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Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG

The velocity of the nerve impulse conduction of vertebrates relies on the myelin sheath, an electrically insulating layer that surrounds axons in both the central and peripheral nervous systems, enabling saltatory conduction of the action potential. Oligodendrocytes are the myelin-producing glial ce...

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Autores principales: Bello-Morales, Raquel, Pérez-Hernández, Marta, Rejas, María Teresa, Matesanz, Fuencisla, Alcina, Antonio, López-Guerrero, José Antonio
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3090389/
https://www.ncbi.nlm.nih.gov/pubmed/21573057
http://dx.doi.org/10.1371/journal.pone.0019388
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author Bello-Morales, Raquel
Pérez-Hernández, Marta
Rejas, María Teresa
Matesanz, Fuencisla
Alcina, Antonio
López-Guerrero, José Antonio
author_facet Bello-Morales, Raquel
Pérez-Hernández, Marta
Rejas, María Teresa
Matesanz, Fuencisla
Alcina, Antonio
López-Guerrero, José Antonio
author_sort Bello-Morales, Raquel
collection PubMed
description The velocity of the nerve impulse conduction of vertebrates relies on the myelin sheath, an electrically insulating layer that surrounds axons in both the central and peripheral nervous systems, enabling saltatory conduction of the action potential. Oligodendrocytes are the myelin-producing glial cells in the central nervous system. A deeper understanding of the molecular basis of myelination and, specifically, of the transport of myelin proteins, will contribute to the search of the aetiology of many dysmyelinating and demyelinating diseases, including multiple sclerosis. Recent investigations suggest that proteolipid protein (PLP), the major myelin protein, could reach myelin sheath by an indirect transport pathway, that is, a transcytotic route via the plasma membrane of the cell body. If PLP transport relies on a transcytotic process, it is reasonable to consider that this myelin protein could be associated with MAL2, a raft protein essential for transcytosis. In this study, carried out with the human oligodendrocytic cell line HOG, we show that PLP colocalized with green fluorescent protein (GFP)-MAL2 after internalization from the plasma membrane. In addition, both immunoprecipitation and immunofluorescence assays, indicated the existence of an interaction between GFP-MAL2 and PLP. Finally, ultrastructural studies demonstrated colocalization of GFP-MAL2 and PLP in vesicles and tubulovesicular structures. Taken together, these results prove for the first time the interaction of PLP and MAL2 in oligodendrocytic cells, supporting the transcytotic model of PLP transport previously suggested.
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spelling pubmed-30903892011-05-13 Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG Bello-Morales, Raquel Pérez-Hernández, Marta Rejas, María Teresa Matesanz, Fuencisla Alcina, Antonio López-Guerrero, José Antonio PLoS One Research Article The velocity of the nerve impulse conduction of vertebrates relies on the myelin sheath, an electrically insulating layer that surrounds axons in both the central and peripheral nervous systems, enabling saltatory conduction of the action potential. Oligodendrocytes are the myelin-producing glial cells in the central nervous system. A deeper understanding of the molecular basis of myelination and, specifically, of the transport of myelin proteins, will contribute to the search of the aetiology of many dysmyelinating and demyelinating diseases, including multiple sclerosis. Recent investigations suggest that proteolipid protein (PLP), the major myelin protein, could reach myelin sheath by an indirect transport pathway, that is, a transcytotic route via the plasma membrane of the cell body. If PLP transport relies on a transcytotic process, it is reasonable to consider that this myelin protein could be associated with MAL2, a raft protein essential for transcytosis. In this study, carried out with the human oligodendrocytic cell line HOG, we show that PLP colocalized with green fluorescent protein (GFP)-MAL2 after internalization from the plasma membrane. In addition, both immunoprecipitation and immunofluorescence assays, indicated the existence of an interaction between GFP-MAL2 and PLP. Finally, ultrastructural studies demonstrated colocalization of GFP-MAL2 and PLP in vesicles and tubulovesicular structures. Taken together, these results prove for the first time the interaction of PLP and MAL2 in oligodendrocytic cells, supporting the transcytotic model of PLP transport previously suggested. Public Library of Science 2011-05-09 /pmc/articles/PMC3090389/ /pubmed/21573057 http://dx.doi.org/10.1371/journal.pone.0019388 Text en Bello-Morales et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bello-Morales, Raquel
Pérez-Hernández, Marta
Rejas, María Teresa
Matesanz, Fuencisla
Alcina, Antonio
López-Guerrero, José Antonio
Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title_full Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title_fullStr Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title_full_unstemmed Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title_short Interaction of PLP with GFP-MAL2 in the Human Oligodendroglial Cell Line HOG
title_sort interaction of plp with gfp-mal2 in the human oligodendroglial cell line hog
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3090389/
https://www.ncbi.nlm.nih.gov/pubmed/21573057
http://dx.doi.org/10.1371/journal.pone.0019388
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