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Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly

During cell division, chromosome segregation is orchestrated by a microtubule-based spindle. Interaction between spindle microtubules and kinetochores is central to the bi-orientation of chromosomes. Initially dynamic to allow spindle assembly and kinetochore attachments, which is essential for chro...

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Autores principales: Macaisne, Nicolas, Bellutti, Laura, Laband, Kimberley, Edwards, Frances, Pitayu-Nugroho, Laras, Gervais, Alison, Ganeswaran, Thadshagine, Geoffroy, Hélène, Maton, Gilliane, Canman, Julie C, Lacroix, Benjamin, Dumont, Julien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005782/
https://www.ncbi.nlm.nih.gov/pubmed/36799894
http://dx.doi.org/10.7554/eLife.82579
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author Macaisne, Nicolas
Bellutti, Laura
Laband, Kimberley
Edwards, Frances
Pitayu-Nugroho, Laras
Gervais, Alison
Ganeswaran, Thadshagine
Geoffroy, Hélène
Maton, Gilliane
Canman, Julie C
Lacroix, Benjamin
Dumont, Julien
author_facet Macaisne, Nicolas
Bellutti, Laura
Laband, Kimberley
Edwards, Frances
Pitayu-Nugroho, Laras
Gervais, Alison
Ganeswaran, Thadshagine
Geoffroy, Hélène
Maton, Gilliane
Canman, Julie C
Lacroix, Benjamin
Dumont, Julien
author_sort Macaisne, Nicolas
collection PubMed
description During cell division, chromosome segregation is orchestrated by a microtubule-based spindle. Interaction between spindle microtubules and kinetochores is central to the bi-orientation of chromosomes. Initially dynamic to allow spindle assembly and kinetochore attachments, which is essential for chromosome alignment, microtubules are eventually stabilized for efficient segregation of sister chromatids and homologous chromosomes during mitosis and meiosis I, respectively. Therefore, the precise control of microtubule dynamics is of utmost importance during mitosis and meiosis. Here, we study the assembly and role of a kinetochore module, comprised of the kinase BUB-1, the two redundant CENP-F orthologs HCP-1/2, and the CLASP family member CLS-2 (hereafter termed the BHC module), in the control of microtubule dynamics in Caenorhabditis elegans oocytes. Using a combination of in vivo structure-function analyses of BHC components and in vitro microtubule-based assays, we show that BHC components stabilize microtubules, which is essential for meiotic spindle formation and accurate chromosome segregation. Overall, our results show that BUB-1 and HCP-1/2 do not only act as targeting components for CLS-2 at kinetochores, but also synergistically control kinetochore-microtubule dynamics by promoting microtubule pause. Together, our results suggest that BUB-1 and HCP-1/2 actively participate in the control of kinetochore-microtubule dynamics in the context of an intact BHC module to promote spindle assembly and accurate chromosome segregation in meiosis.
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spelling pubmed-100057822023-03-11 Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly Macaisne, Nicolas Bellutti, Laura Laband, Kimberley Edwards, Frances Pitayu-Nugroho, Laras Gervais, Alison Ganeswaran, Thadshagine Geoffroy, Hélène Maton, Gilliane Canman, Julie C Lacroix, Benjamin Dumont, Julien eLife Cell Biology During cell division, chromosome segregation is orchestrated by a microtubule-based spindle. Interaction between spindle microtubules and kinetochores is central to the bi-orientation of chromosomes. Initially dynamic to allow spindle assembly and kinetochore attachments, which is essential for chromosome alignment, microtubules are eventually stabilized for efficient segregation of sister chromatids and homologous chromosomes during mitosis and meiosis I, respectively. Therefore, the precise control of microtubule dynamics is of utmost importance during mitosis and meiosis. Here, we study the assembly and role of a kinetochore module, comprised of the kinase BUB-1, the two redundant CENP-F orthologs HCP-1/2, and the CLASP family member CLS-2 (hereafter termed the BHC module), in the control of microtubule dynamics in Caenorhabditis elegans oocytes. Using a combination of in vivo structure-function analyses of BHC components and in vitro microtubule-based assays, we show that BHC components stabilize microtubules, which is essential for meiotic spindle formation and accurate chromosome segregation. Overall, our results show that BUB-1 and HCP-1/2 do not only act as targeting components for CLS-2 at kinetochores, but also synergistically control kinetochore-microtubule dynamics by promoting microtubule pause. Together, our results suggest that BUB-1 and HCP-1/2 actively participate in the control of kinetochore-microtubule dynamics in the context of an intact BHC module to promote spindle assembly and accurate chromosome segregation in meiosis. eLife Sciences Publications, Ltd 2023-02-17 /pmc/articles/PMC10005782/ /pubmed/36799894 http://dx.doi.org/10.7554/eLife.82579 Text en © 2023, Macaisne, Bellutti, Laband et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Macaisne, Nicolas
Bellutti, Laura
Laband, Kimberley
Edwards, Frances
Pitayu-Nugroho, Laras
Gervais, Alison
Ganeswaran, Thadshagine
Geoffroy, Hélène
Maton, Gilliane
Canman, Julie C
Lacroix, Benjamin
Dumont, Julien
Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title_full Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title_fullStr Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title_full_unstemmed Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title_short Synergistic stabilization of microtubules by BUB-1, HCP-1, and CLS-2 controls microtubule pausing and meiotic spindle assembly
title_sort synergistic stabilization of microtubules by bub-1, hcp-1, and cls-2 controls microtubule pausing and meiotic spindle assembly
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005782/
https://www.ncbi.nlm.nih.gov/pubmed/36799894
http://dx.doi.org/10.7554/eLife.82579
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