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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neurofascin 140 Is an Embryonic Neuronal Neurofascin Isoform That Promotes the Assembly of the Node of Ranvier
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Neurofascin 140 Is an Embryonic Neuronal Neurofascin Isoform That Promotes the Assembly of the Node of Ranvier

机译:Neurofascin 140是一种胚胎神经元Neurofascin亚型,可促进Ranvier结节的组装

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摘要

Rapid nerve conduction in myelinated nerves requires the clustering of voltage-gated sodium channels at nodes of Ranvier. The Neurofascin (Nfasc) gene has a unique role in node formation because it encodes glial and neuronal isoforms of neurofascin (Nfasc155 and Nfasc186, respectively) with key functions in assembling the nodal macromolecular complex. A third neurofascin, Nfasc140, has also been described; however, neither the cellular origin nor function of this isoform was known. Here we show that Nfasc140 is a neuronal protein strongly expressed during mouse embryonic development. Expression of Nfasc140 persists but declines during the initial stages of node formation, in contrast to Nfasc155 and Nfasc186, which increase. Nevertheless, Nfasc140, like Nfasc186, can cluster voltage-gated sodium channels (Nav) at the developing node of Ranvier and can restore electrophysiological function independently of Nfasc155 and Nfasc186. This suggests that Nfasc140 complements the function of Nfasc155 and Nfasc186 in initial stages of the assembly and stabilization of the nodal complex. Further, Nfasc140 is reexpressed in demyelinated white matter lesions of postmortem brain tissue from human subjects with multiple sclerosis. This expands the critical role of the Nfasc gene in the function of myelinated axons and reveals further redundancy in the mechanisms required for the formation of this crucial structure in the vertebrate nervous system.
机译:有髓神经中神经的快速神经传导需要在Ranvier结点聚集电压门控钠通道。 Neurofascin(Nfasc)基因在结节形成中具有独特的作用,因为它编码神经Fascin的神经胶质和神经元同工型(分别为Nfasc155和Nfasc186),在组装节点大分子复合物中起关键作用。还描述了第三种神经纤维蛋白Nfasc140。但是,该同工型的细胞起源和功能均未知。在这里,我们显示Nfasc140是在小鼠胚胎发育过程中强烈表达的神经元蛋白。 Nfasc140的表达持续存在,但在结节形成的初始阶段下降,而Nfasc155和Nfasc186则增加。尽管如此,Nfasc140像Nfasc186一样,可以将电压门控钠通道(Nav)聚集在Ranvier的发育节点上,并且可以独立于Nfasc155和Nfasc186恢复电生理功能。这表明Nfasc140在组装初期和节点复合物的稳定化过程中对Nfasc155和Nfasc186的功能起到了补充作用。此外,Nfasc140在患有多发性硬化症的人类受试者的死后脑组织的脱髓鞘白质损伤中重新表达。这扩大了Nfasc基因在髓鞘轴突功能中的关键作用,并揭示了在脊椎动物神经系统中形成这种关键结构所需的机制中的进一步冗余。

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