首页> 美国卫生研究院文献>The Journal of Physiology >Delayed autoregulation of the Ca2+ signals resulting from capacitative Ca2+ entry in bovine pulmonary artery endothelial cells.
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Delayed autoregulation of the Ca2+ signals resulting from capacitative Ca2+ entry in bovine pulmonary artery endothelial cells.

机译:Ca2 +信号的延迟自动调节该信号是由Ca2 +进入牛肺动脉内皮细胞引起的。

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摘要

1. In calf pulmonary artery endothelial (CPAE) cells loaded with fura-2, the effects of ATP on Ca2+ entry were mediated entirely by the ability of P2U purinoceptors to stimulate InsP3 formation, empty intracellular Ca2+ stores and thereby activate capacitative Ca2+ entry. 2. Restoration of extracellular Ca2+ to cells with empty intracellular stores evoked transient increases in cytosolic [Ca2+] ([Ca2+]i) which then declined to an elevated plateau. These overshoots in [Ca2+]i were not a consequence of store refilling nor of desensitization of the capacitative pathway. Similar responses were recorded from cells in which Ca2+ uptake into mitochondria had been inhibited by microinjection of Ruthenium Red. The amplitudes of the capacitative Ca2+ signals decreased at lower extracellular [Ca2+], but [Ca2+]i invariably overshot before slowly declining to an elevated plateau. Even modest increases in [Ca2+]i therefore caused a delayed attenuation of the Ca2+ signal evoked by capacitative Ca2+ entry. 3. Modest pre-elevation of [Ca2+]i inhibited the ability of subsequent capacitative Ca2+ entry to further increase [Ca2+]i. The onset of the inhibition was slow (half-time (t1/2), approximately 100 s) and more tightly correlated with the preceding peak [Ca2+]i than with the [Ca2+]i immediately preceding Ca2+ entry. Recovery was also slow and complete only after [Ca2+]i had returned to its basal level for 320 +/- 3 s. 4. In thapsigargin-treated cells loaded with mag-fura-2, the peak [Ca2+]i that followed restoration of extracellular Ca2+ was accompanied by an abrupt approximately 2.5-fold decrease in the rate of Mn2+ entry, which then continued indefinitely at the reduced rate, demonstrating a rapid partial inactivation of the capacitative pathway. 5. The half-time for Ca2+ removal from the cytosol was significantly slower during the rising (t 1/2 = 22 +/- 2.5 s) than during the falling (t 1/2 = 7.1 +/- 0.7 s) phase of the Ca2+ overshoot evoked by addition of extracellular Ca2+ to thapsigargin-treated cells. 6. We conclude that an increase in [Ca2+]i rapidly inhibits the capacitative pathway and more slowly activates mechanisms that remove Ca2+ from the cytosol. Reversal of either or both of these regulatory mechanisms can occur only a considerable time after [Ca2+]i has been completely restored to its resting level. These mechanisms are likely to protect cells from excessive increases in [Ca2+]i and contribute to oscillatory changes in [Ca2+]i.
机译:1.在装有fura-2的小腿肺动脉内皮(CPAE)细胞中,ATP对Ca2 +进入的影响完全由P2U嘌呤受体刺激InsP3形成,细胞内Ca2 +储存空并从而激活电容性Ca2 +进入的能力介导。 2.将细胞外Ca2 +还原为具有空细胞内储存的细胞,引起细胞质[Ca2 +]([Ca2 +] i)瞬时增加,然后下降至升高的平台。 [Ca2 +] i中的这些上调不是存储区重新填充的结果,也不是电容性途径的脱敏性的结果。从细胞中记录了类似的反应,其中通过微量注射钌红抑制了Ca2 +吸收到线粒体中。电容性Ca2 +信号的幅度在较低的细胞外[Ca2 +]处降低,但[Ca2 +] i在缓慢下降至升高的平台之前总是超调。因此,即使[Ca2 +] i的适度增加,也会导致电容性Ca2 +进入引起的Ca2 +信号延迟衰减。 3. [Ca2 +] i的适度预升高抑制了随后电容性Ca2 +进入的能力进一步增加[Ca2 +] i。抑制作用的起效较慢(一半时间(t1 / 2),约100 s),并且与前面的[Ca2 +] i峰的相关性比与紧接在Ca2 +进入之前的[Ca2 +] i的紧密相关。只有在[Ca2 +] i恢复到其基础水平达320 +/- 3 s之后,恢复也缓慢而完全。 4.在装有mag-fura-2的毒胡萝卜素处理过的细胞中,伴随细胞外Ca2 +还原的峰[Ca2 +] i伴随着Mn2 +进入速率的突然下降约2.5倍,然后在无限长的时间内继续持续。降低的速率,证明了电容途径的快速部分失活。 5.在上升阶段(t 1/2 = 22 +/- 2.5 s)期间,从胞质溶胶中去除Ca2 +的半场时间明显慢于下降阶段(t 1/2 = 7.1 +/- 0.7 s)。向毒胡萝卜素处理的细胞中添加细胞外Ca2 +会引起Ca2 +过冲。 6.我们得出结论,[Ca2 +] i的增加会迅速抑制电容性途径,并更缓慢地激活从细胞质中去除Ca2 +的机制。在[Ca2 +] i已完全恢复到其静止水平后的相当长的一段时间内,这些调节机制中的一个或两个都可能发生逆转。这些机制可能保护细胞免受[Ca2 +] i的过度增加,并有助于[Ca2 +] i的振荡变化。

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