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Significance of Na/Ca exchange for Ca2+ buffering and electrical activity in mouse pancreatic beta-cells.

机译:Na / Ca交换对于小鼠胰腺β细胞中Ca2 +缓冲和电活动的意义。

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摘要

We have combined the patch-clamp technique with microfluorimetry of the cytoplasmic Ca2+ concentration ([Ca2+]i) to characterize Na/Ca exchange in mouse beta-cells and to determine its importance for [Ca2+]i buffering and shaping of glucose-induced electrical activity. The exchanger contributes to Ca2+ removal at [Ca2+]i above 1 microM, where it accounts for >35% of the total removal rate. At lower [Ca2+]i, thapsigargin-sensitive Ca2+-ATPases constitute a major (70% at 0.8 microM [Ca2+]i) mechanism for Ca2+ removal. The beta-cell Na/Ca exchanger is electrogenic and has a stoichiometry of three Na+ for one Ca2+. The current arising from its operation reverses at approximately -20 mV (current inward at more negative voltages), has a conductance of 53 pS/pF (14 microM [Ca2+]i), and is abolished by removal of external Na+ or by intracellularly applied XIP (exchange inhibitory peptide). Inhibition of the exchanger results in shortening (50%) of the bursts of action potentials of glucose-stimulated beta-cells in intact islets and a slight (5 mV) hyperpolarization. Mathematical simulations suggest that the stimulatory action of glucose on beta-cell electrical activity may be accounted for in part by glucose-induced reduction of the cytoplasmic Na+ concentration with resultant activation of the exchanger.
机译:我们将膜片钳技术与细胞质Ca2 +浓度([Ca2 +] i)的微荧光法相结合,以表征小鼠β细胞中的Na / Ca交换,并确定其对于[Ca2 +] i缓冲和塑造葡萄糖诱导的电的重要性活动。交换剂在[Ca2 +] i大于1 microM时有助于去除Ca2 +,占总去除率的> 35%。在较低的[Ca2 +] i处,毒胡萝卜素敏感的Ca2 + -ATPase构成了去除Ca2 +的主要机制(在0.8 microM [Ca2 +] i时为70%)。 β细胞Na / Ca交换剂是电动的,化学计量为一个Ca2 +为三个Na +。其工作产生的电流在大约-20 mV时反向(在更多负电压下向内流入),电导为53 pS / pF(14 microM [Ca2 +] i),并且通过去除外部Na +或通过细胞内施加而被消除XIP(交换抑制肽)。交换子的抑制导致完整胰岛中葡萄糖刺激的β细胞的动作电位猝发缩短(50%),并出现轻微(5 mV)超极化。数学模拟表明,葡萄糖对β细胞电活动的刺激作用可能部分归因于葡萄糖诱导的细胞质Na +浓度降低,并导致交换剂活化。

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