Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis

It is known that genotoxic stress induces high levels of ROS and deplete cellular glutathione stores. Here, Cao et al. uncover a β-catenin-dependent TCF/LEF-independent mechanism that promotes histone-mediated transcriptional activation of glutathione synthesis.

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Autores principales: Lixue Cao, Geyan Wu, Jinrong Zhu, Zhanyao Tan, Dongni Shi, Xingui Wu, Miaoling Tang, Ziwen Li, Yameng Hu, Shuxia Zhang, Ruyuan Yu, Shuang Mo, Jueheng Wu, Erwei Song, Mengfeng Li, Libing Song, Jun Li
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/ffab176b40414791a1654754dbf0a80b
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spelling oai:doaj.org-article:ffab176b40414791a1654754dbf0a80b2021-12-02T14:39:42ZGenotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis10.1038/s41467-019-11696-72041-1723https://doaj.org/article/ffab176b40414791a1654754dbf0a80b2019-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11696-7https://doaj.org/toc/2041-1723It is known that genotoxic stress induces high levels of ROS and deplete cellular glutathione stores. Here, Cao et al. uncover a β-catenin-dependent TCF/LEF-independent mechanism that promotes histone-mediated transcriptional activation of glutathione synthesis.Lixue CaoGeyan WuJinrong ZhuZhanyao TanDongni ShiXingui WuMiaoling TangZiwen LiYameng HuShuxia ZhangRuyuan YuShuang MoJueheng WuErwei SongMengfeng LiLibing SongJun LiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lixue Cao
Geyan Wu
Jinrong Zhu
Zhanyao Tan
Dongni Shi
Xingui Wu
Miaoling Tang
Ziwen Li
Yameng Hu
Shuxia Zhang
Ruyuan Yu
Shuang Mo
Jueheng Wu
Erwei Song
Mengfeng Li
Libing Song
Jun Li
Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
description It is known that genotoxic stress induces high levels of ROS and deplete cellular glutathione stores. Here, Cao et al. uncover a β-catenin-dependent TCF/LEF-independent mechanism that promotes histone-mediated transcriptional activation of glutathione synthesis.
format article
author Lixue Cao
Geyan Wu
Jinrong Zhu
Zhanyao Tan
Dongni Shi
Xingui Wu
Miaoling Tang
Ziwen Li
Yameng Hu
Shuxia Zhang
Ruyuan Yu
Shuang Mo
Jueheng Wu
Erwei Song
Mengfeng Li
Libing Song
Jun Li
author_facet Lixue Cao
Geyan Wu
Jinrong Zhu
Zhanyao Tan
Dongni Shi
Xingui Wu
Miaoling Tang
Ziwen Li
Yameng Hu
Shuxia Zhang
Ruyuan Yu
Shuang Mo
Jueheng Wu
Erwei Song
Mengfeng Li
Libing Song
Jun Li
author_sort Lixue Cao
title Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
title_short Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
title_full Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
title_fullStr Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
title_full_unstemmed Genotoxic stress-triggered β-catenin/JDP2/PRMT5 complex facilitates reestablishing glutathione homeostasis
title_sort genotoxic stress-triggered β-catenin/jdp2/prmt5 complex facilitates reestablishing glutathione homeostasis
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/ffab176b40414791a1654754dbf0a80b
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