Literature DB >> 23966622

Combining PARP-1 inhibition and radiation in Ewing sarcoma results in lethal DNA damage.

Hae-June Lee1, Changhwan Yoon, Benjamin Schmidt, Do Joong Park, Alexia Y Zhang, Hayriye V Erkizan, Jeffrey A Toretsky, David G Kirsch, Sam S Yoon.   

Abstract

Ewing sarcomas (ES) harbor a chromosomal translocation that fuses the EWS gene to an ETS transcription factor, most commonly Friend leukemia integration 1 (FLI1). The EWS-FLI1 fusion protein acts in a positive feedback loop to maintain the expression of PARP-1, which is involved in repair of DNA damage. Here, we examine the effects of PARP-1 inhibition and radiation therapy on Ewing sarcomas. In proliferation assays, the Ewing sarcoma cell lines RD-ES and SK-N-MC were much more sensitive than non-Ewing sarcoma cell lines to the PARP-1 inhibitor olaparib (Ola; IC50 0.5-1 μmol/L vs. >5 μmol/L) and to radiation (IC50 2-4 Gy vs. >6 Gy). PARP-1 inhibition with short hairpin RNA (shRNA) or Ola sensitized Ewing sarcoma cells, but not non-Ewing sarcoma cells, to radiation therapy in both proliferation and colony formation assays. Using the Comet assay, radiation of Ewing sarcoma cells with Ola, compared to without Ola, resulted in more DNA damage at 1 hour (mean tail moment 36-54 vs. 26-28) and sustained DNA damage at 24 hours (24-29 vs. 6-8). This DNA damage led to a 2.9- to 4.0-fold increase in apoptosis and a 1.6- to 2.4-fold increase in cell death. The effect of PARP-1 inhibition and radiation therapy on Ewing sarcoma cells was lost when EWS-FLI1 was silenced by shRNA. A small dose of radiation therapy (4 Gy), when combined with PARP-1 inhibition, stopped the growth of SK-N-MC flank tumors xenografts. In conclusion, PARP-1 inhibition in Ewing sarcomas amplifies the level and duration of DNA damage caused by radiation therapy, leading to synergistic increases in apoptosis and cell death in a EWS-FLI1-dependent manner. ©2013 AACR.

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Year:  2013        PMID: 23966622      PMCID: PMC3823674          DOI: 10.1158/1535-7163.MCT-13-0338

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  25 in total

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Authors:  A Arvand; C T Denny
Journal:  Oncogene       Date:  2001-09-10       Impact factor: 9.867

Review 2.  Oncogenic partnerships: EWS-FLI1 protein interactions initiate key pathways of Ewing's sarcoma.

Authors:  Hayriye V Erkizan; Vladimir N Uversky; Jeffrey A Toretsky
Journal:  Clin Cancer Res       Date:  2010-06-14       Impact factor: 12.531

3.  Mechanistic rationale for inhibition of poly(ADP-ribose) polymerase in ETS gene fusion-positive prostate cancer.

Authors:  J Chad Brenner; Bushra Ateeq; Yong Li; Anastasia K Yocum; Qi Cao; Irfan A Asangani; Sonam Patel; Xiaoju Wang; Hallie Liang; Jindan Yu; Nallasivam Palanisamy; Javed Siddiqui; Wei Yan; Xuhong Cao; Rohit Mehra; Aaron Sabolch; Venkatesha Basrur; Robert J Lonigro; Jun Yang; Scott A Tomlins; Christopher A Maher; Kojo S J Elenitoba-Johnson; Maha Hussain; Nora M Navone; Kenneth J Pienta; Sooryanarayana Varambally; Felix Y Feng; Arul M Chinnaiyan
Journal:  Cancer Cell       Date:  2011-05-17       Impact factor: 31.743

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Review 5.  Pre-clinical and clinical evaluation of PARP inhibitors as tumour-specific radiosensitisers.

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Journal:  Cancer Treat Rev       Date:  2010-04-20       Impact factor: 12.111

Review 6.  Radiation-induced cell death mechanisms.

Authors:  David Eriksson; Torgny Stigbrand
Journal:  Tumour Biol       Date:  2010-05-20

7.  Molecular pathways: targeting PARP in cancer treatment.

Authors:  Khanh Do; Alice P Chen
Journal:  Clin Cancer Res       Date:  2012-12-26       Impact factor: 12.531

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Journal:  Cancer Res       Date:  2006-08-15       Impact factor: 12.701

9.  PARP-1 inhibition as a targeted strategy to treat Ewing's sarcoma.

Authors:  J Chad Brenner; Felix Y Feng; Sumin Han; Sonam Patel; Siddharth V Goyal; Laura M Bou-Maroun; Meilan Liu; Robert Lonigro; John R Prensner; Scott A Tomlins; Arul M Chinnaiyan
Journal:  Cancer Res       Date:  2012-01-27       Impact factor: 12.701

