首页> 外文期刊>The Journal of Physiology >Regulation of bradykinin-induced activation of volume-sensitive outwardly rectifying anion channels by Ca2+ nanodomains in mouse astrocytes.
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Regulation of bradykinin-induced activation of volume-sensitive outwardly rectifying anion channels by Ca2+ nanodomains in mouse astrocytes.

机译:缓激肽诱导的Ca2 +纳米域在小鼠星形胶质细胞中激活的体积敏感的向外整流阴离子通道的激活。

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Volume-sensitive outwardly rectifying (VSOR) anion channels play a key role in a variety of essential cell functions including cell volume regulation, cell death induction and intercellular communications. We previously demonstrated that, in cultured mouse cortical astrocytes, VSOR channels are activated in response to an inflammatory mediator, bradykinin, even without an increase in cell volume. Here we report that this VSOR channel activation must be mediated firstly by 'nanodomains' of high [Ca2+]i generated at the sites of both Ca2+ release from intracellular Ca2+ stores and Ca2+ entry at the plasma membrane. Bradykinin elicited a [Ca2+]i rise, initially caused by Ca2+ release and then by Ca2+ entry. Suppression of the [Ca2+]i rise by removal of extracellular Ca2+ and by depletion of Ca2+ stores suppressed the VSOR channel activation in a graded manner. Quantitative RT-PCR and suppression of gene expression with small interfering RNAs indicated that Orai1, TRPC1 and TRPC3 channels are involved in the Ca2+ entry and especially the entry through TRPC1 channels is strongly involved in the bradykinin-induced activation of VSOR channels. Moreover, Ca2+-dependent protein kinases Calpha and beta were found to mediate the activation after the [Ca2+]i rise through inducing generation of reactive oxygen species. Intracellular application of a slow Ca2+ chelator, EGTA, at 10 mM or a fast chelator, BAPTA, at 1 mM, however, had little effect on the VSOR channel activation. Application of BAPTA at 10 mM suppressed significantly the activation to one-third. These suggest that the VSOR channel activation induced by bradykinin is regulated by Ca2+ in the vicinity of individual Ca2+ release and entry channels, providing a basis for local control of cell volume regulation and intercellular communications.
机译:体积敏感的向外整流(VSOR)阴离子通道在多种基本细胞功能(包括细胞体积调节,细胞死亡诱导和细胞间通讯)中起关键作用。我们先前证明,在培养的小鼠皮质星形胶质细胞中,即使没有增加细胞体积,VSOR通道也会响应炎症介质缓激肽而被激活。在这里,我们报告此VSOR通道激活必须首先由细胞内Ca2 +存储中Ca2 +释放和质膜上Ca2 +进入的高[Ca2 +] i的“纳米域”介导。缓激肽引起[Ca2 +] i升高,最初是由Ca2 +释放引起,然后由Ca2 +进入引起。通过去除细胞外Ca2 +和消耗Ca2 +来抑制[Ca2 +] i升高,以分级方式抑制了VSOR通道的活化。定量RT-PCR和小干扰RNA抑制基因表达表明,Orai1,TRPC1和TRPC3通道参与Ca2 +的进入,尤其是通过TRPC1通道的进入与缓激肽诱导的VSOR通道的激活密切相关。此外,发现Ca2 +依赖性蛋白激酶Calpha和β通过诱导活性氧的产生介导[Ca2 +] i升高后介导激活。胞内施用10 mM的慢速Ca2 +螯合剂EGTA或1 mM的快速螯合剂BAPTA对VSOR通道激活几乎没有影响。在10 mM处使用BAPTA可以将活化显着抑制到三分之一。这些表明由缓激肽诱导的VSOR通道激活在各个Ca 2+释放和进入通道附近由Ca 2+调节,为局部控制细胞体积调节和细胞间通讯提供了基础。

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