Cell Context is the third axis of synergy for the combination of ATR inhibition and cisplatin in Ewing sarcoma

顺铂 背景(考古学) DNA损伤 细胞周期 癌症研究 体内 癌症 生物 化疗 DNA 遗传学 古生物学
作者
Jennifer Jess,Kathleen M. Sorensen,Elissa A. Boguslawski,Matthew C. Stout,Zachary Madaj,Benjamin P. Caiello,Monica Pomaville,Elizabeth Wilson,Seneca S. Kinn-Gurzo,Christopher Parker,Sridhar M. Veluvolu,Taylor V. Brysgel,Rebecca Kaufman,Susan M. Kitchen-Goosen,Jenna M. Gedminas,Patrick J. Grohar
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:: OF1-OF16 被引量:1
标识
DOI:10.1158/1078-0432.ccr-23-3063
摘要

The importance of cellular context to the synergy of DNA Damage Response (DDR) targeted agents is important for tumors with mutations in DDR pathways, but less well-established for tumors driven by oncogenic transcription factors. In this study, we exploit the widespread transcriptional dysregulation of the EWS-FLI1 transcription factor to identify an effective DDR targeted combination therapy for Ewing Sarcoma (ES).We used matrix drug screening to evaluate synergy between a DNA-PK inhibitor (M9831) or an ATR inhibitor (berzosertib) and chemotherapy. The combination of berzosertib and cisplatin was selected for broad synergy, mechanistically evaluated for ES selectivity, and optimized for in vivo schedule.Berzosertib combined with cisplatin demonstrates profound synergy in multiple ES cell lines at clinically achievable concentrations. The synergy is due to loss of expression of the ATR downstream target CHEK1, loss of cell cycle checkpoints, and mitotic catastrophe. Consistent with the goals of the project, EWS-FLI1 drives the expression of CHEK1 and five other ATR pathway members. The loss of CHEK1 expression is not due to transcriptional repression and instead caused by degradation coupled with suppression of protein translation. The profound synergy is realized in vivo with a novel optimized schedule of this combination in subsets of ES models leading to durable complete responses in 50% of animals bearing two different ES xenografts.These data exploit EWS-FLI1 driven alterations in cell context to broaden the therapeutic window of berzosertib and cisplatin to establish a promising combination therapy and a novel in vivo schedule.
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