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Early events in node of Ranvier formation during myelination and remyelination in the PNS

机译:PNS髓鞘化和再髓鞘化过程中Ranvier形成结的早期事件

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摘要

Action potential conduction velocity increases dramatically during early development as axons become myelinated. Integral to this process is the clustering of voltage-gated Na+ (Nav) channels at regularly spaced gaps in the myelin sheath called nodes of Ranvier. We show here that some aspects of peripheral node of Ranvier formation are distinct from node formation in the CNS. For example, at CNS nodes, Nav1.2 channels are detected first, but are then replaced by Nav1.6. Similarly, during remyelination in the CNS, Nav1.2 channels are detected at newly forming nodes. By contrast, the earliest Nav-channel clusters detected during developmental myelination in the PNS have Nav1.6. Further, during PNS remyelination, Nav1.6 is detected at new nodes. Finally, we show that accumulation of the cell adhesion molecule neurofascin always precedes Nav channel clustering in the PNS. In most cases axonal neurofascin (NF-186) accumulates first, but occasionally paranodal neurofascin is detected first. We suggest there is heterogeneity in the events leading to Nav channel clustering, indicating that multiple mechanisms might contribute to node of Ranvier formation in the PNS.
机译:随着轴突的髓鞘形成,动作电位的传导速度在早期发育过程中急剧增加。此过程不可或缺的是电压门控Na + (Nav)通道在称为Ranvier的髓鞘中的规则间隔处聚集。我们在这里显示,Ranvier形成的外围节点的某些方面与CNS中的节点形成不同。例如,在CNS节点上,首先检测Nav1.2通道,然后将其替换为Nav1.6。类似地,在CNS中的髓鞘再生期间,在新形成的节点处检测到Nav1.2通道。相比之下,PNS在发育性髓鞘形成期间检测到的最早的Nav通道簇具有Nav1.6。此外,在PNS髓鞘再生期间,在新节点上检测到Nav1.6。最后,我们显示了细胞粘附分子Neurofascin的积累总是先于PNS中的Nav通道聚类。在大多数情况下,轴突神经纤维蛋白(NF-186)会先积累,但偶尔会首先检测到偏执旁神经纤维蛋白。我们建议在导致Nav通道聚类的事件中存在异质性,这表明多种机制可能有助于PNS中Ranvier形成的节点。

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