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The Popeye Domain Containing Genes and cAMP Signaling

机译:含有基因和cAMP信号传导的Popeye域

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3'-5'-cyclic adenosine monophosphate (cAMP) is a second messenger, which plays an important role in the heart. It is generated in response to activation of G-protein-coupled receptors (GPCRs). Initially, it was thought that protein kinase A (PKA) exclusively mediates cAMP-induced cellular responses such as an increase in cardiac contractility, relaxation, and heart rate. With the identification of the exchange factor directly activated by cAMP (EPAC) and hyperpolarizing cyclic nucleotide-gated (HCN) channels as cAMP effector proteins it became clear that a protein network is involved in cAMP signaling. The Popeye domain containing (Popdc) genes encode yet another family of cAMP-binding proteins, which are prominently expressed in the heart. Loss-of-function mutations in mice are associated with cardiac arrhythmia and impaired skeletal muscle regeneration. Interestingly, the cardiac phenotype, which is present in both, Popdc1 and Popdc2 null mutants, is characterized by a stress-induced sinus bradycardia, suggesting that Popdc proteins participate in cAMP signaling in the sinuatrial node. The identification of the two-pore channel TREK-1 and Caveolin 3 as Popdc-interacting proteins represents a first step into understanding the mechanisms of heart rate modulation triggered by Popdc proteins.
机译:3'-5'-环磷酸腺苷(cAMP)是第二信使,在心脏中起重要作用。它是响应G蛋白偶联受体(GPCR)激活而产生的。最初,人们认为蛋白激酶A(PKA)专门介导cAMP诱导的细胞反应,例如心脏收缩力,松弛和心率增加。通过鉴定直接由cAMP(EPAC)激活的交换因子和超极化环状核苷酸门控(HCN)通道作为cAMP效应蛋白,可以清楚地认识到蛋白质网络参与cAMP信号传导。含有Popeye域的(Popdc)基因编码了另一个在心脏中显着表达的cAMP结合蛋白家族。小鼠功能丧失的突变与心律不齐和骨骼肌再生受损有关。有趣的是,存在于Popdc1和Popdc2无效突变体中的心脏表型的特征是应激诱导的窦性心动过缓,表明Popdc蛋白参与窦房结中的cAMP信号传导。将两孔通道TREK-1和Caveolin 3鉴定为与Popdc相互作用的蛋白质,代表了了解Popdc蛋白质触发的心率调节机制的第一步。

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