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Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue

Interferon regulatory factor 6 (IRF6) encodes a highly conserved helix-turn-helix DNA binding protein and is a member of the interferon regulatory family of DNA transcription factors. Mutations in IRF6 lead to isolated and syndromic forms of cleft lip and palate, most notably Van der Woude syndrome...

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Autores principales: Goudy, Steven, Angel, Peggi, Jacobs, Britni, Hill, Cynthia, Mainini, Veronica, Smith, Arianna L., Kousa, Youssef A., Caprioli, Richard, Prince, Lawrence S., Baldwin, Scott, Schutte, Brian C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579850/
https://www.ncbi.nlm.nih.gov/pubmed/23451037
http://dx.doi.org/10.1371/journal.pone.0056270
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author Goudy, Steven
Angel, Peggi
Jacobs, Britni
Hill, Cynthia
Mainini, Veronica
Smith, Arianna L.
Kousa, Youssef A.
Caprioli, Richard
Prince, Lawrence S.
Baldwin, Scott
Schutte, Brian C.
author_facet Goudy, Steven
Angel, Peggi
Jacobs, Britni
Hill, Cynthia
Mainini, Veronica
Smith, Arianna L.
Kousa, Youssef A.
Caprioli, Richard
Prince, Lawrence S.
Baldwin, Scott
Schutte, Brian C.
author_sort Goudy, Steven
collection PubMed
description Interferon regulatory factor 6 (IRF6) encodes a highly conserved helix-turn-helix DNA binding protein and is a member of the interferon regulatory family of DNA transcription factors. Mutations in IRF6 lead to isolated and syndromic forms of cleft lip and palate, most notably Van der Woude syndrome (VWS) and Popliteal Ptyerigium Syndrome (PPS). Mice lacking both copies of Irf6 have severe limb, skin, palatal and esophageal abnormalities, due to significantly altered and delayed epithelial development. However, a recent report showed that MCS9.7, an enhancer near Irf6, is active in the tongue, suggesting that Irf6 may also be expressed in the tongue. Indeed, we detected Irf6 staining in the mesoderm-derived muscle during development of the tongue. Dual labeling experiments demonstrated that Irf6 was expressed only in the Myf5+ cell lineage, which originates from the segmental paraxial mesoderm and gives rise to the muscles of the tongue. Fate mapping of the segmental paraxial mesoderm cells revealed a cell-autonomous Irf6 function with reduced and poorly organized Myf5+ cell lineage in the tongue. Molecular analyses showed that the Irf6−/− embryos had aberrant cytoskeletal formation of the segmental paraxial mesoderm in the tongue. Fate mapping of the cranial neural crest cells revealed non-cell-autonomous Irf6 function with the loss of the inter-molar eminence. Loss of Irf6 function altered Bmp2, Bmp4, Shh, and Fgf10 signaling suggesting that these genes are involved in Irf6 signaling. Based on these data, Irf6 plays important cell-autonomous and non-cell-autonomous roles in muscular differentiation and cytoskeletal formation in the tongue.
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spelling pubmed-35798502013-02-28 Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue Goudy, Steven Angel, Peggi Jacobs, Britni Hill, Cynthia Mainini, Veronica Smith, Arianna L. Kousa, Youssef A. Caprioli, Richard Prince, Lawrence S. Baldwin, Scott Schutte, Brian C. PLoS One Research Article Interferon regulatory factor 6 (IRF6) encodes a highly conserved helix-turn-helix DNA binding protein and is a member of the interferon regulatory family of DNA transcription factors. Mutations in IRF6 lead to isolated and syndromic forms of cleft lip and palate, most notably Van der Woude syndrome (VWS) and Popliteal Ptyerigium Syndrome (PPS). Mice lacking both copies of Irf6 have severe limb, skin, palatal and esophageal abnormalities, due to significantly altered and delayed epithelial development. However, a recent report showed that MCS9.7, an enhancer near Irf6, is active in the tongue, suggesting that Irf6 may also be expressed in the tongue. Indeed, we detected Irf6 staining in the mesoderm-derived muscle during development of the tongue. Dual labeling experiments demonstrated that Irf6 was expressed only in the Myf5+ cell lineage, which originates from the segmental paraxial mesoderm and gives rise to the muscles of the tongue. Fate mapping of the segmental paraxial mesoderm cells revealed a cell-autonomous Irf6 function with reduced and poorly organized Myf5+ cell lineage in the tongue. Molecular analyses showed that the Irf6−/− embryos had aberrant cytoskeletal formation of the segmental paraxial mesoderm in the tongue. Fate mapping of the cranial neural crest cells revealed non-cell-autonomous Irf6 function with the loss of the inter-molar eminence. Loss of Irf6 function altered Bmp2, Bmp4, Shh, and Fgf10 signaling suggesting that these genes are involved in Irf6 signaling. Based on these data, Irf6 plays important cell-autonomous and non-cell-autonomous roles in muscular differentiation and cytoskeletal formation in the tongue. Public Library of Science 2013-02-22 /pmc/articles/PMC3579850/ /pubmed/23451037 http://dx.doi.org/10.1371/journal.pone.0056270 Text en © 2013 Goudy 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
Goudy, Steven
Angel, Peggi
Jacobs, Britni
Hill, Cynthia
Mainini, Veronica
Smith, Arianna L.
Kousa, Youssef A.
Caprioli, Richard
Prince, Lawrence S.
Baldwin, Scott
Schutte, Brian C.
Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title_full Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title_fullStr Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title_full_unstemmed Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title_short Cell-Autonomous and Non-Cell-Autonomous Roles for Irf6 during Development of the Tongue
title_sort cell-autonomous and non-cell-autonomous roles for irf6 during development of the tongue
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3579850/
https://www.ncbi.nlm.nih.gov/pubmed/23451037
http://dx.doi.org/10.1371/journal.pone.0056270
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