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(7)
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Cambridge Institute of Therapeutic Immunology and Infectious Diseases, Department of Medicine, University of Cambridge,
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Professor and Vivian L. Smith Endowed Chair in Neuroscience Department of Neuroscience. Baylor College of Medicine Houston, Texas United States
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Department of Neuroscience Baylor College of Medicine Houston, TX US
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Tags
xref:PubMed:33689679
(1)
xref:PubMed:41260922
(1)
xref:PubMed:42052621
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Structural insights into the contactin 1 - neurofascin 155 adhesion complex.
Not available
S-EPMC9633819
|
biostudies-literature
Cite
Oligodendrocyte Neurofascin Independently Regulates Both Myelin Targeting and Sheath Growth in the CNS.
Not available
S-EPMC6912162
|
biostudies-literature
Cite
Anti-pan-neurofascin antibodies induce subclass-related complement activation and nodo-paranodal damage.
Not available
S-EPMC10151189
|
biostudies-literature
Cite
Novel forms of neurofascin 155 in the central nervous system: alterations in paranodal disruption models and multiple sclerosis.
Not available
S-EPMC2822635
|
biostudies-literature
Cite
A new activity of doublecortin in recognition of the phospho-FIGQY tyrosine in the cytoplasmic domain of neurofascin.
Not available
S-EPMC6758080
|
biostudies-literature
Cite
Super-resolution of nodal and paranodal disruption in anti-pan-neurofascin-associated autoimmune nodopathy.
Not available
S-EPMC11882429
|
biostudies-literature
Cite
The highly localized interaction between Neurofascin-186 and Gliomedin promotes subcellular innervation by the chandelier cell
The highly localized interaction between Neurofascin-186 and Gliomedin promotes subcellular innervation by the chandelier cell
PRJNA1365755
|
ENA
Cite
Rapid recovery after four months of near-tetraplegia: A case report of pan-neurofascin nodopathy and a brief review of emerging questions.
Not available
S-EPMC12529537
|
biostudies-literature
Cite
Homophilic adhesion mechanism of neurofascin, a member of the L1 family of neural cell adhesion molecules.
Not available
S-EPMC3013039
|
biostudies-literature
Cite
Spatio-temporal and dynamic regulation of neurofascin alternative splicing in mouse cerebellar neurons.
Not available
S-EPMC5595909
|
biostudies-literature
Cite
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