GALIANO MAURICIO RAUL
Artículos
Título:
Glial βII spectrin contributes to paranode formation and maintenance
Autor/es:
SUSUKI, KEIICHIRO; ZOLLINGER, DANIEL R.; CHANG, KAE-JIUN; ZHANG, CHUANSHENG; HUANG, CLAIRE YU-MEI; TSAI, CHANG-RU; GALIANO, MAURICIO R.; LIU, YANHONG; BENUSA, SAVANNAH D.; YERMAKOV, LEONID M.; GRIGGS, RYAN B.; DUPREE, JEFFREY L.; RASBAND, MATTHEW N.
Revista:
JOURNAL OF NEUROSCIENCE
Editorial:
SOC NEUROSCIENCE
Referencias:
Lugar: Washington; Año: 2018
ISSN:
0270-6474
Resumen:
ction potential conduction along myelinated axons depends on high densities of voltage-gated Na+ channels at the nodes of Ranvier. Flanking each node, paranodal junctions (paranodes) are formed between axons and Schwann cells in the peripheral nervous system (PNS) or oligodendrocytes in the CNS. Paranodal junctions contribute to both node assembly and maintenance. Despite their importance, the molecular mechanisms responsible for paranode assembly and maintenance remain poorly understood. bII spectrin is expressed in diverse cells and is an essential part of the submembranous cytoskeleton. Here, we show that Schwann cell bII spectrin is highly enriched at paranodes. To elucidate the roles of glial bII spectrin, we generated mutant mice lacking bII spectrin in myelinating glial cells by crossing mice with a floxed allele of Sptbn1 with Cnp-Cre mice, and analyzed both male and female mice. Juvenile (4 weeks) and middle-aged (60 weeks) mutant mice showed reduced grip strength and sciatic