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| Título: | Thiol-based chemical probes exhibit antiviral activity against SARS-CoV-2 via allosteric disulfide disruption in the spike glycoprotein |
| Autor: | Shi, Yunlong Zeida, Ari Edwards, Caitlin Mallory, Michael L. Sastre, Santiago Machado, Matías R. Pickles, Raymond J. Fu, Ling Liu, Keke Yang, Jing Baric, Ralph S. Boucher, Richard C. Radi, Rafael Carroll, Kate S. |
| Tipo: | Artículo |
| Palabras clave: | SARS-CoV-2, Disulfide bonds, Redox biology, Spike glycoprotein, Thiol-based chemical probes |
| Descriptores: | REGULACIÓN ALOSTÉRICA, FARMACOLOGÍA, QUÍMICA, AMINO ALCOHOLES, ENZIMA CONVERTIDORA DE ANGIOTENSINA 2, METABOLISMO, GENÉTICA, ANTIVIRALES, SARS-CoV-2, LÍNEA CELULAR, DISULFUROS, RELACIÓN DOSIS-RESPUESTA A DROGA, COMPUESTOS DE SULFHIDRILO, GLICOPROTEÍNA DE LA ESPIGA DEL CORONAVIRUS, SIMULACIÓN DEL ACOPLAMIENTO MOLECULAR, MUCOSA NASAL, OXIDACIÓN-REDUCCIÓN, ÉTERES FENÍLICOS, PROTEÍNAS RECOMBINANTES, RECEPTORES VIRALES, CONFORMACIÓN PROTEICA EN HÉLICE ALFA, CONFORMACIÓN PROTEICA EN LÁMINA BETA, DOMINIOS Y MOTIVOS DE INTERACCIÓN DE PROTEÍNAS |
| Fecha de publicación: | 2022 |
| Resumen: | The development of small-molecules targeting different components of SARS-CoV-2 is a key strategy to complement antibody-based treatments and vaccination campaigns in managing the COVID-19 pandemic. Here, we show that two thiol-based chemical probes that act as reducing agents, P2119 and P2165, inhibit infection by human coronaviruses, including SARS-CoV-2, and decrease the binding of spike glycoprotein to its receptor, the angiotensin-converting enzyme 2 (ACE2). Proteomics and reactive cysteine profiling link the antiviral activity to the reduction of key disulfides, specifically by disruption of the Cys379-Cys432 and Cys391-Cys525 pairs distal to the receptor binding motif in the receptor binding domain (RBD) of the spike glycoprotein. Computational analyses provide insight into conformation changes that occur when these disulfides break or form, consistent with an allosteric role, and indicate that P2119/P2165 target a conserved hydrophobic binding pocket in the RBD with the benzyl thiol-reducing moiety pointed directly toward Cys432. These collective findings establish the vulnerability of human coronaviruses to thiol-based chemical probes and lay the groundwork for developing compounds of this class, as a strategy to inhibit the SARS-CoV-2 infection by shifting the spike glycoprotein redox scaffold. |
| Editorial: | National Academy of Sciences |
| EN: | Proceedings of the National Academy of Sciences of the United States of America. 2022;119(6) |
| Citación: | Shi Y, Zeida A, Edwards C y otros. Thiol-based chemical probes exhibit antiviral activity against SARS-CoV-2 via allosteric disulfide disruption in the spike glycoprotein. Proceedings of the National Academy of Sciences of the United States of America [en línea]. 2022;119(6). 9 p. |
| Licencia: | Licencia Creative Commons Atribución (CC - By 4.0) |
| Aparece en las colecciones: | Publicaciones Académicas y Científicas - Facultad de Medicina |
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| Thiol based chemical probes exhibit antiviral activity against SARS CoV2.pdf | Thiol based chemical probes exhibit antiviral activity against SARS CoV2 | 15,89 MB | Adobe PDF | Visualizar/Abrir |
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