核受体
配体(生物化学)
化学
构象变化
过氧化物酶体增殖物激活受体
受体
反激动剂
立体化学
生物物理学
生物
生物化学
转录因子
兴奋剂
基因
作者
Brian S. MacTavish,Di Zhu,Jinsai Shang,Qianzhen Shao,Yuanjun He,Zhongyue Yang,Theodore M. Kamenecka,Douglas J. Kojetin
标识
DOI:10.1038/s41467-025-57325-4
摘要
Nuclear receptors (NRs) are thought to dynamically alternate between transcriptionally active and repressive conformations, which are stabilized upon ligand binding. Most NR ligand series exhibit limited bias, primarily consisting of transcriptionally active agonists or neutral antagonists, but not repressive inverse agonists-a limitation that restricts understanding of the functional NR conformational ensemble. Here, we report a NR ligand series for peroxisome proliferator-activated receptor gamma (PPARγ) that spans a pharmacological spectrum from repression (inverse agonism) to activation (agonism) where subtle structural modifications switch compound activity. While crystal structures provide snapshots of the fully repressive state, NMR spectroscopy and conformation-activity relationship analysis reveals that compounds within the series shift the PPARγ conformational ensemble between transcriptionally active and repressive conformations that are natively populated in the apo/ligand-free ensemble. Our findings reveal a molecular framework for minimal chemical modifications that enhance PPARγ inverse agonism and elucidate their influence on the dynamic PPARγ conformational ensemble.
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