化学
溴尿嘧啶
生物利用度
药理学
对偶(语法数字)
药代动力学
药物发现
体外
酶抑制剂
结构-活动关系
生物活性
体内
生物化学
BRD4
作者
Zonglong Chen,Qiongyu Shi,Yan Zhang,Hanqi Wang,Zihan Li,Ying Zhang,Cheng Zhang,Yujie Wang,Hui Shen,Jian Ding,Xun Huang,Yanfen Fang,Y Xu,Hong Yang,Yingxia Li
标识
DOI:10.1021/acs.jmedchem.6c00468
摘要
Dual inhibition of bromodomain and extra terminal (BET) and E1A-binding protein (p300)/CREB-binding protein (CBP) bromodomains has shown superior antiproliferative activity compared to selectively targeting either family alone. Despite this therapeutic promise, progress in developing dual BET and p300/CBP bromodomain inhibitors remains limited, with only one candidate, NEO2734, having advanced to clinical studies. In this study, we replaced the pyridone-based acetyl-lysine mimic in NEO2734 with a pyrrolo[2,3- c ]pyridinone fragment, which engages a conserved asparagine residue via a bidentate hydrogen-bond interaction. Through systematic structure–activity relationship exploration, we identified CZL-149, which exhibits potent activity against BET and p300/CBP bromodomains as well as multiple myeloma OPM-2 cells (IC 50 = 3.3 nM). CZL-149 displays favorable drug-like properties and metabolic profile, achieving 107% oral bioavailability in mice. Importantly, CZL-149 outperformed NEO2734 in both antitumor efficacy (TGI = 78%) and safety in vivo, highlighting its potential as an advanced preclinical candidate worthy of further development.
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