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Cell physiology of cAMP sensor Epac.

机译:cAMP传感器Epac的细胞生理学。

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Epac is an acronym for the exchange proteins activated directly by cyclic AMP, a family of cAMP-regulated guanine nucleotide exchange factors (cAMPGEFs) that mediate protein kinase A (PKA)-independent signal transduction properties of the second messenger cAMP. Two variants of Epac exist (Epac1 and Epac2), both of which couple cAMP production to the activation of Rap, a small molecular weight GTPase of the Ras family. By activating Rap in an Epac-mediated manner, cAMP influences diverse cellular processes that include integrin-mediated cell adhesion, vascular endothelial cell barrier formation, and cardiac myocyte gap junction formation. Recently, the identification of previously unrecognized physiological processes regulated by Epac has been made possible by the development of Epac-selective cyclic AMP analogues (ESCAs). These cell-permeant analogues of cAMP activate both Epac1 and Epac2, whereas they fail to activate PKA when used at low concentrations. ESCAs such as 8-pCPT-2'-O-Me-cAMP and 8-pMeOPT-2'-O-Me-cAMP are reported to alter Na(+), K(+), Ca(2+) and Cl(-) channel function, intracellular [Ca(2+)], and Na(+)-H(+) transporter activity in multiple cell types. Moreover, new studies examining the actions of ESCAs on neurons, pancreatic beta cells, pituitary cells and sperm demonstrate a major role for Epac in the stimulation of exocytosis by cAMP. This topical review provides an update concerning novel PKA-independent features of cAMP signal transduction that are likely to be Epac-mediated. Emphasized is the emerging role of Epac in the cAMP-dependent regulation of ion channel function, intracellular Ca(2+) signalling, ion transporter activity and exocytosis.
机译:Epac是由循环AMP直接激活的交换蛋白的首字母缩写,循环AMP是cAMP调节的鸟嘌呤核苷酸交换因子(cAMPGEF)家族,介导第二信使cAMP的蛋白激酶A(PKA)独立的信号转导特性。存在两种Epac变体(Epac1和Epac2),它们都将cAMP产生与Rap(Ras家族的一种小分子量GTPase)的激活偶联。通过以Epac介导的方式激活Rap,cAMP影响多种细胞过程,包括整联蛋白介导的细胞粘附,血管内皮细胞屏障形成和心肌细胞间隙连接形成。最近,通过开发Epac选择性环AMP类似物(ESCA),已经可以鉴定Epac调节的先前无法识别的生理过程。这些可透过细胞的cAMP类似物同时激活Epac1和Epac2,但当以低浓度使用时,它们却无法激活PKA。据报道,ESCA如8-pCPT-2'-O-Me-cAMP和8-pMeOPT-2'-O-Me-cAMP会改变Na(+),K(+),Ca(2+)和Cl( -)通道功能,细胞内[Ca(2+)]和Na(+)-H(+)转运蛋白在多种细胞类型中的活性。此外,检查ESCA对神经元,胰腺β细胞,垂体细胞和精子的作用的新研究表明,Epac在cAMP刺激胞吐作用中起主要作用。这篇专题综述提供了有关cAMP信号转导的新的与PKA独立的特征的更新,这些特征可能是Epac介导的。强调的是Epac在cAMP依赖性调节离子通道功能,细胞内Ca(2+)信号传导,离子转运蛋白活性和胞吐作用中的新兴作用。

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