Activation of AhR with nuclear IKKα regulates cancer stem-like properties in the occurrence of radioresistance

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作者
Bin Yan
Shuang Liu
Ying Shi
Na Liu
Ling Chen
Xiang Wang
Desheng Xiao
Xiaoli Liu
Chao Mao
Yiqun Jiang
Weiwei Lai
Xing Xin
Can-E Tang
Dixian Luo
Tan Tan
Jiantao Jia
Yating Liu
Rui Yang
Jun Huang
Hu Zhou
Yan Cheng
Ya Cao
Weishi Yu
Kathrin Muegge
Yongguang Tao
机构
[1] Central South University,Institute of Medical Sciences, Xiangya Hospital
[2] Central South University,Key Laboratory of Carcinogenesis and Cancer Invasion, Ministry of Education, Xiangya Hospital
[3] Central South University,Cancer Research Institute
[4] Central South University,Department of Thoracic Surgery, Second Xiangya Hospital
[5] Central South University,Department of Pathology, Xiangya Hospital
[6] University of South China,National and Local Joint Engineering Laboratory of High
[7] Changzhi Medical College,throughput Molecular Diagnosis Technology, Translational Medicine Institute, the First People’s Hospital of Chenzhou
[8] Central South University,Department of Pathophysiology
[9] Chinese Academy of Sciences (CAS),Department of Neurosugery, Xiangya Hospital
[10] Central South University,Shanghai Institute of Material Medica
[11] Cipher Gene (Beijing) Co. Ltd.,Department of Pharmacology, School of Pharmaceutical Sciences
[12] Frederick National Laboratory for Cancer Research,Mouse Cancer Genetics Program, National Cancer Institute, Basic Science Program, Leidos Biomedical Research, Inc.
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摘要
Most cancer patients receive radiotherapy in the course of their disease and the occurrence of radioresistance is associated with poor prognosis. The molecular pathways that drive enhanced tumorigenic potential during the development of radioresistance are poorly understood. Here, we demonstrate that aryl hydrocarbon receptor (AhR) plays a vital role in the maintenance of cancer stem-like properties. AhR promotes the cancer stem-like phenotype and drives metastasis by directly targeting the promoters of ‘stemness’ genes, such as the ATP-binding cassette sub-family G member 2 (ABCG2) gene. Moreover, the radioresistant sublines display high levels of oncometabolites including α-ketoglutarate, and treatment of cancer cells with α-ketoglutarate enhances their stem-like properties in an AhR activation-dependent manner. IKKα directly activates stemness-related genes through an interaction with AhR as a bone fide chromatin modifier. Thus, AhR is functionally linked with cancer stem-like properties, and it drives tumorigenesis in the occurrence of radioresistance.
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