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The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear

In mammals, six separate sensory regions in the inner ear are essential for hearing and balance function. Each sensory region is made up of hair cells, which are the sensory cells, and their associated supporting cells, both arising from a common progenitor. Little is known about the molecular mecha...

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Autores principales: Kiernan, Amy E, Xu, Jingxia, Gridley, Thomas
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1326221/
https://www.ncbi.nlm.nih.gov/pubmed/16410827
http://dx.doi.org/10.1371/journal.pgen.0020004
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author Kiernan, Amy E
Xu, Jingxia
Gridley, Thomas
author_facet Kiernan, Amy E
Xu, Jingxia
Gridley, Thomas
author_sort Kiernan, Amy E
collection PubMed
description In mammals, six separate sensory regions in the inner ear are essential for hearing and balance function. Each sensory region is made up of hair cells, which are the sensory cells, and their associated supporting cells, both arising from a common progenitor. Little is known about the molecular mechanisms that govern the development of these sensory organs. Notch signaling plays a pivotal role in the differentiation of hair cells and supporting cells by mediating lateral inhibition via the ligands Delta-like 1 and Jagged (JAG) 2. However, another Notch ligand, JAG1, is expressed early in the sensory patches prior to cell differentiation, indicating that there may be an earlier role for Notch signaling in sensory development in the ear. Here, using conditional gene targeting, we show that the Jag1 gene is required for the normal development of all six sensory organs within the inner ear. Cristae are completely lacking in Jag1-conditional knockout (cko) mutant inner ears, whereas the cochlea and utricle show partial sensory development. The saccular macula is present but malformed. Using SOX2 and p27(kip1) as molecular markers of the prosensory domain, we show that JAG1 is initially expressed in all the prosensory regions of the ear, but becomes down-regulated in the nascent organ of Corti by embryonic day 14.5, when the cells exit the cell cycle and differentiate. We also show that both SOX2 and p27(kip1) are down-regulated in Jag1-cko inner ears. Taken together, these data demonstrate that JAG1 is expressed early in the prosensory domains of both the cochlear and vestibular regions, and is required to maintain the normal expression levels of both SOX2 and p27(kip1). These data demonstrate that JAG1-mediated Notch signaling is essential during early development for establishing the prosensory regions of the inner ear.
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spelling pubmed-13262212006-01-13 The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear Kiernan, Amy E Xu, Jingxia Gridley, Thomas PLoS Genet Research Article In mammals, six separate sensory regions in the inner ear are essential for hearing and balance function. Each sensory region is made up of hair cells, which are the sensory cells, and their associated supporting cells, both arising from a common progenitor. Little is known about the molecular mechanisms that govern the development of these sensory organs. Notch signaling plays a pivotal role in the differentiation of hair cells and supporting cells by mediating lateral inhibition via the ligands Delta-like 1 and Jagged (JAG) 2. However, another Notch ligand, JAG1, is expressed early in the sensory patches prior to cell differentiation, indicating that there may be an earlier role for Notch signaling in sensory development in the ear. Here, using conditional gene targeting, we show that the Jag1 gene is required for the normal development of all six sensory organs within the inner ear. Cristae are completely lacking in Jag1-conditional knockout (cko) mutant inner ears, whereas the cochlea and utricle show partial sensory development. The saccular macula is present but malformed. Using SOX2 and p27(kip1) as molecular markers of the prosensory domain, we show that JAG1 is initially expressed in all the prosensory regions of the ear, but becomes down-regulated in the nascent organ of Corti by embryonic day 14.5, when the cells exit the cell cycle and differentiate. We also show that both SOX2 and p27(kip1) are down-regulated in Jag1-cko inner ears. Taken together, these data demonstrate that JAG1 is expressed early in the prosensory domains of both the cochlear and vestibular regions, and is required to maintain the normal expression levels of both SOX2 and p27(kip1). These data demonstrate that JAG1-mediated Notch signaling is essential during early development for establishing the prosensory regions of the inner ear. Public Library of Science 2006-01 2006-01-13 /pmc/articles/PMC1326221/ /pubmed/16410827 http://dx.doi.org/10.1371/journal.pgen.0020004 Text en © 2006 Kiernan 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kiernan, Amy E
Xu, Jingxia
Gridley, Thomas
The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title_full The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title_fullStr The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title_full_unstemmed The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title_short The Notch Ligand JAG1 Is Required for Sensory Progenitor Development in the Mammalian Inner Ear
title_sort notch ligand jag1 is required for sensory progenitor development in the mammalian inner ear
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1326221/
https://www.ncbi.nlm.nih.gov/pubmed/16410827
http://dx.doi.org/10.1371/journal.pgen.0020004
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