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The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly

In metazoa, cilia assembly is a cellular process that starts with centriole to basal body maturation, migration to the cell surface, and docking to the plasma membrane. Basal body docking involves the interaction of both the distal end of the basal body and the transition fibers/distal appendages, w...

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Autores principales: Le Borgne, Pierrick, Greibill, Logan, Laporte, Marine Hélène, Lemullois, Michel, Bouhouche, Khaled, Temagoult, Mebarek, Rosnet, Olivier, Le Guennec, Maeva, Lignières, Laurent, Chevreux, Guillaume, Koll, France, Hamel, Virginie, Guichard, Paul, Tassin, Anne-Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9484695/
https://www.ncbi.nlm.nih.gov/pubmed/36070319
http://dx.doi.org/10.1371/journal.pbio.3001782
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author Le Borgne, Pierrick
Greibill, Logan
Laporte, Marine Hélène
Lemullois, Michel
Bouhouche, Khaled
Temagoult, Mebarek
Rosnet, Olivier
Le Guennec, Maeva
Lignières, Laurent
Chevreux, Guillaume
Koll, France
Hamel, Virginie
Guichard, Paul
Tassin, Anne-Marie
author_facet Le Borgne, Pierrick
Greibill, Logan
Laporte, Marine Hélène
Lemullois, Michel
Bouhouche, Khaled
Temagoult, Mebarek
Rosnet, Olivier
Le Guennec, Maeva
Lignières, Laurent
Chevreux, Guillaume
Koll, France
Hamel, Virginie
Guichard, Paul
Tassin, Anne-Marie
author_sort Le Borgne, Pierrick
collection PubMed
description In metazoa, cilia assembly is a cellular process that starts with centriole to basal body maturation, migration to the cell surface, and docking to the plasma membrane. Basal body docking involves the interaction of both the distal end of the basal body and the transition fibers/distal appendages, with the plasma membrane. Mutations in numerous genes involved in basal body docking and transition zone assembly are associated with the most severe ciliopathies, highlighting the importance of these events in cilium biogenesis. In this context, the ciliate Paramecium has been widely used as a model system to study basal body and cilia assembly. However, despite the evolutionary conservation of cilia assembly events across phyla, whether the same molecular players are functionally conserved, is not fully known. Here, we demonstrated that CEP90, FOPNL, and OFD1 are evolutionary conserved proteins crucial for ciliogenesis. Using ultrastructure expansion microscopy, we unveiled that these proteins localize at the distal end of both centrioles/basal bodies in Paramecium and mammalian cells. Moreover, we found that these proteins are recruited early during centriole duplication on the external surface of the procentriole. Functional analysis performed both in Paramecium and mammalian cells demonstrate the requirement of these proteins for distal appendage assembly and basal body docking. Finally, we show that mammalian centrioles require another component, Moonraker (MNR), to recruit OFD1, FOPNL, and CEP90, which will then recruit the distal appendage proteins CEP83, CEP89, and CEP164. Altogether, we propose that this OFD1, FOPNL, and CEP90 functional module is required to determine in mammalian cells the future position of distal appendage proteins.
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spelling pubmed-94846952022-09-20 The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly Le Borgne, Pierrick Greibill, Logan Laporte, Marine Hélène Lemullois, Michel Bouhouche, Khaled Temagoult, Mebarek Rosnet, Olivier Le Guennec, Maeva Lignières, Laurent Chevreux, Guillaume Koll, France Hamel, Virginie Guichard, Paul Tassin, Anne-Marie PLoS Biol Research Article In metazoa, cilia assembly is a cellular process that starts with centriole to basal body maturation, migration to the cell surface, and docking to the plasma membrane. Basal body docking involves the interaction of both the distal end of the basal body and the transition fibers/distal appendages, with the plasma membrane. Mutations in numerous genes involved in basal body docking and transition zone assembly are associated with the most severe ciliopathies, highlighting the importance of these events in cilium biogenesis. In this context, the ciliate Paramecium has been widely used as a model system to study basal body and cilia assembly. However, despite the evolutionary conservation of cilia assembly events across phyla, whether the same molecular players are functionally conserved, is not fully known. Here, we demonstrated that CEP90, FOPNL, and OFD1 are evolutionary conserved proteins crucial for ciliogenesis. Using ultrastructure expansion microscopy, we unveiled that these proteins localize at the distal end of both centrioles/basal bodies in Paramecium and mammalian cells. Moreover, we found that these proteins are recruited early during centriole duplication on the external surface of the procentriole. Functional analysis performed both in Paramecium and mammalian cells demonstrate the requirement of these proteins for distal appendage assembly and basal body docking. Finally, we show that mammalian centrioles require another component, Moonraker (MNR), to recruit OFD1, FOPNL, and CEP90, which will then recruit the distal appendage proteins CEP83, CEP89, and CEP164. Altogether, we propose that this OFD1, FOPNL, and CEP90 functional module is required to determine in mammalian cells the future position of distal appendage proteins. Public Library of Science 2022-09-07 /pmc/articles/PMC9484695/ /pubmed/36070319 http://dx.doi.org/10.1371/journal.pbio.3001782 Text en © 2022 Le Borgne et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Le Borgne, Pierrick
Greibill, Logan
Laporte, Marine Hélène
Lemullois, Michel
Bouhouche, Khaled
Temagoult, Mebarek
Rosnet, Olivier
Le Guennec, Maeva
Lignières, Laurent
Chevreux, Guillaume
Koll, France
Hamel, Virginie
Guichard, Paul
Tassin, Anne-Marie
The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title_full The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title_fullStr The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title_full_unstemmed The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title_short The evolutionary conserved proteins CEP90, FOPNL, and OFD1 recruit centriolar distal appendage proteins to initiate their assembly
title_sort evolutionary conserved proteins cep90, fopnl, and ofd1 recruit centriolar distal appendage proteins to initiate their assembly
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9484695/
https://www.ncbi.nlm.nih.gov/pubmed/36070319
http://dx.doi.org/10.1371/journal.pbio.3001782
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