Quinazolinone-Peptido-Nitrophenyl-Derivatives as Potential Inhibitors of SARS-CoV-2 Main Protease

The severe acute respiratory syndrome coronavirus 2 main protease (SARS-CoV-2-M ) plays an essential role in viral replication, transcription, maturation, and entry into host cells. Furthermore, its cleavage specificity for viruses, but not humans, makes it a promising drug target for the treatment...

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Veröffentlicht in:Viruses 2023-01, Vol.15 (2), p.287
Hauptverfasser: Giang, Huynh-Nguyet-Huong, Chou, Feng-Pai, Chen, Ching-Yun, Chou, Shen-Chieh, Huang, Sheng-Cih, Wu, Tuoh, Hue, Bui-Thi-Buu, Lin, Hong-Cheu, Wu, Tung-Kung
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Sprache:eng
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Zusammenfassung:The severe acute respiratory syndrome coronavirus 2 main protease (SARS-CoV-2-M ) plays an essential role in viral replication, transcription, maturation, and entry into host cells. Furthermore, its cleavage specificity for viruses, but not humans, makes it a promising drug target for the treatment of coronavirus disease 2019 (COVID-19). In this study, a fragment-based strategy including potential antiviral quinazolinone moiety and glutamine- or glutamate-derived peptidomimetic backbone and positioned nitro functional groups was used to synthesize putative M inhibitors. Two compounds, and , exhibited anti-M enzymatic activity in a dose-dependent manner, with the calculated IC values of 22.47 ± 8.93 μM and 24.04 ± 0.67 μM, respectively. The bio-layer interferometer measured real-time binding. The dissociation kinetics of /M and /M also showed similar equilibrium dissociation constants ( ) of 2.60 × 10 M and 2.55 × 10 M, respectively, but exhibited distinct association/dissociation curves. Molecular docking of the two compounds revealed a similar binding cavity to the well-known M inhibitor , supporting a structure-function relationship. These findings may open a new avenue for developing new scaffolds for M inhibition and advance anti-coronavirus drug research.
ISSN:1999-4915
1999-4915
DOI:10.3390/v15020287