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Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish

Vesicle biogenesis, trafficking and signaling via Endoplasmic reticulum-Golgi network support essential developmental processes and their disruption lead to neurodevelopmental disorders and neurodegeneration. We report that de novo missense variants in ARF3, encoding a small GTPase regulating Golgi...

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Autores principales: Fasano, Giulia, Muto, Valentina, Radio, Francesca Clementina, Venditti, Martina, Mosaddeghzadeh, Niloufar, Coppola, Simona, Paradisi, Graziamaria, Zara, Erika, Bazgir, Farhad, Ziegler, Alban, Chillemi, Giovanni, Bertuccini, Lucia, Tinari, Antonella, Vetro, Annalisa, Pantaleoni, Francesca, Pizzi, Simone, Conti, Libenzio Adrian, Petrini, Stefania, Bruselles, Alessandro, Prandi, Ingrid Guarnetti, Mancini, Cecilia, Chandramouli, Balasubramanian, Barth, Magalie, Bris, Céline, Milani, Donatella, Selicorni, Angelo, Macchiaiolo, Marina, Gonfiantini, Michaela V., Bartuli, Andrea, Mariani, Riccardo, Curry, Cynthia J., Guerrini, Renzo, Slavotinek, Anne, Iascone, Maria, Dallapiccola, Bruno, Ahmadian, Mohammad Reza, Lauri, Antonella, Tartaglia, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9652361/
https://www.ncbi.nlm.nih.gov/pubmed/36369169
http://dx.doi.org/10.1038/s41467-022-34354-x
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author Fasano, Giulia
Muto, Valentina
Radio, Francesca Clementina
Venditti, Martina
Mosaddeghzadeh, Niloufar
Coppola, Simona
Paradisi, Graziamaria
Zara, Erika
Bazgir, Farhad
Ziegler, Alban
Chillemi, Giovanni
Bertuccini, Lucia
Tinari, Antonella
Vetro, Annalisa
Pantaleoni, Francesca
Pizzi, Simone
Conti, Libenzio Adrian
Petrini, Stefania
Bruselles, Alessandro
Prandi, Ingrid Guarnetti
Mancini, Cecilia
Chandramouli, Balasubramanian
Barth, Magalie
Bris, Céline
Milani, Donatella
Selicorni, Angelo
Macchiaiolo, Marina
Gonfiantini, Michaela V.
Bartuli, Andrea
Mariani, Riccardo
Curry, Cynthia J.
Guerrini, Renzo
Slavotinek, Anne
Iascone, Maria
Dallapiccola, Bruno
Ahmadian, Mohammad Reza
Lauri, Antonella
Tartaglia, Marco
author_facet Fasano, Giulia
Muto, Valentina
Radio, Francesca Clementina
Venditti, Martina
Mosaddeghzadeh, Niloufar
Coppola, Simona
Paradisi, Graziamaria
Zara, Erika
Bazgir, Farhad
Ziegler, Alban
Chillemi, Giovanni
Bertuccini, Lucia
Tinari, Antonella
Vetro, Annalisa
Pantaleoni, Francesca
Pizzi, Simone
Conti, Libenzio Adrian
Petrini, Stefania
Bruselles, Alessandro
Prandi, Ingrid Guarnetti
Mancini, Cecilia
Chandramouli, Balasubramanian
Barth, Magalie
Bris, Céline
Milani, Donatella
Selicorni, Angelo
Macchiaiolo, Marina
Gonfiantini, Michaela V.
Bartuli, Andrea
Mariani, Riccardo
Curry, Cynthia J.
Guerrini, Renzo
Slavotinek, Anne
Iascone, Maria
Dallapiccola, Bruno
Ahmadian, Mohammad Reza
Lauri, Antonella
Tartaglia, Marco
author_sort Fasano, Giulia
collection PubMed
description Vesicle biogenesis, trafficking and signaling via Endoplasmic reticulum-Golgi network support essential developmental processes and their disruption lead to neurodevelopmental disorders and neurodegeneration. We report that de novo missense variants in ARF3, encoding a small GTPase regulating Golgi dynamics, cause a developmental disease in humans impairing nervous system and skeletal formation. Microcephaly-associated ARF3 variants affect residues within the guanine nucleotide binding pocket and variably perturb protein stability and GTP/GDP binding. Functional analysis demonstrates variably disruptive consequences of ARF3 variants on Golgi morphology, vesicles assembly and trafficking. Disease modeling in zebrafish validates further the dominant behavior of the mutants and their differential impact on brain and body plan formation, recapitulating the variable disease expression. In-depth in vivo analyses traces back impaired neural precursors’ proliferation and planar cell polarity-dependent cell movements as the earliest detectable effects. Our findings document a key role of ARF3 in Golgi function and demonstrate its pleiotropic impact on development.
