IRF2 is a master regulator of human keratinocyte stem cell fate

Epidermal homeostasis requires long term stem cell function. Here, the authors apply transcriptional circuitry analysis based on integrated epigenomic profiling of primary human keratinocytes with high and low stem cell function to identify IRF2 as a negative regulator of stemness.

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Autores principales: Nicolas Mercado, Gabi Schutzius, Christian Kolter, David Estoppey, Sebastian Bergling, Guglielmo Roma, Caroline Gubser Keller, Florian Nigsch, Adrian Salathe, Remi Terranova, John Reece-Hoyes, John Alford, Carsten Russ, Judith Knehr, Dominic Hoepfner, Alexandra Aebi, Heinz Ruffner, Tanner C. Beck, Sajjeev Jagannathan, Calla M. Olson, Hadley E. Sheppard, Selma Z. Elsarrag, Tewis Bouwmeester, Mathias Frederiksen, Felix Lohmann, Charles Y. Lin, Susan Kirkland
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/0f22070deb8646359f9b585b7f128992
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spelling oai:doaj.org-article:0f22070deb8646359f9b585b7f1289922021-12-02T17:01:40ZIRF2 is a master regulator of human keratinocyte stem cell fate10.1038/s41467-019-12559-x2041-1723https://doaj.org/article/0f22070deb8646359f9b585b7f1289922019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12559-xhttps://doaj.org/toc/2041-1723Epidermal homeostasis requires long term stem cell function. Here, the authors apply transcriptional circuitry analysis based on integrated epigenomic profiling of primary human keratinocytes with high and low stem cell function to identify IRF2 as a negative regulator of stemness.Nicolas MercadoGabi SchutziusChristian KolterDavid EstoppeySebastian BerglingGuglielmo RomaCaroline Gubser KellerFlorian NigschAdrian SalatheRemi TerranovaJohn Reece-HoyesJohn AlfordCarsten RussJudith KnehrDominic HoepfnerAlexandra AebiHeinz RuffnerTanner C. BeckSajjeev JagannathanCalla M. OlsonHadley E. SheppardSelma Z. ElsarragTewis BouwmeesterMathias FrederiksenFelix LohmannCharles Y. LinSusan KirklandNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-19 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nicolas Mercado
Gabi Schutzius
Christian Kolter
David Estoppey
Sebastian Bergling
Guglielmo Roma
Caroline Gubser Keller
Florian Nigsch
Adrian Salathe
Remi Terranova
John Reece-Hoyes
John Alford
Carsten Russ
Judith Knehr
Dominic Hoepfner
Alexandra Aebi
Heinz Ruffner
Tanner C. Beck
Sajjeev Jagannathan
Calla M. Olson
Hadley E. Sheppard
Selma Z. Elsarrag
Tewis Bouwmeester
Mathias Frederiksen
Felix Lohmann
Charles Y. Lin
Susan Kirkland
IRF2 is a master regulator of human keratinocyte stem cell fate
description Epidermal homeostasis requires long term stem cell function. Here, the authors apply transcriptional circuitry analysis based on integrated epigenomic profiling of primary human keratinocytes with high and low stem cell function to identify IRF2 as a negative regulator of stemness.
format article
author Nicolas Mercado
Gabi Schutzius
Christian Kolter
David Estoppey
Sebastian Bergling
Guglielmo Roma
Caroline Gubser Keller
Florian Nigsch
Adrian Salathe
Remi Terranova
John Reece-Hoyes
John Alford
Carsten Russ
Judith Knehr
Dominic Hoepfner
Alexandra Aebi
Heinz Ruffner
Tanner C. Beck
Sajjeev Jagannathan
Calla M. Olson
Hadley E. Sheppard
Selma Z. Elsarrag
Tewis Bouwmeester
Mathias Frederiksen
Felix Lohmann
Charles Y. Lin
Susan Kirkland
author_facet Nicolas Mercado
Gabi Schutzius
Christian Kolter
David Estoppey
Sebastian Bergling
Guglielmo Roma
Caroline Gubser Keller
Florian Nigsch
Adrian Salathe
Remi Terranova
John Reece-Hoyes
John Alford
Carsten Russ
Judith Knehr
Dominic Hoepfner
Alexandra Aebi
Heinz Ruffner
Tanner C. Beck
Sajjeev Jagannathan
Calla M. Olson
Hadley E. Sheppard
Selma Z. Elsarrag
Tewis Bouwmeester
Mathias Frederiksen
Felix Lohmann
Charles Y. Lin
Susan Kirkland
author_sort Nicolas Mercado
title IRF2 is a master regulator of human keratinocyte stem cell fate
title_short IRF2 is a master regulator of human keratinocyte stem cell fate
title_full IRF2 is a master regulator of human keratinocyte stem cell fate
title_fullStr IRF2 is a master regulator of human keratinocyte stem cell fate
title_full_unstemmed IRF2 is a master regulator of human keratinocyte stem cell fate
title_sort irf2 is a master regulator of human keratinocyte stem cell fate
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/0f22070deb8646359f9b585b7f128992
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