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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Na+/Ca2+ exchangers and Orai channels jointly refill endoplasmic reticulum (ER) Ca2+ via ER nanojunctions in vascular endothelial cells
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Na+/Ca2+ exchangers and Orai channels jointly refill endoplasmic reticulum (ER) Ca2+ via ER nanojunctions in vascular endothelial cells

机译:Na + / Ca2 +交换剂和奥莱通道通过血管内皮细胞中的ER纳米函数共填充内质网(ER)Ca2 +

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摘要

We investigated the role of Na+/ Ca2+ exchange (NCX) in the refilling of endoplasmic reticulum (ER) Ca2+ in vascular endothelial cells under various conditions of cell stimulation and plasma membrane (PM) polarization. Better understanding of the mechanisms behind basic ER Ca2+ content regulation is important, since current hypotheses on the possible ultimate causes of ER stress point to deterioration of the Ca2+ transport mechanism to/from ER itself. We measured [Ca2+](i) temporal changes by Fura-2 fluorescence under experimental protocols that inhibit a host of transporters (NCX, Orai, non-selective transient receptor potential canonical (TRPC) channels, sarco/endoplasmic reticulum Ca2+ ATPase (SERCA), Na+/ K+ ATPase (NKA)) involved in the Ca2+ communication between the extracellular space and the ER. Following histamine-stimulated ER Ca2+ release, blockade of NCX Ca2+-influx mode (by 10 mu M KB-R7943) diminished the ER refilling capacity by about 40%, while in Orai1 dominant negative-transfected cells NCX blockade attenuated ER refilling by about 60%. Conversely, inhibiting the ouabain sensitive NKA (10 nM ouabain), which may be localized in PM-ER junctions, increased the ER Ca2+ releasable fraction by about 20%, thereby supporting the hypothesis that this process of privileged ER refilling is junction-mediated. Junctions were observed in the cell ultrastructure and their main parameters of membrane separation and linear extension were (9.6 +/- 3.8) nm and (128 +/- 63) nm, respectively. Our findings point to a process of privileged refilling of the ER, in which NCX and store-operated Ca2+ entry via the stromal interaction molecule (STIM)-Orai system are the sole protagonists. These results shed light on the molecular machinery involved in the function of a previously hypothesized subplasmalemmal Ca2+ control unit during ER refilling with extracellular Ca2+.
机译:我们在细胞刺激和质子膜(PM)极化的各种条件下,研究了Na + / Ca2 +交换(NCX)在血管内皮细胞的重新填充内质网(ER)Ca2 +中的作用。更好地了解基本ER CA2 +内容调节后的机制很重要,因为当前假设对ER应力的可能性最终原因,以达到/从呃自身劣化。我们测量[Ca2 +](i)呋喃-2荧光在抑制一系列转运蛋白的实验方案(NCX,ORAI,非选择性瞬时受体潜在规范(TRPC)通道,Sarco /内质网Ca2 + ATP酶(Serca)下的实验方案中的时间变化,Na + / k + Atpase(NKA)涉及细胞外空间和ER之间的CA2 +通信。组胺刺激的ER CA2 +释放后,NCX CA2 + -INOUX模式的阻断(通过10μmkB-R7943)将ER再填充容量减少约40%,而在ORAI1中显性的负转染细胞NCX封锁衰减ER再填充约60 %。相反,抑制可以在PM-ER结的局部化的Oubabain敏感性NKA(10nm Ouabain),将ER Ca2 +可释放分数增加约20%,从而支持该特征ER再填充的该方法是结介导的假设。在细胞超微结构中观察到结,并且它们的膜分离和线性延伸的主要参数分别为(9.6 +/- 3.8)nm和(128 +/- 63)nm。我们的发现点指向ER的特权重新填充的过程,其中NCX和通过基质相互作用分子(SIT)-ORAI系统的储存CA2 +进入是唯一的主角。这些结果在用细胞外Ca2 +重新填充时,在先前假设的替代术症Ca2 +控制单元中参与的分子机械上的光。

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