Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis

Bcl-3 modulates effector T cell responses, but the importance of Bcl-3 in T regulatory cells and autoimmunity is not clear. Here the authors show that Bcl-3 impedes NF-κB DNA binding to alter T regulatory cell development and function, causing spontaneous colitis in mice.

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Autores principales: Sonja Reißig, Yilang Tang, Alexei Nikolaev, Katharina Gerlach, Christine Wolf, Kathrin Davari, Christian Gallus, Joumana Masri, Ilgiz A. Mufazalov, Markus F. Neurath, F. Thomas Wunderlich, Jörn M. Schattenberg, Peter R. Galle, Benno Weigmann, Ari Waisman, Elke Glasmacher, Nadine Hövelmeyer
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/87d328bf46c940f9b17786b9c4f283ce
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spelling oai:doaj.org-article:87d328bf46c940f9b17786b9c4f283ce2021-12-02T14:41:08ZElevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis10.1038/ncomms150692041-1723https://doaj.org/article/87d328bf46c940f9b17786b9c4f283ce2017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms15069https://doaj.org/toc/2041-1723Bcl-3 modulates effector T cell responses, but the importance of Bcl-3 in T regulatory cells and autoimmunity is not clear. Here the authors show that Bcl-3 impedes NF-κB DNA binding to alter T regulatory cell development and function, causing spontaneous colitis in mice.Sonja ReißigYilang TangAlexei NikolaevKatharina GerlachChristine WolfKathrin DavariChristian GallusJoumana MasriIlgiz A. MufazalovMarkus F. NeurathF. Thomas WunderlichJörn M. SchattenbergPeter R. GalleBenno WeigmannAri WaismanElke GlasmacherNadine HövelmeyerNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sonja Reißig
Yilang Tang
Alexei Nikolaev
Katharina Gerlach
Christine Wolf
Kathrin Davari
Christian Gallus
Joumana Masri
Ilgiz A. Mufazalov
Markus F. Neurath
F. Thomas Wunderlich
Jörn M. Schattenberg
Peter R. Galle
Benno Weigmann
Ari Waisman
Elke Glasmacher
Nadine Hövelmeyer
Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
description Bcl-3 modulates effector T cell responses, but the importance of Bcl-3 in T regulatory cells and autoimmunity is not clear. Here the authors show that Bcl-3 impedes NF-κB DNA binding to alter T regulatory cell development and function, causing spontaneous colitis in mice.
format article
author Sonja Reißig
Yilang Tang
Alexei Nikolaev
Katharina Gerlach
Christine Wolf
Kathrin Davari
Christian Gallus
Joumana Masri
Ilgiz A. Mufazalov
Markus F. Neurath
F. Thomas Wunderlich
Jörn M. Schattenberg
Peter R. Galle
Benno Weigmann
Ari Waisman
Elke Glasmacher
Nadine Hövelmeyer
author_facet Sonja Reißig
Yilang Tang
Alexei Nikolaev
Katharina Gerlach
Christine Wolf
Kathrin Davari
Christian Gallus
Joumana Masri
Ilgiz A. Mufazalov
Markus F. Neurath
F. Thomas Wunderlich
Jörn M. Schattenberg
Peter R. Galle
Benno Weigmann
Ari Waisman
Elke Glasmacher
Nadine Hövelmeyer
author_sort Sonja Reißig
title Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
title_short Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
title_full Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
title_fullStr Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
title_full_unstemmed Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis
title_sort elevated levels of bcl-3 inhibits treg development and function resulting in spontaneous colitis
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/87d328bf46c940f9b17786b9c4f283ce
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