首页> 美国卫生研究院文献>The Journal of Physiology >Potassium permeability activated by intracellular calcium ion concentration in the pancreatic beta-cell.
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Potassium permeability activated by intracellular calcium ion concentration in the pancreatic beta-cell.

机译:钾的通透性由胰腺β细胞中的细胞内钙离子浓度激活。

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摘要

1. Membrane potentials and input resistance were measured in beta-cells from mouse pancreatic islets of Langerhans in a study designed to assess the role of a K permeability specifically blocked by quinine or quinidine and activated by intracellular calcium ion concentration ([Ca2+])i-activated PK). 2. Addition of 100 microM-quinine to the perifusion medium resulted in a 10--30 mV depolarization of the membrane and an increase in the input resistance of ca. 4.10(7) omega. 3. In the absence of glucose, 100 microM-quinine induced electrical activity. 4. In the presence of glucose, 100 microM-quinine abolished the burst pattern of electrical activity and very much reduced the graded response of spike frequency normally seen with different concentrations of glucose. 5. Addition of mitochondrial inhibitors, KCN, NaN3, DNP, CCCP, FCCP, to the perifusion medium containing glucose rapidly hyperpolarized the beta-cell membrane, inducing a concomitant decrease in input resistance. 6. In the presence of glucose, these mitochondrial inhibitors reversibly blocked electrical activity; upon removal of the inhibitor, recovery of electrical activity followed a biphasic pattern. 7. The effects of mitochondrial inhibitors were partially reversed by 100 microM-quinine. 8. It is proposed that the membrane potential of the beta-cell in the absence of glucose is predominantly controlled by the [Ca2+]i-activated PK. It is further suggested that this permeability to K controls the level for glucose stimulation and leads to the generation of the burst pattern.
机译:1.在一项旨在评估K渗透性被奎宁或奎尼丁特异性阻断并被细胞内钙离子浓度([Ca2 +])i激活的研究中,测量了朗格罕氏小鼠胰岛β细胞中的膜电位和输入阻力。激活的PK)。 2.在灌注培养基中添加100 microM-奎宁会导致膜的去极化10--30 mV,并增加输入电阻。 4.10(7)欧米茄。 3.在没有葡萄糖的情况下,100 microM-奎宁诱导电活性。 4.在存在葡萄糖的情况下,100 microM-奎宁消除了电活动的猝发模式,并大大降低了在不同浓度的葡萄糖下通常会出现的尖峰频率的分级响应。 5.将线粒体抑制剂KCN,NaN3,DNP,CCCP,FCCP添加到含葡萄糖的灌注培养基中会使β细胞膜迅速超极化,从而导致输入阻力随之降低。 6.在葡萄糖存在下,这些线粒体抑制剂可逆地阻断电活动。除去抑制剂后,电活性的恢复遵循双相模式。 7. 100 microM-奎宁可部分逆转线粒体抑制剂的作用。 8.提出了在不存在葡萄糖的情况下β细胞的膜电位主要受[Ca 2+] i活化的PK控制。进一步表明,这种对钾的渗透性控制了葡萄糖刺激的水平,并导致爆发模式的产生。

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