化学
抗雄激素
三氟甲基
硝基
雄激素受体
胺气处理
雄激素
敌手
硝基化合物
立体化学
药物化学
药理学
内分泌学
前列腺癌
内科学
受体
有机化学
生物化学
激素
烷基
癌症
医学
作者
Huating Wang,Xuwen Wang,Haiyang Zhong,Lvtao Cai,Weitao Fu,Xin Chai,Jianing Liao,Rong Sheng,Luhu Shan,Xiaohong Xu,Lei Xu,Peichen Pan,Tingjun Hou,Dan Li
标识
DOI:10.1021/acs.jmedchem.4c01970
摘要
The transformation of clinical androgen receptor (AR) antagonists into agonists driven by AR mutations poses a significant challenge in treating prostate cancer (PCa). Novel anti-AR therapeutics combating mutation-induced resistance are required. Herein, by combining structure-based virtual screening and biological evaluation, a high-affinity agonist E10 was first discovered. Then guided by the representative conformation of State 1 at the free energy landscape, the structural optimization of E10 was performed, and pure AR antagonists EL15 (IC 50 = 0.94 μM) and EF2 (IC 50 = 0.30 μM) were successfully identified. Both can antagonize wild-type and variant drug-resistant ARs. Therein, EF2 demonstrated potent inhibition of the AR pathway and effectively suppressed tumor growth in a C4–2B xenograft mouse model following oral administration. Further molecular dynamics simulation and mutagenesis studies revealed atomic insights into the mode of action of EF2 which may serve as a novel lead compound for developing therapeutics against AR-driven PCa.
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