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Nogo receptor 1 regulates Caspr distribution at axo-glial units in the central nervous system.


ABSTRACT: Axo-glial units are highly organised microstructures propagating saltatory conduction and are disrupted during multiple sclerosis (MS). Nogo receptor 1 (NgR1) has been suggested to govern axonal damage during the progression of disease in the MS-like mouse model, experimental autoimmune encephalomyelitis (EAE). Here we have identified that adult ngr1 -/- mice, previously used in EAE and spinal cord injury experiments, display elongated paranodes, and nodes of Ranvier. Unstructured paranodal regions in ngr1 -/- mice are matched with more distributed expression pattern of Caspr. Compound action potentials of optic nerves and spinal cords from naïve ngr1 -/- mice are delayed and reduced. Molecular interaction studies revealed enhanced Caspr cleavage. Our data suggest that NgR1 may regulate axo-myelin ultrastructure through Caspr-mediated adhesion, regulating the electrophysiological signature of myelinated axons of central nervous system (CNS).

SUBMITTER: Lee JY 

PROVIDER: S-EPMC5567129 | biostudies-literature | 2017 Aug

REPOSITORIES: biostudies-literature

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Nogo receptor 1 regulates Caspr distribution at axo-glial units in the central nervous system.

Lee Jae Young JY   Kim Min Joung MJ   Li Lijun L   Velumian Alexander A AA   Aui Pei Mun PM   Fehlings Michael G MG   Petratos Steven S  

Scientific reports 20170821 1


Axo-glial units are highly organised microstructures propagating saltatory conduction and are disrupted during multiple sclerosis (MS). Nogo receptor 1 (NgR1) has been suggested to govern axonal damage during the progression of disease in the MS-like mouse model, experimental autoimmune encephalomyelitis (EAE). Here we have identified that adult ngr1 <sup>-/-</sup> mice, previously used in EAE and spinal cord injury experiments, display elongated paranodes, and nodes of Ranvier. Unstructured par  ...[more]

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