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神经束蛋白相互作用在郎飞氏结外周节点处聚集钠通道、锚蛋白G和βIV血影蛋白的过程中起关键作用。

Neurofascin interactions play a critical role in clustering sodium channels, ankyrin G and beta IV spectrin at peripheral nodes of Ranvier.

作者信息

Koticha Darshan, Maurel Patrice, Zanazzi George, Kane-Goldsmith Noriko, Basak Sayantani, Babiarz Joanne, Salzer James, Grumet Martin

机构信息

W. M. Keck Center for Collaborative Neuroscience and Department of Cell Biology and Neuroscience, Rutgers University, 604 Allison Road, Piscataway, NJ 08854-8082, USA.

出版信息

Dev Biol. 2006 May 1;293(1):1-12. doi: 10.1016/j.ydbio.2005.05.028. Epub 2006 Mar 29.

Abstract

The Ig cell adhesion molecules (CAM) neurofascin (NF) and Nr-CAM are localized at developing nodes of Ranvier in peripheral myelinated axons prior to clustering of Na+ channels. Different isoforms of NF are expressed on neurons and glia, and NF binding on both cells has been suggested to play roles in node and paranode formation. To clarify the role of NF further, we analyzed effects of NF-Fc fusion proteins in Schwann cell-DRG neuron myelinating cocultures. NF-Fc significantly inhibited nodal clustering of Na+ channels, ankyrin G, and betaIV spectrin, and modestly reduced Caspr clustering at paranodal junctions; it did not significantly affect lengths or numbers of myelin-positive segments, axon initial segments, or accumulations of phosphorylated-ERM proteins in Schwann cell nodal microvilli. NF-Fc binds to Schwann cells but little or no binding to DRG neurons was detected. The results suggest a critical early role for axonal NF in clustering of Na+ channels at nodes of Ranvier via interactions with receptors on Schwann cells.

摘要

免疫球蛋白细胞黏附分子(CAM)神经束蛋白(NF)和Nr-CAM在周围有髓轴突中,于钠离子通道聚集之前定位于发育中的郎飞结处。NF的不同亚型在神经元和神经胶质细胞上表达,并且已表明两者细胞上的NF结合在结和旁结形成中起作用。为了进一步阐明NF的作用,我们分析了NF-Fc融合蛋白在雪旺细胞-背根神经节神经元髓鞘形成共培养物中的作用。NF-Fc显著抑制了钠离子通道、锚蛋白G和βIV血影蛋白的结簇,并适度减少了旁结连接处的Caspr聚集;它对髓鞘阳性节段的长度或数量、轴突起始段或雪旺细胞结微绒毛中磷酸化ERM蛋白的积累没有显著影响。NF-Fc与雪旺细胞结合,但未检测到与背根神经节神经元的结合或仅有少量结合。结果表明,轴突NF通过与雪旺细胞上的受体相互作用,在郎飞结处钠离子通道的聚集过程中起关键的早期作用。

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