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Abstract

Increased Replication Stress Sensitises High Risk Neuroblastoma Cells to ATR and PARP Inhibition †

1
Wolfson Childhood Cancer Research Centre, Newcastle Centre for Cancer, Translational and Clinical Research Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne NE1 7RU, UK
2
Newcastle Centre for Cancer, Translational and Clinical Research Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne NE2 4HH, UK
*
Authors to whom correspondence should be addressed.
Presented at the 1st International Electronic Conference on Cancers: Exploiting Cancer Vulnerability by Targeting the DNA Damage Response, 1–14 February 2021; Available online: https://iecc2021.sciforum.net/.
Med. Sci. Forum 2021, 3(1), 10; https://doi.org/10.3390/IECC2021-09205
Published: 29 January 2021

Abstract

:
Background: Neuroblastoma (NB) is a rare childhood cancer but accounts for 15% of paediatric cancer deaths. MYCN amplification and/or ATM loss through 11q deletion may cause an increase in replication stress (RS) in a substantial proportion (~80%) of high-risk NB. RS creates a dependency on ATR-mediated S and G2 checkpoint control. This study aimed to determine if MYCN amplification or ATM loss identifies cells which are sensitive to ATR inhibition (ATRi). As PARP inhibition causes RS through unrepaired single-strand DNA breaks progressing to replication, we also examined the effect of ATRi on PARP inhibitor (PARPi) cytotoxicity and PARPi-induced RS, cell cycle arrest and homologous recombination repair (HRR) activity. Methods: Cell proliferation in response to 72 h of treatment with the ATR inhibitor, VE-821, was assessed by XTT (Roche) and clonogenic survival assays in a panel of 11 NB cell lines and the effect of VE-821 on growth inhibition caused by the PARPi, Olaparib, in 4 cell lines. CHK1S345 (a marker of ATR activity) and RPA2S8 and H2AXS129 phosphorylation (RS markers) were assessed by Western blotting and immunofluorescent microscopy. HRR was examined by the formation of RAD51 foci by immunofluorescent microscopy. Cell cycle analysis was carried out by flow cytometry. Results: VE-821-induced growth inhibition and cell death was significantly increased in MYCN-amplified cell lines and cell lines with low ATM protein expression (p < 0.05 Mann–Whitney U test). Olaparib (5 µM) treatment increased CHK1S345 and H2AXS129 phosphorylation after 24 h of treatment in all cell lines. ATR inhibition prevented CHK1S345 phosphorylation and reduced Olaparib-induced RAD51 foci formation. VE-821 abrogated Olaparib-induced S and G2 checkpoint arrest. Conclusion: MYCN amplification and low ATM protein expression are determinants of ATRi sensitivity in NB cell lines. ATRi sensitises NB cells to PARPi by abrogating S/G2 checkpoint arrest and impairing HRR.

Supplementary Materials

The following are available online at https://www.mdpi.com/article/10.3390/IECC2021-09205/s1.

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MDPI and ACS Style

Southgate, H.; Chen, L.; Tweddle, D.A.; Curtin, N.J. Increased Replication Stress Sensitises High Risk Neuroblastoma Cells to ATR and PARP Inhibition. Med. Sci. Forum 2021, 3, 10. https://doi.org/10.3390/IECC2021-09205

AMA Style

Southgate H, Chen L, Tweddle DA, Curtin NJ. Increased Replication Stress Sensitises High Risk Neuroblastoma Cells to ATR and PARP Inhibition. Medical Sciences Forum. 2021; 3(1):10. https://doi.org/10.3390/IECC2021-09205

Chicago/Turabian Style

Southgate, Harriet, Lindi Chen, Deborah A. Tweddle, and Nicola J. Curtin. 2021. "Increased Replication Stress Sensitises High Risk Neuroblastoma Cells to ATR and PARP Inhibition" Medical Sciences Forum 3, no. 1: 10. https://doi.org/10.3390/IECC2021-09205

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