溴尿嘧啶
化学
药效团
调节器
部分
BRD4
表观遗传学
选择性
生物化学
配体(生物化学)
结合选择性
结构-活动关系
立体化学
组合化学
体外
基因
受体
催化作用
作者
Sarah M. Bronner,Jeremy Murray,F. Anthony Romero,Kwong Wah Lai,Vickie Tsui,Patrick Cyr,Maureen H. Beresini,Gladys de Leon Boenig,Zhongguo Chen,Edna F. Choo,Kevin Clark,Terry D. Crawford,Hariharan Jayaram,Susan Kaufman,Ruina Li,Yingjie Li,Jiangpeng Liao,Xiaorong Liang,Wenfeng Liu,Justin Q. Ly
标识
DOI:10.1021/acs.jmedchem.7b01372
摘要
The epigenetic regulator CBP/P300 presents a novel therapeutic target for oncology. Previously, we disclosed the development of potent and selective CBP bromodomain inhibitors by first identifying pharmacophores that bind the KAc region and then building into the LPF shelf. Herein, we report the "hybridization" of a variety of KAc-binding fragments with a tetrahydroquinoline scaffold that makes optimal interactions with the LPF shelf, imparting enhanced potency and selectivity to the hybridized ligand. To demonstrate the utility of our hybridization approach, two analogues containing unique Asn binders and the optimized tetrahydroquinoline moiety were rapidly optimized to yield single-digit nanomolar inhibitors of CBP with exquisite selectivity over BRD4(1) and the broader bromodomain family.
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