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Critical Role of Gap Junction Coupled KATP Channel Activity for Regulated Insulin Secretion

机译:间隙连接偶联的KATP通道活性对调节胰岛素分泌的关键作用

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Pancreatic β-cells secrete insulin in response to closure of ATP-sensitive K+ (KATP) channels, which causes membrane depolarization and a concomitant rise in intracellular Ca2+ (Cai). In intact islets, β-cells are coupled by gap junctions, which are proposed to synchronize electrical activity and Cai oscillations after exposure to stimulatory glucose (>7 mM). To determine the significance of this coupling in regulating insulin secretion, we examined islets and β-cells from transgenic mice that express zero functional KATP channels in approximately 70% of their β-cells, but normal KATP channel density in the remainder. We found that KATP channel activity from approximately 30% of the β-cells is sufficient to maintain strong glucose dependence of metabolism, Cai, membrane potential, and insulin secretion from intact islets, but that glucose dependence is lost in isolated transgenic cells. Further, inhibition of gap junctions caused loss of glucose sensitivity specifically in transgenic islets. These data demonstrate a critical role of gap junctional coupling of KATP channel activity in control of membrane potential across the islet. Control via coupling lessens the effects of cell–cell variation and provides resistance to defects in excitability that would otherwise lead to a profound diabetic state, such as occurs in persistent neonatal diabetes mellitus.
机译:胰腺β细胞响应ATP敏感性K +(KATP)通道的关闭而分泌胰岛素,这会导致膜去极化和细胞内Ca2 +(Cai)的同时升高。在完整的胰岛中,β细胞通过间隙连接耦合,该间隙连接被建议用于在暴露于刺激性葡萄糖(> 7 mM)后同步电活动和Cai振荡。为了确定这种偶联在调节胰岛素分泌中的重要性,我们检查了来自转基因小鼠的胰岛和β细胞,这些胰岛和β细胞在其大约70%的β细胞中表达零个功能性KATP通道,而其余细胞中的KATP通道密度正常。我们发现大约30%的β细胞具有KATP通道活性,足以维持完整胰岛对代谢,Cai,膜电位和胰岛素分泌的强烈葡萄糖依赖性,但在分离的转基因细胞中葡萄糖依赖性消失。此外,间隙连接的抑制特别在转基因胰岛中引起葡萄糖敏感性的丧失。这些数据证明了KATP通道活性的间隙连接偶联在控制整个胰岛的膜电位中的关键作用。通过耦合进行的控制可减少细胞间变化的影响,并提供对兴奋性缺陷的抵抗力,否则会导致糖尿病状态恶化,例如持续性新生儿糖尿病。

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