Cargando…

Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis

Centrosomes are orbited by centriolar satellites, dynamic multiprotein assemblies nucleated by Pericentriolar material 1 (PCM1). To study the requirement for centriolar satellites, we generated mice lacking PCM1, a crucial component of satellites. Pcm1(−/−) mice display partially penetrant perinatal...

Descripción completa

Detalles Bibliográficos
Autores principales: Hall, Emma A, Kumar, Dhivya, Prosser, Suzanna L, Yeyati, Patricia L, Herranz-Pérez, Vicente, García-Verdugo, Jose Manuel, Rose, Lorraine, McKie, Lisa, Dodd, Daniel O, Tennant, Peter A, Megaw, Roly, Murphy, Laura C, Ferreira, Marisa F, Grimes, Graeme, Williams, Lucy, Quidwai, Tooba, Pelletier, Laurence, Reiter, Jeremy F, Mill, Pleasantine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9998092/
https://www.ncbi.nlm.nih.gov/pubmed/36790165
http://dx.doi.org/10.7554/eLife.79299
_version_ 1784903396558372864
author Hall, Emma A
Kumar, Dhivya
Prosser, Suzanna L
Yeyati, Patricia L
Herranz-Pérez, Vicente
García-Verdugo, Jose Manuel
Rose, Lorraine
McKie, Lisa
Dodd, Daniel O
Tennant, Peter A
Megaw, Roly
Murphy, Laura C
Ferreira, Marisa F
Grimes, Graeme
Williams, Lucy
Quidwai, Tooba
Pelletier, Laurence
Reiter, Jeremy F
Mill, Pleasantine
author_facet Hall, Emma A
Kumar, Dhivya
Prosser, Suzanna L
Yeyati, Patricia L
Herranz-Pérez, Vicente
García-Verdugo, Jose Manuel
Rose, Lorraine
McKie, Lisa
Dodd, Daniel O
Tennant, Peter A
Megaw, Roly
Murphy, Laura C
Ferreira, Marisa F
Grimes, Graeme
Williams, Lucy
Quidwai, Tooba
Pelletier, Laurence
Reiter, Jeremy F
Mill, Pleasantine
author_sort Hall, Emma A
collection PubMed
description Centrosomes are orbited by centriolar satellites, dynamic multiprotein assemblies nucleated by Pericentriolar material 1 (PCM1). To study the requirement for centriolar satellites, we generated mice lacking PCM1, a crucial component of satellites. Pcm1(−/−) mice display partially penetrant perinatal lethality with survivors exhibiting hydrocephalus, oligospermia, and cerebellar hypoplasia, and variably expressive phenotypes such as hydronephrosis. As many of these phenotypes have been observed in human ciliopathies and satellites are implicated in cilia biology, we investigated whether cilia were affected. PCM1 was dispensable for ciliogenesis in many cell types, whereas Pcm1(−/−) multiciliated ependymal cells and human PCM1(−/−) retinal pigmented epithelial 1 (RPE1) cells showed reduced ciliogenesis. PCM1(−/−) RPE1 cells displayed reduced docking of the mother centriole to the ciliary vesicle and removal of CP110 and CEP97 from the distal mother centriole, indicating compromised early ciliogenesis. Similarly, Pcm1(−/−) ependymal cells exhibited reduced removal of CP110 from basal bodies in vivo. We propose that PCM1 and centriolar satellites facilitate efficient trafficking of proteins to and from centrioles, including the departure of CP110 and CEP97 to initiate ciliogenesis, and that the threshold to trigger ciliogenesis differs between cell types.
format Online
Article
Text
id pubmed-9998092
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-99980922023-03-10 Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis Hall, Emma A Kumar, Dhivya Prosser, Suzanna L Yeyati, Patricia L Herranz-Pérez, Vicente García-Verdugo, Jose Manuel Rose, Lorraine McKie, Lisa Dodd, Daniel O Tennant, Peter A Megaw, Roly Murphy, Laura C Ferreira, Marisa F Grimes, Graeme Williams, Lucy Quidwai, Tooba Pelletier, Laurence Reiter, Jeremy F Mill, Pleasantine eLife Developmental Biology Centrosomes are orbited by centriolar satellites, dynamic multiprotein assemblies nucleated by Pericentriolar material 1 (PCM1). To study the requirement for centriolar satellites, we generated mice lacking PCM1, a crucial component of satellites. Pcm1(−/−) mice display partially penetrant perinatal lethality with survivors exhibiting hydrocephalus, oligospermia, and cerebellar hypoplasia, and variably expressive phenotypes such as hydronephrosis. As many of these phenotypes have been observed in human ciliopathies and satellites are implicated in cilia biology, we investigated whether cilia were affected. PCM1 was dispensable for ciliogenesis in many cell types, whereas Pcm1(−/−) multiciliated ependymal cells and human PCM1(−/−) retinal pigmented epithelial 1 (RPE1) cells showed reduced ciliogenesis. PCM1(−/−) RPE1 cells displayed reduced docking of the mother centriole to the ciliary vesicle and removal of CP110 and CEP97 from the distal mother centriole, indicating compromised early ciliogenesis. Similarly, Pcm1(−/−) ependymal cells exhibited reduced removal of CP110 from basal bodies in vivo. We propose that PCM1 and centriolar satellites facilitate efficient trafficking of proteins to and from centrioles, including the departure of CP110 and CEP97 to initiate ciliogenesis, and that the threshold to trigger ciliogenesis differs between cell types. eLife Sciences Publications, Ltd 2023-02-15 /pmc/articles/PMC9998092/ /pubmed/36790165 http://dx.doi.org/10.7554/eLife.79299 Text en © 2023, Hall, Kumar 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 Developmental Biology
Hall, Emma A
Kumar, Dhivya
Prosser, Suzanna L
Yeyati, Patricia L
Herranz-Pérez, Vicente
García-Verdugo, Jose Manuel
Rose, Lorraine
McKie, Lisa
Dodd, Daniel O
Tennant, Peter A
Megaw, Roly
Murphy, Laura C
Ferreira, Marisa F
Grimes, Graeme
Williams, Lucy
Quidwai, Tooba
Pelletier, Laurence
Reiter, Jeremy F
Mill, Pleasantine
Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title_full Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title_fullStr Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title_full_unstemmed Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title_short Centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
title_sort centriolar satellites expedite mother centriole remodeling to promote ciliogenesis
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9998092/
https://www.ncbi.nlm.nih.gov/pubmed/36790165
http://dx.doi.org/10.7554/eLife.79299
work_keys_str_mv AT hallemmaa centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT kumardhivya centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT prossersuzannal centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT yeyatipatricial centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT herranzperezvicente centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT garciaverdugojosemanuel centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT roselorraine centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT mckielisa centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT dodddanielo centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT tennantpetera centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT megawroly centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT murphylaurac centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT ferreiramarisaf centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT grimesgraeme centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT williamslucy centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT quidwaitooba centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT pelletierlaurence centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT reiterjeremyf centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis
AT millpleasantine centriolarsatellitesexpeditemothercentrioleremodelingtopromoteciliogenesis