Department of Pharmacology, University of Cambridge, Cambridge, UK.
EMBO J. 2010 Aug 18;29(16):2772-87. doi: 10.1038/emboj.2010.168. Epub 2010 Jul 27.
Biochemical studies suggest that G-protein-coupled receptors (GPCRs) achieve exquisite signalling specificity by forming selective complexes, termed signalosomes. Here, using cAMP biosensors in single cells, we uncover a pre-assembled, constitutively active GPCR signalosome, that couples the relaxin receptor, relaxin family peptide receptor 1 (RXFP1), to cAMP following receptor stimulation with sub-picomolar concentrations of peptide. The physiological effects of relaxin, a pleiotropic hormone with therapeutic potential in cancer metastasis and heart failure, are generally attributed to local production of the peptide, that occur in response to sub-micromolar concentrations. The highly sensitive signalosome identified here provides a regulatory mechanism for the extremely low levels of relaxin that circulate. The signalosome includes requisite Galpha(s), Gbetagamma and adenylyl cyclase 2 (AC2); AC2 is functionally coupled to RXFP1 through AKAP79 binding to helix 8 of the receptor; activation of AC2 is tonically opposed by protein kinase A (PKA)-activated PDE4D3, scaffolded through a beta-arrestin 2 interaction with Ser(704) of the receptor C-terminus. This elaborate, pre-assembled, ligand-independent GPCR signalosome represents a new paradigm in GPCR signalling and provides a mechanism for the distal actions of low circulating levels of relaxin.
生化研究表明,G 蛋白偶联受体(GPCRs)通过形成选择性复合物,即信号osomes,实现了精确的信号特异性。在这里,我们使用单个细胞中的 cAMP 生物传感器,揭示了一种预先组装的、组成性激活的 GPCR 信号osomes,它在肽浓度低于皮摩尔时刺激受体后,将松弛素受体、松弛素家族肽受体 1(RXFP1)与 cAMP 偶联。松弛素是一种具有治疗癌症转移和心力衰竭潜力的多功能激素,其生理作用通常归因于肽的局部产生,这种产生是对亚微米浓度的反应。这里鉴定的高度敏感的信号osomes 为循环中极低水平的松弛素提供了一种调节机制。信号osomes 包括必需的 Galpha(s)、Gbetagamma 和腺苷酸环化酶 2(AC2);AC2 通过 AKAP79 与受体的 8 螺旋结合,与 RXFP1 功能偶联;通过与受体 C 末端丝氨酸 704 相互作用的β-arrestin 2 将蛋白激酶 A(PKA)激活的 PDE4D3 支架化,从而抑制 AC2 的激活。这种精心设计的、预先组装的、配体非依赖性 GPCR 信号osomes 代表了 GPCR 信号传递的一个新范例,并为低循环水平的松弛素的远程作用提供了一种机制。