Cargando…

The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers

Two decades after the discovery that heterozygous mutations within and around SOX9 cause campomelic dysplasia, a generalized skeleton malformation syndrome, it is well established that SOX9 is a master transcription factor in chondrocytes. In contrast, the mechanisms whereby translocations in the –­...

Descripción completa

Detalles Bibliográficos
Autores principales: Yao, Baojin, Wang, Qiuqing, Liu, Chia-Feng, Bhattaram, Pallavi, Li, Wei, Mead, Timothy J., Crish, James F., Lefebvre, Véronique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4477657/
https://www.ncbi.nlm.nih.gov/pubmed/25940622
http://dx.doi.org/10.1093/nar/gkv426
_version_ 1782377789839638528
author Yao, Baojin
Wang, Qiuqing
Liu, Chia-Feng
Bhattaram, Pallavi
Li, Wei
Mead, Timothy J.
Crish, James F.
Lefebvre, Véronique
author_facet Yao, Baojin
Wang, Qiuqing
Liu, Chia-Feng
Bhattaram, Pallavi
Li, Wei
Mead, Timothy J.
Crish, James F.
Lefebvre, Véronique
author_sort Yao, Baojin
collection PubMed
description Two decades after the discovery that heterozygous mutations within and around SOX9 cause campomelic dysplasia, a generalized skeleton malformation syndrome, it is well established that SOX9 is a master transcription factor in chondrocytes. In contrast, the mechanisms whereby translocations in the –­350/–50-kb region 5′ of SOX9 cause severe disease and whereby SOX9 expression is specified in chondrocytes remain scarcely known. We here screen this upstream region and uncover multiple enhancers that activate Sox9-promoter transgenes in the SOX9 expression domain. Three of them are primarily active in chondrocytes. E250 (located at –250 kb) confines its activity to condensed prechondrocytes, E195 mainly targets proliferating chondrocytes, and E84 is potent in all differentiated chondrocytes. E84 and E195 synergize with E70, previously shown to be active in most Sox9-expressing somatic tissues, including cartilage. While SOX9 protein powerfully activates E70, it does not control E250. It requires its SOX5/SOX6 chondrogenic partners to robustly activate E195 and additional factors to activate E84. Altogether, these results indicate that SOX9 expression in chondrocytes relies on widely spread transcriptional modules whose synergistic and overlapping activities are driven by SOX9, SOX5/SOX6 and other factors. They help elucidate mechanisms underlying campomelic dysplasia and will likely help uncover other disease mechanisms.
format Online
Article
Text
id pubmed-4477657
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-44776572015-06-29 The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers Yao, Baojin Wang, Qiuqing Liu, Chia-Feng Bhattaram, Pallavi Li, Wei Mead, Timothy J. Crish, James F. Lefebvre, Véronique Nucleic Acids Res Gene regulation, Chromatin and Epigenetics Two decades after the discovery that heterozygous mutations within and around SOX9 cause campomelic dysplasia, a generalized skeleton malformation syndrome, it is well established that SOX9 is a master transcription factor in chondrocytes. In contrast, the mechanisms whereby translocations in the –­350/–50-kb region 5′ of SOX9 cause severe disease and whereby SOX9 expression is specified in chondrocytes remain scarcely known. We here screen this upstream region and uncover multiple enhancers that activate Sox9-promoter transgenes in the SOX9 expression domain. Three of them are primarily active in chondrocytes. E250 (located at –250 kb) confines its activity to condensed prechondrocytes, E195 mainly targets proliferating chondrocytes, and E84 is potent in all differentiated chondrocytes. E84 and E195 synergize with E70, previously shown to be active in most Sox9-expressing somatic tissues, including cartilage. While SOX9 protein powerfully activates E70, it does not control E250. It requires its SOX5/SOX6 chondrogenic partners to robustly activate E195 and additional factors to activate E84. Altogether, these results indicate that SOX9 expression in chondrocytes relies on widely spread transcriptional modules whose synergistic and overlapping activities are driven by SOX9, SOX5/SOX6 and other factors. They help elucidate mechanisms underlying campomelic dysplasia and will likely help uncover other disease mechanisms. Oxford University Press 2015-06-23 2015-05-04 /pmc/articles/PMC4477657/ /pubmed/25940622 http://dx.doi.org/10.1093/nar/gkv426 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Yao, Baojin
Wang, Qiuqing
Liu, Chia-Feng
Bhattaram, Pallavi
Li, Wei
Mead, Timothy J.
Crish, James F.
Lefebvre, Véronique
The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title_full The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title_fullStr The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title_full_unstemmed The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title_short The SOX9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
title_sort sox9 upstream region prone to chromosomal aberrations causing campomelic dysplasia contains multiple cartilage enhancers
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4477657/
https://www.ncbi.nlm.nih.gov/pubmed/25940622
http://dx.doi.org/10.1093/nar/gkv426
work_keys_str_mv AT yaobaojin thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT wangqiuqing thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT liuchiafeng thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT bhattarampallavi thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT liwei thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT meadtimothyj thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT crishjamesf thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT lefebvreveronique thesox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT yaobaojin sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT wangqiuqing sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT liuchiafeng sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT bhattarampallavi sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT liwei sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT meadtimothyj sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT crishjamesf sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers
AT lefebvreveronique sox9upstreamregionpronetochromosomalaberrationscausingcampomelicdysplasiacontainsmultiplecartilageenhancers