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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Nature Portfolio
2019
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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) |
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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 |
work_keys_str_mv |
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