Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders

Mutations in the ARID1B subunit of the BAF chromatin remodeling complex are associated with the neurodevelopmental Coffin-Siris syndrome. Here the authors reveal that there is a transition from ARID1A-containing complexes to ARID1B during cranial neural crest cell differentiation that is impaired in...

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Autores principales: Luca Pagliaroli, Patrizia Porazzi, Alyxandra T. Curtis, Chiara Scopa, Harald M. M. Mikkers, Christian Freund, Lucia Daxinger, Sandra Deliard, Sarah A. Welsh, Sarah Offley, Connor A. Ott, Bruno Calabretta, Samantha A. Brugmann, Gijs W. E. Santen, Marco Trizzino
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d81d9aec3d4b4606a4380fcc57816cd2
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spelling oai:doaj.org-article:d81d9aec3d4b4606a4380fcc57816cd22021-11-14T12:35:58ZInability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders10.1038/s41467-021-26810-x2041-1723https://doaj.org/article/d81d9aec3d4b4606a4380fcc57816cd22021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26810-xhttps://doaj.org/toc/2041-1723Mutations in the ARID1B subunit of the BAF chromatin remodeling complex are associated with the neurodevelopmental Coffin-Siris syndrome. Here the authors reveal that there is a transition from ARID1A-containing complexes to ARID1B during cranial neural crest cell differentiation that is impaired in Coffin-Siris patient-derived cells, which is important for exit from pluripotency.Luca PagliaroliPatrizia PorazziAlyxandra T. CurtisChiara ScopaHarald M. M. MikkersChristian FreundLucia DaxingerSandra DeliardSarah A. WelshSarah OffleyConnor A. OttBruno CalabrettaSamantha A. BrugmannGijs W. E. SantenMarco TrizzinoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Luca Pagliaroli
Patrizia Porazzi
Alyxandra T. Curtis
Chiara Scopa
Harald M. M. Mikkers
Christian Freund
Lucia Daxinger
Sandra Deliard
Sarah A. Welsh
Sarah Offley
Connor A. Ott
Bruno Calabretta
Samantha A. Brugmann
Gijs W. E. Santen
Marco Trizzino
Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
description Mutations in the ARID1B subunit of the BAF chromatin remodeling complex are associated with the neurodevelopmental Coffin-Siris syndrome. Here the authors reveal that there is a transition from ARID1A-containing complexes to ARID1B during cranial neural crest cell differentiation that is impaired in Coffin-Siris patient-derived cells, which is important for exit from pluripotency.
format article
author Luca Pagliaroli
Patrizia Porazzi
Alyxandra T. Curtis
Chiara Scopa
Harald M. M. Mikkers
Christian Freund
Lucia Daxinger
Sandra Deliard
Sarah A. Welsh
Sarah Offley
Connor A. Ott
Bruno Calabretta
Samantha A. Brugmann
Gijs W. E. Santen
Marco Trizzino
author_facet Luca Pagliaroli
Patrizia Porazzi
Alyxandra T. Curtis
Chiara Scopa
Harald M. M. Mikkers
Christian Freund
Lucia Daxinger
Sandra Deliard
Sarah A. Welsh
Sarah Offley
Connor A. Ott
Bruno Calabretta
Samantha A. Brugmann
Gijs W. E. Santen
Marco Trizzino
author_sort Luca Pagliaroli
title Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
title_short Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
title_full Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
title_fullStr Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
title_full_unstemmed Inability to switch from ARID1A-BAF to ARID1B-BAF impairs exit from pluripotency and commitment towards neural crest formation in ARID1B-related neurodevelopmental disorders
title_sort inability to switch from arid1a-baf to arid1b-baf impairs exit from pluripotency and commitment towards neural crest formation in arid1b-related neurodevelopmental disorders
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d81d9aec3d4b4606a4380fcc57816cd2
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