Friess Maike, Hammann Jens, Unichenko Petr, Luhmann Heiko J, White Robin, Kirischuk Sergei
Institute of Physiology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.
Institute of Physiology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.
Cell Calcium. 2016 Nov;60(5):322-330. doi: 10.1016/j.ceca.2016.06.009. Epub 2016 Jun 29.
Myelination in the central nervous system depends on axon-oligodendrocyte precursor cell (OPC) interaction. We suggest that myelin synthesis may be influenced by [Na]i and [Ca]i signaling in OPCs. Experiments were performed in mouse cultured OPCs at day in vitro (DIV) 2-6 or acute slices of the corpus callosum at postnatal days (P) 10-30. Synthesis of Myelin Basic Protein (MBP), an "executive molecule of myelin", was used as readout of myelination. Immunohistological data revealed that MBP synthesis in cultured OPCs starts around DIV4. Transient elevations of resting [Ca]i and [Na]i levels were observed in the same temporal window (DIV4-5). At DIV4, but not at DIV2, both extracellular [K] ([K]e) elevation (+5mM) and partial Na,K-ATPase (NKA) inhibition elicited [Na]i and [Ca]i transients. These responses were blocked with KB-R7943 (1μM), a blocker of Na-Ca exchanger (NCX), indicating an involvement of NCX which operates in reverse mode. Treatment of OPCs with culture medium containing elevated [K] (+5mM, 24h) or ouabain (500nM, 24h) increased resting [Ca]i and facilitated MBP synthesis. Blockade of NCX with KB-R7943 (1μM, 12h) reduced resting [Ca]i and decreased MBP synthesis. Similar to the results obtained in OPC cultures, OPCs in acute callosal slices demonstrated an increase in resting [Ca]i and [Na]i levels during development. NCX blockade induced [Ca]i and [Na]i responses in OPCs at P20-30 but not at P10. We conclude that local [Na]i and/or membrane potential changes can modulate Ca influx through NCX and in turn MBP synthesis. Thus neuronal activity-induced changes in [K]e may via NCX and NKA modulate myelination.
中枢神经系统的髓鞘形成依赖于轴突与少突胶质前体细胞(OPC)的相互作用。我们认为髓鞘合成可能受OPC中[Na]i和[Ca]i信号传导的影响。实验在体外培养2 - 6天的小鼠OPC或出生后10 - 30天的胼胝体急性切片上进行。髓鞘碱性蛋白(MBP)作为“髓鞘执行分子”,其合成被用作髓鞘形成的读数。免疫组织学数据显示,培养的OPC中MBP合成在体外培养第4天左右开始。在同一时间窗口(体外培养第4 - 5天)观察到静息[Ca]i和[Na]i水平的短暂升高。在体外培养第4天而非第2天,细胞外[K]([K]e)升高(+5mM)和部分钠钾ATP酶(NKA)抑制均引发[Na]i和[Ca]i瞬变。这些反应被钠钙交换体(NCX)阻滞剂KB - R7943(1μM)阻断,表明反向模式运行的NCX参与其中。用含升高[K](+5mM,24小时)或哇巴因(500nM,24小时)的培养基处理OPC可增加静息[Ca]i并促进MBP合成。用KB - R7943(1μM,12小时)阻断NCX可降低静息[Ca]i并减少MBP合成。与OPC培养物中获得的结果相似,急性胼胝体切片中的OPC在发育过程中静息[Ca]i和[Na]i水平升高。NCX阻断在出生后20 - 30天的OPC中诱导[Ca]i和[Na]i反应,但在出生后10天未诱导。我们得出结论,局部[Na]i和/或膜电位变化可通过NCX调节钙内流,进而调节MBP合成。因此,神经元活动诱导的[K]e变化可能通过NCX和NKA调节髓鞘形成。