明the虫病的复杂信号传导特性部分是由于高度结构特异性的G蛋白偶联受体(例如DAF-37)与更加混杂的G蛋白偶联受体(例如DAF-38)之间的相互作用所致。

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