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Combined Targeting of the BRD4–NUT–p300 Axis in NUT Midline Carcinoma by Dual Selective Bromodomain Inhibitor, NEO2734

溴尿嘧啶 BRD4 螺母 癌症研究 化学 医学 药理学 组蛋白 生物 遗传学 DNA 结构工程 工程类
作者
Chevaun D. Morrison-Smith,Tatiana M. Knox,Ivona Filic,Kara M. Soroko,Benjamin K. Eschle,Margaret K. Wilkens,Prafulla C. Gokhale,Francis J. Giles,Andrew M. Griffin,B. Brown,Geoffrey I. Shapiro,Beth E. Zucconi,Philip A. Cole,Madeleine E. Lemieux,Christopher A. French
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:19 (7): 1406-1414 被引量:75
标识
DOI:10.1158/1535-7163.mct-20-0087
摘要

Abstract NUT midline carcinoma (NMC) is a rare, aggressive subtype of squamous carcinoma that is driven by the BRD4-NUT fusion oncoprotein. BRD4, a BET protein, binds to chromatin through its two bromodomains, and NUT recruits the p300 histone acetyltransferse (HAT) to activate transcription of oncogenic target genes. BET-selective bromodomain inhibitors have demonstrated on-target activity in patients with NMC, but with limited efficacy. P300, like BRD4, contains a bromodomain. We show that combining selective p300/CBP and BET bromodomain inhibitors, GNE-781 and OTX015, respectively, induces cooperative depletion of MYC and synergistic inhibition of NMC growth. Treatment of NMC cells with the novel dual p300/CBP and BET bromodomain–selective inhibitor, NEO2734, potently inhibits growth and induces differentiation of NMC cells in vitro; findings that correspond with potentiated transcriptional effects from combined BET and p300 bromodomain inhibition. In three disseminated NMC xenograft models, NEO2734 provided greater growth inhibition, with tumor regression and significant survival benefit seen in two of three models, compared with a lead clinical BET inhibitor or “standard” chemotherapy. Our findings provide a strong rationale for clinical study of NEO2734 in patients with NMC. Moreover, the synergistic inhibition of NMC growth by CBP/p300 and BET bromodomain inhibition lays the groundwork for greater mechanistic understanding of the interplay between p300 and BRD4-NUT that drives this cancer.
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