首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Pituitary adenylate cyclase 1 receptor internalization and endosomal signaling mediate the pituitary adenylate cyclase activating polypeptide-induced increase in guinea pig cardiac neuron excitability
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Pituitary adenylate cyclase 1 receptor internalization and endosomal signaling mediate the pituitary adenylate cyclase activating polypeptide-induced increase in guinea pig cardiac neuron excitability

机译:垂体腺苷酸环化酶1受体的内在化和内体信号传导介导垂体腺苷酸环化酶激活多肽诱导的豚鼠心脏神经元兴奋性增加

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摘要

After G-protein-coupled receptor activation and signaling at the plasma membrane, the receptor complex is often rapidly internalized via endocytic vesicles for trafficking into various intracellular compartments and pathways. The formation of signaling endosomes is recognized as a mechanism that produces sustained intracellular signals that may be distinct from those generated at the cell surface for cellular responses including growth, differentiation, and survival. Pituitary adenylate cyclase activating polypeptide (PACAP; Adcyapl) is a potent neurotransmittereurotrophic peptide and mediates its diverse cellular functions in part through internalization of its cognate G-protein-coupled PAC1 receptor (PAC1R; Adcyaplrl). In the present study, we examined whether PAC1R endocytosis participates in the regulation of neuronal excitability. Although PACAP increased excitability in 90% of guinea pig cardiac neurons, pretreatment with Pitstop 2 or dynasore to inhibit clathrin and dynamin I/II, respectively, suppressed the PACAP effect. Subsequent addition of inhibitor after the PACAP-induced increase in excitability developed gradually attenuated excitability with no changes in action potential properties. Likewise, the PACAP-induced increase in excitability was markedly decreased at ambient temperature. Receptor trafficking studies with GFP-PAC1 cell lines demonstrated the efficacy of Pitstop 2, dynasore, and low temperatures at suppressing PAC1R endocytosis. In contrast, brefeldin A pretreatments to disrupt Golgi vesicle trafficking did not blunt the PACAP effect, and PACAP/PACIR signaling still increased neuronal cAMP production even with endocytic blockade. Our results demonstrate that PACAP/PAC1R complex endocytosis is a key step for the PACAP modulation of cardiac neuron excitability. ? 2013 the authors.
机译:在G蛋白偶联的受体激活并在质膜上发出信号后,受体复合物通常会通过内吞小泡快速内在化,从而转运到各种细胞内区室和途径中。信号内体的形成被认为是一种产生持续细胞内信号的机制,该信号可能与细胞表面产生的信号不同,包括生长,分化和存活。垂体腺苷酸环化酶激活多肽(PACAP; Adcyapl)是一种有效的神经递质/神经营养肽,部分通过其关联的G蛋白偶联PAC1受体(PAC1R; Adcyaplrl)的内在作用介导其多种细胞功能。在本研究中,我们检查了PAC1R内吞作用是否参与神经元兴奋性的调节。尽管PACAP增加了90%的豚鼠心脏神经元的兴奋性,但分别用Pitstop 2或dynasore进行预处理以抑制网格蛋白和动力蛋白I / II抑制了PACAP的作用。 PACAP诱导的兴奋性增加后,随后添加抑制剂逐渐减弱了兴奋性,而动作电位特性没有变化。同样,在环境温度下,PACAP引起的兴奋性增加明显减少。使用GFP-PAC1细胞系进行的受体运输研究证明,Pitstop 2,dynasore和低温抑制PAC1R内吞作用的功效。相比之下,布雷菲德菌素A的干扰高尔基小泡运输的预处理并没有减弱PACAP的作用,即使有内吞性阻断,PA​​CAP / PACIR信号仍然增加神经元cAMP的产生。我们的结果表明,PACAP / PAC1R复合物的胞吞作用是PACAP调节心脏神经元兴奋性的关键步骤。 ? 2013作者。

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