髓系白血病
癌症研究
表观遗传学
化学
BRD4
溴尿嘧啶
细胞生长
髓样
白血病
BET抑制剂
转录因子
细胞培养
细胞周期
细胞
抄写(语言学)
自噬
下调和上调
双重角色
药物发现
对偶(语法数字)
细胞周期检查点
蛋白质降解
组蛋白
核蛋白
作者
Qiuping Xiang,Yanan Wang,Mengli Gu,Junchen Yao,Yanping Zhang,Cheng Zhang,Yong Zhang,Nan Xie,Shengyi Qian,Yan Lu,Hui Hua,Yujie Sun,L. Li Wang,Manyu Guo,Qiaofeng Cao,Qin Zhu,Yao Chen,Qianyue Zhang,Xintian Zhang,Yuheng Wang
标识
DOI:10.1021/acs.jmedchem.5c02766
摘要
Acute myeloid leukemia (AML) is driven by transcriptional plasticity and epigenetic dysregulation. While BET proteins have emerged as promising therapeutic targets, BET inhibitors are limited by modest clinical efficacy and resistance, potentially mediated by CBP/p300-driven compensatory mechanisms. Herein, we describe the design, synthesis, and biological evaluation of a novel series of dual BRD4/CBP PROTAC degraders. The lead compound, 10k (ZX079), induces potent, dose- and time-dependent degradation of BRD4 and CBP and demonstrates superior suppression of oncogenic transcription and inhibition of AML cell proliferation compared with the dual BET/CBP inhibitor NEO2734. In vivo, 10k significantly reduces tumor growth in an AML xenograft model with TGI over 90%. Collectively, these findings highlight dual degradation of BRD4 and CBP as a promising strategy for AML.
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