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Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination

Myelin is a multilayered membrane that tightly wraps neuronal axons, enabling efficient, high-speed signal propagation. The axon and myelin sheath form tight contacts, mediated by specific plasma membrane proteins and lipids, and disruption of these contacts causes devastating demyelinating diseases...

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Autores principales: McKie, Shannon J., Nicholson, Alex S., Smith, Emily, Fawke, Stuart, Caroe, Eve R., Williamson, James C., Butt, Benjamin G., Kolářová, Denisa, Peterka, Ondřej, Holčapek, Michal, Lehner, Paul J., Graham, Stephen C., Deane, Janet E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10083573/
https://www.ncbi.nlm.nih.gov/pubmed/36996106
http://dx.doi.org/10.1073/pnas.2218823120
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author McKie, Shannon J.
Nicholson, Alex S.
Smith, Emily
Fawke, Stuart
Caroe, Eve R.
Williamson, James C.
Butt, Benjamin G.
Kolářová, Denisa
Peterka, Ondřej
Holčapek, Michal
Lehner, Paul J.
Graham, Stephen C.
Deane, Janet E.
author_facet McKie, Shannon J.
Nicholson, Alex S.
Smith, Emily
Fawke, Stuart
Caroe, Eve R.
Williamson, James C.
Butt, Benjamin G.
Kolářová, Denisa
Peterka, Ondřej
Holčapek, Michal
Lehner, Paul J.
Graham, Stephen C.
Deane, Janet E.
author_sort McKie, Shannon J.
collection PubMed
description Myelin is a multilayered membrane that tightly wraps neuronal axons, enabling efficient, high-speed signal propagation. The axon and myelin sheath form tight contacts, mediated by specific plasma membrane proteins and lipids, and disruption of these contacts causes devastating demyelinating diseases. Using two cell-based models of demyelinating sphingolipidoses, we demonstrate that altered lipid metabolism changes the abundance of specific plasma membrane proteins. These altered membrane proteins have known roles in cell adhesion and signaling, with several implicated in neurological diseases. The cell surface abundance of the adhesion molecule neurofascin (NFASC), a protein critical for the maintenance of myelin-axon contacts, changes following disruption to sphingolipid metabolism. This provides a direct molecular link between altered lipid abundance and myelin stability. We show that the NFASC isoform NF155, but not NF186, interacts directly and specifically with the sphingolipid sulfatide via multiple binding sites and that this interaction requires the full-length extracellular domain of NF155. We demonstrate that NF155 adopts an S-shaped conformation and preferentially binds sulfatide-containing membranes in cis, with important implications for protein arrangement in the tight axon-myelin space. Our work links glycosphingolipid imbalances to disturbance of membrane protein abundance and demonstrates how this may be driven by direct protein–lipid interactions, providing a mechanistic framework to understand the pathogenesis of galactosphingolipidoses.
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spelling pubmed-100835732023-04-11 Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination McKie, Shannon J. Nicholson, Alex S. Smith, Emily Fawke, Stuart Caroe, Eve R. Williamson, James C. Butt, Benjamin G. Kolářová, Denisa Peterka, Ondřej Holčapek, Michal Lehner, Paul J. Graham, Stephen C. Deane, Janet E. Proc Natl Acad Sci U S A Biological Sciences Myelin is a multilayered membrane that tightly wraps neuronal axons, enabling efficient, high-speed signal propagation. The axon and myelin sheath form tight contacts, mediated by specific plasma membrane proteins and lipids, and disruption of these contacts causes devastating demyelinating diseases. Using two cell-based models of demyelinating sphingolipidoses, we demonstrate that altered lipid metabolism changes the abundance of specific plasma membrane proteins. These altered membrane proteins have known roles in cell adhesion and signaling, with several implicated in neurological diseases. The cell surface abundance of the adhesion molecule neurofascin (NFASC), a protein critical for the maintenance of myelin-axon contacts, changes following disruption to sphingolipid metabolism. This provides a direct molecular link between altered lipid abundance and myelin stability. We show that the NFASC isoform NF155, but not NF186, interacts directly and specifically with the sphingolipid sulfatide via multiple binding sites and that this interaction requires the full-length extracellular domain of NF155. We demonstrate that NF155 adopts an S-shaped conformation and preferentially binds sulfatide-containing membranes in cis, with important implications for protein arrangement in the tight axon-myelin space. Our work links glycosphingolipid imbalances to disturbance of membrane protein abundance and demonstrates how this may be driven by direct protein–lipid interactions, providing a mechanistic framework to understand the pathogenesis of galactosphingolipidoses. National Academy of Sciences 2023-03-30 2023-04-04 /pmc/articles/PMC10083573/ /pubmed/36996106 http://dx.doi.org/10.1073/pnas.2218823120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
McKie, Shannon J.
Nicholson, Alex S.
Smith, Emily
Fawke, Stuart
Caroe, Eve R.
Williamson, James C.
Butt, Benjamin G.
Kolářová, Denisa
Peterka, Ondřej
Holčapek, Michal
Lehner, Paul J.
Graham, Stephen C.
Deane, Janet E.
Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title_full Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title_fullStr Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title_full_unstemmed Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title_short Altered plasma membrane abundance of the sulfatide-binding protein NF155 links glycosphingolipid imbalances to demyelination
title_sort altered plasma membrane abundance of the sulfatide-binding protein nf155 links glycosphingolipid imbalances to demyelination
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10083573/
https://www.ncbi.nlm.nih.gov/pubmed/36996106
http://dx.doi.org/10.1073/pnas.2218823120
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