ATF4 promotes angiogenesis and neuronal cell death and confers ferroptosis in a xCT-dependent manner

被引:0
作者
D Chen
Z Fan
M Rauh
M Buchfelder
I Y Eyupoglu
N Savaskan
机构
[1] Translational Cell Biology & Neurooncology Laboratory,Department of Otolaryngology– Head and Neck Surgery
[2] Universitätsklinikum Erlangen (UKER),Department of Health Sciences and Technology
[3] Friedrich-Alexander University of Erlangen–Nürnberg (FAU),Department of Pediatrics & Adolescent Medicine
[4] Chinese PLA General Hospital,Department of Neurosurgery
[5] Laboratory of Exercise and Health,undefined
[6] ETH Zurich (ETHZ),undefined
[7] Universitätsklinikum Erlangen (UKER),undefined
[8] Friedrich-Alexander University of Erlangen–Nürnberg (FAU),undefined
[9] Universitätsklinikum Erlangen (UKER),undefined
[10] Friedrich-Alexander University of Erlangen–Nürnberg (FAU),undefined
[11] BiMECON Ent.,undefined
来源
Oncogene | 2017年 / 36卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Activating transcription factor 4 (ATF4) is a critical mediator of metabolic and oxidative homeostasis and cell survival. ATF4 is elevated in response to diverse microenvironmental stresses, including starvation, ER stress damages and exposure to toxic factors. Here we show that ATF4 expression fosters the malignancy of primary brain tumors (WHO grade III and IV gliomas) and increases proliferation and tumor angiogenesis. Hence, ATF4 expression promotes cell migration and anchorage-independent cell growth, whereas siRNA-mediated knockdown of ATF4 attenuates these features of malignancy in human gliomas. Further experiments revealed that ATF4-dependent tumor promoting effects are mediated by transcriptional targeting the glutamate antiporter xCT/SCL7A11 (also known as system Xc-). Thus, xCT is elevated as a consequence of ATF4 activation. We further found evidence that ATF4-induced proliferation can be attenuated by pharmacological or genetic xCT inhibition and ferroptosis inducers such as sorafenib, erastin and GPx4 inhibitor RSL3. Further, fostered xCT expression promotes cell survival and growth in ATF4 knockdown cells. Moreover, increased xCT levels ameliorate sorafenib and erastin-induced ferroptosis. Conversely, ATF4 knockdown renders cells susceptible for erastin, sorafenib and RSL3-induced ferroptosis. We further identified that ATF4 promotes tumor-mediated neuronal cell death which can be alleviated by xCT inhibition. Moreover, elevated ATF4 expression in gliomas promotes tumor angiogenesis. Noteworthy, ATF4-induced angiogenesis could be diminished by ferroptosis inducers erastin and by GPx4 inhibitor RSL3. Our data provide proof-of-principle evidence that ATF4 fosters proliferation and induces a toxic microenvironmental niche. Furthermore, ATF4 increases tumor angiogenesis and shapes the vascular architecture in a xCT-dependent manner. Thus, inhibition of ATF4 is a valid target for diminishing tumor growth and vasculature via sensitizing tumor cells for ferroptosis.
引用
收藏
页码:5593 / 5608
页数:15
相关论文
共 50 条
  • [41] A systemic cell stress signal confers neuronal resilience toward oxidative stress in a Hedgehog-dependent manner
    Chung, Kyung Min
    Kim, Hyunha
    Roque, Claudio Gouveia
    McCurdy, Ethan P.
    Nguyen, Trang T. T.
    Siegelin, Markus D.
    Huang, Jee-Yeon
    Hengst, Ulrich
    CELL REPORTS, 2022, 41 (03):
  • [42] YAP inhibition by CO promotes ferroptosis via ATF4-dependent REDD1 increase in melanoma
    Park, Jeongmin
    Gong, Jeong Heon
    Joe, Yeonsoo
    Chung, Hun Taeg
    JOURNAL OF IMMUNOLOGY, 2023, 210 (01)
  • [43] Zika Virus Promotes neuronal cell Death in a non-cell autonomous Manner by Triggering the release of neurotoxic Factors
    Olmo, Isabella G.
    Carvalho, Toniana G.
    Costa, Vivian V.
    Alves-Silva, Juliana
    Ferrari, Carolina Z.
    Izidoro-Toledo, Tatiane C.
    da Silva, Juliana F.
    Teixeira, Antonio L.
    Souza, Danielle G.
    Marques, Joao T.
    Teixeira, Mauro M.
    Vieira, Luciene B.
    Ribeiro, Fabiola M.
    FRONTIERS IN IMMUNOLOGY, 2017, 8
  • [44] LncRNA BC200 Promotes Esophageal Squamous Cell Cancer Migration and Invasion and Can Regulate ATF4 Expression
    Zhao, Ruihua
    Cao, Xinguang
    Jin, Shuiling
    Li, Rui
    Zhong, Qian
    Jiang, Miao
    Han, Jinming
    Guo, Changqing
    Zong, Hong
    FRONTIERS IN ONCOLOGY, 2020, 10
  • [45] Activated Microglia Exosomes Mediated miR-383-3p Promotes Neuronal Necroptosis Through Inhibiting ATF4 Expression in Intracerebral Hemorrhage
    Wei, Min
    Li, Chen
    Yan, Zhengcun
    Hu, Zhengwei
    Dong, Lun
    Zhang, Jun
    Wang, Xingdong
    Li, Yuping
    Zhang, Hengzhu
    NEUROCHEMICAL RESEARCH, 2021, 46 (06) : 1337 - 1349
  • [46] Translational and post-translational regulation of XIAP by eIF2α and ATF4 promotes ER stress-induced cell death during the unfolded protein response
    Hiramatsu, Nobuhiko
    Messah, Carissa
    Han, Jaeseok
    LaVail, Matthew
    Kaufman, Randal
    Lin, Jonathan
    FASEB JOURNAL, 2014, 28 (01)
  • [47] Hederagenin promotes lung cancer cell death by activating CHAC1-dependent ferroptosis pathway
    Lu, Jiayan
    Guo, Qixia
    Zhao, Hui
    Liu, Hua
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2024, 718
  • [48] DJ-1 modulates the unfolded protein response and cell death via upregulation of ATF4 following ER stress
    Yang, Jungwoo
    Kim, Kwang Soo
    Iyirhiaro, Grace O.
    Marcogliese, Paul C.
    Callaghan, Steve M.
    Qu, Dianbo
    Kim, Woo Jae
    Slack, Ruth S.
    Park, David S.
    CELL DEATH & DISEASE, 2019, 10 (2)
  • [49] DJ-1 modulates the unfolded protein response and cell death via upregulation of ATF4 following ER stress
    Jungwoo Yang
    Kwang Soo Kim
    Grace O. Iyirhiaro
    Paul C. Marcogliese
    Steve M. Callaghan
    Dianbo Qu
    Woo Jae Kim
    Ruth S. Slack
    David S. Park
    Cell Death & Disease, 10
  • [50] Activated Microglia Exosomes Mediated miR-383-3p Promotes Neuronal Necroptosis Through Inhibiting ATF4 Expression in Intracerebral Hemorrhage
    Min Wei
    Chen Li
    Zhengcun Yan
    Zhengwei Hu
    Lun Dong
    Jun Zhang
    Xingdong Wang
    Yuping Li
    Hengzhu Zhang
    Neurochemical Research, 2021, 46 : 1337 - 1349