A coronavirus assembly inhibitor that targets the viral membrane protein

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

Edité par CCSD ; Nature Publishing Group -

International audience. The coronavirus membrane protein (M) is the main organizer of coronavirus assembly1,2,3. 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.

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