敌手
化学
药理学
体内
广告
骨骼肌
对抗
心肌细胞
下调和上调
受体
受体拮抗剂
药代动力学
转录因子
体外
核受体
药物发现
白细胞介素1受体拮抗剂
表型筛选
调解人
作者
Lingaiah Maram,Aurore-Cécile Valfort,Mohammad Homaidur Rahman,Hazem Essam Okda,Mohamed Elagawany,Henry Politte,Kevin Appourchaux,Gonzalo Bedia-Diaz,Isabelle Côté,Lamees Hegazy,Thomas P. Burris,Bahaa Elgendy
标识
DOI:10.1021/acs.jmedchem.5c02749
摘要
REV-ERBα is a nuclear receptor transcriptional repressor involved in circadian rhythm, metabolism, inflammation, and myogenesis. Antagonizing REV-ERBα has emerged as a promising therapeutic strategy, yet few compounds with favorable pharmacokinetic profiles have been identified since SR8278. Here, we report the discovery and optimization of BE2012, a 3-aminoquinazolinone antagonist identified through high-throughput screening and refined via systematic structure–activity relationship studies. BE2012 exhibited potent REV-ERBα antagonism (EC 50 = 0.285 μM), high nuclear receptor selectivity, minimal CNS off-target interactions, and improved ADME and pharmacokinetic properties, including a 22-fold longer half-life ( t 1 / 2 = 3.79 h) than SR8278. Molecular modeling revealed key hydrophobic and hydrogen-bonding interactions within the REV-ERBα ligand-binding pocket that stabilize BE2012 and explain its enhanced potency. In a murine model of acute muscle injury, BE2012 upregulated myogenic transcription factors and promoted muscle repair. Collectively, BE2012 represents a selective, pharmacokinetically favorable REV-ERBα/β antagonist with therapeutic potential in muscle regeneration and related diseases.
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