Holz George G, Chepurny Oleg G, Schwede Frank
Department of Physiology and Neuroscience, New York University School of Medicine, New York, NY, USA.
Cell Signal. 2008 Jan;20(1):10-20. doi: 10.1016/j.cellsig.2007.07.009. Epub 2007 Jul 25.
The identification of 2'-O-methyl substituted adenosine-3',5'-cyclic monophosphate (cAMP) analogs that activate the Epac family of cAMP-regulated guanine nucleotide exchange factors (cAMP-GEFs, also known as Epac1 and Epac2), has ushered in a new era of cyclic nucleotide research in which previously unrecognized signalling properties of the second messenger cAMP have been revealed. These Epac-Selective Cyclic AMP Analogs (ESCAs) incorporate a 2'-O-methyl substitution on the ribose ring of cAMP, a modification that impairs their ability to activate protein kinase A (PKA), while leaving intact their ability to activate Epac (the Exchange Protein directly Activated by Cyclic AMP). One such ESCA in wide-spread use is 8-pCPT-2'-O-Me-cAMP. It is a cell-permeant derivative of 2'-O-Me-cAMP, and it is a super activator of Epac. A wealth of newly published studies demonstrate that 8-pCPT-2'-O-Me-cAMP is a unique tool with which to asses atypical actions of cAMP that are PKA-independent. Particularly intriguing are recent reports demonstrating that ESCAs reproduce the PKA-independent actions of ligands known to stimulate Class I (Family A) and Class II (Family B) GTP-binding protein-coupled receptors (GPCRs). This topical review summarizes the current state of knowledge regarding the molecular pharmacology and signal transduction properties of Epac-selective cAMP analogs. Special attention is focused on the rational drug design of ESCAs in order to improve their Epac selectivity, membrane permeability, and stability. Also emphasized is the usefulness of ESCAs as new tools with which to assess the role of Epac as a determinant of intracellular Ca2+ signalling, ion channel function, neurotransmitter release, and hormone secretion.
2'-O-甲基取代的环磷酸腺苷(cAMP)类似物可激活cAMP调节的鸟嘌呤核苷酸交换因子(cAMP-GEFs,也称为Epac1和Epac2)家族,这开创了环核苷酸研究的新纪元,揭示了第二信使cAMP以前未被认识的信号特性。这些Epac选择性环磷酸腺苷类似物(ESCAs)在cAMP的核糖环上引入了2'-O-甲基取代,这种修饰削弱了它们激活蛋白激酶A(PKA)的能力,同时保留了它们激活Epac(直接由环磷酸腺苷激活的交换蛋白)的能力。一种广泛使用的此类ESCA是8-pCPT-2'-O-Me-cAMP。它是2'-O-Me-cAMP的细胞渗透性衍生物,是Epac的超级激活剂。大量新发表的研究表明,8-pCPT-2'-O-Me-cAMP是一种独特的工具,可用于评估cAMP不依赖PKA的非典型作用。特别引人关注的是最近的报道,表明ESCAs重现了已知刺激I类(A家族)和II类(B家族)GTP结合蛋白偶联受体(GPCRs)的配体不依赖PKA的作用。这篇专题综述总结了关于Epac选择性cAMP类似物的分子药理学和信号转导特性的当前知识状态。特别关注ESCAs的合理药物设计,以提高它们的Epac选择性、膜通透性和稳定性。还强调了ESCAs作为新工具的有用性,可用于评估Epac作为细胞内Ca2+信号传导、离子通道功能、神经递质释放和激素分泌的决定因素的作用。