*Department of Pharmacology and Clinical Pharmacy, Philipps-Universität Marburg, 35032 Marburg, Germany.
†Institute of Pharmacology, Philipps-Universität Marburg, 35032 Marburg, Germany.
Biochem J. 2014 Feb 15;458(1):131-40. doi: 10.1042/BJ20130782.
Some G-protein-coupled receptors regulate biological processes via Gα12/13- or Gαq/11-mediated stimulation of RhoGEFs (guanine-nucleotide-exchange factors). p63RhoGEF is known to be specifically activated by Gαq/11 and mediates a major part of the acute response of vascular smooth muscle cells to angiotensin II treatment. In order to gain information about the dynamics of receptor-mediated activation of p63RhoGEF, we developed a FRET-based assay to study interactions between Gαq-CFP and Venus-p63RhoGEF in single living cells. Upon activation of histaminergic H1 or muscarinic M3 receptors, a robust FRET signal occurred that allowed for the first time the analysis of the kinetics of this interaction in detail. On- and off-set kinetics of Gαq-p63RhoGEF interactions closely resembled the kinetics of Gαq activity. Analysis of the effect of RGS2 (regulator of G-protein signalling 2) on the dynamics of Gαq activity and their interaction with p63RhoGEF showed that RGS2 is able to accelerate both deactivation of Gαq proteins and dissociation of Gαq and p63RhoGEF to a similar extent. Furthermore, we were able to detect activation-dependent FRET between RGS2 and p63RhoGEF and observed a reduced p63RhoGEF-mediated downstream signalling in the presence of RGS2. In summary, these observations support the concept of a functional activation-dependent p63RhoGEF-Gαq-RGS2 complex.
一些 G 蛋白偶联受体通过 Gα12/13 或 Gαq/11 介导的 RhoGEFs(鸟苷酸交换因子)刺激来调节生物过程。已知 p63RhoGEF 被 Gαq/11 特异性激活,并介导血管平滑肌细胞对血管紧张素 II 治疗的急性反应的主要部分。为了获得关于受体介导的 p63RhoGEF 激活的动力学信息,我们开发了一种基于 FRET 的测定法来研究单个活细胞中 Gαq-CFP 和 Venus-p63RhoGEF 之间的相互作用。在组胺能 H1 或毒蕈碱 M3 受体被激活后,会产生强烈的 FRET 信号,从而首次能够详细分析这种相互作用的动力学。Gαq-p63RhoGEF 相互作用的开启和关闭动力学与 Gαq 活性的动力学非常相似。分析 RGS2(G 蛋白信号转导调节因子 2)对 Gαq 活性动力学及其与 p63RhoGEF 的相互作用的影响表明,RGS2 能够以相似的程度加速 Gαq 蛋白的失活和 Gαq 和 p63RhoGEF 的解离。此外,我们能够检测到 RGS2 和 p63RhoGEF 之间激活依赖性的 FRET,并观察到在存在 RGS2 的情况下 p63RhoGEF 介导的下游信号转导减少。总之,这些观察结果支持了功能性激活依赖性 p63RhoGEF-Gαq-RGS2 复合物的概念。