From the Departments of Pharmacology and.
J Biol Chem. 2014 Mar 21;289(12):8217-30. doi: 10.1074/jbc.M114.548636. Epub 2014 Feb 4.
The signaling molecule cAMP primarily mediates its effects by activating PKA and/or exchange protein activated by cAMP (Epac). Epac has been implicated in many responses in cells, but its precise roles have been difficult to define in the absence of Epac inhibitors. Epac, a guanine nucleotide exchange factor for the low molecular weight G protein Rap, is directly activated by cAMP. Using a bioluminescence resonance energy transfer-based assay (CAMYEL) to examine modulators of Epac activity, we took advantage of its intramolecular movement that occurs upon cAMP binding to assess Epac activation. We found that the use of CAMYEL can detect the binding of cAMP analogs to Epac and their modulation of its activity and can distinguish between agonists (cAMP), partial agonists (8-chlorophenylthio-cAMP), and super agonists (8-chlorophenylthio-2'-O-Me-cAMP). The CAMYEL assay can also identify competitive and uncompetitive Epac inhibitors, e.g. (Rp)-cAMPS and CE3F4, respectively. To confirm the results with the CAMYEL assay, we used Swiss 3T3 cells and assessed the ability of cyclic nucleotide analogs to modulate the activity of Epac or PKA, determined by Rap1 activity or VASP phosphorylation, respectively. We used computational molecular modeling to analyze the interaction of analogs with Epac1. The results reveal a rapid means to identify modulators (potentially including allosteric inhibitors) of Epac activity that also provides insight into the mechanisms of Epac activation and inhibition.
信号分子 cAMP 主要通过激活蛋白激酶 A(PKA)和/或 cAMP 激活的交换蛋白(Epac)来发挥作用。Epac 已被牵涉到细胞中的许多反应中,但在缺乏 Epac 抑制剂的情况下,其确切作用很难确定。Epac 是小分子 G 蛋白 Rap 的鸟嘌呤核苷酸交换因子,可被 cAMP 直接激活。我们使用基于生物发光共振能量转移的测定法(CAMYEL)来研究 Epac 活性的调节剂,利用其在 cAMP 结合时发生的分子内运动来评估 Epac 的激活情况。我们发现,CAMYEL 的使用可以检测 cAMP 类似物与 Epac 的结合及其对其活性的调节作用,并可以区分激动剂(cAMP)、部分激动剂(8-氯苯基硫代-cAMP)和超激动剂(8-氯苯基硫代-2'-O-Me-cAMP)。CAMYEL 测定法还可以识别竞争性和非竞争性的 Epac 抑制剂,例如(Rp)-cAMPS 和 CE3F4。为了用 CAMYEL 测定法确认结果,我们使用瑞士 3T3 细胞,分别通过 Rap1 活性或 VASP 磷酸化来评估环核苷酸类似物调节 Epac 或 PKA 活性的能力。我们使用计算分子建模来分析类似物与 Epac1 的相互作用。结果揭示了一种快速识别 Epac 活性调节剂(可能包括别构抑制剂)的方法,这也为 Epac 激活和抑制的机制提供了深入了解。