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Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions

The growth plate mediates bone growth where SOX9 and GLI factors control chondrocyte proliferation, differentiation and entry into hypertrophy. FOXA factors regulate hypertrophic chondrocyte maturation. How these factors integrate into a Gene Regulatory Network (GRN) controlling these differentiatio...

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Autores principales: Tan, Zhijia, Niu, Ben, Tsang, Kwok Yeung, Melhado, Ian G., Ohba, Shinsuke, He, Xinjun, Huang, Yongheng, Wang, Cheng, McMahon, Andrew P., Jauch, Ralf, Chan, Danny, Zhang, Michael Q., Cheah, Kathryn S. E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919691/
https://www.ncbi.nlm.nih.gov/pubmed/29659575
http://dx.doi.org/10.1371/journal.pgen.1007346
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author Tan, Zhijia
Niu, Ben
Tsang, Kwok Yeung
Melhado, Ian G.
Ohba, Shinsuke
He, Xinjun
Huang, Yongheng
Wang, Cheng
McMahon, Andrew P.
Jauch, Ralf
Chan, Danny
Zhang, Michael Q.
Cheah, Kathryn S. E.
author_facet Tan, Zhijia
Niu, Ben
Tsang, Kwok Yeung
Melhado, Ian G.
Ohba, Shinsuke
He, Xinjun
Huang, Yongheng
Wang, Cheng
McMahon, Andrew P.
Jauch, Ralf
Chan, Danny
Zhang, Michael Q.
Cheah, Kathryn S. E.
author_sort Tan, Zhijia
collection PubMed
description The growth plate mediates bone growth where SOX9 and GLI factors control chondrocyte proliferation, differentiation and entry into hypertrophy. FOXA factors regulate hypertrophic chondrocyte maturation. How these factors integrate into a Gene Regulatory Network (GRN) controlling these differentiation transitions is incompletely understood. We adopted a genome-wide whole tissue approach to establish a Growth Plate Differential Gene Expression Library (GP-DGEL) for fractionated proliferating, pre-hypertrophic, early and late hypertrophic chondrocytes, as an overarching resource for discovery of pathways and disease candidates. De novo motif discovery revealed the enrichment of SOX9 and GLI binding sites in the genes preferentially expressed in proliferating and prehypertrophic chondrocytes, suggesting the potential cooperation between SOX9 and GLI proteins. We integrated the analyses of the transcriptome, SOX9, GLI1 and GLI3 ChIP-seq datasets, with functional validation by transactivation assays and mouse mutants. We identified new SOX9 targets and showed SOX9-GLI directly and cooperatively regulate many genes such as Trps1, Sox9, Sox5, Sox6, Col2a1, Ptch1, Gli1 and Gli2. Further, FOXA2 competes with SOX9 for the transactivation of target genes. The data support a model of SOX9-GLI-FOXA phasic GRN in chondrocyte development. Together, SOX9-GLI auto-regulate and cooperate to activate and repress genes in proliferating chondrocytes. Upon hypertrophy, FOXA competes with SOX9, and control toward terminal differentiation passes to FOXA, RUNX, AP1 and MEF2 factors.
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spelling pubmed-59196912018-05-11 Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions Tan, Zhijia Niu, Ben Tsang, Kwok Yeung Melhado, Ian G. Ohba, Shinsuke He, Xinjun Huang, Yongheng Wang, Cheng McMahon, Andrew P. Jauch, Ralf Chan, Danny Zhang, Michael Q. Cheah, Kathryn S. E. PLoS Genet Research Article The growth plate mediates bone growth where SOX9 and GLI factors control chondrocyte proliferation, differentiation and entry into hypertrophy. FOXA factors regulate hypertrophic chondrocyte maturation. How these factors integrate into a Gene Regulatory Network (GRN) controlling these differentiation transitions is incompletely understood. We adopted a genome-wide whole tissue approach to establish a Growth Plate Differential Gene Expression Library (GP-DGEL) for fractionated proliferating, pre-hypertrophic, early and late hypertrophic chondrocytes, as an overarching resource for discovery of pathways and disease candidates. De novo motif discovery revealed the enrichment of SOX9 and GLI binding sites in the genes preferentially expressed in proliferating and prehypertrophic chondrocytes, suggesting the potential cooperation between SOX9 and GLI proteins. We integrated the analyses of the transcriptome, SOX9, GLI1 and GLI3 ChIP-seq datasets, with functional validation by transactivation assays and mouse mutants. We identified new SOX9 targets and showed SOX9-GLI directly and cooperatively regulate many genes such as Trps1, Sox9, Sox5, Sox6, Col2a1, Ptch1, Gli1 and Gli2. Further, FOXA2 competes with SOX9 for the transactivation of target genes. The data support a model of SOX9-GLI-FOXA phasic GRN in chondrocyte development. Together, SOX9-GLI auto-regulate and cooperate to activate and repress genes in proliferating chondrocytes. Upon hypertrophy, FOXA competes with SOX9, and control toward terminal differentiation passes to FOXA, RUNX, AP1 and MEF2 factors. Public Library of Science 2018-04-16 /pmc/articles/PMC5919691/ /pubmed/29659575 http://dx.doi.org/10.1371/journal.pgen.1007346 Text en © 2018 Tan 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
Tan, Zhijia
Niu, Ben
Tsang, Kwok Yeung
Melhado, Ian G.
Ohba, Shinsuke
He, Xinjun
Huang, Yongheng
Wang, Cheng
McMahon, Andrew P.
Jauch, Ralf
Chan, Danny
Zhang, Michael Q.
Cheah, Kathryn S. E.
Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title_full Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title_fullStr Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title_full_unstemmed Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title_short Synergistic co-regulation and competition by a SOX9-GLI-FOXA phasic transcriptional network coordinate chondrocyte differentiation transitions
title_sort synergistic co-regulation and competition by a sox9-gli-foxa phasic transcriptional network coordinate chondrocyte differentiation transitions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919691/
https://www.ncbi.nlm.nih.gov/pubmed/29659575
http://dx.doi.org/10.1371/journal.pgen.1007346
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