首页> 外文期刊>Neuron >Nodes of Ranvier act as barriers to restrict invasion of flanking paranodal domains in myelinated axons.
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Nodes of Ranvier act as barriers to restrict invasion of flanking paranodal domains in myelinated axons.

机译:Ranvier的节点充当限制有髓神经轴突侧翼旁结域侵入的障碍。

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摘要

Accumulation of voltage-gated sodium (Na(v)) channels at nodes of Ranvier is paramount for action potential propagation along myelinated fibers, yet the mechanisms governing nodal development, organization, and stabilization remain unresolved. Here, we report that genetic ablation of the neuron-specific isoform of Neurofascin (Nfasc(NF(1))) in vivo results in nodal disorganization, including loss of Na(v) channel and ankyrin-G (AnkG) enrichment at nodes in the peripheral nervous system (PNS) and central nervous system (CNS). Interestingly, the presence of paranodal domains failed to rescue nodal organization in the PNS and the CNS. Most importantly, using ultrastructural analysis, we demonstrate that the paranodal domains invade the nodal space in Nfasc(NF(1)) mutant axons and occlude node formation. Our results suggest that Nfasc(NF(1))-dependent assembly of the nodal complex acts as a molecular boundary to restrict the movement of flanking paranodal domains into the nodal area, thereby facilitating the stereotypic axonal domain organization and saltatory conduction along myelinated axons.
机译:Ranvier节点上的电压门控钠(Na(v))通道的积累对于沿髓鞘纤维传播动作电位至关重要,但是控制节点发育,组织和稳定的机制仍未解决。在这里,我们报告说,神经fascin(Nfasc(NF(1)))的神经元特异性同种型的基因消融导致体内结节紊乱,包括Na(v)通道丢失和锚蛋白-G(AnkG)富集在节点周围神经系统(PNS)和中枢神经系统(CNS)。有趣的是,寄生结域的存在未能拯救PNS和CNS中的结点组织。最重要的是,使用超微结构分析,我们证明了偏交域侵入Nfasc(NF(1))突变轴突的节点空间并闭塞了结节。我们的研究结果表明,依赖Nfasc(NF(1))的节点复合物的组装体作为分子边界来限制侧翼旁节点结构域进入节点区域的移动,从而促进定型的轴突域组织和沿髓鞘轴突的盐分传导。

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