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Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses

Zika virus (ZIKV), which is associated with severe diseases in humans, has spread rapidly and globally since its emergence. ZIKV and dengue virus (DENV) are closely related, and antibody-dependent enhancement (ADE) of infection between cocirculating ZIKV and DENV may exacerbate disease. Despite thes...

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Autores principales: Shin, Hye Jin, Kim, Mi-Hwa, Lee, Joo-Youn, Hwang, Insu, Yoon, Gun Young, Kim, Hae Soo, Kwon, Young-Chan, Ahn, Dae-Gyun, Kim, Kyun-Do, Kim, Bum-Tae, Kim, Seong-Jun, Kim, Chonsaeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000814/
https://www.ncbi.nlm.nih.gov/pubmed/33800763
http://dx.doi.org/10.3390/microorganisms9030545
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author Shin, Hye Jin
Kim, Mi-Hwa
Lee, Joo-Youn
Hwang, Insu
Yoon, Gun Young
Kim, Hae Soo
Kwon, Young-Chan
Ahn, Dae-Gyun
Kim, Kyun-Do
Kim, Bum-Tae
Kim, Seong-Jun
Kim, Chonsaeng
author_facet Shin, Hye Jin
Kim, Mi-Hwa
Lee, Joo-Youn
Hwang, Insu
Yoon, Gun Young
Kim, Hae Soo
Kwon, Young-Chan
Ahn, Dae-Gyun
Kim, Kyun-Do
Kim, Bum-Tae
Kim, Seong-Jun
Kim, Chonsaeng
author_sort Shin, Hye Jin
collection PubMed
description Zika virus (ZIKV), which is associated with severe diseases in humans, has spread rapidly and globally since its emergence. ZIKV and dengue virus (DENV) are closely related, and antibody-dependent enhancement (ADE) of infection between cocirculating ZIKV and DENV may exacerbate disease. Despite these serious threats, there are currently no approved antiviral drugs against ZIKV and DENV. The NS2B-NS3 viral protease is an attractive antiviral target because it plays a pivotal role in polyprotein cleavage, which is required for viral replication. Thus, we sought to identify novel inhibitors of the NS2B-NS3 protease. To that aim, we performed structure-based virtual screening using 467,000 structurally diverse chemical compounds. Then, a fluorescence-based protease inhibition assay was used to test whether the selected candidates inhibited ZIKV protease activity. Among the 123 candidate inhibitors selected from virtual screening, compound 1 significantly inhibited ZIKV NS2B-NS3 protease activity in vitro. In addition, compound 1 effectively inhibited ZIKV and DENV infection of human cells. Molecular docking analysis suggested that compound 1 binds to the NS2B-NS3 protease of ZIKV and DENV. Thus, compound 1 could be used as a new therapeutic option for the development of more potent antiviral drugs against both ZIKV and DENV, reducing the risks of ADE.
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spelling pubmed-80008142021-03-28 Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses Shin, Hye Jin Kim, Mi-Hwa Lee, Joo-Youn Hwang, Insu Yoon, Gun Young Kim, Hae Soo Kwon, Young-Chan Ahn, Dae-Gyun Kim, Kyun-Do Kim, Bum-Tae Kim, Seong-Jun Kim, Chonsaeng Microorganisms Article Zika virus (ZIKV), which is associated with severe diseases in humans, has spread rapidly and globally since its emergence. ZIKV and dengue virus (DENV) are closely related, and antibody-dependent enhancement (ADE) of infection between cocirculating ZIKV and DENV may exacerbate disease. Despite these serious threats, there are currently no approved antiviral drugs against ZIKV and DENV. The NS2B-NS3 viral protease is an attractive antiviral target because it plays a pivotal role in polyprotein cleavage, which is required for viral replication. Thus, we sought to identify novel inhibitors of the NS2B-NS3 protease. To that aim, we performed structure-based virtual screening using 467,000 structurally diverse chemical compounds. Then, a fluorescence-based protease inhibition assay was used to test whether the selected candidates inhibited ZIKV protease activity. Among the 123 candidate inhibitors selected from virtual screening, compound 1 significantly inhibited ZIKV NS2B-NS3 protease activity in vitro. In addition, compound 1 effectively inhibited ZIKV and DENV infection of human cells. Molecular docking analysis suggested that compound 1 binds to the NS2B-NS3 protease of ZIKV and DENV. Thus, compound 1 could be used as a new therapeutic option for the development of more potent antiviral drugs against both ZIKV and DENV, reducing the risks of ADE. MDPI 2021-03-06 /pmc/articles/PMC8000814/ /pubmed/33800763 http://dx.doi.org/10.3390/microorganisms9030545 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Shin, Hye Jin
Kim, Mi-Hwa
Lee, Joo-Youn
Hwang, Insu
Yoon, Gun Young
Kim, Hae Soo
Kwon, Young-Chan
Ahn, Dae-Gyun
Kim, Kyun-Do
Kim, Bum-Tae
Kim, Seong-Jun
Kim, Chonsaeng
Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title_full Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title_fullStr Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title_full_unstemmed Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title_short Structure-Based Virtual Screening: Identification of a Novel NS2B-NS3 Protease Inhibitor with Potent Antiviral Activity against Zika and Dengue Viruses
title_sort structure-based virtual screening: identification of a novel ns2b-ns3 protease inhibitor with potent antiviral activity against zika and dengue viruses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000814/
https://www.ncbi.nlm.nih.gov/pubmed/33800763
http://dx.doi.org/10.3390/microorganisms9030545
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