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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Disruption of actin cytoskeleton in cultured rat astrocytes suppresses ATP- and bradykinin-induced (Ca(2+))(i) oscillations by reducing the coupling efficiency between Ca(2+) release, capacitative Ca(2+) entry, and store refilling.
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Disruption of actin cytoskeleton in cultured rat astrocytes suppresses ATP- and bradykinin-induced (Ca(2+))(i) oscillations by reducing the coupling efficiency between Ca(2+) release, capacitative Ca(2+) entry, and store refilling.

机译:肌动蛋白细胞骨架在培养的大鼠星形胶质细胞中的破坏通过降低Ca(2+)释放,电容性Ca(2+)进入和存储填充之间的耦合效率来抑制ATP和缓激肽诱导的(Ca(2 +))(i)振荡。 。

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Oscillations of [Ca(2+)](i) which are believed to be important in regulation of cellular behaviour or gene expression, require Ca(2+) entry via capacitative Ca(2+) influx for store refilling. However, the mediator between Ca(2+) store content and activation of Ca(2+) influx is still elusive. There is also controversy about the role of the actin cytoskeleton in this coupling. Therefore, the importance of an intact actin cytoskeleton on ATP- and bradykinin-elicited Ca(2+) signalling was investigated in cultured rat astrocytes by treatment with cytochalasin D which changes the morphology of the cells from an extended to a rounded shape. Cytochalasin D-treated astrocytes were unable, upon prolonged stimulation with the P2Y receptor agonist ATP, to generate oscillations of [Ca(2+)](i) which are, however, seen in 54% of untreated control cells. In cytochalasin D-treated cells, the amplitude of the initial Ca(2+) response was reduced mainly by disturbing the Ca(2+) influx, and, moreover, the total Ca(2+) pool which is sensitive to thapsigargin or cyclopiazonic acid was diminished.Thus, disruption of the cytoskeleton blocks agonist-elicited [Ca(2+)](i) oscillations apparently by reducing the coupling efficiency between intracellular Ca(2+) stores and capacitative Ca(2+) entry.
机译:认为[Ca(2 +)](i)的振荡在细胞行为或基因表达的调节中很重要,它需要通过电容性Ca(2+)涌入进行Ca(2+)进入以补充存储。但是,之间的Ca(2+)存储内容和Ca(2+)涌入激活之间的中介仍然难以捉摸。关于肌动蛋白细胞骨架在这种偶联中的作用也存在争议。因此,完整的肌动蛋白细胞骨架对ATP-和缓激肽引起的Ca(2+)信号传导的重要性已通过细胞松弛素D的处理在培养的大鼠星形胶质细胞中进行了研究,细胞松弛素D将细胞的形态从扩展形变为圆形。细胞松弛素D处理的星形胶质细胞无法在P2Y受体激动剂ATP长时间刺激下产生[Ca(2 +)](i)振荡,但是在54%的未处理对照细胞中可见。在细胞松弛素D处理的细胞中,初始Ca(2+)响应的幅度主要是通过干扰Ca(2+)流入,以及对thapsigargin或cyclopiazonic敏感的总Ca(2+)库而降低。因此,细胞骨架阻滞激动剂引起的[Ca(2 +)](i)振荡显然是通过降低细胞内Ca(2+)存储和电容性Ca(2+)进入之间的耦合效率来实现的。

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