Institute of Experimental Pediatric Endocrinology, Charité Universitätsmedizin Berlin, Berlin, Germany.
PLoS One. 2013;8(1):e53347. doi: 10.1371/journal.pone.0053347. Epub 2013 Jan 15.
The G-protein coupled receptor 83 (GPR83) is an orphan G-protein coupled receptor for which the natural ligand(s) and signaling pathway(s) remain to be identified. Previous studies suggest a role of GPR83 in the regulation of thermogenesis and the control of circulating adiponectin. The aim of this study was to gain insights into the molecular underpinnings underlying GPR83 signaling. In particular, we aimed to assess the underlying G-protein activated signaling pathway of GPR83 and how this pathway is affected by mutational activation and zinc(II) challenge. Finally, we assessed the capacity of GPR83 for homodimerization. Our results show for the first time that mouse (m) GPR83 has high basal Gq/11 activity without affecting Gi or Gs signaling. Furthermore, we found that, under physiological conditions, zinc(II) (but not calcium(II) and magnesium(II)) potently activates mGPR83, thus identifying zinc(II) as an endogenous molecule with agonistic capability to activate mGPR83. In line with the observation that zinc(II)-ions activate mGPR83, we identified a cluster of ion-binding sensitive amino acids (e.g. His145, His204, Cys207, Glu217) in an activation sensitive receptor region of mGPR83. The occurrence of a constitutive activating mutant and a zinc(II)-binding residue at the N-terminal part corroborate the importance of this region in mGPR83 signal regulation. Finally, our results indicate that mGPR83 forms homodimers, which extend the current knowledge and molecular facets of GPR83 signaling.
G 蛋白偶联受体 83(GPR83)是一种孤儿 G 蛋白偶联受体,其天然配体和信号通路仍有待确定。先前的研究表明,GPR83 在调节产热和控制循环脂联素方面发挥作用。本研究旨在深入了解 GPR83 信号转导的分子基础。特别是,我们旨在评估 GPR83 潜在的 G 蛋白激活信号通路,以及这种通路如何受到突变激活和锌(II)挑战的影响。最后,我们评估了 GPR83 形成同源二聚体的能力。我们的研究结果首次表明,鼠(m)GPR83 具有高基础 Gq/11 活性,而不影响 Gi 或 Gs 信号。此外,我们发现,在生理条件下,锌(II)(而不是钙(II)和镁(II))强烈激活 mGPR83,从而确定锌(II)作为一种具有激活 mGPR83 能力的内源性分子。与锌(II)离子激活 mGPR83 的观察结果一致,我们在 mGPR83 的激活敏感受体区域中鉴定出一组离子结合敏感氨基酸(例如 His145、His204、Cys207、Glu217)。在 N 端部分存在组成性激活突变体和锌(II)结合残基,这证实了该区域在 mGPR83 信号调节中的重要性。最后,我们的结果表明,mGPR83 形成同源二聚体,这扩展了 GPR83 信号的当前知识和分子方面。