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细胞内钙离子储存的排空通过直接和间接机制刺激小鼠胰腺β细胞中的钙离子内流。

Emptying of intracellular Ca2+ stores stimulates Ca2+ entry in mouse pancreatic beta-cells by both direct and indirect mechanisms.

作者信息

Miura Y, Henquin J C, Gilon P

机构信息

Unité d'Endocrinologie et Métabolisme, University of Louvain School of Medicine, Brussels, Belgium.

出版信息

J Physiol. 1997 Sep 1;503 ( Pt 2)(Pt 2):387-98. doi: 10.1111/j.1469-7793.1997.387bh.x.

Abstract
  1. In non-excitable cells, the depletion of intracellular Ca2+ stores triggers Ca2+ influx by a process called capacitative Ca2+ entry. In the present study, we have investigated how the emptying of these stores by thapsigargin (1 microM) influences Ca2+ influx in electrically excitable pancreatic beta-cells. The cytoplasmic Ca2+ concentration ([Ca2+]i) was monitored in clusters of mouse beta-cells or in whole islets loaded with fura-2. 2. The membrane was first held hyperpolarized by diazoxide, an opener of ATP-sensitive K+ (KATP) channels, in the presence of 4.8 mM K+. Alternating between Ca(2+)-free medium and medium containing 2.5 mM Ca2+ caused a minor rise in [Ca2+]i (approximately 14 nM) in clusters of beta-cells. A larger rise (approximately 65 nM), resistant to the blockade of voltage-dependent Ca2+ channels by D600, occurred when extracellular Ca2+ was readmitted after emptying intracellular Ca2+ stores with thapsigargin or acetylcholine. Thus there exists a small capacitative Ca2+ entry in beta-cells. 3. When the membrane potential was clamped at depolarized levels with 10, 20 or 45 mM K+ in the presence of diazoxide, [Ca2+]i increased to different plateau levels ranging between 100 and 900 nM. Thapsigargin consistently caused a further transient rise in [Ca2+]i, but had little (at 10 mM K+) or no effect on the plateau level. This confirms that the capacitative Ca2+ entry is small. 4. In clusters of cells whose membrane potential was not clamped with diazoxide, 15 mM glucose (in 4.8 mM K+) induced [Ca2+]i oscillations by promoting Ca2+ influx through voltage-dependent Ca2+ channels. The application of thapsigargin accelerated these oscillations and increased their amplitude, sometimes causing a sustained elevation of [Ca2+]i. Similar results were obtained from whole islets perifused with a medium containing > or = 6 mM glucose. The effect of thapsigargin was always much larger than expected from the capacitative Ca2+ entry, probably because of a potentiation of Ca2+ influx through voltage-dependent Ca2+ channels. 5. This potentiating effect of thapsigargin did not result from an acceleration of cell metabolism since the drug did not affect glucose-induced changes in NAD(P)H fluorescence. It is also unlikely to involve the inhibition of KATP channels because thapsigargin steadily elevated [Ca2+]i in cells in which [Ca2+]i oscillations persisted in the presence of a maximally effective concentration of tolbutamide. 6. In conclusion, the emptying of intracellular Ca2+ stores in beta-cells induces a small capacitative Ca2+ entry and activates a depolarizing current which potentiates glucose-induced Ca2+ influx through voltage-dependent Ca2+ channels.
摘要
  1. 在非兴奋性细胞中,细胞内钙库的耗竭通过一种称为容量性钙内流的过程触发钙内流。在本研究中,我们研究了毒胡萝卜素(1微摩尔)使这些钙库排空如何影响电兴奋性胰腺β细胞中的钙内流。在装载了fura - 2的小鼠β细胞簇或整个胰岛中监测细胞质钙浓度([Ca2+]i)。2. 首先在4.8毫摩尔钾存在的情况下,用二氮嗪(一种ATP敏感性钾(KATP)通道开放剂)使细胞膜保持超极化。在无钙培养基和含2.5毫摩尔钙的培养基之间交替,导致β细胞簇中的[Ca2+]i有轻微升高(约14纳摩尔)。在用毒胡萝卜素或乙酰胆碱排空细胞内钙库后重新引入细胞外钙时,出现了更大的升高(约65纳摩尔),且不受D600对电压依赖性钙通道的阻断影响。因此,β细胞中存在少量容量性钙内流。3. 当在二氮嗪存在的情况下用10、20或45毫摩尔钾将膜电位钳制在去极化水平时,[Ca2+]i升高到100至900纳摩尔之间的不同平台水平。毒胡萝卜素始终导致[Ca2+]i进一步短暂升高,但对平台水平几乎没有影响(在10毫摩尔钾时)或没有影响。这证实了容量性钙内流很小。4. 在膜电位未用二氮嗪钳制的细胞簇中,15毫摩尔葡萄糖(在4.8毫摩尔钾中)通过促进钙通过电压依赖性钙通道内流诱导[Ca2+]i振荡。毒胡萝卜素的应用加速了这些振荡并增加了其幅度,有时导致[Ca2+]i持续升高。在用含≥6毫摩尔葡萄糖的培养基灌流的整个胰岛中也获得了类似结果。毒胡萝卜素的作用总是比容量性钙内流预期的要大得多,可能是因为通过电压依赖性钙通道的钙内流增强。5. 毒胡萝卜素的这种增强作用不是由于细胞代谢加速,因为该药物不影响葡萄糖诱导的NAD(P)H荧光变化。它也不太可能涉及对KATP通道的抑制,因为在存在最大有效浓度甲苯磺丁脲的情况下[Ca2+]i振荡持续存在的细胞中,毒胡萝卜素稳定地升高了[Ca2+]i。6. 总之,β细胞中细胞内钙库的排空诱导少量容量性钙内流并激活一种去极化电流,该电流增强了葡萄糖诱导的钙通过电压依赖性钙通道的内流。

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