A store-operated Ca2+ influx activated in response to the depletion of thapsigargin-sensitive Ca2+ stores is developmentally regulated in embryonic cortical neurons from mice

Alexandre Bouron, Xavier Altafaj, Sylvie Boisseau, Michel De Waard
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引用次数: 38

Abstract

Store-operated channels (SOCs) are recruited in response to the release of Ca2+ from intracellular stores. They allow a voltage-independent entry of Ca2+ into the cytoplasm also termed capacitative Ca2+ entry (CCE). In neurons, the functional significance of this Ca2+ route remains elusive. Several reports indicate that SOCs could be developmentally regulated. We verified the presence of a CCE in freshly dissociated cortical cells from E13, E14, E16, E18 fetuses and from 1-day-old mice. Intracellular Ca2+ stores were depleted by means of the SERCA pump inhibitor thapsigargin. At E13, the release of Ca2+ from thapsigargin-sensitive compartments gave rise to an entry of Ca2+ in a minority of cells. This Ca2+ route, insensitive to voltage-gated Ca2+ channel antagonists like Cd2+ and Ni2+, was blocked by the SOC inhibitor SKF-96365. After E13 and on E13 cells kept in culture, there is a marked increase in the percentage of cells with functional SOCs. The lanthanide La3+ fully inhibited the CCE from neonatal mice whereas it weakly blocked the thapsigargin-dependent Ca2+ entry at E13. This suggests that the subunit composition of the cortical SOCs is developmentally regulated with La3+-insensitive channels being expressed in the embryonic cortex whereas La3+-sensitive SOCs are found at birth. Our data argue for the presence of SOCs in embryonic cortical neurons. Their expression and pharmacological properties are developmentally regulated.

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存储操作的Ca2+内流被激活,响应于thapsigargin敏感Ca2+存储的消耗,在小鼠胚胎皮质神经元中受到发育调节
储存操作通道(soc)是响应Ca2+从细胞内储存的释放而招募的。它们允许电压无关的Ca2+进入细胞质,也称为容性Ca2+进入(CCE)。在神经元中,这种Ca2+通路的功能意义仍然难以捉摸。有几份报告指出,可以对国有企业进行发展管制。我们在E13、E14、E16、E18胎和1日龄小鼠新鲜分离的皮质细胞中证实了CCE的存在。通过SERCA泵抑制剂thapsigarin,细胞内Ca2+储存被耗尽。在E13, Ca2+从thapsignarin敏感区室释放导致Ca2+进入少数细胞。这条Ca2+通路对Cd2+和Ni2+等电压门控Ca2+通道拮抗剂不敏感,被SOC抑制剂SKF-96365阻断。E13和E13细胞培养后,具有功能性soc的细胞百分比明显增加。镧系元素La3+完全抑制新生小鼠的CCE,而在E13时微弱地阻断thapsigarin依赖性Ca2+的进入。这表明皮质soc的亚基组成受胚胎皮层中La3+不敏感通道的发育调控,而La3+敏感的soc则在出生时被发现。我们的数据证明胚胎皮质神经元中存在SOCs。它们的表达和药理特性受发育调控。
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