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在肺泡上皮细胞(L2)中,ATP通过嘌呤受体刺激后L型钙离子通道的激活。

Activation of L-type Ca2+ channels after purinoceptor stimulation by ATP in an alveolar epithelial cell (L2).

作者信息

Dietl P, Haller T, Wirleitner B, Völkl H, Friedrich F, Striessnig J

机构信息

Department of Physiology, University of Innsbruck, Austria.

出版信息

Am J Physiol. 1995 Dec;269(6 Pt 1):L873-83. doi: 10.1152/ajplung.1995.269.6.L873.

Abstract

In the alveolar epithelium, ATP increases the intracellular Ca2+ concentration ([Ca2+]i) and stimulates the secretion of surfactant. We investigated the effects of extracellular ATP on the membrane potential (Vm), the whole cell current, and [Ca2+]i in a cloned rat alveolar epithelial cell line (L2). In microelectrode experiments, ATP caused a sustained depolarization of Vm, resulting from the activation of cation and Cl- conductances, as revealed by ion replacements. The depolarizing phase of the Vm shift was superimposed by Ca(2+)-dependent depolarizing spikes. Spikes were also induced by depolarizing Vm with charybdotoxin or maitotoxin. Replacement of bath Ca2+ with Ba2+ or Sr2+ also evoked repetitive spikes. Ca2+ (Ba2+, Sr2+)-induced spikes were unaffected by pretreatment with ionomycin or thapsigargin. They were, however, completely abolished by (+)-isradipine (100 nM) and stimulated by BAY K 8644 (100 nM). Whole cell L-type Ca2+ (Ba2+, Sr2+) currents were similarly abolished by (+)-isradipine and enhanced by BAY K 8644. L-type Ca2+ channels were further confirmed by demonstrating high-affinity dihydropyridine receptors stereoselectively labeled by (+)-[3H]-isradipine, apparent dissociation constant < 1 nM. In fura 2 experiments, ATP evoked a transient elevation of [Ca2+]i in the absence of Ca2+ and a biphasic sustained elevation in the presence of Ca2+, indicating intracellular Ca2+ release and Ca2+ entry. The ATP-induced fura 2 signals were unaffected by (+)-isradipine. We conclude that in L2 cells, L-type Ca2+ channels are activated after purinoceptor stimulation by ATP. The overall [Ca2+]i response is, however, mediated by Ca2+ entry through and (+)-isradipine-insensitive mechanism and by intracellular Ca2+ release.

摘要

在肺泡上皮细胞中,三磷酸腺苷(ATP)可增加细胞内钙离子浓度([Ca2+]i)并刺激表面活性剂的分泌。我们研究了细胞外ATP对克隆的大鼠肺泡上皮细胞系(L2)的膜电位(Vm)、全细胞电流和[Ca2+]i的影响。在微电极实验中,ATP导致Vm持续去极化,这是由阳离子和氯离子电导的激活引起的,离子置换实验揭示了这一点。Vm偏移的去极化阶段叠加有依赖于Ca(2+)的去极化尖峰。用沙蚕毒素或刺尾鱼毒素使Vm去极化也可诱导尖峰。用Ba2+或Sr2+替代浴液中的Ca2+也会引发重复尖峰。Ca2+(Ba2+、Sr2+)诱导的尖峰不受离子霉素或毒胡萝卜素预处理的影响。然而,它们被(+)-异搏定(100 nM)完全消除,并被BAY K 8644(100 nM)刺激。全细胞L型Ca2+(Ba2+、Sr2+)电流同样被(+)-异搏定消除,并被BAY K 8644增强。通过证明(+)-[3H]-异搏定以高亲和力立体选择性标记的二氢吡啶受体(表观解离常数<1 nM),进一步证实了L型Ca2+通道。在fura 2实验中,ATP在无Ca2+时引起[Ca2+]i短暂升高,在有Ca2+时引起双相持续升高,表明细胞内Ca2+释放和Ca2+内流。ATP诱导的fura 2信号不受(+)-异搏定的影响。我们得出结论,在L2细胞中,ATP刺激嘌呤受体后激活L型Ca2+通道。然而,总的[Ca2+]i反应是由通过一种对(+)-异搏定不敏感的机制的Ca2+内流和细胞内Ca2+释放介导的。

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