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spelling pubmed-96523612022-11-15 Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish Fasano, Giulia Muto, Valentina Radio, Francesca Clementina Venditti, Martina Mosaddeghzadeh, Niloufar Coppola, Simona Paradisi, Graziamaria Zara, Erika Bazgir, Farhad Ziegler, Alban Chillemi, Giovanni Bertuccini, Lucia Tinari, Antonella Vetro, Annalisa Pantaleoni, Francesca Pizzi, Simone Conti, Libenzio Adrian Petrini, Stefania Bruselles, Alessandro Prandi, Ingrid Guarnetti Mancini, Cecilia Chandramouli, Balasubramanian Barth, Magalie Bris, Céline Milani, Donatella Selicorni, Angelo Macchiaiolo, Marina Gonfiantini, Michaela V. Bartuli, Andrea Mariani, Riccardo Curry, Cynthia J. Guerrini, Renzo Slavotinek, Anne Iascone, Maria Dallapiccola, Bruno Ahmadian, Mohammad Reza Lauri, Antonella Tartaglia, Marco Nat Commun Article Vesicle biogenesis, trafficking and signaling via Endoplasmic reticulum-Golgi network support essential developmental processes and their disruption lead to neurodevelopmental disorders and neurodegeneration. We report that de novo missense variants in ARF3, encoding a small GTPase regulating Golgi dynamics, cause a developmental disease in humans impairing nervous system and skeletal formation. Microcephaly-associated ARF3 variants affect residues within the guanine nucleotide binding pocket and variably perturb protein stability and GTP/GDP binding. Functional analysis demonstrates variably disruptive consequences of ARF3 variants on Golgi morphology, vesicles assembly and trafficking. Disease modeling in zebrafish validates further the dominant behavior of the mutants and their differential impact on brain and body plan formation, recapitulating the variable disease expression. In-depth in vivo analyses traces back impaired neural precursors’ proliferation and planar cell polarity-dependent cell movements as the earliest detectable effects. Our findings document a key role of ARF3 in Golgi function and demonstrate its pleiotropic impact on development. Nature Publishing Group UK 2022-11-11 /pmc/articles/PMC9652361/ /pubmed/36369169 http://dx.doi.org/10.1038/s41467-022-34354-x Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Fasano, Giulia
Muto, Valentina
Radio, Francesca Clementina
Venditti, Martina
Mosaddeghzadeh, Niloufar
Coppola, Simona
Paradisi, Graziamaria
Zara, Erika
Bazgir, Farhad
Ziegler, Alban
Chillemi, Giovanni
Bertuccini, Lucia
Tinari, Antonella
Vetro, Annalisa
Pantaleoni, Francesca
Pizzi, Simone
Conti, Libenzio Adrian
Petrini, Stefania
Bruselles, Alessandro
Prandi, Ingrid Guarnetti
Mancini, Cecilia
Chandramouli, Balasubramanian
Barth, Magalie
Bris, Céline
Milani, Donatella
Selicorni, Angelo
Macchiaiolo, Marina
Gonfiantini, Michaela V.
Bartuli, Andrea
Mariani, Riccardo
Curry, Cynthia J.
Guerrini, Renzo
Slavotinek, Anne
Iascone, Maria
Dallapiccola, Bruno
Ahmadian, Mohammad Reza
Lauri, Antonella
Tartaglia, Marco
Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title_full Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title_fullStr Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title_full_unstemmed Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title_short Dominant ARF3 variants disrupt Golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
title_sort dominant arf3 variants disrupt golgi integrity and cause a neurodevelopmental disorder recapitulated in zebrafish
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9652361/
https://www.ncbi.nlm.nih.gov/pubmed/36369169
http://dx.doi.org/10.1038/s41467-022-34354-x
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