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cAMP 在胰岛β细胞刺激-分泌和细胞间耦联中的作用。

The Role of cAMP in Beta Cell Stimulus-Secretion and Intercellular Coupling.

机构信息

Institute of Physiology, Faculty of Medicine, University of Maribor, SI-2000 Maribor, Slovenia.

Faculty of Natural Sciences and Mathematics, University of Maribor, SI-2000 Maribor, Slovenia.

出版信息

Cells. 2021 Jul 1;10(7):1658. doi: 10.3390/cells10071658.

Abstract

Pancreatic beta cells secrete insulin in response to stimulation with glucose and other nutrients, and impaired insulin secretion plays a central role in development of diabetes mellitus. Pharmacological management of diabetes includes various antidiabetic drugs, including incretins. The incretin hormones, glucagon-like peptide-1 and gastric inhibitory polypeptide, potentiate glucose-stimulated insulin secretion by binding to G protein-coupled receptors, resulting in stimulation of adenylate cyclase and production of the secondary messenger cAMP, which exerts its intracellular effects through activation of protein kinase A or the guanine nucleotide exchange protein 2A. The molecular mechanisms behind these two downstream signaling arms are still not fully elucidated and involve many steps in the stimulus-secretion coupling cascade, ranging from the proximal regulation of ion channel activity to the central Ca signal and the most distal exocytosis. In addition to modifying intracellular coupling, the effect of cAMP on insulin secretion could also be at least partly explained by the impact on intercellular coupling. In this review, we systematically describe the possible roles of cAMP at these intra- and inter-cellular signaling nodes, keeping in mind the relevance for the whole organism and translation to humans.

摘要

胰岛β细胞在受到葡萄糖和其他营养物质的刺激时会分泌胰岛素,而胰岛素分泌受损在糖尿病的发生发展中起着核心作用。糖尿病的药物治疗包括各种抗糖尿病药物,包括肠促胰岛素。肠促胰岛素激素,胰高血糖素样肽-1 和胃抑制多肽,通过与 G 蛋白偶联受体结合增强葡萄糖刺激的胰岛素分泌,导致腺苷酸环化酶的激活和第二信使 cAMP 的产生,其通过激活蛋白激酶 A 或鸟苷酸交换蛋白 2A 发挥其细胞内效应。这两个下游信号通路的分子机制尚未完全阐明,涉及到从离子通道活性的近端调节到中央 Ca 信号和最远端的胞吐作用的刺激-分泌偶联级联中的许多步骤。除了修饰细胞内偶联外,cAMP 对胰岛素分泌的影响至少部分可以通过对细胞间偶联的影响来解释。在这篇综述中,我们系统地描述了 cAMP 在这些细胞内和细胞间信号节点中的可能作用,同时考虑到其对整个生物体的相关性和向人类的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9629/8304079/99884954ee5c/cells-10-01658-g001.jpg

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