NRF2 connects Src tyrosine kinase to ferroptosis resistance in glioblastoma

被引:9
作者
Cirotti, Claudia [1 ,2 ]
Taddei, Irene [1 ,2 ]
Contadini, Claudia [1 ,2 ,3 ]
Di Girolamo, Claudia [1 ]
Pepe, Gerardo [1 ]
De Bardi, Marco [4 ]
Borsellino, Giovanna [4 ]
Helmer-Citterich, Manuela [1 ]
Barila, Daniela [1 ,2 ]
机构
[1] Univ Roma Tor Vergata, Dept Biol, Rome, Italy
[2] IRCCS Fdn Santa Lucia, Lab Cell Signaling, Rome, Italy
[3] IRCCS Regina Elena Natl Canc Inst, UOSD, Preclin Models & New Therapeut Agents Unit, Rome, Italy
[4] IRCCS Fdn Santa Lucia, Neuroimmunol Unit, Expt Neurosci, Rome, Italy
关键词
TRANSCRIPTION FACTOR NRF2; KEAP1-NRF2; PATHWAY; ACTIVATION; GLIOMA; GENE; TARGET; CELLS; P62; PHOSPHORYLATION; METABOLISM;
D O I
10.26508/lsa.202302205
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Glioblastoma is a severe brain tumor characterized by an extremely poor survival rate of patients. Glioblastoma cancer cells escape to standard therapeutic protocols consisting of a combination of ionizing radiation and temozolomide alkylating drugs that trigger DNA damage by rewiring of signaling pathways. In recent years, the upregulation of factors that counteract ferroptosis has been highlighted as a major driver of cancer resistance to ionizing radiation, although the molecular connection between the activation of oncogenic signaling and the modulation of ferroptosis has not been clarified yet. Here, we provide the first evidence for a molecular connection between the constitutive activation of tyrosine kinases and resistance to ferroptosis. Src tyrosine kinase, a central hub on which deregulated receptor tyrosine kinase signaling converge in cancer, leads to the stabilization and activation of NRF2 pathway, thus promoting resistance to ionizing radiation-induced ferroptosis. These data suggest that the up-regulation of the Src-NRF2 axis may represent a vulnerability for combined strategies that, by targeting ferroptosis resistance, enhance radiation sensitivity in glioblastoma.
引用
收藏
页数:14
相关论文
共 44 条
[1]   Targeting SRC in glioblastoma tumors and brain metastases Rationale and preclinical studies [J].
Ahluwalia, Manmeet S. ;
de Groot, John ;
Liu, Wei ;
Gladson, Candece L. .
CANCER LETTERS, 2010, 298 (02) :139-149
[2]   A novel patient stratification strategy to enhance the therapeutic efficacy of dasatinib in glioblastoma [J].
Alhalabi, Obada T. ;
Fletcher, Michael N. C. ;
Hielscher, Thomas ;
Kessler, Tobias ;
Lokumcu, Tolga ;
Baumgartner, Ulrich ;
Wittmann, Elena ;
Schlue, Silja ;
Goettmann, Mona ;
Rahman, Shaman ;
Hai, Ling ;
Hansen-Palmus, Lea ;
Puccio, Laura ;
Nakano, Ichiro ;
Herold-Mende, Christel ;
Day, Bryan W. ;
Wick, Wolfgang ;
Sahm, Felix ;
Phillips, Emma ;
Goidts, Violaine .
NEURO-ONCOLOGY, 2022, 24 (01) :39-51
[3]   Inhibition of the Nrf2 transcription factor by the alkaloid trigonelline renders pancreatic cancer cells more susceptible to apoptosis through decreased proteasomal gene expression and proteasome activity [J].
Arlt, A. ;
Sebens, S. ;
Krebs, S. ;
Geismann, C. ;
Grossmann, M. ;
Kruse, M-L ;
Schreiber, S. ;
Schaefer, H. .
