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连接蛋白36通道的缺失会改变β细胞偶联、葡萄糖诱导的Ca2+和胰岛素振荡的胰岛同步性以及基础胰岛素释放。

Loss of connexin36 channels alters beta-cell coupling, islet synchronization of glucose-induced Ca2+ and insulin oscillations, and basal insulin release.

作者信息

Ravier Magalie A, Güldenagel Martin, Charollais Anne, Gjinovci Asllan, Caille Dorothée, Söhl Goran, Wollheim Claes B, Willecke Klaus, Henquin Jean-Claude, Meda Paolo

机构信息

Department of Cell Physiology and Metabolism, University of Geneva, C.M.U., 1 rue Michel Servet, 1211 Geneva 4, Switzerland.

出版信息

Diabetes. 2005 Jun;54(6):1798-807. doi: 10.2337/diabetes.54.6.1798.

Abstract

Normal insulin secretion requires the coordinated functioning of beta-cells within pancreatic islets. This coordination depends on a communications network that involves the interaction of beta-cells with extracellular signals and neighboring cells. In particular, adjacent beta-cells are coupled via channels made of connexin36 (Cx36). To assess the function of this protein, we investigated islets of transgenic mice in which the Cx36 gene was disrupted by homologous recombination. We observed that compared with wild-type and heterozygous littermates that expressed Cx36 and behaved as nontransgenic controls, mice homozygous for the Cx36 deletion (Cx36(-/-)) featured beta-cells devoid of gap junctions and failing to exchange microinjected Lucifer yellow. During glucose stimulation, islets of Cx36(-/-) mice did not display the regular oscillations of intracellular calcium concentrations (Ca(2+)) seen in controls due to the loss of cell-to-cell synchronization of Ca(2+) changes. The same islets did not release insulin in a pulsatile fashion, even though the overall output of the hormone in response to glucose stimulation was normal. However, under nonstimulatory conditions, islets lacking Cx36 showed increased basal release of insulin. These data show that Cx36-dependent signaling is essential for the proper functioning of beta-cells, particularly for the pulsatility of Ca(2+) and insulin secretion during glucose stimulation.

摘要

正常的胰岛素分泌需要胰岛内β细胞的协同运作。这种协同作用依赖于一个通讯网络,该网络涉及β细胞与细胞外信号及相邻细胞之间的相互作用。特别地,相邻的β细胞通过由连接蛋白36(Cx36)构成的通道相互耦联。为了评估这种蛋白质的功能,我们研究了通过同源重组使Cx36基因被破坏的转基因小鼠的胰岛。我们观察到,与表达Cx36并表现为非转基因对照的野生型和杂合子同窝小鼠相比,Cx36缺失纯合子(Cx36(-/-))小鼠的β细胞缺乏缝隙连接,且无法交换微量注射的荧光素黄。在葡萄糖刺激期间,由于[Ca(2+)]i变化的细胞间同步性丧失,Cx36(-/-)小鼠的胰岛未表现出对照中所见的细胞内钙浓度([Ca(2+)]i)的规则振荡。即使该激素对葡萄糖刺激的总体输出正常,相同的胰岛也未以脉冲方式释放胰岛素。然而,在非刺激条件下,缺乏Cx36的胰岛显示胰岛素基础释放增加。这些数据表明,依赖Cx36的信号传导对于β细胞的正常功能至关重要,特别是对于葡萄糖刺激期间[Ca(2+)]i和胰岛素分泌的脉冲性而言。

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