首页> 美国卫生研究院文献>The Journal of General Physiology >Simultaneous measurement of Ca2+ release and influx into smooth muscle cells in response to caffeine. A novel approach for calculating the fraction of current carried by calcium
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Simultaneous measurement of Ca2+ release and influx into smooth muscle cells in response to caffeine. A novel approach for calculating the fraction of current carried by calcium

机译:同时测量咖啡因对Ca2 +释放和流入平滑肌细胞的影响。一种计算钙携带的电流比例的新颖方法

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摘要

Activation of ryanodine receptors on the sarcoplasmic reticulum of single smooth muscle cells from the stomach muscularis of Bufo marinus by caffeine is accompanied by a rise in cytoplasmic [Ca2+] ([Ca2+]i), and the opening of nonselective cationic plasma membrane channels. To understand how each of these pathways contributes to the rise in [Ca2+]i, one needs to separately monitor Ca2+ entry through them. Such information was obtained from simultaneous measurements of ionic currents and [Ca2+]i by the development of a novel and general method to assess the fraction of current induced by an agonist that is carried by Ca2+. Application of this method to the currents induced in these smooth muscle cells by caffeine revealed that approximately 20% of the current passing through the membrane channels activated following caffeine application is carried by Ca2+. Based on this information we found that while Ca2+ entry through these channels rises slowly, release of Ca2+ from stores, while starting at the same time, is much faster and briefer. Detailed quantitative analysis of the Ca2+ release from stores suggests that it most likely decays due to depletion of Ca2+ in those stores. When caffeine was applied twice to a cell with only a brief (30 s) interval in between, the amount of Ca2+ released from stores was markedly diminished following the second caffeine application whereas the current carried in part by Ca2+ entry across the plasma membrane was not significantly affected. These and other studies described in the preceding paper indicate that activation of the nonselective cation plasma membrane channels in response to caffeine was not caused as a consequence of emptying of internal Ca2+ stores. Rather, it is proposed that caffeine activates these membrane channels either by direct interaction or alternatively by a linkage between ryanodine receptors on the sarcoplasmic reticulum and the nonselective cation channels on the surface membrane.
机译:咖啡因激活蟾蜍海马的胃肌单个平滑肌细胞的肌质网上的莱丹碱受体被咖啡因激活,并伴有细胞质[Ca2 +]([Ca2 +] i)的增加,以及非选择性阳离子质膜通道的开放。为了了解这些途径中的每一个如何促进[Ca2 +] i的增加,需要单独监视通过它们的Ca2 +进入。通过开发一种新颖而通用的方法来评估离子电流和[Ca2 +] i,以评估由Ca2 +携带的激动剂诱导的电流分数,从而获得了此类信息。该方法对咖啡因在这些平滑肌细胞中诱导的电流的应用显示,通过咖啡因施加后激活的通过膜通道的电流中,约有20%由Ca2 +承载。根据这些信息,我们发现虽然通过这些通道进入的Ca2 +缓慢上升,但是从商店中释放Ca2 +的同时开始,却更快,更简短。对商店中Ca2 +释放的详细定量分析表明,它最有可能由于这些商店中Ca2 +的耗尽而衰减。当将咖啡因两次间隔两次(30 s)短暂进入细胞时,第二次咖啡因施用后从储存中释放的Ca2 +量明显减少,而部分由Ca2 +进入整个质膜的电流则没有受到很大影响。先前论文中描述的这些研究和其他研究表明,由于内部Ca2 +存储库的排空,未响应咖啡因而激活非选择性阳离子质膜通道。相反,提出咖啡因通过直接相互作用或可替代地通过肌质网上的莱丹碱受体与表面膜上的非选择性阳离子通道之间的连接来激活这些膜通道。

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