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Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro

The mature mammalian organ of Corti does not regenerate spontaneously after injury, mainly due to the absence of cell proliferation and the depletion of otic progenitors with age. The polycomb gene B lymphoma Mo-MLV insertion region 1 homolog (Bmi1) promotes proliferation and cell cycle progression...

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Autores principales: Bassiouni, Mohamed, Dos Santos, Aurélie, Avci, Hasan X., Löwenheim, Hubert, Müller, Marcus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5068820/
https://www.ncbi.nlm.nih.gov/pubmed/27755610
http://dx.doi.org/10.1371/journal.pone.0164579
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author Bassiouni, Mohamed
Dos Santos, Aurélie
Avci, Hasan X.
Löwenheim, Hubert
Müller, Marcus
author_facet Bassiouni, Mohamed
Dos Santos, Aurélie
Avci, Hasan X.
Löwenheim, Hubert
Müller, Marcus
author_sort Bassiouni, Mohamed
collection PubMed
description The mature mammalian organ of Corti does not regenerate spontaneously after injury, mainly due to the absence of cell proliferation and the depletion of otic progenitors with age. The polycomb gene B lymphoma Mo-MLV insertion region 1 homolog (Bmi1) promotes proliferation and cell cycle progression in several stem cell populations. The cell cycle inhibitor p16(ink4a) has been previously identified as a downstream target of Bmi1. In this study, we show that Bmi1 is expressed in the developing inner ear. In the organ of Corti, Bmi1 expression is temporally regulated during embryonic and postnatal development. In contrast, p16(ink4a) expression is not detectable during the same period. Bmi1-deficient mice were used to investigate the role of Bmi1 in cochlear development and otosphere generation. In the absence of Bmi1, the postnatal organ of Corti displayed normal morphology at least until the end of the first postnatal week, suggesting that Bmi1 is not required for the embryonic or early postnatal development of the organ of Corti. However, Bmi1 loss resulted in the reduced sphere-forming capacity of the organ of Corti, accompanied by the decreased cell proliferation of otic progenitors in otosphere cultures. This reduced proliferative capacity was associated with the upregulation of p16(ink4a) in vitro. Viral vector-mediated overexpression of p16(ink4a) in wildtype otosphere cultures significantly reduced the number of generated otospheres in vitro. The findings strongly suggest a role for Bmi1 as a promoter of cell proliferation in otic progenitor cells, potentially through the repression of p16(ink4a).
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spelling pubmed-50688202016-10-27 Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro Bassiouni, Mohamed Dos Santos, Aurélie Avci, Hasan X. Löwenheim, Hubert Müller, Marcus PLoS One Research Article The mature mammalian organ of Corti does not regenerate spontaneously after injury, mainly due to the absence of cell proliferation and the depletion of otic progenitors with age. The polycomb gene B lymphoma Mo-MLV insertion region 1 homolog (Bmi1) promotes proliferation and cell cycle progression in several stem cell populations. The cell cycle inhibitor p16(ink4a) has been previously identified as a downstream target of Bmi1. In this study, we show that Bmi1 is expressed in the developing inner ear. In the organ of Corti, Bmi1 expression is temporally regulated during embryonic and postnatal development. In contrast, p16(ink4a) expression is not detectable during the same period. Bmi1-deficient mice were used to investigate the role of Bmi1 in cochlear development and otosphere generation. In the absence of Bmi1, the postnatal organ of Corti displayed normal morphology at least until the end of the first postnatal week, suggesting that Bmi1 is not required for the embryonic or early postnatal development of the organ of Corti. However, Bmi1 loss resulted in the reduced sphere-forming capacity of the organ of Corti, accompanied by the decreased cell proliferation of otic progenitors in otosphere cultures. This reduced proliferative capacity was associated with the upregulation of p16(ink4a) in vitro. Viral vector-mediated overexpression of p16(ink4a) in wildtype otosphere cultures significantly reduced the number of generated otospheres in vitro. The findings strongly suggest a role for Bmi1 as a promoter of cell proliferation in otic progenitor cells, potentially through the repression of p16(ink4a). Public Library of Science 2016-10-18 /pmc/articles/PMC5068820/ /pubmed/27755610 http://dx.doi.org/10.1371/journal.pone.0164579 Text en © 2016 Bassiouni et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bassiouni, Mohamed
Dos Santos, Aurélie
Avci, Hasan X.
Löwenheim, Hubert
Müller, Marcus
Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title_full Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title_fullStr Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title_full_unstemmed Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title_short Bmi1 Loss in the Organ of Corti Results in p16(ink4a) Upregulation and Reduced Cell Proliferation of Otic Progenitors In Vitro
title_sort bmi1 loss in the organ of corti results in p16(ink4a) upregulation and reduced cell proliferation of otic progenitors in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5068820/
https://www.ncbi.nlm.nih.gov/pubmed/27755610
http://dx.doi.org/10.1371/journal.pone.0164579
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