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N-Arachidonyl Glycine Does Not Activate G Protein–Coupled Receptor 18 Signaling via Canonical Pathways

机译:N-花生四烯酸甘氨酸不激活G蛋白偶联受体18信号通过规范性途径

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摘要

Recent studies propose that N-arachidonyl glycine (NAGly), a carboxylic analogue of anandamide, is an endogenous ligand of the Gαi/o protein–coupled receptor 18 (GPR18). However, a high-throughput β-arrestin–based screen failed to detect activation of GPR18 by NAGly (; JBC, 18:12328). To address this inconsistency, this study investigated GPR18 coupling in a native neuronal system with endogenous signaling pathways and effectors. GPR18 was heterologously expressed in rat sympathetic neurons, and the modulation of N-type (Cav2.2) calcium channels was examined. Proper expression and trafficking of receptor were confirmed by the “rim-like” fluorescence of fluorescently tagged receptor and the positive staining of external hemagglutinin-tagged GPR18-expressing cells. Application of NAGly on GPR18-expressing neurons did not inhibit calcium currents but instead potentiated currents in a voltage-dependent manner, similar to what has previously been reported (Guo et al., 2008; J Neurophysiol, 100:1147). Other proposed agonists of GPR18, including anandamide and abnormal cannabidiol, also failed to induce inhibition of calcium currents. Mutants of GPR18, designed to constitutively activate receptors, did not tonically inhibit calcium currents, indicating a lack of GPR18 activation or coupling to endogenous G proteins. Other downstream effectors of Gαi/o-coupled receptors, G protein–coupled inwardly rectifying potassium channels and adenylate cyclase, were not modulated by GPR18 signaling. Furthermore, GPR18 did not couple to other G proteins tested: Gαs, Gαz, and Gα15. These results suggest NAGly is not an agonist for GPR18 or that GPR18 signaling involves noncanonical pathways not examined in these studies.
机译:最近的研究表明,N-花生四烯酸甘氨酸(NAGly)是金刚烷酰胺的羧基类似物,是Gαi/ o蛋白偶联受体18(GPR18)的内源性配体。但是,基于高通量β-arrestin的筛查未能检测到NAGly对GPR18的激活(; JBC,18:12328)。为了解决这种矛盾,本研究调查了具有内源性信号传导途径和效应子的天然神经系统中的GPR18偶联。 GPR18在大鼠交感神经元中异源表达,并检查了N型(Cav2.2)钙通道的调节。通过荧光标记受体的“边缘样”荧光和外部血凝素标记的GPR18表达细胞的阳性染色,可以确认受体的正确表达和运输。 NAGly在表达GPR18的神经元上的应用并没有抑制钙电流,而是以电压依赖性方式增强了电流,这与以前的报道相似(Guo等,2008; J Neurophysiol,100:1147)。 GPR18的其他拟议激动剂,包括阿南酰胺和异常的大麻二酚,也未能诱导抑制钙电流。设计用于组成性激活受体的GPR18突变体并未在声调上抑制钙电流,表明GPR18缺乏激活或与内源G蛋白偶联。 Gαi/ o偶联受体的其他下游效应子,G蛋白偶联的内向整流钾通道和腺苷酸环化酶,不受GPR18信号传导的调节。此外,GPR18不与测试的其他G蛋白偶联:Gαs,Gαz和Gα15。这些结果表明,NAGly不是GPR18的激动剂,或者GPR18信号传导涉及这些研究中未研究的非经典途径。

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