Tytuł pozycji:
A coronavirus assembly inhibitor that targets the viral membrane protein
- Tytuł:
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A coronavirus assembly inhibitor that targets the viral membrane protein
- Autorzy:
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Neyts, Johan
Bontes, Brenda W.
Jochmans, Dirk
Leyssen, Pieter
van Hemert, Martijn J.
Owczarek, Katarzyna
De Jonghe, Steven
Chiu, Winston
Groenewold, G. J. Mirjam
Francken, Thibault
Van Buyten, Tina
Dubuisson, Jean
Wanningen, Patrick
Eydoux, Cecilia
Bartenschlager, Ralf
Hilgenfeld, Rolf
Nomura, Norimichi
Snijder, Eric J.
Bardiot, Dorothée
Weynand, Birgit
Rymenants, Jasper
Marchand, Arnaud
Vanherck, Jean-Christophe
Van Kuppeveld, Frank
Joshi, Sanjata
Vandecaetsbeek, Ilse
Stahl, Yannick
Naesens, Lieve
Debski-Antoniak, Oliver J.
Boland, Sandro
Desmarets, Lowiese
Zegar, Aneta
Mizzon, Giulia
Ohto, Umeharu
Zhang, Zhikuan
Stevaert, Annelies
Abdelnabi, Rana
Chaltin, Patrick
Laporte, Manon
Arzel, Philippe
Hurdiss, Daniel L.
Shimizu, Toshiyuki
Koukni, Mohamed
Belouzard, Sandrine
Schepers, Joost
Pyrć, Krzysztof
Bosch, Berend-Jan
Decroly, Etienne
Canard, Bruno
Cremers, Niels
Klaassen, Hugo
Donckers, Kim
Wuyts, Jurgen
- Data publikacji:
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2025
- Język:
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angielski
- ISBN, ISSN:
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00280836
- Prawa:
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http://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.pl
Udzielam licencji. Uznanie autorstwa - Użycie niekomercyjne - Bez utworów zależnych 4.0 Międzynarodowa
- Dostawca treści:
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Repozytorium Uniwersytetu Jagiellońskiego
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The coronavirus membrane protein (M) is the main organizer of coronavirus assemb. 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 eforts 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.