Nrf2-Keap1 pathway promotes cell proliferation and diminishes ferroptosis

被引:0
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作者
Z Fan
A-K Wirth
D Chen
C J Wruck
M Rauh
M Buchfelder
N Savaskan
机构
[1] University Medical School Hospital Universitätsklinikum Erlangen (UKER),Translational Cell Biology and Neurooncology Laboratory at the Department of Neurosurgery
[2] Friedrich-Alexander University of Erlangen–Nürnberg (FAU),Department of Health Sciences and Technology
[3] Laboratory of Exercise and Health,Department of Gene Vectors
[4] Institute of Movement Sciences,Department of Otolaryngology–Head and Neck Surgery
[5] (D-HEST),Department of Pediatrics and Adolescent Medicine
[6] Helmholtz Zentrum München,undefined
[7] German Research Center for Environmental Health,undefined
[8] Chinese PLA General Hospital,undefined
[9] Institute of Anatomy and Cell Biology,undefined
[10] Universitätsklinikum RWTH Aachen,undefined
[11] University Medical School Hospital Erlangen (UKER),undefined
[12] Friedrich-Alexander University of Erlangen–Nürnberg (FAU),undefined
[13] BiMECON,undefined
来源
Oncogenesis | 2017年 / 6卷
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摘要
Cancer cells are hallmarked by high proliferation and imbalanced redox consumption and signaling. Various oncogenic pathways such as proliferation and evading cell death converge on redox-dependent signaling processes. Nrf2 is a key regulator in these redox-dependent events and operates in cytoprotection, drug metabolism and malignant progression in cancer cells. Here, we show that patients with primary malignant brain tumors (glioblastomas, WHO °IV gliomas, GBM) have a devastating outcome and overall reduced survival when Nrf2 levels are upregulated. Nrf2 overexpression or Keap1 knockdown in glioma cells accelerate proliferation and oncogenic transformation. Further, activation of the Nrf2-Keap1 signaling upregulates xCT (aka SLC7A11 or system Xc−) and amplifies glutamate secretion thereby impacting on the tumor microenvironment. Moreover, both fostered Nrf2 expression and conversely Keap1 inhibition promote resistance to ferroptosis. Altogether, the Nrf2-Keap1 pathway operates as a switch for malignancy in gliomas promoting cell proliferation and resistance to cell death processes such as ferroptosis. Our data demonstrate that the Nrf2-Keap1 pathway is critical for cancer cell growth and operates on xCT. Nrf2 presents the Achilles’ heel of cancer cells and thus provides a valid therapeutic target for sensitizing cancer for chemotherapeutics.
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页码:e371 / e371
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