Increased replication stress and R-loop accumulation in EGFRvIII expressing glioblastoma present new therapeutic opportunities

Author:

Struve Nina12,Hoffer Konstantin1,Weik Anna-Sophie1,Riepen Britta1,Krug Leonie1,Cetin Meryem H1,Burmester Jasmin1,Ott Leonie1,Liebing Jana1,Gatzemeier Fruzsina1,Müller-Goebel Justus1,Bußmann Lara123,Parplys Ann Christin14,Unger Kristian5,Mansour Wael Y12,Schüller Ulrich678,Rieckmann Thorsten13,Petersen Cordula9,Rothkamm Kai1,Short Susan C10,Kriegs Malte1

Affiliation:

1. Laboratory of Radiobiology & Experimental Radiation Oncology, Hubertus Wald Tumorzentrum – University Cancer Center Hamburg, University Medical Center Hamburg-Eppendorf, Germany

2. Mildred-Scheel Cancer Career Center HATRICs4, University Medical Center Hamburg-Eppendorf, Germany

3. Department of Otolaryngology and Head and Neck Surgery, University Medical Center Hamburg Eppendorf, Germany; Laboratory of Radiobiology & Experimental Radiation

4. Viral-Zoonosis- One Health, Heinrich Pette Institut, Leibniz Institute for Experimental Virology, Germany

5. Research Unit Radiation Cytogenetics, Helmholtz Zentrum München, Germany

6. Institute of Neuropathology, University Medical Center Hamburg-Eppendorf, Germany

7. Department of Pediatric Hematology and Oncology, University Medical Center Hamburg-Eppendorf, Germany

8. Research Institute Children’s Cancer Center Hamburg, Hamburg, Germany

9. Department of Radiotherapy and Radiation Oncology, University Medical Center Hamburg-Eppendorf, Germany

10. Leeds Institute of Cancer and Pathology, St James's University Hospital, UK

Abstract

Abstract Background The oncogene epidermal growth factor receptor variant III (EGFRvIII) is expressed in approximately one third of all glioblastoma (GBM). So far it is not clear if EGFRvIII expression induces replication stress in GBM cells, which might serve as a therapeutical target. Methods Isogenetic EGFRvIII- and EGFRvIII+ cell lines with endogenous EGFRvIII expression were used. Markers of oncogenic and replication stress such as γH2AX, RPA, 53BP1, ATR and Chk1 were analysed using western blot, immunofluorescence and flow cytometry. The DNA fiber assay was performed to analyse replication, transcription was measured by incorporation of EU and genomic instability was investigated by micronuclei and CGH-Array analysis. Immunohistochemistry staining was used to detect replication stress markers and R-loops in human GBM samples. Results EGFRvIII+ cells exhibit an activated replication stress response, increased spontaneous DNA damage, elevated levels of single stranded DNA and reduced DNA replication velocity, which are all indicative characteristics for replication stress. Furthermore, we show here that EGFRvIII expression is linked to increased genomic instability. EGFRvIII expressing cells display elevated RNA synthesis and R-loop formation, which could also be confirmed in EGFRvIII positive GBM patient samples. Targeting replication stress by irinotecan resulted in increased sensitivity of EGFRvIII+ cells. Conclusion This study demonstrates that EGFRvIII expression is associated with increased replication stress, R-loop accumulation and genomic instability. This might contribute to intratumoral heterogeneity but may also be exploited for individualized therapy approaches.

Publisher

Oxford University Press (OUP)

Subject

Electrical and Electronic Engineering,Building and Construction

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