<p>The coronavirus membrane protein (M) is the main organizer of coronavirus assembly<sup><CitationRef AdditionalCitationIDS="CR2" CitationID="CR1">1</CitationRef>–<CitationRef CitationID="CR3">3</CitationRef></sup>. Here, we report on an M-targeting molecule, CIM-834, that blocks the assembly of SARS-CoV-2. CIM-834 was obtained through high-throughput phenotypic antiviral screening followed by medicinal-chemistry efforts and target elucidation. CIM-834 inhibits the replication of SARS-CoV-2 (including a broad panel of variants) and SARS-CoV. In SCID mice and Syrian hamsters intranasally infected with SARS-CoV-2, oral treatment reduced lung viral titres to nearly undetectable levels, even (as shown in mice) when treatment was delayed until 24 h before the end point. Treatment of infected hamsters prevented transmission to untreated sentinels. Transmission electron microscopy studies show that virion assembly is completely absent in cells treated with CIM-834. Single-particle cryo-electron microscopy reveals that CIM-834 binds and stabilizes the M protein in its short form, thereby preventing the conformational switch to the long form, which is required for successful particle assembly. In conclusion, we have discovered a new druggable target in the replication cycle of coronaviruses and a small molecule that potently inhibits it.</p>

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A coronavirus assembly inhibitor that targets the viral membrane protein

  • Manon Laporte,
  • Dirk Jochmans,
  • Dorothée Bardiot,
  • Lowiese Desmarets,
  • Oliver J. Debski-Antoniak,
  • Giulia Mizzon,
  • Rana Abdelnabi,
  • Pieter Leyssen,
  • Winston Chiu,
  • Zhikuan Zhang,
  • Norimichi Nomura,
  • Sandro Boland,
  • Umeharu Ohto,
  • Yannick Stahl,
  • Jurgen Wuyts,
  • Steven De Jonghe,
  • Annelies Stevaert,
  • Martijn J. van Hemert,
  • Brenda W. Bontes,
  • Patrick Wanningen,
  • G. J. Mirjam Groenewold,
  • Aneta Zegar,
  • Katarzyna Owczarek,
  • Sanjata Joshi,
  • Mohamed Koukni,
  • Philippe Arzel,
  • Hugo Klaassen,
  • Jean-Christophe Vanherck,
  • Ilse Vandecaetsbeek,
  • Niels Cremers,
  • Kim Donckers,
  • Thibault Francken,
  • Tina Van Buyten,
  • Jasper Rymenants,
  • Joost Schepers,
  • Krzysztof Pyrc,
  • Rolf Hilgenfeld,
  • Jean Dubuisson,
  • Berend-Jan Bosch,
  • Frank Van Kuppeveld,
  • Cecilia Eydoux,
  • Etienne Decroly,
  • Bruno Canard,
  • Lieve Naesens,
  • Birgit Weynand,
  • Eric J. Snijder,
  • Sandrine Belouzard,
  • Toshiyuki Shimizu,
  • Ralf Bartenschlager,
  • Daniel L. Hurdiss,
  • Arnaud Marchand,
  • Patrick Chaltin,
  • Johan Neyts

摘要

The coronavirus membrane protein (M) is the main organizer of coronavirus assembly13. Here, we report on an M-targeting molecule, CIM-834, that blocks the assembly of SARS-CoV-2. CIM-834 was obtained through high-throughput phenotypic antiviral screening followed by medicinal-chemistry efforts and target elucidation. CIM-834 inhibits the replication of SARS-CoV-2 (including a broad panel of variants) and SARS-CoV. In SCID mice and Syrian hamsters intranasally infected with SARS-CoV-2, oral treatment reduced lung viral titres to nearly undetectable levels, even (as shown in mice) when treatment was delayed until 24 h before the end point. Treatment of infected hamsters prevented transmission to untreated sentinels. Transmission electron microscopy studies show that virion assembly is completely absent in cells treated with CIM-834. Single-particle cryo-electron microscopy reveals that CIM-834 binds and stabilizes the M protein in its short form, thereby preventing the conformational switch to the long form, which is required for successful particle assembly. In conclusion, we have discovered a new druggable target in the replication cycle of coronaviruses and a small molecule that potently inhibits it.