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首页> 外文期刊>The Biochemical Journal >Role of sarcoplasmic/endoplasmic-reticulum Ca2+-ATPases in mediating Ca2+ waves and local Ca2+-release microdomains in cultured glia.
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Role of sarcoplasmic/endoplasmic-reticulum Ca2+-ATPases in mediating Ca2+ waves and local Ca2+-release microdomains in cultured glia.

机译:肌浆/内质网Ca2 + -ATPases在介导的胶质细胞中的Ca2 +波和局部Ca2 +释放微结构域中的作用。

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We have characterized the sarcoplasmic-endoplasmic reticulum Ca2+-ATPase (SERCA) pumps in cultured rat cortical type-1 astrocytes, type-2 astrocytes and oligodendrocytes. Perfusion with 10 microM cyclopiazonic acid (CPA) or 1 microM thapsigargin evoked a large and persistent elevation in cytosolic [Ca2+] in normal Ca2+-containing medium and a small and transient increase in nominally Ca2+-free medium. Subtraction of the response in Ca2+-free medium from that in the control revealed a slow-onset Ca2+-entry response to SERCA inhibition, which began after most of the store depletion had occurred. Thapsigargin- and CPA-induced responses propagated as Ca2+ waves, which began in several distinct cellular sites and travelled throughout the cell and through nearby cells, in confluent cultures. Propagation was supported by specialized Ca2+-release sites where the amplitude of the response was significantly higher and the rate of rise steeper. Such higher Ca2+-release kinetics were observed at these sites duringIns(1,4,5)P3-mediated Ca2+ waves in the same cells. Fluorescently tagged thapsigargin labelled SERCA pumps throughout glial cell bodies and processes. In oligodendrocyte processes, multiple domains with elevated SERCA staining were always associated with mitochondria. Our results are consistent with a model in which only a single Ca2+ store, expressing Ins(1,4,5)P3 receptors and SERCAs sensitive to both thapsigargin and CPA, is present in rat cortical glia, and indicate that inhibition of SERCA activates both Ca2+ release as a wavefront and Ca2+ entry via store-operated channels. The spatial relationship between SERCAs and mitochondria is likely to be important for regulating microdomains of elevated Ca2+-release kinetics.
机译:我们已经表征了培养的大鼠皮质1型星形胶质细胞,2型星形胶质细胞和少突胶质细胞的肌浆网-内质网Ca2 + -ATPase(SERCA)泵。在正常的含Ca2 +的培养基中灌注10 microM环吡唑酸(CPA)或1 microM的thapsigargin引起胞质[Ca2 +]的大量持续升高,而在名义上不含Ca2 +的培养基中短暂且短暂地增加。从不含Ca2 +的培养基中减去对照组的反应后,显示出对SERCA抑制的缓慢发作的Ca2 +进入反应,这是在大多数商店枯竭发生之后开始的。 Thapsigargin和CPA诱导的反应以Ca2 +波的形式传播,此波始于几个不同的细胞部位,并在融合培养物中遍及整个细胞并穿过附近的细胞。专门的Ca2 +释放位点支持传播,在这些位点,响应幅度明显更高,上升速率更陡峭。在Ins(1,4,5)P3介导的Ca2 +波在这些细胞中的这些位置上观察到了如此高的Ca2 +释放动力学。荧光标记的thapsigargin标记的SERCA在整个神经胶质细胞体和过程中泵浦。在少突胶质细胞过程中,SERCA染色升高的多个结构域始终与线粒体相关。我们的结果与一个模型一致,在该模型中,大鼠皮质神经胶质细胞中仅存在一个Ca2 +存储,该存储表达Ins(1,4,5)P3受体和对thapsigargin和CPA都敏感的SERCA,并且表明对SERCA的抑制会激活Ca2 +释放为波前,Ca2 +通过存储操作通道进入。 SERCA与线粒体之间的空间关系可能对于调节升高的Ca2 +释放动力学的微区很重要。

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