Institute of Biology and Biomedical Sciences, School of Pharmacy and Biomedical Sciences, University of Portsmouth, Portsmouth, United Kingdom.
Glia. 2010 Jan 1;58(1):66-79. doi: 10.1002/glia.20902.
NG2-glia are an abundant population of cells in the adult CNS that make up a novel glial cell type. Here, we have examined calcium signals in NG2-glia identified by expression of the fluorescent protein DsRed under the control of the NG2 promoter in the white matter of the mouse optic nerve. We focused on mice aged postnatal day (P)12-16, after the main period of oligodendrocyte generation. Using fluo-4 and fura-2 calcium imaging in isolated intact nerves, we show that glutamate and ATP evoke Ca(2+) signals in NG2-glia in situ, acting on AMPA-type glutamate receptors and P2Y(1) and P2X(7) purine receptors; NMDA evoked a weak Ca(2+) signal in a small proportion of NG2-glia. We show that axonal action potentials and mechanical stimulation of astrocytes effect the release of glutamate and ATP to act on NG2-glia; ATP alone evokes robust Ca(2+) signals, whereas glutamate did not unless AMPA receptor desensitization was blocked with cyclothiazide. We identify the precise contacts that NG2-glia form with axons at nodes of Ranvier, and the intricate bipartite sheaths formed between the processes of NG2-glia and astrocytes. In addition, we provide evidence that NG2-glia express synaptophysin, indicating they have mechanisms for transmitting as well as receiving signals. This study places NG2-glia within a neuron-glial network, and identifies roles for glutamate and ATP in communication with astrocytes as well as axons.
NG2 胶质细胞是成年中枢神经系统中丰富的细胞群体,构成了一种新型的神经胶质细胞类型。在这里,我们通过在小鼠视神经白质中 NG2 启动子的控制下表达荧光蛋白 DsRed 来检测 NG2 胶质细胞中的钙信号。我们集中研究了出生后第 12-16 天(P)的小鼠,此时是少突胶质细胞生成的主要时期之后。使用在分离的完整神经中进行 fluo-4 和 fura-2 钙成像,我们表明谷氨酸和 ATP 在原位刺激 NG2 胶质细胞中的 Ca(2+)信号,作用于 AMPA 型谷氨酸受体和 P2Y(1)和 P2X(7)嘌呤受体;NMDA 仅在一小部分 NG2 胶质细胞中引起较弱的 Ca(2+)信号。我们表明,轴突动作电位和星形胶质细胞的机械刺激会导致谷氨酸和 ATP 的释放,从而作用于 NG2 胶质细胞;单独的 ATP 会引起强烈的 Ca(2+)信号,而谷氨酸则不会,除非用 cyclothiazide 阻断 AMPA 受体脱敏。我们确定了 NG2 胶质细胞与郎飞结处轴突形成的精确接触,以及 NG2 胶质细胞和星形胶质细胞之间形成的复杂二分护套。此外,我们提供了证据表明 NG2 胶质细胞表达突触小体蛋白,表明它们具有传递和接收信号的机制。这项研究将 NG2 胶质细胞置于神经元-神经胶质网络中,并确定了谷氨酸和 ATP 在与星形胶质细胞以及轴突通信中的作用。