溴尿嘧啶
化学
乙酰化
组合化学
荧光各向异性
小分子
药物发现
计算生物学
荧光
组蛋白
髓系白血病
生物化学
纳米技术
组蛋白乙酰转移酶
生物物理学
药物开发
化学生物学
蛋白质-蛋白质相互作用
光敏剂
铅化合物
合理设计
靶蛋白
结合位点
血浆蛋白结合
癌细胞
药物设计
分子
HDAC8型
固相合成
辅因子
翻译后修饰
猝灭(荧光)
配体结合分析
体外
生物测定
作者
Jiayin Liang,Ziyi Li,Lu Jin,Yanlin Wang,Xiaolin Luo,Li X,Hui Zhong,Daohai Du,Cheng Luo,Huan Xiong
标识
DOI:10.1021/acs.analchem.5c08271
摘要
The histone acetyltransferases E1A binding protein of 300 kDa (p300) and its homologue cyclic AMP response element binding protein (CREB) binding protein (CBP) are potential targets for cancer treatment. However, no drugs targeting p300/CBP have yet been approved. Various bioassay methods have been developed to evaluate the inhibitory potency of the corresponding inhibitors. However, suitable assays for high-throughput screening (HTS) of novel inhibitors targeting the p300/CBP bromodomain are lacking. To address this shortcoming, we developed a fluorescence polarization (FP) assay. This employs a rationally designed strategy that exhibits excellent characteristics, making it suitable for the large-scale evaluation of compound bioactivity. To enable direct-to-biology application of this FP assay, we constructed an 840-compound library on microplates via the CuAAC reaction and performed in situ HTS. Using this platform, we rapidly identified a series of small molecules that target the p300 bromodomain and exhibit potent activity. Computational chemistry studies have provided insight into the binding mode of the inhibitors, while cellular studies and H3K27 acetylation levels demonstrate the favorable properties of these compounds against acute myeloid leukemia (AML). Overall, this platform demonstrates a multifunctional approach, integrating rational FP probe design with combinatorial chemistry. This closes a methodological gap in the rapid discovery of p300/CBP bromodomain inhibitors, providing a new paradigm for accelerating drug discovery.
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