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Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)

MAP6 proteins (MAP6s), which include MAP6-N (also called Stable Tubule Only Polypeptide, or STOP) and MAP6d1 (MAP6 domain-containing protein 1, also called STOP-Like protein 21 kD, or SL21), bind to and stabilize microtubules. MAP6 deletion in mice severely alters integrated brain functions and is a...

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Autores principales: Gory-Fauré, Sylvie, Windscheid, Vanessa, Brocard, Jacques, Montessuit, Sylvie, Tsutsumi, Ryouhei, Denarier, Eric, Fukata, Yuko, Bosc, Christophe, Delaroche, Julie, Collomb, Nora, Fukata, Masaki, Martinou, Jean-Claude, Pernet-Gallay, Karin, Andrieux, Annie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4272302/
https://www.ncbi.nlm.nih.gov/pubmed/25526643
http://dx.doi.org/10.1371/journal.pone.0114905
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author Gory-Fauré, Sylvie
Windscheid, Vanessa
Brocard, Jacques
Montessuit, Sylvie
Tsutsumi, Ryouhei
Denarier, Eric
Fukata, Yuko
Bosc, Christophe
Delaroche, Julie
Collomb, Nora
Fukata, Masaki
Martinou, Jean-Claude
Pernet-Gallay, Karin
Andrieux, Annie
author_facet Gory-Fauré, Sylvie
Windscheid, Vanessa
Brocard, Jacques
Montessuit, Sylvie
Tsutsumi, Ryouhei
Denarier, Eric
Fukata, Yuko
Bosc, Christophe
Delaroche, Julie
Collomb, Nora
Fukata, Masaki
Martinou, Jean-Claude
Pernet-Gallay, Karin
Andrieux, Annie
author_sort Gory-Fauré, Sylvie
collection PubMed
description MAP6 proteins (MAP6s), which include MAP6-N (also called Stable Tubule Only Polypeptide, or STOP) and MAP6d1 (MAP6 domain-containing protein 1, also called STOP-Like protein 21 kD, or SL21), bind to and stabilize microtubules. MAP6 deletion in mice severely alters integrated brain functions and is associated with synaptic defects, suggesting that MAP6s may also have alternative cellular roles. MAP6s reportedly associate with the Golgi apparatus through palmitoylation of their N-terminal domain, and specific isoforms have been shown to bind actin. Here, we use heterologous systems to investigate several biochemical properties of MAP6 proteins. We demonstrate that the three N-terminal cysteines of MAP6d1 are palmitoylated by a subset of DHHC-type palmitoylating enzymes. Analysis of the subcellular localization of palmitoylated MAP6d1, including electron microscopic analysis, reveals possible localization to the Golgi and the plasma membrane but no association with the endoplasmic reticulum. Moreover, we observed localization of MAP6d1 to mitochondria, which requires the N-terminus of the protein but does not require palmitoylation. We show that endogenous MAP6d1 localized at mitochondria in mature mice neurons as well as at the outer membrane and in the intermembrane space of purified mouse mitochondria. Last, we found that MAP6d1 can multimerize via a microtubule-binding module. Interestingly, most of these properties of MAP6d1 are shared by MAP6-N. Together, these results describe several properties of MAP6 proteins, including their intercellular localization and multimerization activity, which may be relevant to neuronal differentiation and synaptic functions.
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spelling pubmed-42723022014-12-26 Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6) Gory-Fauré, Sylvie Windscheid, Vanessa Brocard, Jacques Montessuit, Sylvie Tsutsumi, Ryouhei Denarier, Eric Fukata, Yuko Bosc, Christophe Delaroche, Julie Collomb, Nora Fukata, Masaki Martinou, Jean-Claude Pernet-Gallay, Karin Andrieux, Annie PLoS One Research Article MAP6 proteins (MAP6s), which include MAP6-N (also called Stable Tubule Only Polypeptide, or STOP) and MAP6d1 (MAP6 domain-containing protein 1, also called STOP-Like protein 21 kD, or SL21), bind to and stabilize microtubules. MAP6 deletion in mice severely alters integrated brain functions and is associated with synaptic defects, suggesting that MAP6s may also have alternative cellular roles. MAP6s reportedly associate with the Golgi apparatus through palmitoylation of their N-terminal domain, and specific isoforms have been shown to bind actin. Here, we use heterologous systems to investigate several biochemical properties of MAP6 proteins. We demonstrate that the three N-terminal cysteines of MAP6d1 are palmitoylated by a subset of DHHC-type palmitoylating enzymes. Analysis of the subcellular localization of palmitoylated MAP6d1, including electron microscopic analysis, reveals possible localization to the Golgi and the plasma membrane but no association with the endoplasmic reticulum. Moreover, we observed localization of MAP6d1 to mitochondria, which requires the N-terminus of the protein but does not require palmitoylation. We show that endogenous MAP6d1 localized at mitochondria in mature mice neurons as well as at the outer membrane and in the intermembrane space of purified mouse mitochondria. Last, we found that MAP6d1 can multimerize via a microtubule-binding module. Interestingly, most of these properties of MAP6d1 are shared by MAP6-N. Together, these results describe several properties of MAP6 proteins, including their intercellular localization and multimerization activity, which may be relevant to neuronal differentiation and synaptic functions. Public Library of Science 2014-12-19 /pmc/articles/PMC4272302/ /pubmed/25526643 http://dx.doi.org/10.1371/journal.pone.0114905 Text en © 2014 Gory-Fauré 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
Gory-Fauré, Sylvie
Windscheid, Vanessa
Brocard, Jacques
Montessuit, Sylvie
Tsutsumi, Ryouhei
Denarier, Eric
Fukata, Yuko
Bosc, Christophe
Delaroche, Julie
Collomb, Nora
Fukata, Masaki
Martinou, Jean-Claude
Pernet-Gallay, Karin
Andrieux, Annie
Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title_full Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title_fullStr Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title_full_unstemmed Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title_short Non-Microtubular Localizations of Microtubule-Associated Protein 6 (MAP6)
title_sort non-microtubular localizations of microtubule-associated protein 6 (map6)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4272302/
https://www.ncbi.nlm.nih.gov/pubmed/25526643
http://dx.doi.org/10.1371/journal.pone.0114905
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