In-silico design of a potential inhibitor of SARS-CoV-2 S protein.

Título

In-silico design of a potential inhibitor of SARS-CoV-2 S protein.

Autor

Grijesh Jaiswal, Veerendra Kumar

Descripción

The SARS-CoV-2 virus has caused a pandemic and is public health emergency of international concern. As of now, no registered therapies are available for treatment of coronavirus infection. The viral infection depends on the attachment of spike (S) glycoprotein to human cell receptor angiotensin-converting enzyme 2 (ACE2). We have designed a protein inhibitor (ΔABP-D25Y) targeting S protein using computational approach. The inhibitor consists of two α helical peptides homologues to protease domain (PD) of ACE2. Docking studies and molecular dynamic simulation revealed that the inhibitor binds exclusively at the ACE2 binding site of S protein. The computed binding affinity of the inhibitor is higher than the ACE2 and thus will likely out compete ACE2 for binding to S protein. Hence, the proposed inhibitor ΔABP-D25Y could be a potential blocker of S protein and receptor binding domain (RBD) attachment.

Fecha

2020

Identificador

10.1371/journal.pone.0240004

Fuente

Epidemiology and Health

Editor

Korean Society of Epidemiology

Cobertura

Science, Medicine

Archivos

https://socictopen.socict.org/files/to_import/pdfs/b74527fe8f1990d3ed2b40ff0fa8eea2.pdf

Colección

Citación

Grijesh Jaiswal, Veerendra Kumar, “In-silico design of a potential inhibitor of SARS-CoV-2 S protein.,” SOCICT Open, consulta 18 de abril de 2026, https://socictopen.socict.org/items/show/6878.

Formatos de Salida

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