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Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network

PLAGL1/ZAC1 undergoes parental genomic imprinting, is paternally expressed, and is a member of the imprinted gene network (IGN). It encodes a zinc finger transcription factor with anti-proliferative activity and is a candidate tumor suppressor gene on 6q24 whose expression is frequently lost in vari...

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Autores principales: Varrault, Annie, Dantec, Christelle, Le Digarcher, Anne, Chotard, Laëtitia, Bilanges, Benoit, Parrinello, Hugues, Dubois, Emeric, Rialle, Stéphanie, Severac, Dany, Bouschet, Tristan, Journot, Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5737700/
https://www.ncbi.nlm.nih.gov/pubmed/28985358
http://dx.doi.org/10.1093/nar/gkx672
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author Varrault, Annie
Dantec, Christelle
Le Digarcher, Anne
Chotard, Laëtitia
Bilanges, Benoit
Parrinello, Hugues
Dubois, Emeric
Rialle, Stéphanie
Severac, Dany
Bouschet, Tristan
Journot, Laurent
author_facet Varrault, Annie
Dantec, Christelle
Le Digarcher, Anne
Chotard, Laëtitia
Bilanges, Benoit
Parrinello, Hugues
Dubois, Emeric
Rialle, Stéphanie
Severac, Dany
Bouschet, Tristan
Journot, Laurent
author_sort Varrault, Annie
collection PubMed
description PLAGL1/ZAC1 undergoes parental genomic imprinting, is paternally expressed, and is a member of the imprinted gene network (IGN). It encodes a zinc finger transcription factor with anti-proliferative activity and is a candidate tumor suppressor gene on 6q24 whose expression is frequently lost in various neoplasms. Conversely, gain of PLAGL1 function is responsible for transient neonatal diabetes mellitus, a rare genetic disease that results from defective pancreas development. In the present work, we showed that Plagl1 up-regulation was not associated with DNA damage-induced cell cycle arrest. It was rather associated with physiological cell cycle exit that occurred with contact inhibition, growth factor withdrawal, or cell differentiation. To gain insights into Plagl1 mechanism of action, we identified Plagl1 target genes by combining chromatin immunoprecipitation and genome-wide transcriptomics in transfected cell lines. Plagl1-elicited gene regulation correlated with multiple binding to the proximal promoter region through a GC-rich motif. Plagl1 target genes included numerous genes involved in signaling, cell adhesion, and extracellular matrix composition, including collagens. Plagl1 targets also included 22% of the 409 genes that make up the IGN. Altogether, this work identified Plagl1 as a transcription factor that coordinated the regulation of a subset of IGN genes and controlled extracellular matrix composition.
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spelling pubmed-57377002018-01-04 Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network Varrault, Annie Dantec, Christelle Le Digarcher, Anne Chotard, Laëtitia Bilanges, Benoit Parrinello, Hugues Dubois, Emeric Rialle, Stéphanie Severac, Dany Bouschet, Tristan Journot, Laurent Nucleic Acids Res Gene regulation, Chromatin and Epigenetics PLAGL1/ZAC1 undergoes parental genomic imprinting, is paternally expressed, and is a member of the imprinted gene network (IGN). It encodes a zinc finger transcription factor with anti-proliferative activity and is a candidate tumor suppressor gene on 6q24 whose expression is frequently lost in various neoplasms. Conversely, gain of PLAGL1 function is responsible for transient neonatal diabetes mellitus, a rare genetic disease that results from defective pancreas development. In the present work, we showed that Plagl1 up-regulation was not associated with DNA damage-induced cell cycle arrest. It was rather associated with physiological cell cycle exit that occurred with contact inhibition, growth factor withdrawal, or cell differentiation. To gain insights into Plagl1 mechanism of action, we identified Plagl1 target genes by combining chromatin immunoprecipitation and genome-wide transcriptomics in transfected cell lines. Plagl1-elicited gene regulation correlated with multiple binding to the proximal promoter region through a GC-rich motif. Plagl1 target genes included numerous genes involved in signaling, cell adhesion, and extracellular matrix composition, including collagens. Plagl1 targets also included 22% of the 409 genes that make up the IGN. Altogether, this work identified Plagl1 as a transcription factor that coordinated the regulation of a subset of IGN genes and controlled extracellular matrix composition. Oxford University Press 2017-10-13 2017-07-29 /pmc/articles/PMC5737700/ /pubmed/28985358 http://dx.doi.org/10.1093/nar/gkx672 Text en © The Author(s) 2017. 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
Varrault, Annie
Dantec, Christelle
Le Digarcher, Anne
Chotard, Laëtitia
Bilanges, Benoit
Parrinello, Hugues
Dubois, Emeric
Rialle, Stéphanie
Severac, Dany
Bouschet, Tristan
Journot, Laurent
Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title_full Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title_fullStr Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title_full_unstemmed Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title_short Identification of Plagl1/Zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
title_sort identification of plagl1/zac1 binding sites and target genes establishes its role in the regulation of extracellular matrix genes and the imprinted gene network
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5737700/
https://www.ncbi.nlm.nih.gov/pubmed/28985358
http://dx.doi.org/10.1093/nar/gkx672
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