Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance

How ROS levels are regulated in cancer stem cells and their contribution to cancer resistance is currently not clear. Here, the authors show that prohibitin regulates mitochondrial ROS production stabilizing the peroxidase PRDX3 and this accounts for radiotherapy resistance in glioma stem-like cells...

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Main Authors: Haohao Huang, Songyang Zhang, Yuanyuan Li, Zhaodan Liu, Lanjuan Mi, Yan Cai, Xinzheng Wang, Lishu Chen, Haowen Ran, Dake Xiao, Fangye Li, Jiaqi Wu, Tingting Li, Qiuying Han, Liang Chen, Xin Pan, Huiyan Li, Tao Li, Kun He, Ailing Li, Xuemin Zhang, Tao Zhou, Qing Xia, Jianghong Man
Format: Article
Language:English
Published: Nature Portfolio 2021-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-24108-6
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author Haohao Huang
Songyang Zhang
Yuanyuan Li
Zhaodan Liu
Lanjuan Mi
Yan Cai
Xinzheng Wang
Lishu Chen
Haowen Ran
Dake Xiao
Fangye Li
Jiaqi Wu
Tingting Li
Qiuying Han
Liang Chen
Xin Pan
Huiyan Li
Tao Li
Kun He
Ailing Li
Xuemin Zhang
Tao Zhou
Qing Xia
Jianghong Man
author_facet Haohao Huang
Songyang Zhang
Yuanyuan Li
Zhaodan Liu
Lanjuan Mi
Yan Cai
Xinzheng Wang
Lishu Chen
Haowen Ran
Dake Xiao
Fangye Li
Jiaqi Wu
Tingting Li
Qiuying Han
Liang Chen
Xin Pan
Huiyan Li
Tao Li
Kun He
Ailing Li
Xuemin Zhang
Tao Zhou
Qing Xia
Jianghong Man
author_sort Haohao Huang
collection DOAJ
description How ROS levels are regulated in cancer stem cells and their contribution to cancer resistance is currently not clear. Here, the authors show that prohibitin regulates mitochondrial ROS production stabilizing the peroxidase PRDX3 and this accounts for radiotherapy resistance in glioma stem-like cells.
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spelling doaj.art-717939013c2d493084da56349c8594b52022-12-21T22:59:21ZengNature PortfolioNature Communications2041-17232021-06-0112111610.1038/s41467-021-24108-6Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistanceHaohao Huang0Songyang Zhang1Yuanyuan Li2Zhaodan Liu3Lanjuan Mi4Yan Cai5Xinzheng Wang6Lishu Chen7Haowen Ran8Dake Xiao9Fangye Li10Jiaqi Wu11Tingting Li12Qiuying Han13Liang Chen14Xin Pan15Huiyan Li16Tao Li17Kun He18Ailing Li19Xuemin Zhang20Tao Zhou21Qing Xia22Jianghong Man23State Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisDepartment of Neurosurgery, First Medical Center of PLA General HospitalState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisState Key Laboratory of Proteomics, National Center of Biomedical AnalysisHow ROS levels are regulated in cancer stem cells and their contribution to cancer resistance is currently not clear. Here, the authors show that prohibitin regulates mitochondrial ROS production stabilizing the peroxidase PRDX3 and this accounts for radiotherapy resistance in glioma stem-like cells.https://doi.org/10.1038/s41467-021-24108-6
spellingShingle Haohao Huang
Songyang Zhang
Yuanyuan Li
Zhaodan Liu
Lanjuan Mi
Yan Cai
Xinzheng Wang
Lishu Chen
Haowen Ran
Dake Xiao
Fangye Li
Jiaqi Wu
Tingting Li
Qiuying Han
Liang Chen
Xin Pan
Huiyan Li
Tao Li
Kun He
Ailing Li
Xuemin Zhang
Tao Zhou
Qing Xia
Jianghong Man
Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
Nature Communications
title Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
title_full Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
title_fullStr Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
title_full_unstemmed Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
title_short Suppression of mitochondrial ROS by prohibitin drives glioblastoma progression and therapeutic resistance
title_sort suppression of mitochondrial ros by prohibitin drives glioblastoma progression and therapeutic resistance
url https://doi.org/10.1038/s41467-021-24108-6
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