Cellular Neurosciences, Max Delbrück Centre for Molecular Medicine, Berlin 13092, Germany.
J Neurosci. 2013 Apr 24;33(17):7206-19. doi: 10.1523/JNEUROSCI.5721-12.2013.
Mitochondria not only provide cells with energy, but are central to Ca(2+) signaling. Powered by the mitochondrial membrane potential, Ca(2+) enters the mitochondria and is released into the cytosol through a mitochondrial Na(+)/Ca(2+) exchanger. We established that NCLX, a newly discovered mitochondrial Na(+)/Ca(2+) exchanger, is expressed in astrocytes isolated from mice of either sex. Immunoblot analysis of organellar fractions showed that the location of NCLX is confined to mitochondria. Using pericam-based mitochondrial Ca(2+) imaging and NCLX inhibition either by siRNA or by the pharmacological blocker CGP37157, we demonstrated that NCLX is responsible for mitochondrial Ca(2+) extrusion. Suppression of NCLX function altered cytosolic Ca(2+) dynamics in astrocytes and this was mediated by a strong effect of NCLX activity on Ca(2+) influx via store-operated entry. Furthermore, Ca(2+) influx through the store-operated Ca(2+) entry triggered strong, whereas ER Ca(2+) release triggered only modest mitochondrial Ca(2+) transients, indicating that the functional cross talk between the plasma membrane and mitochondrial domains is particularly strong in astrocytes. Finally, silencing of NCLX expression significantly reduced Ca(2+)-dependent processes in astrocytes (i.e., exocytotic glutamate release, in vitro wound closure, and proliferation), whereas Ca(2+) wave propagation was not affected. Therefore, NCLX, by meditating astrocytic mitochondrial Na(+)/Ca(2+) exchange, links between mitochondria and plasma membrane Ca(2+) signaling, thereby modulating cytoplasmic Ca(2+) transients required to control a diverse array of astrocyte functions.
线粒体不仅为细胞提供能量,而且是 Ca(2+)信号的核心。在线粒体膜电位的驱动下,Ca(2+)进入线粒体,并通过线粒体 Na(+)/Ca(2+)交换器释放到细胞质中。我们发现,一种新发现的线粒体 Na(+)/Ca(2+)交换器 NCLX,在雌雄小鼠分离的星形胶质细胞中表达。细胞器级分的免疫印迹分析表明,NCLX 的位置仅限于线粒体。使用基于 pericam 的线粒体 Ca(2+)成像和 NCLX 的 siRNA 或药理学阻断剂 CGP37157 抑制,我们证明 NCLX 负责线粒体 Ca(2+)外排。NCLX 功能的抑制改变了星形胶质细胞中的细胞质 Ca(2+)动力学,这是通过 NCLX 活性对通过储存操作进入的 Ca(2+)内流的强烈影响介导的。此外,通过储存操作进入的 Ca(2+)内流引发了强烈的,而 ER Ca(2+)释放仅引发适度的线粒体 Ca(2+)瞬变,表明质膜和线粒体域之间的功能串扰在星形胶质细胞中特别强烈。最后,NCLX 表达的沉默显著降低了星形胶质细胞中 Ca(2+)依赖的过程(即胞吐谷氨酸释放、体外伤口闭合和增殖),而 Ca(2+)波传播不受影响。因此,NCLX 通过介导星形胶质细胞的线粒体 Na(+)/Ca(2+)交换,连接线粒体和质膜 Ca(2+)信号,从而调节控制各种星形胶质细胞功能所需的细胞质 Ca(2+)瞬变。