Larsson-Nyrén G, Sehlin J, Rorsman P, Renström E
Department of Histology and Cell Biology, Umeå University, Sweden.
Pflugers Arch. 2001 Feb;441(5):587-95. doi: 10.1007/s004240000426.
The effects of the chaotrophic anion perchlorate (ClO4-) on glucose-induced electrical activity, exocytosis and ion channel activity in mouse pancreatic B-cells were investigated by patch-clamp recordings and capacitance measurements. ClO4- stimulated glucose-induced electrical activity and increased the action potential frequency by 70% whilst not affecting the membrane potential when applied in the presence of a subthreshold concentration of the sugar. ClO4- did not influence ATP-dependent K (KATP) channel activity and voltage-gated delayed K+ current. Similarly, ClO4- had no effect on Ca2+-dependent exocytosis. The stimulation of electrical activity and insulin secretion was instead attributable to an enhancement of the whole-cell Ca2+ current. This effect was particularly pronounced at voltages around the threshold for action potential initiation and a doubling of the current amplitude was observed at -30 mV. This was due to a 7-mV shift in the gating of the Ca2+ current towards negative voltages. The action of ClO4- was more pronounced when added in the presence of 0.1 mM BAY K8644, whereas no stimulation was observed when applied at a maximal concentration of the agonist (1 mM). Single-channel recordings revealed that the effect of ClO4- on whole-cell currents was principally due to a 60% increase in the mean duration of the long openings and the number of active channels. We propose that ClO4- stimulates insulin secretion and electrical activity by exerting a BAY K8644-like action on Ca2+ channel gating.
通过膜片钳记录和电容测量,研究了离液序列高的阴离子高氯酸盐(ClO4-)对小鼠胰腺β细胞中葡萄糖诱导的电活动、胞吐作用和离子通道活性的影响。在亚阈值浓度的糖存在下施加ClO4-时,它刺激了葡萄糖诱导的电活动,并使动作电位频率增加了70%,同时不影响膜电位。ClO4-不影响ATP依赖性钾(KATP)通道活性和电压门控延迟钾电流。同样,ClO4-对钙依赖性胞吐作用也没有影响。电活动和胰岛素分泌的刺激作用反而归因于全细胞钙电流的增强。这种效应在动作电位起始阈值附近的电压下尤为明显,在-30 mV时观察到电流幅度增加了一倍。这是由于钙电流的门控向负电压方向偏移了7 mV。当在0.1 mM BAY K8644存在下添加ClO4-时,其作用更为明显,而在激动剂的最大浓度(1 mM)下施加时则未观察到刺激作用。单通道记录显示,ClO4-对全细胞电流的影响主要是由于长开放的平均持续时间增加了60%以及活性通道数量增加。我们提出,ClO4-通过对钙通道门控发挥类似BAY K8644的作用来刺激胰岛素分泌和电活动。