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TAp73 is a central transcriptional regulator of airway multiciliogenesis

Motile multiciliated cells (MCCs) have critical roles in respiratory health and disease and are essential for cleaning inhaled pollutants and pathogens from airways. Despite their significance for human disease, the transcriptional control that governs multiciliogenesis remains poorly understood. He...

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Autores principales: Nemajerova, Alice, Kramer, Daniela, Siller, Saul S., Herr, Christian, Shomroni, Orr, Pena, Tonatiuh, Gallinas Suazo, Cristina, Glaser, Katharina, Wildung, Merit, Steffen, Henrik, Sriraman, Anusha, Oberle, Fabian, Wienken, Magdalena, Hennion, Magali, Vidal, Ramon, Royen, Bettina, Alevra, Mihai, Schild, Detlev, Bals, Robert, Dönitz, Jürgen, Riedel, Dietmar, Bonn, Stefan, Takemaru, Ken-Ichi, Moll, Ute M., Lizé, Muriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911929/
https://www.ncbi.nlm.nih.gov/pubmed/27257214
http://dx.doi.org/10.1101/gad.279836.116
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author Nemajerova, Alice
Kramer, Daniela
Siller, Saul S.
Herr, Christian
Shomroni, Orr
Pena, Tonatiuh
Gallinas Suazo, Cristina
Glaser, Katharina
Wildung, Merit
Steffen, Henrik
Sriraman, Anusha
Oberle, Fabian
Wienken, Magdalena
Hennion, Magali
Vidal, Ramon
Royen, Bettina
Alevra, Mihai
Schild, Detlev
Bals, Robert
Dönitz, Jürgen
Riedel, Dietmar
Bonn, Stefan
Takemaru, Ken-Ichi
Moll, Ute M.
Lizé, Muriel
author_facet Nemajerova, Alice
Kramer, Daniela
Siller, Saul S.
Herr, Christian
Shomroni, Orr
Pena, Tonatiuh
Gallinas Suazo, Cristina
Glaser, Katharina
Wildung, Merit
Steffen, Henrik
Sriraman, Anusha
Oberle, Fabian
Wienken, Magdalena
Hennion, Magali
Vidal, Ramon
Royen, Bettina
Alevra, Mihai
Schild, Detlev
Bals, Robert
Dönitz, Jürgen
Riedel, Dietmar
Bonn, Stefan
Takemaru, Ken-Ichi
Moll, Ute M.
Lizé, Muriel
author_sort Nemajerova, Alice
collection PubMed
description Motile multiciliated cells (MCCs) have critical roles in respiratory health and disease and are essential for cleaning inhaled pollutants and pathogens from airways. Despite their significance for human disease, the transcriptional control that governs multiciliogenesis remains poorly understood. Here we identify TP73, a p53 homolog, as governing the program for airway multiciliogenesis. Mice with TP73 deficiency suffer from chronic respiratory tract infections due to profound defects in ciliogenesis and complete loss of mucociliary clearance. Organotypic airway cultures pinpoint TAp73 as necessary and sufficient for basal body docking, axonemal extension, and motility during the differentiation of MCC progenitors. Mechanistically, cross-species genomic analyses and complete ciliary rescue of knockout MCCs identify TAp73 as the conserved central transcriptional integrator of multiciliogenesis. TAp73 directly activates the key regulators FoxJ1, Rfx2, Rfx3, and miR34bc plus nearly 50 structural and functional ciliary genes, some of which are associated with human ciliopathies. Our results position TAp73 as a novel central regulator of MCC differentiation.
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spelling pubmed-49119292016-12-01 TAp73 is a central transcriptional regulator of airway multiciliogenesis Nemajerova, Alice Kramer, Daniela Siller, Saul S. Herr, Christian Shomroni, Orr Pena, Tonatiuh Gallinas Suazo, Cristina Glaser, Katharina Wildung, Merit Steffen, Henrik Sriraman, Anusha Oberle, Fabian Wienken, Magdalena Hennion, Magali Vidal, Ramon Royen, Bettina Alevra, Mihai Schild, Detlev Bals, Robert Dönitz, Jürgen Riedel, Dietmar Bonn, Stefan Takemaru, Ken-Ichi Moll, Ute M. Lizé, Muriel Genes Dev Research Paper Motile multiciliated cells (MCCs) have critical roles in respiratory health and disease and are essential for cleaning inhaled pollutants and pathogens from airways. Despite their significance for human disease, the transcriptional control that governs multiciliogenesis remains poorly understood. Here we identify TP73, a p53 homolog, as governing the program for airway multiciliogenesis. Mice with TP73 deficiency suffer from chronic respiratory tract infections due to profound defects in ciliogenesis and complete loss of mucociliary clearance. Organotypic airway cultures pinpoint TAp73 as necessary and sufficient for basal body docking, axonemal extension, and motility during the differentiation of MCC progenitors. Mechanistically, cross-species genomic analyses and complete ciliary rescue of knockout MCCs identify TAp73 as the conserved central transcriptional integrator of multiciliogenesis. TAp73 directly activates the key regulators FoxJ1, Rfx2, Rfx3, and miR34bc plus nearly 50 structural and functional ciliary genes, some of which are associated with human ciliopathies. Our results position TAp73 as a novel central regulator of MCC differentiation. Cold Spring Harbor Laboratory Press 2016-06-01 /pmc/articles/PMC4911929/ /pubmed/27257214 http://dx.doi.org/10.1101/gad.279836.116 Text en © 2016 Nemajerova et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Nemajerova, Alice
Kramer, Daniela
Siller, Saul S.
Herr, Christian
Shomroni, Orr
Pena, Tonatiuh
Gallinas Suazo, Cristina
Glaser, Katharina
Wildung, Merit
Steffen, Henrik
Sriraman, Anusha
Oberle, Fabian
Wienken, Magdalena
Hennion, Magali
Vidal, Ramon
Royen, Bettina
Alevra, Mihai
Schild, Detlev
Bals, Robert
Dönitz, Jürgen
Riedel, Dietmar
Bonn, Stefan
Takemaru, Ken-Ichi
Moll, Ute M.
Lizé, Muriel
TAp73 is a central transcriptional regulator of airway multiciliogenesis
title TAp73 is a central transcriptional regulator of airway multiciliogenesis
title_full TAp73 is a central transcriptional regulator of airway multiciliogenesis
title_fullStr TAp73 is a central transcriptional regulator of airway multiciliogenesis
title_full_unstemmed TAp73 is a central transcriptional regulator of airway multiciliogenesis
title_short TAp73 is a central transcriptional regulator of airway multiciliogenesis
title_sort tap73 is a central transcriptional regulator of airway multiciliogenesis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911929/
https://www.ncbi.nlm.nih.gov/pubmed/27257214
http://dx.doi.org/10.1101/gad.279836.116
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