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电压门控钠通道和钙通道在促性腺激素释放激素诱导的成年大鼠促性腺激素分泌细胞膜电位变化中的作用

Role of voltage-gated Na+ and Ca2+ channels in gonadotropin-releasing hormone-induced membrane potential changes in identified rat gonadotropes.

作者信息

Tse A, Hille B

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Seattle 98195.

出版信息

Endocrinology. 1993 Apr;132(4):1475-81. doi: 10.1210/endo.132.4.8384989.

Abstract

We have previously reported that GnRH induces rhythmic hyperpolarizations in male rat (35- to 45-day-old) gonadotropes by periodically opening apamin-sensitive Ca(2+)-activated K+ channels. Using the whole cell recording technique, we now show that these gonadotropes, identified with the reverse hemolytic plaque assay, express tetrodotoxin-sensitive Na+ channels and omega-conotoxin-insensitive, high voltage-activated Ca2+ channels that are partially sensitive to dihydropyridines. We found no low voltage-activated Ca2+ channels in these cells. At the normal resting potential, about 93% of the Na+ channels and 50% of the Ca2+ channels are inactivated. The GnRH-induced hyperpolarizations transiently remove the resting inactivation of Na+ and Ca2+ channels, enabling them to initiate action potentials at the termination of each hyperpolarization. Opening of Na+ channels accounts for the high rate of rise and the positive peak of the action potential. In addition, a significant fraction of Ca2+ channels should be activated during the action potentials, allowing a voltage-gated entry of extracellular Ca2+ that can enhance the frequency and amplitude of GnRH-induced intracellular Ca2+ oscillations. Therefore, we envision the following role for action potentials in GnRH-stimulated Ca2+ responses: action potentials will open voltage-gated Ca2+ channels that allow entry of extracellular Ca2+, which can help to replenish the intracellular Ca2+ store and act as a coactivator in the stimulation of intracellular Ca2+ release from the inositol 1,4,5-trisphosphate-sensitive store.

摘要

我们之前曾报道,促性腺激素释放激素(GnRH)通过周期性打开蜂毒明肽敏感的钙激活钾通道,诱导雄性大鼠(35至45日龄)促性腺细胞产生节律性超极化。使用全细胞记录技术,我们现在表明,这些通过反向溶血空斑试验鉴定的促性腺细胞表达河豚毒素敏感的钠通道和ω-芋螺毒素不敏感、高电压激活的钙通道,这些钙通道对二氢吡啶部分敏感。我们在这些细胞中未发现低电压激活的钙通道。在正常静息电位下,约93%的钠通道和50%的钙通道失活。GnRH诱导的超极化短暂消除钠通道和钙通道的静息失活,使它们能够在每次超极化结束时引发动作电位。钠通道的开放导致动作电位的快速上升和正峰。此外,在动作电位期间,相当一部分钙通道应被激活,允许细胞外钙通过电压门控进入,这可以增强GnRH诱导的细胞内钙振荡的频率和幅度。因此,我们设想动作电位在GnRH刺激的钙反应中具有以下作用:动作电位将打开电压门控钙通道,允许细胞外钙进入,这有助于补充细胞内钙储存,并在刺激肌醇1,4,5-三磷酸敏感储存释放细胞内钙时作为共激活剂。

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