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胰腺β细胞中Ca2+和G蛋白偶联受体对cAMP动力学的调节:一种计算方法。

Regulation of cAMP dynamics by Ca2+ and G protein-coupled receptors in the pancreatic beta-cell: a computational approach.

作者信息

Fridlyand Leonid E, Harbeck Mark C, Roe Michael W, Philipson Louis H

机构信息

Department of Medicine, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Am J Physiol Cell Physiol. 2007 Dec;293(6):C1924-33. doi: 10.1152/ajpcell.00555.2006. Epub 2007 Oct 10.

Abstract

In this report we describe a mathematical model for the regulation of cAMP dynamics in pancreatic beta-cells. Incretin hormones such as glucagon-like peptide 1 (GLP-1) increase cAMP and augment insulin secretion in pancreatic beta-cells. Imaging experiments performed in MIN6 insulinoma cells expressing a genetically encoded cAMP biosensor and loaded with fura-2, a calcium indicator, showed that cAMP oscillations are differentially regulated by periodic changes in membrane potential and GLP-1. We modeled the interplay of intracellular calcium (Ca(2+)) and its interaction with calmodulin, G protein-coupled receptor activation, adenylyl cyclases (AC), and phosphodiesterases (PDE). Simulations with the model demonstrate that cAMP oscillations are coupled to cytoplasmic Ca(2+) oscillations in the beta-cell. Slow Ca(2+) oscillations (<1 min(-1)) produce low-frequency cAMP oscillations, and faster Ca(2+) oscillations (>3-4 min(-1)) entrain high-frequency, low-amplitude cAMP oscillations. The model predicts that GLP-1 receptor agonists induce cAMP oscillations in phase with cytoplasmic Ca(2+) oscillations. In contrast, observed antiphasic Ca(2+) and cAMP oscillations can be simulated following combined glucose and tetraethylammonium-induced changes in membrane potential. The model provides additional evidence for a pivotal role for Ca(2+)-dependent AC and PDE activation in coupling of Ca(2+) and cAMP signals. Our results reveal important differences in the effects of glucose/TEA and GLP-1 on cAMP dynamics in MIN6 beta-cells.

摘要

在本报告中,我们描述了一种用于调节胰腺β细胞中cAMP动态变化的数学模型。肠促胰岛素激素,如胰高血糖素样肽1(GLP-1),可增加胰腺β细胞中的cAMP并增强胰岛素分泌。在表达基因编码的cAMP生物传感器并加载钙指示剂fura-2的MIN6胰岛素瘤细胞中进行的成像实验表明,cAMP振荡受膜电位和GLP-1周期性变化的差异调节。我们对细胞内钙(Ca(2+))及其与钙调蛋白、G蛋白偶联受体激活、腺苷酸环化酶(AC)和磷酸二酯酶(PDE)的相互作用进行了建模。用该模型进行的模拟表明,cAMP振荡与β细胞中的细胞质Ca(2+)振荡耦合。缓慢的Ca(2+)振荡(<1 min(-1))产生低频cAMP振荡,而较快的Ca(2+)振荡(>3 - 4 min(-1))则引发高频、低振幅的cAMP振荡。该模型预测,GLP-1受体激动剂会诱导与细胞质Ca(2+)振荡同相的cAMP振荡。相比之下,在葡萄糖和四乙铵诱导的膜电位变化后,可以模拟观察到的反相Ca(2+)和cAMP振荡。该模型为Ca(2+)依赖性AC和PDE激活在Ca(2+)和cAMP信号耦合中的关键作用提供了额外证据。我们的结果揭示了葡萄糖/TEA和GLP-1对MIN6β细胞中cAMP动态变化影响的重要差异。

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