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Protein & Cell ; (12): 37-50, 2023.
Article Dans Anglais | WPRIM | ID: wpr-971609

Résumé

The twenty-first century has already recorded more than ten major epidemics or pandemics of viral disease, including the devastating COVID-19. Novel effective antivirals with broad-spectrum coverage are urgently needed. Herein, we reported a novel broad-spectrum antiviral compound PAC5. Oral administration of PAC5 eliminated HBV cccDNA and reduced the large antigen load in distinct mouse models of HBV infection. Strikingly, oral administration of PAC5 in a hamster model of SARS-CoV-2 omicron (BA.1) infection significantly decreases viral loads and attenuates lung inflammation. Mechanistically, PAC5 binds to a pocket near Asp49 in the RNA recognition motif of hnRNPA2B1. PAC5-bound hnRNPA2B1 is extensively activated and translocated to the cytoplasm where it initiates the TBK1-IRF3 pathway, leading to the production of type I IFNs with antiviral activity. Our results indicate that PAC5 is a novel small-molecule agonist of hnRNPA2B1, which may have a role in dealing with emerging infectious diseases now and in the future.


Sujets)
Animaux , Souris , Antiviraux/pharmacologie , COVID-19 , Virus de l'hépatite B , Interféron de type I/métabolisme , SARS-CoV-2/effets des médicaments et des substances chimiques , Ribonucléoprotéine nucléaire hétérogène du groupe A-B/antagonistes et inhibiteurs
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