Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4

IFN-γ signalling inhibits production of IL-9, the defining cytokine of the Th9 cell subset. Here the authors show that IFN-γ does this by driving IRF1 to compete with IRF4 forIl9promoter binding and skewing these cells towards a Th1 phenotype, an effect that reduces asthmatic inflammation in mice.

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Autores principales: Lucia Campos Carrascosa, Matthias Klein, Yohko Kitagawa, Christina Lückel, Federico Marini, Anika König, Anna Guralnik, Hartmann Raifer, Stefanie Hagner-Benes, Diana Rädler, Andreas Böck, Cholho Kang, Michael Lohoff, Holger Garn, Bianca Schaub, Friederike Berberich-Siebelt, Shimon Sakaguchi, Tobias Bopp, Magdalena Huber
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/13172fb84a7445059a0849047683d7fa
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spelling oai:doaj.org-article:13172fb84a7445059a0849047683d7fa2021-12-02T14:41:11ZReciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF410.1038/ncomms153662041-1723https://doaj.org/article/13172fb84a7445059a0849047683d7fa2017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15366https://doaj.org/toc/2041-1723IFN-γ signalling inhibits production of IL-9, the defining cytokine of the Th9 cell subset. Here the authors show that IFN-γ does this by driving IRF1 to compete with IRF4 forIl9promoter binding and skewing these cells towards a Th1 phenotype, an effect that reduces asthmatic inflammation in mice.Lucia Campos CarrascosaMatthias KleinYohko KitagawaChristina LückelFederico MariniAnika KönigAnna GuralnikHartmann RaiferStefanie Hagner-BenesDiana RädlerAndreas BöckCholho KangMichael LohoffHolger GarnBianca SchaubFriederike Berberich-SiebeltShimon SakaguchiTobias BoppMagdalena HuberNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-12 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lucia Campos Carrascosa
Matthias Klein
Yohko Kitagawa
Christina Lückel
Federico Marini
Anika König
Anna Guralnik
Hartmann Raifer
Stefanie Hagner-Benes
Diana Rädler
Andreas Böck
Cholho Kang
Michael Lohoff
Holger Garn
Bianca Schaub
Friederike Berberich-Siebelt
Shimon Sakaguchi
Tobias Bopp
Magdalena Huber
Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
description IFN-γ signalling inhibits production of IL-9, the defining cytokine of the Th9 cell subset. Here the authors show that IFN-γ does this by driving IRF1 to compete with IRF4 forIl9promoter binding and skewing these cells towards a Th1 phenotype, an effect that reduces asthmatic inflammation in mice.
format article
author Lucia Campos Carrascosa
Matthias Klein
Yohko Kitagawa
Christina Lückel
Federico Marini
Anika König
Anna Guralnik
Hartmann Raifer
Stefanie Hagner-Benes
Diana Rädler
Andreas Böck
Cholho Kang
Michael Lohoff
Holger Garn
Bianca Schaub
Friederike Berberich-Siebelt
Shimon Sakaguchi
Tobias Bopp
Magdalena Huber
author_facet Lucia Campos Carrascosa
Matthias Klein
Yohko Kitagawa
Christina Lückel
Federico Marini
Anika König
Anna Guralnik
Hartmann Raifer
Stefanie Hagner-Benes
Diana Rädler
Andreas Böck
Cholho Kang
Michael Lohoff
Holger Garn
Bianca Schaub
Friederike Berberich-Siebelt
Shimon Sakaguchi
Tobias Bopp
Magdalena Huber
author_sort Lucia Campos Carrascosa
title Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
title_short Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
title_full Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
title_fullStr Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
title_full_unstemmed Reciprocal regulation of the Il9 locus by counteracting activities of transcription factors IRF1 and IRF4
title_sort reciprocal regulation of the il9 locus by counteracting activities of transcription factors irf1 and irf4
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/13172fb84a7445059a0849047683d7fa
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