ONCOGENE, 2013, 32 (40) :4825-4835
[4]   Exploring the role of Nrf2 signaling in glioblastoma multiforme [J].
Awuah, Wireko Andrew ;
Toufik, Abdul-Rahman ;
Yarlagadda, Rohan ;
Mikhailova, Tatiana ;
Mehta, Aashna ;
Huang, Helen ;
Kundu, Mrinmoy ;
Lopes, Leilani ;
Benson, Sylvester ;
Mykola, Lyndin ;
Vladyslav, Sikora ;
Alexiou, Athanasios ;
Alghamdi, Badrah S. ;
Hashem, Anwar M. ;
Ashraf, Ghulam Md .
DISCOVER ONCOLOGY, 2022, 13 (01)
[5]   Selected glimpses into the activation and function of Src kinase [J].
Bjorge, JD ;
Jakymiw, A ;
Fujita, DJ .
ONCOGENE, 2000, 19 (49) :5620-5635
[6]   Oncogenic kinase signalling [J].
Blume-Jensen, P ;
Hunter, T .
NATURE, 2001, 411 (6835) :355-365
[7]   Broadening horizons: the role of ferroptosis in cancer [J].
Chen, Xin ;
Kang, Rui ;
Kroemer, Guido ;
Tang, Daolin .
NATURE REVIEWS CLINICAL ONCOLOGY, 2021, 18 (05) :280-296
[8]   Comprehensive genomic characterization defines human glioblastoma genes and core pathways [J].
Chin, L. ;
Meyerson, M. ;
Aldape, K. ;
Bigner, D. ;
Mikkelsen, T. ;
VandenBerg, S. ;
Kahn, A. ;
Penny, R. ;
Ferguson, M. L. ;
Gerhard, D. S. ;
Getz, G. ;
Brennan, C. ;
Taylor, B. S. ;
Winckler, W. ;
Park, P. ;
Ladanyi, M. ;
Hoadley, K. A. ;
Verhaak, R. G. W. ;
Hayes, D. N. ;
Spellman, Paul T. ;
Absher, D. ;
Weir, B. A. ;
Ding, L. ;
Wheeler, D. ;
Lawrence, M. S. ;
Cibulskis, K. ;
Mardis, E. ;
Zhang, Jinghui ;
Wilson, R. K. ;
Donehower, L. ;
Wheeler, D. A. ;
Purdom, E. ;
Wallis, J. ;
Laird, P. W. ;
Herman, J. G. ;
Schuebel, K. E. ;
Weisenberger, D. J. ;
Baylin, S. B. ;
Schultz, N. ;
Yao, Jun ;
Wiedemeyer, R. ;
Weinstein, J. ;
Sander, C. ;
Gibbs, R. A. ;
Gray, J. ;
Kucherlapati, R. ;
Lander, E. S. ;
Myers, R. M. ;
Perou, C. M. ;
McLendon, Roger .
NATURE, 2008, 455 (7216) :1061-1068
[9]   SRC Kinase in Glioblastoma: News from an Old Acquaintance [J].
Cirotti, Claudia ;
Contadini, Claudia ;
Barila, Daniela .
CANCERS, 2020, 12 (06) :1-21
[10]   Caspase-8 as a novel mediator linking Src kinase signaling to enhanced glioblastoma malignancy [J].
Contadini, Claudia ;
Ferri, Alessandra ;
Di Martile, Marta ;
Cirotti, Claudia ;
Del Bufalo, Donatella ;
De Nicola, Francesca ;
Pallocca, Matteo ;
Fanciulli, Maurizio ;
Sacco, Francesca ;
Donninelli, Gloria ;
Capone, Alessia ;
Volpe, Elisabetta ;
Keller, Nadine ;
Miki, Shunichiro ;
Kawauchi, Daisuke ;
Stupack, Dwayne ;
Furnari, Frank ;
Barila, Daniela .
CELL DEATH AND DIFFERENTIATION, 2023, 30 (02) :417-428