IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation

Th17 cells are a common pathogenic effector cell in autoimmune inflammatory diseases. Here the authors show that the transcription factor RFX1 limits Th17 differentiation and is protective against the pathogenesis of Th17-driven autoimmune diseases.

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Autores principales: Ming Zhao, Yixin Tan, Qiao Peng, Cancan Huang, Yu Guo, Gongping Liang, Bochen Zhu, Yi Huang, Aiyun Liu, Zijun Wang, Mengying Li, Xiaofei Gao, Ruifang Wu, Haijing Wu, Hai Long, Qianjin Lu
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/924f8474ce9e432faa72f6e2dc568917
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spelling oai:doaj.org-article:924f8474ce9e432faa72f6e2dc5689172021-12-02T17:31:16ZIL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation10.1038/s41467-018-02890-02041-1723https://doaj.org/article/924f8474ce9e432faa72f6e2dc5689172018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-02890-0https://doaj.org/toc/2041-1723Th17 cells are a common pathogenic effector cell in autoimmune inflammatory diseases. Here the authors show that the transcription factor RFX1 limits Th17 differentiation and is protective against the pathogenesis of Th17-driven autoimmune diseases.Ming ZhaoYixin TanQiao PengCancan HuangYu GuoGongping LiangBochen ZhuYi HuangAiyun LiuZijun WangMengying LiXiaofei GaoRuifang WuHaijing WuHai LongQianjin LuNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ming Zhao
Yixin Tan
Qiao Peng
Cancan Huang
Yu Guo
Gongping Liang
Bochen Zhu
Yi Huang
Aiyun Liu
Zijun Wang
Mengying Li
Xiaofei Gao
Ruifang Wu
Haijing Wu
Hai Long
Qianjin Lu
IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
description Th17 cells are a common pathogenic effector cell in autoimmune inflammatory diseases. Here the authors show that the transcription factor RFX1 limits Th17 differentiation and is protective against the pathogenesis of Th17-driven autoimmune diseases.
format article
author Ming Zhao
Yixin Tan
Qiao Peng
Cancan Huang
Yu Guo
Gongping Liang
Bochen Zhu
Yi Huang
Aiyun Liu
Zijun Wang
Mengying Li
Xiaofei Gao
Ruifang Wu
Haijing Wu
Hai Long
Qianjin Lu
author_facet Ming Zhao
Yixin Tan
Qiao Peng
Cancan Huang
Yu Guo
Gongping Liang
Bochen Zhu
Yi Huang
Aiyun Liu
Zijun Wang
Mengying Li
Xiaofei Gao
Ruifang Wu
Haijing Wu
Hai Long
Qianjin Lu
author_sort Ming Zhao
title IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
title_short IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
title_full IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
title_fullStr IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
title_full_unstemmed IL-6/STAT3 pathway induced deficiency of RFX1 contributes to Th17-dependent autoimmune diseases via epigenetic regulation
title_sort il-6/stat3 pathway induced deficiency of rfx1 contributes to th17-dependent autoimmune diseases via epigenetic regulation
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/924f8474ce9e432faa72f6e2dc568917
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