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胰腺β细胞中钙激活钾通道的特性

Properties of the Ca-activated K+ channel in pancreatic beta-cells.

作者信息

Atwater I, Rosario L, Rojas E

出版信息

Cell Calcium. 1983 Dec;4(5-6):451-61. doi: 10.1016/0143-4160(83)90021-0.

Abstract

The existence of [Ca2+]i-activated K+-channels in the pancreatic beta-cell membrane is based in two observations: quinine inhibits K+-permeability and, increasing intracellular Ca2+ stimulates it. The changes in K+-permeability of the beta-cell have been monitored electrically by combining measurements of the dependence of the membrane potential on external K+ concentration and input resistance. The changes in the passive 42K and 86Rb efflux from the whole islet have been measured directly. Intracellular Ca2+ has been increased by various means, including increasing extracellular Ca2+, addition of the Ca2+-ionophore A23187 or noradrenaline and application of mitochondrial uncouplers and blockers. In addition to quinine, many other substances have been found to inhibit or modulate the [Ca2+]i-activated K+-channel. The most important of these is the natural stimulus for insulin secretion, glucose. Glucose may inhibit K+-permeability by lowering intracellular Ca2+. Glibenclamide, a hypoglycaemic sulphonylurea, is about 25 times more active than quinine in blocking the K+-channel in beta-cells. The methylxanthines, c-AMP, various calmodulin inhibitors and Ba2+ also inhibit K+-permeability. Genetically diabetic mice have been studied and show an alteration in the [Ca2+]i-activated K+-channel. It is concluded that the [Ca2+]i-activated K+-channel plays a major role in the normal function of the pancreatic beta-cell. The study of its properties should prove valuable for the understanding and treatment of diabetes.

摘要

胰腺β细胞膜中存在[Ca2+]i激活的钾通道基于以下两点观察:奎宁抑制钾通透性,而增加细胞内Ca2+会刺激钾通透性。通过结合测量膜电位对细胞外钾浓度的依赖性和输入电阻,已用电学方法监测了β细胞钾通透性的变化。已直接测量了整个胰岛中被动42K和86Rb外流的变化。通过多种方式增加细胞内Ca2+,包括增加细胞外Ca2+、添加Ca2+离子载体A23187或去甲肾上腺素以及应用线粒体解偶联剂和阻滞剂。除了奎宁,还发现许多其他物质可抑制或调节[Ca2+]i激活的钾通道。其中最重要的是胰岛素分泌的天然刺激物葡萄糖。葡萄糖可能通过降低细胞内Ca2+来抑制钾通透性。格列本脲,一种降血糖磺酰脲类药物,在阻断β细胞钾通道方面的活性比奎宁高约25倍。甲基黄嘌呤、c-AMP、各种钙调蛋白抑制剂和Ba2+也抑制钾通透性。已对遗传性糖尿病小鼠进行了研究,结果显示[Ca2+]i激活的钾通道存在改变。得出的结论是,[Ca2+]i激活的钾通道在胰腺β细胞的正常功能中起主要作用。对其特性的研究对于理解和治疗糖尿病应具有重要价值。

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