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A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis

The co-chaperone BAG3, in complex with the heat shock protein HSPB8, plays a role in protein quality control during mechanical strain. It is part of a multichaperone complex that senses damaged cytoskeletal proteins and orchestrates their seclusion and/or degradation by selective autophagy. Here we...

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Autores principales: Fuchs, Margit, Luthold, Carole, Guilbert, Solenn M., Varlet, Alice Anaïs, Lambert, Herman, Jetté, Alexandra, Elowe, Sabine, Landry, Jacques, Lavoie, Josée N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619738/
https://www.ncbi.nlm.nih.gov/pubmed/26496431
http://dx.doi.org/10.1371/journal.pgen.1005582
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author Fuchs, Margit
Luthold, Carole
Guilbert, Solenn M.
Varlet, Alice Anaïs
Lambert, Herman
Jetté, Alexandra
Elowe, Sabine
Landry, Jacques
Lavoie, Josée N.
author_facet Fuchs, Margit
Luthold, Carole
Guilbert, Solenn M.
Varlet, Alice Anaïs
Lambert, Herman
Jetté, Alexandra
Elowe, Sabine
Landry, Jacques
Lavoie, Josée N.
author_sort Fuchs, Margit
collection PubMed
description The co-chaperone BAG3, in complex with the heat shock protein HSPB8, plays a role in protein quality control during mechanical strain. It is part of a multichaperone complex that senses damaged cytoskeletal proteins and orchestrates their seclusion and/or degradation by selective autophagy. Here we describe a novel role for the BAG3-HSPB8 complex in mitosis, a process involving profound changes in cell tension homeostasis. BAG3 is hyperphosphorylated at mitotic entry and localizes to centrosomal regions. BAG3 regulates, in an HSPB8-dependent manner, the timely congression of chromosomes to the metaphase plate by influencing the three-dimensional positioning of the mitotic spindle. Depletion of BAG3 caused defects in cell rounding at metaphase and dramatic blebbing of the cortex associated with abnormal spindle rotations. Similar defects were observed upon silencing of the autophagic receptor p62/SQSTM1 that contributes to BAG3-mediated selective autophagy pathway. Mitotic cells depleted of BAG3, HSPB8 or p62/SQSTM1 exhibited disorganized actin-rich retraction fibres, which are proposed to guide spindle orientation. Proper spindle positioning was rescued in BAG3-depleted cells upon addition of the lectin concanavalin A, which restores cortex rigidity. Together, our findings suggest the existence of a so-far unrecognized quality control mechanism involving BAG3, HSPB8 and p62/SQSTM1 for accurate remodelling of actin-based mitotic structures that guide spindle orientation.
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spelling pubmed-46197382015-10-29 A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis Fuchs, Margit Luthold, Carole Guilbert, Solenn M. Varlet, Alice Anaïs Lambert, Herman Jetté, Alexandra Elowe, Sabine Landry, Jacques Lavoie, Josée N. PLoS Genet Research Article The co-chaperone BAG3, in complex with the heat shock protein HSPB8, plays a role in protein quality control during mechanical strain. It is part of a multichaperone complex that senses damaged cytoskeletal proteins and orchestrates their seclusion and/or degradation by selective autophagy. Here we describe a novel role for the BAG3-HSPB8 complex in mitosis, a process involving profound changes in cell tension homeostasis. BAG3 is hyperphosphorylated at mitotic entry and localizes to centrosomal regions. BAG3 regulates, in an HSPB8-dependent manner, the timely congression of chromosomes to the metaphase plate by influencing the three-dimensional positioning of the mitotic spindle. Depletion of BAG3 caused defects in cell rounding at metaphase and dramatic blebbing of the cortex associated with abnormal spindle rotations. Similar defects were observed upon silencing of the autophagic receptor p62/SQSTM1 that contributes to BAG3-mediated selective autophagy pathway. Mitotic cells depleted of BAG3, HSPB8 or p62/SQSTM1 exhibited disorganized actin-rich retraction fibres, which are proposed to guide spindle orientation. Proper spindle positioning was rescued in BAG3-depleted cells upon addition of the lectin concanavalin A, which restores cortex rigidity. Together, our findings suggest the existence of a so-far unrecognized quality control mechanism involving BAG3, HSPB8 and p62/SQSTM1 for accurate remodelling of actin-based mitotic structures that guide spindle orientation. Public Library of Science 2015-10-23 /pmc/articles/PMC4619738/ /pubmed/26496431 http://dx.doi.org/10.1371/journal.pgen.1005582 Text en © 2015 Fuchs 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
Fuchs, Margit
Luthold, Carole
Guilbert, Solenn M.
Varlet, Alice Anaïs
Lambert, Herman
Jetté, Alexandra
Elowe, Sabine
Landry, Jacques
Lavoie, Josée N.
A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title_full A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title_fullStr A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title_full_unstemmed A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title_short A Role for the Chaperone Complex BAG3-HSPB8 in Actin Dynamics, Spindle Orientation and Proper Chromosome Segregation during Mitosis
title_sort role for the chaperone complex bag3-hspb8 in actin dynamics, spindle orientation and proper chromosome segregation during mitosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619738/
https://www.ncbi.nlm.nih.gov/pubmed/26496431
http://dx.doi.org/10.1371/journal.pgen.1005582
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