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PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme

A hallmark of craniofacial development is the differentiation of multiple cell lineages in close proximity to one another. The mouse skull bones and overlying dermis are derived from the cranial mesenchyme (CM). Cell fate selection of the embryonic cranial bone and dermis in the CM requires Wnt/β-ca...

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Autores principales: Ferguson, James, Devarajan, Mahima, DiNuoscio, Gregg, Saiakhova, Alina, Liu, Chia-Feng, Lefebvre, Veronique, Scacheri, Peter C., Atit, Radhika P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919733/
https://www.ncbi.nlm.nih.gov/pubmed/29223978
http://dx.doi.org/10.1534/g3.117.300311
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author Ferguson, James
Devarajan, Mahima
DiNuoscio, Gregg
Saiakhova, Alina
Liu, Chia-Feng
Lefebvre, Veronique
Scacheri, Peter C.
Atit, Radhika P.
author_facet Ferguson, James
Devarajan, Mahima
DiNuoscio, Gregg
Saiakhova, Alina
Liu, Chia-Feng
Lefebvre, Veronique
Scacheri, Peter C.
Atit, Radhika P.
author_sort Ferguson, James
collection PubMed
description A hallmark of craniofacial development is the differentiation of multiple cell lineages in close proximity to one another. The mouse skull bones and overlying dermis are derived from the cranial mesenchyme (CM). Cell fate selection of the embryonic cranial bone and dermis in the CM requires Wnt/β-catenin signaling, and loss of β-catenin leads to an ectopic chondrogenic cell fate switch. The mechanism by which Wnt/β-catenin activity suppresses the cartilage fate is unclear. Upon conditional deletion of β-catenin in the CM, several key determinants of the cartilage differentiation program, including Sox9, become differentially expressed. Many of these differentially expressed genes are known targets of the Polycomb Repressive Complex 2 (PRC2). Thus, we hypothesized that PRC2 is required for Wnt/β-catenin-mediated repression of chondrogenesis in the embryonic CM. We find that β-catenin can physically interact with PRC2 components in the CM in vivo. However, upon genetic deletion of Enhancer of Zeste homolog 2 (EZH2), the catalytic component of PRC2, chondrogenesis remains repressed and the bone and dermis cell fate is preserved in the CM. Furthermore, loss of β-catenin does not alter either the H3K27me3 enrichment levels genome-wide or on cartilage differentiation determinants, including Sox9. Our results indicate that EZH2 is not required to repress chondrogenesis in the CM downstream of Wnt/β-catenin signaling.
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spelling pubmed-59197332018-04-27 PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme Ferguson, James Devarajan, Mahima DiNuoscio, Gregg Saiakhova, Alina Liu, Chia-Feng Lefebvre, Veronique Scacheri, Peter C. Atit, Radhika P. G3 (Bethesda) Investigations A hallmark of craniofacial development is the differentiation of multiple cell lineages in close proximity to one another. The mouse skull bones and overlying dermis are derived from the cranial mesenchyme (CM). Cell fate selection of the embryonic cranial bone and dermis in the CM requires Wnt/β-catenin signaling, and loss of β-catenin leads to an ectopic chondrogenic cell fate switch. The mechanism by which Wnt/β-catenin activity suppresses the cartilage fate is unclear. Upon conditional deletion of β-catenin in the CM, several key determinants of the cartilage differentiation program, including Sox9, become differentially expressed. Many of these differentially expressed genes are known targets of the Polycomb Repressive Complex 2 (PRC2). Thus, we hypothesized that PRC2 is required for Wnt/β-catenin-mediated repression of chondrogenesis in the embryonic CM. We find that β-catenin can physically interact with PRC2 components in the CM in vivo. However, upon genetic deletion of Enhancer of Zeste homolog 2 (EZH2), the catalytic component of PRC2, chondrogenesis remains repressed and the bone and dermis cell fate is preserved in the CM. Furthermore, loss of β-catenin does not alter either the H3K27me3 enrichment levels genome-wide or on cartilage differentiation determinants, including Sox9. Our results indicate that EZH2 is not required to repress chondrogenesis in the CM downstream of Wnt/β-catenin signaling. Genetics Society of America 2017-12-09 /pmc/articles/PMC5919733/ /pubmed/29223978 http://dx.doi.org/10.1534/g3.117.300311 Text en Copyright © 2018 Ferguson et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Ferguson, James
Devarajan, Mahima
DiNuoscio, Gregg
Saiakhova, Alina
Liu, Chia-Feng
Lefebvre, Veronique
Scacheri, Peter C.
Atit, Radhika P.
PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title_full PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title_fullStr PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title_full_unstemmed PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title_short PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme
title_sort prc2 is dispensable in vivo for β-catenin-mediated repression of chondrogenesis in the mouse embryonic cranial mesenchyme
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919733/
https://www.ncbi.nlm.nih.gov/pubmed/29223978
http://dx.doi.org/10.1534/g3.117.300311
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