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Dynamic early clusters of nodal proteins contribute to node of Ranvier assembly during myelination of peripheral neurons

机译:动态早期的节点蛋白簇在外周神经元的髓鞘中有助于Ranvier组件的节点

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摘要

Voltage-gated sodium channels cluster in macromolecular complexes at nodes of Ranvier to promote rapid nerve impulse conduction in vertebrate nerves. Node assembly in peripheral nerves is thought to be initiated at heminodes at the extremities of myelinating Schwann cells, and fusion of heminodes results in the establishment of nodes. Here we show that assembly of ‘early clusters’ of nodal proteins in the murine axonal membrane precedes heminode formation. The neurofascin (Nfasc) proteins are essential for node assembly, and the formation of early clusters also requires neuronal Nfasc. Early clusters are mobile and their proteins are dynamically recruited by lateral diffusion. They can undergo fusion not only with each other but also with heminodes, thus contributing to the development of nodes in peripheral axons. The formation of early clusters constitutes the earliest stage in peripheral node assembly and expands the repertoire of strategies that have evolved to establish these essential structures.
机译:在Ranvier节点的高分子复合物中的电压门控钠通道簇促进脊椎动物神经中的快速神经冲击传导。据认为,周围神经中的节点组装在髓鞘氏菌细胞四肢的血管曲线上启动,并且血管曲线的融合导致节点的建立。在这里,我们显示小鼠轴突膜中的核心蛋白的“早期簇”的组装在血管形成之前。神经毛虫(NFASC)蛋白质对节点组件至关重要,并且早期簇的形成也需要神经元NFASC。早期簇是移动的,并且通过横向扩散动态招募蛋白质。它们不仅可以彼此接受融合,而且还可以与血管曲线相互作用,从而有助于外围轴突中的节点的发展。早期集群的形成构成了外围节点组件中最早的阶段,并扩大了已经发展以建立这些基本结构的策略的曲目。

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