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钙交换蛋白(NCX)在神经胶质细胞中的新作用:在缺血时小胶质细胞的激活和少突胶质细胞的分化。

New roles of NCX in glial cells: activation of microglia in ischemia and differentiation of oligodendrocytes.

机构信息

Department of Neuroscience, Federico II University of Naples, Naples, Italy.

出版信息

Adv Exp Med Biol. 2013;961:307-16. doi: 10.1007/978-1-4614-4756-6_26.

Abstract

The initiation of microglial responses to the ischemic injury involves modifications of calcium homeostasis. Changes in Ca(2+) levels have also been shown to influence the developmental processes that accompany the transition of human oligodendrocyte precursor cells (OPCs) into mature myelinating oligodendrocytes and are required for the initiation of myelination and remyelination processes.We investigated the regional and temporal changes of NCX1 protein in microglial cells of the peri-infarct and core regions after permanent middle cerebral artery occlusion (pMCAO). Interestingly, 3 and 7 days after pMCAO, NCX1 signal strongly increased in the round-shaped microglia invading the infarct core. Cultured microglial cells from the core displayed increased NCX1 expression as compared with contralateral cells and showed enhanced NCX activity in the reverse mode of operation. Similarly, NCX activity and NCX1 protein expression were significantly enhanced in BV2 microglia exposed to oxygen and glucose deprivation, whereas NCX2 and NCX3 were downregulated. Interestingly, in NCX1-silenced cells, Ca(2+) increase induced by hypoxia was completely prevented. The upregulation of NCX1 expression and activity observed in microglia after pMCAO suggests a relevant role of NCX1 in modulating microglia functions in the postischemic brain.Next, we explored whether calcium signals mediated by NCX1, NCX2, or NCX3 play a role in oligodendrocyte maturation. Functional studies, as well as mRNA and protein expression analyses, revealed that NCX1 and NCX3, but not NCX2, were divergently modulated during OPC differentiation into oligodendrocyte. In fact, while NCX1 was downregulated, NCX3 was strongly upregulated during the oligodendrocyte development. Whereas the knocking down of the NCX3 isoform in OPCs prevented the upregulation of the myelin protein markers CNPase and MBP, its overexpression induced their upregulation. Furthermore, NCX3 knockout mice exhibited not only a reduced size of spinal cord but also a marked hypomyelination, as revealed by the decrease in MBP expression and by the accompanying increase in OPCs number. Our findings indicate that calcium signaling mediated by NCX3 plays a crucial role in oligodendrocyte maturation and myelin formation.

摘要

小胶质细胞对缺血性损伤的反应的启动涉及钙稳态的改变。Ca(2+)水平的变化也被证明会影响伴随人少突胶质前体细胞 (OPC) 向成熟髓鞘形成少突胶质细胞的过渡的发育过程,并且是髓鞘形成和再髓鞘化过程启动所必需的。我们研究了永久性大脑中动脉闭塞 (pMCAO) 后,梗死周边和核心区小胶质细胞中 NCX1 蛋白的区域和时间变化。有趣的是,pMCAO 后 3 天和 7 天,侵入梗死核心的圆形小胶质细胞中 NCX1 信号强烈增加。与对侧细胞相比,来自核心区的培养小胶质细胞显示 NCX1 表达增加,并显示反向操作模式下的 NCX 活性增强。同样,在暴露于缺氧和葡萄糖剥夺的 BV2 小胶质细胞中,NCX 活性和 NCX1 蛋白表达显著增强,而 NCX2 和 NCX3 下调。有趣的是,在 NCX1 沉默的细胞中,缺氧诱导的 Ca(2+) 增加完全被阻止。pMCAO 后小胶质细胞中 NCX1 表达和活性的上调表明 NCX1 在调节缺血后大脑中小胶质细胞功能方面具有重要作用。接下来,我们探讨了 NCX1、NCX2 或 NCX3 介导的钙信号是否在少突胶质细胞成熟中发挥作用。功能研究以及 mRNA 和蛋白表达分析表明,NCX1 和 NCX3,但不是 NCX2,在 OPC 分化为少突胶质细胞的过程中呈不同程度的调节。事实上,虽然 NCX1 下调,但 NCX3 在少突胶质细胞发育过程中强烈上调。在 OPC 中敲低 NCX3 同工型可阻止髓鞘蛋白标志物 CNPase 和 MBP 的上调,而过表达 NCX3 可诱导其上调。此外,NCX3 敲除小鼠不仅脊髓体积减小,而且明显脱髓鞘,表现为 MBP 表达降低和 OPC 数量增加。我们的研究结果表明,NCX3 介导的钙信号在少突胶质细胞成熟和髓鞘形成中起关键作用。

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