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Induction of sodium channel clustering by oligodendrocytes

机译:少突胶质细胞诱导钠通道聚集

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As oligodendrocytes wrap axons of the central nervous system (CNS) with insulating myelin sheaths, sodium channels that are initially continuously distributed along axons become segregated into regularly spaced gaps in the myelin called nodes of Ranvier. It is not known whether the regular spacing of nodes results from regularly spaced glial contacts or is instead intrinsically specified by the axonal cytoskeleton. Contact with Schwann cells induces clustering of sodium channels along the axons of peripheral neurons in vitro and in vivo. Similarly, it has been suggested that astrocyte contact induces clustering of sodium channels along CNS axons. Here we show that oligodendrocytes are necessary for clustering of sodium channels in vitro and in vivo. The induction, but not the maintenance, of sodium-channel clustering along the axons of highly purified rat retinal ganglion cells in culture depends on a protein secreted by oligodendrocytes. Surprisingly, the oligodendrocyte-induced clusters are regularly spaced at the predicted interval in the absence of glial-axonal contact. Mutant rats that are deficient in oligodendrocytes develop few axonal sodium channel clusters in vivo. These results demonstrate a crucial role for oligodendrocytes in inducing clustering of sodium channels.
机译:随着少突胶质细胞用绝缘的髓鞘包裹包裹中枢神经系统(CNS)的轴突,最初沿轴突连续分布的钠通道被分隔成髓鞘中规则间隔的间隙,称为Ranvier结。尚不清楚节点的规则间距是由规则间隔的神经胶质接触产生还是由轴突细胞骨架固有地指定。在体外和体内,与雪旺氏细胞接触可诱导沿周围神经元轴突的钠通道聚集。类似地,已经提出星形胶质细胞接触诱导沿CNS轴突的钠通道聚集。在这里,我们显示少突胶质细胞对于钠通道在体外和体内的聚集是必需的。沿培养物中高度纯化的大鼠视网膜神经节细胞的轴突诱导钠通道簇的作用,而不是维持作用,取决于少突胶质细胞分泌的蛋白质。令人惊讶的是,在没有胶质轴突接触的情况下,少突胶质细胞诱导的簇以预定的间隔规则地间隔开。少突胶质细胞不足的突变大鼠体内几乎没有轴突钠通道簇。这些结果证明少突胶质细胞在诱导钠通道的聚集中起关键作用。

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