首页> 美国卫生研究院文献>Biochemical Journal >Interplay between cytoplasmic Ca2+ and the ATP/ADP ratio: a feedback control mechanism in mouse pancreatic islets.
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Interplay between cytoplasmic Ca2+ and the ATP/ADP ratio: a feedback control mechanism in mouse pancreatic islets.

机译:胞质Ca2 +与ATP / ADP比之间的相互作用:小鼠胰岛中的一种反馈控制机制。

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摘要

In pancreatic beta cells, the increase in the ATP/ADP ratio that follows a stimulation by glucose is thought to play an important role in the Ca2+-dependent increase in insulin secretion. Here we have investigated the possible interactions between Ca2+ and adenine nucleotides in mouse islets. Measurements of both parameters in the same single islet showed that the rise in the ATP/ADP ratio precedes any rise in the cytoplasmic free-Ca2+ concentration ([Ca2+]i) and is already present during the initial transient lowering of [Ca2+]i produced by the sugar. Blockade of Ca2+ influx with nimodipine did not prevent the concentration-dependent increase in the ATP/ADP ratio produced by glucose and even augmented the ratio at all glucose concentrations which normally stimulate Ca2+ influx. In contrast, stimulation of Ca2+ influx by 30 mM K+ or 100 microM tolbutamide lowered the ATP/ADP ratio. This lowering was of rapid onset and reversibility, sustained and prevented by nimodipine or omission of extracellular Ca2+. It was, however, not attenuated after blockade of secretion by activation of alpha2-adrenoceptors. The difference in islet ATP/ADP ratio during blockade and stimulation of Ca2+ influx was similar to that observed between threshold and submaximal glucose concentrations. The results suggest that the following feedback loop could control the oscillations of membrane potential and [Ca2+]i in beta cells. Glucose metabolism increases the ATP/ADP ratio in a Ca2+-independent manner, which leads to closure of ATP-sensitive K+ channels, depolarization and stimulation of Ca2+ influx. The resulting increase in [Ca2+]i causes a larger consumption than production of ATP, which induces reopening of ATP-sensitive K+ channels and arrest of Ca2+ influx. Upon lowering of [Ca2+]i the ATP/ADP ratio increases again and a new cycle may start.
机译:在胰β细胞中,葡萄糖刺激后ATP / ADP比的增加被认为在Ca 2+依赖性胰岛素分泌增加中起重要作用。在这里,我们研究了小鼠胰岛中Ca2 +和腺嘌呤核苷酸之间可能的相互作用。对同一胰岛中两个参数的测量结果表明,ATP / ADP比值的升高先于细胞质游离Ca2 +浓度([Ca2 +] i)的升高,并且在产生的[Ca2 +] i初始瞬时降低期间就已经存在由糖。用尼莫地平阻断Ca2 +流入量并不能阻止葡萄糖产生的ATP / ADP比率的浓度依赖性增加,甚至不能增加通常刺激Ca2 +流入的所有葡萄糖浓度的比率。相反,通过30 mM K +或100 microM甲苯磺丁酰胺刺激Ca2 +内流会降低ATP / ADP比。这种降低具有快速的起效和可逆性,并通过尼莫地平或遗漏细胞外Ca2 +得以维持和预防。然而,在激活α2-肾上腺素受体阻断分泌后,它并未减弱。在阻断和刺激Ca2 +流入期间,胰岛ATP / ADP比的差异与阈值葡萄糖和次最大葡萄糖浓度之间的差异相似。结果表明,以下反馈回路可以控制β细胞中膜电位和[Ca2 +] i的振荡。葡萄糖代谢以不依赖Ca2 +的方式增加ATP / ADP比率,从而导致ATP敏感的K +通道关闭,去极化和刺激Ca2 +内流。结果导致[Ca2 +] i的增加导致消耗量大于ATP的产生量,从而导致ATP敏感的K +通道重新开放并阻止Ca2 +流入。当[Ca 2+] i降低时,ATP / ADP比值再次增加,新的循环可能开始。

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