Selected article for: "hydrophobic tail and lead compound"

Author: Jin, Zhenming; Zhao, Yao; Sun, Yuan; Zhang, Bing; Wang, Haofeng; Wu, Yan; Zhu, Yan; Zhu, Chen; Hu, Tianyu; Du, Xiaoyu; Duan, Yinkai; Yu, Jing; Yang, Xiaobao; Yang, Xiuna; Yang, Kailin; Liu, Xiang; Guddat, Luke W.; Xiao, Gengfu; Zhang, Leike; Yang, Haitao; Rao, Zihe
Title: Structural basis for the inhibition of SARS-CoV-2 main protease by antineoplastic drug Carmofur
  • Cord-id: tpp40j0g
  • Document date: 2020_4_28
  • ID: tpp40j0g
    Snippet: The antineoplastic drug Carmofur was shown to inhibit SARS-CoV-2 main protease (Mpro). Here the X-ray crystal structure of Mpro in complex with Carmofur reveals that the carbonyl reactive group of Carmofur is covalently bound to catalytic Cys145, whereas its fatty acid tail occupies the hydrophobic S2 subsite. Carmofur inhibits viral replication in cells (EC50 = 24.30 μM) and it is a promising lead compound to develop new antiviral treatment for COVID-19.
    Document: The antineoplastic drug Carmofur was shown to inhibit SARS-CoV-2 main protease (Mpro). Here the X-ray crystal structure of Mpro in complex with Carmofur reveals that the carbonyl reactive group of Carmofur is covalently bound to catalytic Cys145, whereas its fatty acid tail occupies the hydrophobic S2 subsite. Carmofur inhibits viral replication in cells (EC50 = 24.30 μM) and it is a promising lead compound to develop new antiviral treatment for COVID-19.

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