亲脂性
化学
模块化设计
兴奋剂
配体(生物化学)
体内
部分激动剂
胺气处理
药理学
立体化学
计算生物学
组合化学
生物化学
受体
有机化学
计算机科学
生物技术
操作系统
生物
医学
作者
Setsuo Fukuda,Taku Ikenogami,Kazuki Otake,Shohei Miwa,Katsuya Maeda,Tomoya Yamashita,Tasuku Inami,Masahiro Yokota,Yanhui Lu,Akira Suma,Yutaro Hirono,Naoki Ogawa,Teruhiko Inoue,Kazuhito Harada,Keishi Yamaguchi,Shota Akai,Akihiro Nomura,Tsuyoshi Adachi,Tsuyoshi Terawaki,Akane Suzukawa
标识
DOI:10.1021/acs.jmedchem.5c00872
摘要
A variety of RORγ inhibitors have been identified, including clinical compounds such as VTP-43742 and JTE-151. In contrast, RORγ agonists have been less explored and LYC-55716 is, to the best of our knowledge, the sole example reached a human clinical investigation. To generate a novel RORγ agonist, functionality switching from preceding RORγ inhibitors has been considered as a rational strategy. Such reported earlier attempts have been hampered by a loss of physicochemical properties to elevated lipophilicity. Starting from RORγ inhibitors, corresponding agonists were generated virtually to assess their druglike characters. Based on their ligand efficiency and lipophilicity, a cyclic amine carboxylate core was regarded as the best for maintaining favorable physicochemical properties. This scaffold was subjected to final optimization by attaching function-oriented modules retaining druglike properties. After multiparameter optimization, novel selective RORγ agonists were discovered, and their in vivo effects were confirmed in a syngeneic mouse model after oral administration.
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