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Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1

It is widely accepted that cell fate determination in the cochlea is tightly controlled by different transcription factors (TFs) that remain to be fully defined. Here, we show that Sox9, initially expressed in the entire sensory epithelium of the cochlea, progressively disappears from differentiatin...

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Autores principales: Veithen, Mona, Huyghe, Aurélia, Van Den Ackerveken, Priscilla, Fukada, So-ichiro, Kokubo, Hiroki, Breuskin, Ingrid, Nguyen, Laurent, Delacroix, Laurence, Malgrange, Brigitte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486728/
https://www.ncbi.nlm.nih.gov/pubmed/37681879
http://dx.doi.org/10.3390/cells12172148
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author Veithen, Mona
Huyghe, Aurélia
Van Den Ackerveken, Priscilla
Fukada, So-ichiro
Kokubo, Hiroki
Breuskin, Ingrid
Nguyen, Laurent
Delacroix, Laurence
Malgrange, Brigitte
author_facet Veithen, Mona
Huyghe, Aurélia
Van Den Ackerveken, Priscilla
Fukada, So-ichiro
Kokubo, Hiroki
Breuskin, Ingrid
Nguyen, Laurent
Delacroix, Laurence
Malgrange, Brigitte
author_sort Veithen, Mona
collection PubMed
description It is widely accepted that cell fate determination in the cochlea is tightly controlled by different transcription factors (TFs) that remain to be fully defined. Here, we show that Sox9, initially expressed in the entire sensory epithelium of the cochlea, progressively disappears from differentiating hair cells (HCs) and is finally restricted to supporting cells (SCs). By performing ex vivo electroporation of E13.5–E14.5 cochleae, we demonstrate that maintenance of Sox9 expression in the progenitors committed to HC fate blocks their differentiation, even if co-expressed with Atoh1, a transcription factor necessary and sufficient to form HC. Sox9 inhibits Atoh1 transcriptional activity by upregulating Hey1 and HeyL antagonists, and genetic ablation of these genes induces extra HCs along the cochlea. Although Sox9 suppression from sensory progenitors ex vivo leads to a modest increase in the number of HCs, it is not sufficient in vivo to induce supernumerary HC production in an inducible Sox9 knockout model. Taken together, these data show that Sox9 is downregulated from nascent HCs to allow the unfolding of their differentiation program. This may be critical for future strategies to promote fully mature HC formation in regeneration approaches.
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spelling pubmed-104867282023-09-09 Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1 Veithen, Mona Huyghe, Aurélia Van Den Ackerveken, Priscilla Fukada, So-ichiro Kokubo, Hiroki Breuskin, Ingrid Nguyen, Laurent Delacroix, Laurence Malgrange, Brigitte Cells Article It is widely accepted that cell fate determination in the cochlea is tightly controlled by different transcription factors (TFs) that remain to be fully defined. Here, we show that Sox9, initially expressed in the entire sensory epithelium of the cochlea, progressively disappears from differentiating hair cells (HCs) and is finally restricted to supporting cells (SCs). By performing ex vivo electroporation of E13.5–E14.5 cochleae, we demonstrate that maintenance of Sox9 expression in the progenitors committed to HC fate blocks their differentiation, even if co-expressed with Atoh1, a transcription factor necessary and sufficient to form HC. Sox9 inhibits Atoh1 transcriptional activity by upregulating Hey1 and HeyL antagonists, and genetic ablation of these genes induces extra HCs along the cochlea. Although Sox9 suppression from sensory progenitors ex vivo leads to a modest increase in the number of HCs, it is not sufficient in vivo to induce supernumerary HC production in an inducible Sox9 knockout model. Taken together, these data show that Sox9 is downregulated from nascent HCs to allow the unfolding of their differentiation program. This may be critical for future strategies to promote fully mature HC formation in regeneration approaches. MDPI 2023-08-25 /pmc/articles/PMC10486728/ /pubmed/37681879 http://dx.doi.org/10.3390/cells12172148 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Veithen, Mona
Huyghe, Aurélia
Van Den Ackerveken, Priscilla
Fukada, So-ichiro
Kokubo, Hiroki
Breuskin, Ingrid
Nguyen, Laurent
Delacroix, Laurence
Malgrange, Brigitte
Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title_full Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title_fullStr Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title_full_unstemmed Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title_short Sox9 Inhibits Cochlear Hair Cell Fate by Upregulating Hey1 and HeyL Antagonists of Atoh1
title_sort sox9 inhibits cochlear hair cell fate by upregulating hey1 and heyl antagonists of atoh1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486728/
https://www.ncbi.nlm.nih.gov/pubmed/37681879
http://dx.doi.org/10.3390/cells12172148
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