4.1 Article

Epidermal growth factor receptor variant III renders glioma cancer cells less differentiated by JAGGED1

期刊

TUMOR BIOLOGY
卷 36, 期 4, 页码 2921-2928

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1007/s13277-014-2922-9

关键词

EGFRvIII; Glioblastoma; Glioma stem cells; JAGGED1; MAPK signaling; Radioresistance

类别

资金

  1. Basic Science Research Program through the National Research Foundation (NRF) of Korea - Ministry of Education [2010-0025204]
  2. National Nuclear Technology Program through the NRF of Korea - Ministry of Science, ICT, and Future Planning [2013M2A2A7042530]
  3. Kwanjeong Educational Foundation Domestic Scholarship
  4. National Research Foundation of Korea [2013M2A2A7042530, 2010-0025204] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Glioblastoma is a highly aggressive primary brain tumor in which the majority of cancer cells are undifferentiated. One of the most common oncogenic drivers for this malignancy is the epidermal growth factor receptor variant III (EGFRvIII), which lacks a portion of the extracellular ligand-binding domain due to deletion of exons 2-7 of the EGFR gene. EGFRvIII plays a critical role in tumor progression, promoting acquisition of stem cell-like features including an undifferentiated state and therapy resistance. However, the molecular mechanisms by which EGFRvIII contributes to cancer cell aggressiveness remain poorly understood. Here, we show that EGFR expression correlates with JAGGED1 expression in glioblastoma patients. Overexpression of EGFRvIII in glioma cell lines augmented JAGGED1 expression at the transcriptional level through the mitogen-activated protein kinase signaling pathway. Consequently, EGFRvIII overexpression drove partial dedifferentiation of glioma cells, as determined by tumorsphere-forming ability and expression of stem cell markers, through JAGGED1 induction. EGFRvIII-mediated radioresistance, but not chemoresistance, was also modulated by JAGGED1. Taken together, our results provide new insight into the mechanism underlying EGFRvIII-driven glioblastoma aggressiveness.

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