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Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant

In animal cells the centrosome is commonly viewed as the main cellular structure driving microtubule (MT) assembly into the mitotic spindle apparatus. However, additional pathways, such as those mediated by chromatin and augmin, are involved in the establishment of functional spindles. The molecular...

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Autores principales: Lecland, Nicolas, Debec, Alain, Delmas, Audrey, Moutinho-Pereira, Sara, Malmanche, Nicolas, Bouissou, Anais, Dupré, Clémence, Jourdan, Aimie, Raynaud-Messina, Brigitte, Maiato, Helder, Guichet, Antoine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3603413/
https://www.ncbi.nlm.nih.gov/pubmed/23519377
http://dx.doi.org/10.1242/bio.20133327
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author Lecland, Nicolas
Debec, Alain
Delmas, Audrey
Moutinho-Pereira, Sara
Malmanche, Nicolas
Bouissou, Anais
Dupré, Clémence
Jourdan, Aimie
Raynaud-Messina, Brigitte
Maiato, Helder
Guichet, Antoine
author_facet Lecland, Nicolas
Debec, Alain
Delmas, Audrey
Moutinho-Pereira, Sara
Malmanche, Nicolas
Bouissou, Anais
Dupré, Clémence
Jourdan, Aimie
Raynaud-Messina, Brigitte
Maiato, Helder
Guichet, Antoine
author_sort Lecland, Nicolas
collection PubMed
description In animal cells the centrosome is commonly viewed as the main cellular structure driving microtubule (MT) assembly into the mitotic spindle apparatus. However, additional pathways, such as those mediated by chromatin and augmin, are involved in the establishment of functional spindles. The molecular mechanisms involved in these pathways remain poorly understood, mostly due to limitations inherent to current experimental systems available. To overcome these limitations we have developed six new Drosophila cell lines derived from Drosophila homozygous mutants for DSas-4, a protein essential for centriole biogenesis. These cells lack detectable centrosomal structures, astral MT, with dispersed pericentriolar proteins D-PLP, Centrosomin and γ-tubulin. They show poorly focused spindle poles that reach the plasma membrane. Despite being compromised for functional centrosome, these cells could successfully undergo mitosis. Live-cell imaging analysis of acentriolar spindle assembly revealed that nascent MTs are nucleated from multiple points in the vicinity of chromosomes. These nascent MTs then grow away from kinetochores allowing the expansion of fibers that will be part of the future acentriolar spindle. MT repolymerization assays illustrate that acentriolar spindle assembly occurs “inside-out” from the chromosomes. Colchicine-mediated depolymerization of MTs further revealed the presence of a functional Spindle Assembly Checkpoint (SAC) in the acentriolar cells. Finally, pilot RNAi experiments open the potential use of these cell lines for the molecular dissection of anastral pathways in spindle and centrosome assembly.
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spelling pubmed-36034132013-03-21 Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant Lecland, Nicolas Debec, Alain Delmas, Audrey Moutinho-Pereira, Sara Malmanche, Nicolas Bouissou, Anais Dupré, Clémence Jourdan, Aimie Raynaud-Messina, Brigitte Maiato, Helder Guichet, Antoine Biol Open Research Article In animal cells the centrosome is commonly viewed as the main cellular structure driving microtubule (MT) assembly into the mitotic spindle apparatus. However, additional pathways, such as those mediated by chromatin and augmin, are involved in the establishment of functional spindles. The molecular mechanisms involved in these pathways remain poorly understood, mostly due to limitations inherent to current experimental systems available. To overcome these limitations we have developed six new Drosophila cell lines derived from Drosophila homozygous mutants for DSas-4, a protein essential for centriole biogenesis. These cells lack detectable centrosomal structures, astral MT, with dispersed pericentriolar proteins D-PLP, Centrosomin and γ-tubulin. They show poorly focused spindle poles that reach the plasma membrane. Despite being compromised for functional centrosome, these cells could successfully undergo mitosis. Live-cell imaging analysis of acentriolar spindle assembly revealed that nascent MTs are nucleated from multiple points in the vicinity of chromosomes. These nascent MTs then grow away from kinetochores allowing the expansion of fibers that will be part of the future acentriolar spindle. MT repolymerization assays illustrate that acentriolar spindle assembly occurs “inside-out” from the chromosomes. Colchicine-mediated depolymerization of MTs further revealed the presence of a functional Spindle Assembly Checkpoint (SAC) in the acentriolar cells. Finally, pilot RNAi experiments open the potential use of these cell lines for the molecular dissection of anastral pathways in spindle and centrosome assembly. The Company of Biologists 2013-01-17 /pmc/articles/PMC3603413/ /pubmed/23519377 http://dx.doi.org/10.1242/bio.20133327 Text en © 2013. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by-nc-sa/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial Share Alike License (http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Research Article
Lecland, Nicolas
Debec, Alain
Delmas, Audrey
Moutinho-Pereira, Sara
Malmanche, Nicolas
Bouissou, Anais
Dupré, Clémence
Jourdan, Aimie
Raynaud-Messina, Brigitte
Maiato, Helder
Guichet, Antoine
Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title_full Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title_fullStr Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title_full_unstemmed Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title_short Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant
title_sort establishment and mitotic characterization of new drosophila acentriolar cell lines from dsas-4 mutant
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3603413/
https://www.ncbi.nlm.nih.gov/pubmed/23519377
http://dx.doi.org/10.1242/bio.20133327
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