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Ca2+ signaling evoked by activation of Na+ channels and Na+/Ca2+ exchangers is required for GABA-induced NG2 cell migration

机译:GABA诱导的NG2细胞迁移需要通过激活Na +通道和Na + / Ca2 +交换子引起的Ca2 +信号传导

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NG2 cells originate from various brain regions and migrate to their destinations during early development. These cells express voltage-gated Na+ channels but fail to produce typical action potentials. The physiological role of Na+ channels in these cells is unclear. We found that GABA induces membrane depolarization and Ca2+ elevation in NG2 cells, a process requiring activation of GABAA receptors, Na+ channels, and Na+/Ca2+ exchangers (NCXs), but not Ca2+ channels. We have identified a persistent Na+ current in these cells that may underlie the GABA-induced pathway of prolonged Na+ elevation, which in turn triggers Ca2+ influx via NCXs. This unique Ca2+ signaling pathway is further shown to be involved in the migration of NG2 cells. Thus, GABAergic signaling mediated by sequential activation of GABAA receptors, noninactivating Na+ channels, and NCXs may play an important role in the development and function of NG2 glial cells in the brain.
机译:NG2细胞起源于各个大脑区域,并在早期发育过程中迁移到其目的地。这些细胞表达电压门控的Na +通道,但无法产生典型的动作电位。 Na +通道在这些细胞中的生理作用尚不清楚。我们发现,GABA诱导NG2细胞中的膜去极化和Ca2 +升高,这一过程需要激活GABAA受体,Na +通道和Na + / Ca2 +交换剂(NCXs),但不能激活Ca2 +通道。我们已经确定了这些细胞中持续存在的Na +电流,这可能是GABA诱导的Na +升高持续时间延长的途径的基础,而这又通过NCXs触发了Ca2 +的流入。此独特的Ca2 +信号通路进一步显示参与NG2细胞的迁移。因此,由GABAA受体的顺序激活,非灭活的Na +通道和NCX介导的GABA能信号可能在脑中NG2神经胶质细胞的发育和功能中起重要作用。

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