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Hook2 is involved in the morphogenesis of the primary cilium

Primary cilia originate from the centrosome and play essential roles in several cellular, developmental, and pathological processes, but the underlying mechanisms of ciliogenesis are not fully understood. Given the involvement of the adaptor protein Hook2 in centrosomal homeostasis and protein trans...

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Autores principales: Baron Gaillard, Carole L., Pallesi-Pocachard, Emilie, Massey-Harroche, Dominique, Richard, Fabrice, Arsanto, Jean-Pierre, Chauvin, Jean-Paul, Lecine, Patrick, Krämer, Helmut, Borg, Jean-Paul, Le Bivic, André
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3226474/
https://www.ncbi.nlm.nih.gov/pubmed/21998199
http://dx.doi.org/10.1091/mbc.E11-05-0405
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author Baron Gaillard, Carole L.
Pallesi-Pocachard, Emilie
Massey-Harroche, Dominique
Richard, Fabrice
Arsanto, Jean-Pierre
Chauvin, Jean-Paul
Lecine, Patrick
Krämer, Helmut
Borg, Jean-Paul
Le Bivic, André
author_facet Baron Gaillard, Carole L.
Pallesi-Pocachard, Emilie
Massey-Harroche, Dominique
Richard, Fabrice
Arsanto, Jean-Pierre
Chauvin, Jean-Paul
Lecine, Patrick
Krämer, Helmut
Borg, Jean-Paul
Le Bivic, André
author_sort Baron Gaillard, Carole L.
collection PubMed
description Primary cilia originate from the centrosome and play essential roles in several cellular, developmental, and pathological processes, but the underlying mechanisms of ciliogenesis are not fully understood. Given the involvement of the adaptor protein Hook2 in centrosomal homeostasis and protein transport to pericentrosomal aggresomes, we explored its role in ciliogenesis. We found that in human retinal epithelial cells, Hook2 localizes at the Golgi apparatus and centrosome/basal body, a strategic partitioning for ciliogenesis. Of importance, Hook2 depletion disrupts ciliogenesis at a stage before the formation of the ciliary vesicle at the distal tip of the mother centriole. Using two hybrid and immunoprecipitation assays and a small interfering RNA strategy, we found that Hook2 interacts with and stabilizes pericentriolar material protein 1 (PCM1), which was reported to be essential for the recruitment of Rab8a, a GTPase that is believed to be crucial for membrane transport to the primary cilium. Of interest, GFP::Rab8a coimmunoprecipitates with endogenous Hook2 and PCM1. Finally, GFP::Rab8a can overcome Hook2 depletion, demonstrating a functional interaction between Hook2 and these two important regulators of ciliogenesis. The data indicate that Hook2 interacts with PCM1 in a complex that also contains Rab8a and regulates a limiting step required for further initiation of ciliogenesis after centriole maturation.
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spelling pubmed-32264742012-02-16 Hook2 is involved in the morphogenesis of the primary cilium Baron Gaillard, Carole L. Pallesi-Pocachard, Emilie Massey-Harroche, Dominique Richard, Fabrice Arsanto, Jean-Pierre Chauvin, Jean-Paul Lecine, Patrick Krämer, Helmut Borg, Jean-Paul Le Bivic, André Mol Biol Cell Articles Primary cilia originate from the centrosome and play essential roles in several cellular, developmental, and pathological processes, but the underlying mechanisms of ciliogenesis are not fully understood. Given the involvement of the adaptor protein Hook2 in centrosomal homeostasis and protein transport to pericentrosomal aggresomes, we explored its role in ciliogenesis. We found that in human retinal epithelial cells, Hook2 localizes at the Golgi apparatus and centrosome/basal body, a strategic partitioning for ciliogenesis. Of importance, Hook2 depletion disrupts ciliogenesis at a stage before the formation of the ciliary vesicle at the distal tip of the mother centriole. Using two hybrid and immunoprecipitation assays and a small interfering RNA strategy, we found that Hook2 interacts with and stabilizes pericentriolar material protein 1 (PCM1), which was reported to be essential for the recruitment of Rab8a, a GTPase that is believed to be crucial for membrane transport to the primary cilium. Of interest, GFP::Rab8a coimmunoprecipitates with endogenous Hook2 and PCM1. Finally, GFP::Rab8a can overcome Hook2 depletion, demonstrating a functional interaction between Hook2 and these two important regulators of ciliogenesis. The data indicate that Hook2 interacts with PCM1 in a complex that also contains Rab8a and regulates a limiting step required for further initiation of ciliogenesis after centriole maturation. The American Society for Cell Biology 2011-12-01 /pmc/articles/PMC3226474/ /pubmed/21998199 http://dx.doi.org/10.1091/mbc.E11-05-0405 Text en © 2011 Baron Gaillard et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society of Cell Biology.
spellingShingle Articles
Baron Gaillard, Carole L.
Pallesi-Pocachard, Emilie
Massey-Harroche, Dominique
Richard, Fabrice
Arsanto, Jean-Pierre
Chauvin, Jean-Paul
Lecine, Patrick
Krämer, Helmut
Borg, Jean-Paul
Le Bivic, André
Hook2 is involved in the morphogenesis of the primary cilium
title Hook2 is involved in the morphogenesis of the primary cilium
title_full Hook2 is involved in the morphogenesis of the primary cilium
title_fullStr Hook2 is involved in the morphogenesis of the primary cilium
title_full_unstemmed Hook2 is involved in the morphogenesis of the primary cilium
title_short Hook2 is involved in the morphogenesis of the primary cilium
title_sort hook2 is involved in the morphogenesis of the primary cilium
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3226474/
https://www.ncbi.nlm.nih.gov/pubmed/21998199
http://dx.doi.org/10.1091/mbc.E11-05-0405
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