合理设计
生物信息学
化学
TLR7型
药理学
灵活性(工程)
调节器
效力
敌手
行动方式
计算生物学
分子模型
立体化学
受体
结构-活动关系
药物设计
选择性
体外
结合位点
生物化学
副作用(计算机科学)
数量结构-活动关系
作者
Peng Yao,Xing Li,Li Wang,Mingge Song,Tianming Yu,Zuguo Zheng,Yue Zhao,Jiaxing Li,Dawei Wang,Yasheng Zhu,Yunfei Hou,Jiayu Ding,Hao Shen,Guoyu Zhang,Meijie Ji,Hua Yang,Ping Li,Zhihong Liu,Peng Yang
标识
DOI:10.1021/acs.jmedchem.5c02121
摘要
The abnormal activation of TLR7 is considered to be highly correlated with autoimmune diseases. Since the binding mode of antagonists and HTLR7 is still unclear, we constructed an “opened-form” HTLR7 in silico to explore the common binding mode of known antagonists. A general skeleton was summarized for the TLR7 antagonist, which consists of three parts, and design strategies for them were proposed. Moreover, based on the flexibility of the Q354 side chain, the concepts of induced and noninduced warheads were put forward, while the comparison of them elucidated the importance of forming hydrophobic interactions with the S1 pocket. Finally, an imidazo[1,2-a]pyridine-based compound, 44#, was obtained, which achieves selectivity toward TLR7 and subnanomolar potency on TLR7. In the imiquimod-induced psoriasis mice model, both doses of 44# showed good therapeutic effects. In addition, 44# effectively reduced the mRNA level of c-Rel, which acts as a key regulator of TLR7-related skin inflammation.
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