» Articles » PMID: 19252415

Pro-survival AKT and ERK Signaling from EGFR and Mutant EGFRvIII Enhances DNA Double-strand Break Repair in Human Glioma Cells

Overview
Specialties Oncology
Pharmacology
Date 2009 Mar 3
PMID 19252415
Citations 99
Authors
Affiliations
Soon will be listed here.
Abstract

The epidermal growth factor receptor (EGFR) is frequently dysregulated in malignant glioma that leads to increased resistance to cancer therapy. Upregulation of wild type or expression of mutant EGFR is associated with tumor radioresistance and poor clinical outcome. EGFR variant III (EGFRvIII) is the most common EGFR mutation in malignant glioma. Radioresistance is thought to be, at least in part, the result of a strong cytoprotective response fueled by signaling via AKT and ERK that is heightened by radiation in the clinical dose range. Several groups including ours have shown that this response may modulate DNA repair. Herein, we show that expression of EGFRvIII promoted gamma-H2AX foci resolution, a surrogate for double-strand break (DSB) repair, and thus enhanced DNA repair. Conversely, small molecule inhibitors targeting EGFR, MEK, and the expression of dominant-negative EGFR (EGFR-CD533) significantly reduced the resolution of gamma-H2AX foci. When homologous recombination repair (HRR) and non-homologous end joining (NHEJ) were specifically examined, we found that EGFRvIII stimulated and CD533 compromised HRR and NHEJ, respectively. Furthermore, NHEJ was blocked by inhibitors of AKT and ERK signaling pathways. Moreover, expression of EGFRvIII and CD533 increased and reduced, respectively, the formation of phospho-DNA-PKcs and -ATM repair foci, and RAD51 foci and expression levels, indicating that DSB repair is regulated at multiple levels. Altogether, signaling from EGFR and EGFRvIII promotes both HRR and NHEJ that is likely a contributing factor towards the radioresistance of malignant gliomas.

Citing Articles

Tousled-like kinase loss confers PARP inhibitor resistance in BRCA1-mutated cancers by impeding non-homologous end joining repair.

Kim M, Kim B, Jeon J, Lee J, Jang H, Baek M Mol Med. 2025; 31(1):18.

PMID: 39844055 PMC: 11753094. DOI: 10.1186/s10020-025-01066-z.


Role of Mitogen-Activated Protein (MAP) Kinase Pathways in Metabolic Diseases.

Ng G, Loh Z, Fann D, Mallilankaraman K, Arumugam T, Hande M Genome Integr. 2024; 15:e20230003.

PMID: 38770527 PMC: 11102075. DOI: 10.14293/genint.14.1.004.


Dual p38MAPK and MEK inhibition disrupts adaptive chemoresistance in mesenchymal glioblastoma to temozolomide.

Cheng H, Chong Y, Lim E, Lee X, Pang Q, Novera W Neuro Oncol. 2024; 26(7):1247-1261.

PMID: 38366847 PMC: 11226874. DOI: 10.1093/neuonc/noae028.


PTEN-mediated dephosphorylation of 53BP1 confers cellular resistance to DNA damage in cancer cells.

He J, Huang C, Guo Y, Deng R, Li L, Chen R Mol Oncol. 2023; 18(3):580-605.

PMID: 38060346 PMC: 10920079. DOI: 10.1002/1878-0261.13563.


Advancements and Obstacles of PARP Inhibitors in Gastric Cancer.

Chen H, Hu Y, Zhuang Z, Wang D, Ye Z, Jing J Cancers (Basel). 2023; 15(21).

PMID: 37958290 PMC: 10647262. DOI: 10.3390/cancers15215114.


References
1.
Golding S, Rosenberg E, Khalil A, McEwen A, Holmes M, Neill S . Double strand break repair by homologous recombination is regulated by cell cycle-independent signaling via ATM in human glioma cells. J Biol Chem. 2004; 279(15):15402-10. DOI: 10.1074/jbc.M314191200. View

2.
Valerie K, Povirk L . Regulation and mechanisms of mammalian double-strand break repair. Oncogene. 2003; 22(37):5792-812. DOI: 10.1038/sj.onc.1206679. View

3.
Lammering G, Hewit T, Holmes M, Valerie K, Hawkins W, Lin P . Inhibition of the type III epidermal growth factor receptor variant mutant receptor by dominant-negative EGFR-CD533 enhances malignant glioma cell radiosensitivity. Clin Cancer Res. 2004; 10(19):6732-43. DOI: 10.1158/1078-0432.CCR-04-0393. View

4.
Golding S, Rosenberg E, Neill S, Dent P, Povirk L, Valerie K . Extracellular signal-related kinase positively regulates ataxia telangiectasia mutated, homologous recombination repair, and the DNA damage response. Cancer Res. 2007; 67(3):1046-53. DOI: 10.1158/0008-5472.CAN-06-2371. View

5.
Kao G, Jiang Z, Fernandes A, Gupta A, Maity A . Inhibition of phosphatidylinositol-3-OH kinase/Akt signaling impairs DNA repair in glioblastoma cells following ionizing radiation. J Biol Chem. 2007; 282(29):21206-12. PMC: 3614065. DOI: 10.1074/jbc.M703042200. View