首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >STIM and Orai Proteins in Calcium Signaling: Sodium entry through endothelial store-operated calcium entry channels: regulation by Orai1
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STIM and Orai Proteins in Calcium Signaling: Sodium entry through endothelial store-operated calcium entry channels: regulation by Orai1

机译:钙信号传导中的STIM和Orai蛋白:钠通过内皮存储操纵的钙进入通道进入:由Orai1调控

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摘要

Orai1 interacts with transient receptor potential protein of the canonical subfamily (TRPC4) and contributes to calcium selectivity of the endothelial cell store-operated calcium entry current (ISOC). Orai1 silencing increases sodium permeability and decreases membrane-associated calcium, although it is not known whether Orai1 is an important determinant of cytosolic sodium transitions. We test the hypothesis that, upon activation of store-operated calcium entry channels, Orai1 is a critical determinant of cytosolic sodium transitions. Activation of store-operated calcium entry channels transiently increased cytosolic calcium and sodium, characteristic of release from an intracellular store. The sodium response occurred more abruptly and returned to baseline more rapidly than did the transient calcium rise. Extracellular choline substitution for sodium did not inhibit the response, although 2-aminoethoxydiphenyl borate and YM-58483 reduced it by ∼50%. After this transient response, cytosolic sodium continued to increase due to influx through activated store-operated calcium entry channels. The magnitude of this sustained increase in cytosolic sodium was greater when experiments were conducted in low extracellular calcium and when Orai1 expression was silenced; these two interventions were not additive, suggesting a common mechanism. 2-Aminoethoxydiphenyl borate and YM-58483 inhibited the sustained increase in cytosolic sodium, only in the presence of Orai1. These studies demonstrate that sodium permeates activated store-operated calcium entry channels, resulting in an increase in cytosolic sodium; the magnitude of this response is determined by Orai1.
机译:Orai1与规范性亚家族的瞬态受体电位蛋白(TRPC4)相互作用,并有助于内皮细胞存储操作钙进入电流(ISOC)的钙选择性。尽管尚不知道Orai1是否是胞质钠过渡的重要决定因素,但Orai1沉默增加了钠的通透性并降低了与膜相关的钙。我们测试的假设是,在激活商店操作的钙进入通道后,Orai1是胞质钠过渡的关键决定因素。商店操作的钙进入通道的激活会瞬时增加胞质钙和钠的含量,这是从细胞内商店释放的特征。与短暂的钙升高相比,钠响应更突然发生,并更快返回基线。尽管2-氨基乙氧基二苯基硼酸酯和YM-58483将其降低了约50%,但细胞外胆碱替代钠并没有抑制该反应。在此短暂反应后,由于通过激活的储存液操纵的钙进入通道的流入,胞质钠持续增加。当在低细胞外钙中进行实验并且沉默Orai1表达时,胞质钠持续增加的幅度更大。这两种干预措施不是相加的,暗示了一个共同的机制。仅在Orai1存在下,2-氨基乙氧基二苯基硼酸酯和YM-58483抑制胞质钠的持续增加。这些研究表明,钠的渗透激活了钙存储的钙通道,从而增加了细胞内钠的含量。此响应的大小由Orai1确定。

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