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MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains

In oligodendrocytes (OLGs), an indirect, transcytotic pathway is mediating transport of de novo synthesized PLP, a major myelin specific protein, from the apical-like plasma membrane to the specialized basolateral-like myelin membrane to prevent its premature compaction. MAL is a well-known regulato...

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Autores principales: Bijlard, Marjolein, de Jonge, Jenny C., Klunder, Bert, Nomden, Anita, Hoekstra, Dick, Baron, Wia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4865042/
https://www.ncbi.nlm.nih.gov/pubmed/27171274
http://dx.doi.org/10.1371/journal.pone.0155317
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author Bijlard, Marjolein
de Jonge, Jenny C.
Klunder, Bert
Nomden, Anita
Hoekstra, Dick
Baron, Wia
author_facet Bijlard, Marjolein
de Jonge, Jenny C.
Klunder, Bert
Nomden, Anita
Hoekstra, Dick
Baron, Wia
author_sort Bijlard, Marjolein
collection PubMed
description In oligodendrocytes (OLGs), an indirect, transcytotic pathway is mediating transport of de novo synthesized PLP, a major myelin specific protein, from the apical-like plasma membrane to the specialized basolateral-like myelin membrane to prevent its premature compaction. MAL is a well-known regulator of polarized trafficking in epithelial cells, and given its presence in OLGs it was therefore of interest to investigate whether MAL played a similar role in PLP transport in OLGs, taking into account its timely expression in these cells. Our data revealed that premature expression of mCherry-MAL in oligodendrocyte progenitor cells interfered with terminal OLG differentiation, although myelin membrane formation per se was not impaired. In fact, also PLP transport to myelin membranes via the cell body plasma membrane was unaffected. However, the typical shift of PLP from TX-100-insoluble membrane domains to CHAPS-resistant, but TX-100-soluble membrane domains, seen in the absence of MAL expression, is substantially reduced upon expression of the MAL protein. Interestingly, not only in vitro, but also in developing brain a strongly diminished shift from TX-100 resistant to TX-100 soluble domains was observed. Consistently, the MAL-expression mediated annihilation of the typical membrane microdomain shift of PLP is also reflected by a loss of the characteristic surface expression profile of conformation-sensitive anti-PLP antibodies. Hence, these findings suggest that MAL is not involved in vesicular PLP trafficking to either the plasma membrane and/or the myelin membrane as such. Rather, we propose that MAL may regulate PLP’s distribution into distinct membrane microdomains that allow for lateral diffusion of PLP, directly from the plasma membrane to the myelin membrane once the myelin sheath has been assembled.
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spelling pubmed-48650422016-05-26 MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains Bijlard, Marjolein de Jonge, Jenny C. Klunder, Bert Nomden, Anita Hoekstra, Dick Baron, Wia PLoS One Research Article In oligodendrocytes (OLGs), an indirect, transcytotic pathway is mediating transport of de novo synthesized PLP, a major myelin specific protein, from the apical-like plasma membrane to the specialized basolateral-like myelin membrane to prevent its premature compaction. MAL is a well-known regulator of polarized trafficking in epithelial cells, and given its presence in OLGs it was therefore of interest to investigate whether MAL played a similar role in PLP transport in OLGs, taking into account its timely expression in these cells. Our data revealed that premature expression of mCherry-MAL in oligodendrocyte progenitor cells interfered with terminal OLG differentiation, although myelin membrane formation per se was not impaired. In fact, also PLP transport to myelin membranes via the cell body plasma membrane was unaffected. However, the typical shift of PLP from TX-100-insoluble membrane domains to CHAPS-resistant, but TX-100-soluble membrane domains, seen in the absence of MAL expression, is substantially reduced upon expression of the MAL protein. Interestingly, not only in vitro, but also in developing brain a strongly diminished shift from TX-100 resistant to TX-100 soluble domains was observed. Consistently, the MAL-expression mediated annihilation of the typical membrane microdomain shift of PLP is also reflected by a loss of the characteristic surface expression profile of conformation-sensitive anti-PLP antibodies. Hence, these findings suggest that MAL is not involved in vesicular PLP trafficking to either the plasma membrane and/or the myelin membrane as such. Rather, we propose that MAL may regulate PLP’s distribution into distinct membrane microdomains that allow for lateral diffusion of PLP, directly from the plasma membrane to the myelin membrane once the myelin sheath has been assembled. Public Library of Science 2016-05-12 /pmc/articles/PMC4865042/ /pubmed/27171274 http://dx.doi.org/10.1371/journal.pone.0155317 Text en © 2016 Bijlard 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bijlard, Marjolein
de Jonge, Jenny C.
Klunder, Bert
Nomden, Anita
Hoekstra, Dick
Baron, Wia
MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title_full MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title_fullStr MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title_full_unstemmed MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title_short MAL Is a Regulator of the Recruitment of Myelin Protein PLP to Membrane Microdomains
title_sort mal is a regulator of the recruitment of myelin protein plp to membrane microdomains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4865042/
https://www.ncbi.nlm.nih.gov/pubmed/27171274
http://dx.doi.org/10.1371/journal.pone.0155317
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