10.  UKCCCR guidelines for the use of cell lines in cancer research.

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Journal:  Br J Cancer       Date:  2000-05       Impact factor: 7.640

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  39 in total

1.  Targeted radiosensitization of ETS fusion-positive prostate cancer through PARP1 inhibition.

Authors:  Sumin Han; J Chad Brenner; Aaron Sabolch; Will Jackson; Corey Speers; Kari Wilder-Romans; Karen E Knudsen; Theodore S Lawrence; Arul M Chinnaiyan; Felix Y Feng
Journal:  Neoplasia       Date:  2013-10       Impact factor: 5.715

2.  Targeting the DNA repair pathway in Ewing sarcoma.

Authors:  Elizabeth Stewart; Ross Goshorn; Cori Bradley; Lyra M Griffiths; Claudia Benavente; Nathaniel R Twarog; Gregory M Miller; William Caufield; Burgess B Freeman; Armita Bahrami; Alberto Pappo; Jianrong Wu; Amos Loh; Åsa Karlström; Chris Calabrese; Brittney Gordon; Lyudmila Tsurkan; M Jason Hatfield; Philip M Potter; Scott E Snyder; Suresh Thiagarajan; Abbas Shirinifard; Andras Sablauer; Anang A Shelat; Michael A Dyer
Journal:  Cell Rep       Date:  2014-10-23       Impact factor: 9.423

Review 3.  The ETS family of oncogenic transcription factors in solid tumours.

Authors:  Gina M Sizemore; Jason R Pitarresi; Subhasree Balakrishnan; Michael C Ostrowski
Journal:  Nat Rev Cancer       Date:  2017-04-28       Impact factor: 60.716

4.  Phase I, Dose-Escalation, Two-Part Trial of the PARP Inhibitor Talazoparib in Patients with Advanced Germline BRCA1/2 Mutations and Selected Sporadic Cancers.

Authors:  Johann de Bono; Ramesh K Ramanathan; Lida Mina; Rashmi Chugh; John Glaspy; Saeed Rafii; Stan Kaye; Jasgit Sachdev; John Heymach; David C Smith; Joshua W Henshaw; Ashleigh Herriott; Miranda Patterson; Nicola J Curtin; Lauren Averett Byers; Zev A Wainberg
Journal:  Cancer Discov       Date:  2017-02-27       Impact factor: 39.397

Review 5.  Targeted therapies for advanced Ewing sarcoma family of tumors.

Authors:  Yunyun Jiang; Joseph Ludwig; Filip Janku
Journal:  Cancer Treat Rev       Date:  2015-03-27       Impact factor: 12.111

6.  Inhibition of vascular endothelial growth factor A and hypoxia-inducible factor 1α maximizes the effects of radiation in sarcoma mouse models through destruction of tumor vasculature.

Authors:  Hae-June Lee; Changhwan Yoon; Do Joong Park; Yeo-Jung Kim; Benjamin Schmidt; Yoon-Jin Lee; William D Tap; T S Karin Eisinger-Mathason; Edwin Choy; David G Kirsch; M Celeste Simon; Sam S Yoon
Journal:  Int J Radiat Oncol Biol Phys       Date:  2014-12-24       Impact factor: 7.038

Review 7.  BRCA1 Mutation: A Predictive Marker for Radiation Therapy?

Authors:  Charlene Kan; Junran Zhang
Journal:  Int J Radiat Oncol Biol Phys       Date:  2015-10-01       Impact factor: 7.038

Review 8.  Advances in the Treatment of Pediatric Bone Sarcomas.

Authors:  Patrick J Grohar; Katherine A Janeway; Luke D Mase; Joshua D Schiffman
Journal:  Am Soc Clin Oncol Educ Book       Date:  2017

Review 9.  Perspectives on the combination of radiotherapy and targeted therapy with DNA repair inhibitors in the treatment of pancreatic cancer.

Authors:  Shih-Hung Yang; Ting-Chun Kuo; Hsu Wu; Jhe-Cyuan Guo; Chiun Hsu; Chih-Hung Hsu; Yu-Wen Tien; Kun-Huei Yeh; Ann-Lii Cheng; Sung-Hsin Kuo
Journal:  World J Gastroenterol       Date:  2016-08-28       Impact factor: 5.742

Review 10.  Soft tissue sarcomas: new opportunity of treatment with PARP inhibitors?

Authors:  Monica Mangoni; Mariangela Sottili; Giulia Salvatore; Domenico Campanacci; Guido Scoccianti; Giovanni Beltrami; Camilla Delli Paoli; Luca Dominici; Virginia Maragna; Emanuela Olmetto; Icro Meattini; Isacco Desideri; Pierluigi Bonomo; Daniela Greto; Lorenzo Livi
Journal:  Radiol Med       Date:  2018-03-26       Impact factor: 3.469

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