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Favipiravir strikes the SARS-CoV-2 at its Achilles heel, the RNA polymerase
Ashleigh Shannon; Barbara Selisko; Thi-Tuyet-Nhung Le; Johanna Huchting; Franck Touret; Genevieve Piorkowski; Veronique Fattorini; Francois Ferron; Etienne Decroly; Chris Meier; Bruno Coutard; Olve Peersen; Bruno Canard.
Affiliation
  • Ashleigh Shannon; CNRS
  • Barbara Selisko; Aix-Marseille University
  • Thi-Tuyet-Nhung Le; Aix-Marseille University
  • Johanna Huchting; University of Hamburg
  • Franck Touret; Aix-Marseille University
  • Genevieve Piorkowski; Aix-Marseille University
  • Veronique Fattorini; CNRS
  • Francois Ferron; Centre National de la Recherche Scientifique (CNRS)
  • Etienne Decroly; CNRS
  • Chris Meier; University of Hamburg
  • Bruno Coutard; Aix-Marseille University
  • Olve Peersen; Colorado State University
  • Bruno Canard; CNRS
Preprint in English | bioRxiv | ID: ppbiorxiv-098731
ABSTRACT
The ongoing Corona Virus Disease 2019 (COVID-19) pandemic, caused by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), has emphasized the urgent need for antiviral therapeutics. The viral RNA-dependent-RNA-polymerase (RdRp) is a promising target with polymerase inhibitors successfully used for the treatment of several viral diseases. Here we show that Favipiravir exerts an antiviral effect as a nucleotide analogue through a combination of chain termination, slowed RNA synthesis and lethal mutagenesis. The SARS-CoV RdRp complex is at least 10-fold more active than any other viral RdRp known. It possesses both unusually high nucleotide incorporation rates and high-error rates allowing facile insertion of Favipiravir into viral RNA, provoking C-to-U and G-to-A transitions in the already low cytosine content SARS-CoV-2 genome. The coronavirus RdRp complex represents an Achilles heel for SARS-CoV, supporting nucleoside analogues as promising candidates for the treatment of COVID-19.
License
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Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
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