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细胞外ATP触发培养的牛主动脉内皮细胞中钙依赖性钾通道的双相激活过程。

External ATP triggers a biphasic activation process of a calcium-dependent K+ channel in cultured bovine aortic endothelial cells.

作者信息

Sauve R, Parent L, Simoneau C, Roy G

机构信息

Departement de Physiologie, Université de Montreal, Canada.

出版信息

Pflugers Arch. 1988 Oct;412(5):469-81. doi: 10.1007/BF00582535.

Abstract

We have used the patch-clamp method in order to investigate the single-channel events underlying the effect of external ATP on the potassium permeability of bovine aortic endothelial cells (BAE). The results obtained from cell-attached and inside-out experiments led first to conclude that BAE cells possess an inward rectifying potassium channel activated by internal calcium at micromolar concentrations. The channel conductance for inward currents was estimated at 40 pS in symmetrical 200 mM KCl and the open-channel probability was found to be voltage insensitive within the membrane voltage range -50 to -100 mV. Based on results obtained in the cell-attached configuration, it could next be established that external ATP and ADP at micromolar concentrations could trigger, via the stimulation of P2 purinergic receptors, a time variable activation process of the observed calcium-dependent potassium channel. This activation process was found to occur in a biphasic manner with an initial phase independent of the presence of calcium in the cell bathing medium. The second phase which could be blocked by calcium channel blockers such as Co2+ or La3+ required, however, the presence of external calcium and could be abolished by depolarizing the cells using high K+ external solutions. Another important aspect related to this phenomenon was the observation that removing ATP from the external medium during the second phase led to a complete abolition of the associated calcium-dependent potassium channel activation process. It is suggested from these results that the action of ATP on the potassium permeability of BAE cells is related to a second messenger mediated release of calcium from internal calcium stores coupled to an ATP-dependent calcium influx abolished at depolarizing voltages.

摘要

我们采用膜片钳方法来研究外源性ATP对牛主动脉内皮细胞(BAE)钾离子通透性影响的单通道事件。从细胞贴附式和内面向外式实验获得的结果首先得出结论,BAE细胞具有一种内向整流钾通道,在微摩尔浓度的细胞内钙作用下被激活。在对称的200 mM KCl中,内向电流的通道电导估计为40 pS,并且在膜电压范围-50至-100 mV内,开放通道概率对电压不敏感。基于在细胞贴附式构型中获得的结果,接下来可以确定,微摩尔浓度的外源性ATP和ADP可通过刺激P2嘌呤能受体,触发所观察到的钙依赖性钾通道的时间可变激活过程。发现这种激活过程以双相方式发生,初始阶段与细胞外浴液中钙的存在无关。然而,可被钙通道阻滞剂如Co2+或La3+阻断的第二阶段需要细胞外钙的存在,并且可通过使用高钾细胞外溶液使细胞去极化来消除。与该现象相关的另一个重要方面是观察到,在第二阶段从细胞外培养基中去除ATP会导致相关的钙依赖性钾通道激活过程完全消除。从这些结果表明,ATP对BAE细胞钾离子通透性的作用与第二信使介导的细胞内钙库中钙的释放有关,同时伴有在去极化电压下被消除的ATP依赖性钙内流。

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