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Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus

Chikungunya virus (CHIKV) has repeatedly spread via the bite of an infected mosquito and affected more than 100 countries. The disease poses threats to public health and the economy in the infected locations. Many efforts have been devoted to identifying compounds that could inhibit CHIKV. Unfortuna...

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Autores principales: Hwu, Jih Ru, Roy, Animesh, Tsay, Shwu-Chen, Huang, Wen-Chieh, Lin, Chun-Cheng, Hwang, Kuo Chu, Hu, Yu-Chen, Shieh, Fa-Kuen, Leyssen, Pieter, Neyts, Johan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9322071/
https://www.ncbi.nlm.nih.gov/pubmed/35886992
http://dx.doi.org/10.3390/ijms23147646
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author Hwu, Jih Ru
Roy, Animesh
Tsay, Shwu-Chen
Huang, Wen-Chieh
Lin, Chun-Cheng
Hwang, Kuo Chu
Hu, Yu-Chen
Shieh, Fa-Kuen
Leyssen, Pieter
Neyts, Johan
author_facet Hwu, Jih Ru
Roy, Animesh
Tsay, Shwu-Chen
Huang, Wen-Chieh
Lin, Chun-Cheng
Hwang, Kuo Chu
Hu, Yu-Chen
Shieh, Fa-Kuen
Leyssen, Pieter
Neyts, Johan
author_sort Hwu, Jih Ru
collection PubMed
description Chikungunya virus (CHIKV) has repeatedly spread via the bite of an infected mosquito and affected more than 100 countries. The disease poses threats to public health and the economy in the infected locations. Many efforts have been devoted to identifying compounds that could inhibit CHIKV. Unfortunately, successful clinical candidates have not been found yet. Computations through the simulating recognition process were performed on complexation of the nsP3 protein of CHIKV with the structures of triply conjugated drug lead candidates. The outcomes provided the aid on rational design of functionalized quinazoline-(α-substituted coumarin)-arylsulfonate compounds to inhibit CHIKV in Vero cells. The molecular docking studies showed a void space around the β carbon atom of coumarin when a substituent was attached at the α position. The formed vacancy offered a good chance for a Michael addition to take place owing to steric and electronic effects. The best conjugate containing a quinazolinone moiety exhibited potency with EC(50) = 6.46 μM, low toxicity with CC(50) = 59.7 μM, and the selective index (SI) = 9.24. Furthermore, the corresponding 4-anilinoquinazoline derivative improved the anti-CHIKV potency to EC(50) = 3.84 μM, CC(50) = 72.3 μM, and SI = 18.8. The conjugate with 4-anilinoquinazoline exhibited stronger binding affinity towards the macro domain than that with quinazolinone via hydrophobic and hydrogen bond interactions.
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spelling pubmed-93220712022-07-27 Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus Hwu, Jih Ru Roy, Animesh Tsay, Shwu-Chen Huang, Wen-Chieh Lin, Chun-Cheng Hwang, Kuo Chu Hu, Yu-Chen Shieh, Fa-Kuen Leyssen, Pieter Neyts, Johan Int J Mol Sci Article Chikungunya virus (CHIKV) has repeatedly spread via the bite of an infected mosquito and affected more than 100 countries. The disease poses threats to public health and the economy in the infected locations. Many efforts have been devoted to identifying compounds that could inhibit CHIKV. Unfortunately, successful clinical candidates have not been found yet. Computations through the simulating recognition process were performed on complexation of the nsP3 protein of CHIKV with the structures of triply conjugated drug lead candidates. The outcomes provided the aid on rational design of functionalized quinazoline-(α-substituted coumarin)-arylsulfonate compounds to inhibit CHIKV in Vero cells. The molecular docking studies showed a void space around the β carbon atom of coumarin when a substituent was attached at the α position. The formed vacancy offered a good chance for a Michael addition to take place owing to steric and electronic effects. The best conjugate containing a quinazolinone moiety exhibited potency with EC(50) = 6.46 μM, low toxicity with CC(50) = 59.7 μM, and the selective index (SI) = 9.24. Furthermore, the corresponding 4-anilinoquinazoline derivative improved the anti-CHIKV potency to EC(50) = 3.84 μM, CC(50) = 72.3 μM, and SI = 18.8. The conjugate with 4-anilinoquinazoline exhibited stronger binding affinity towards the macro domain than that with quinazolinone via hydrophobic and hydrogen bond interactions. MDPI 2022-07-11 /pmc/articles/PMC9322071/ /pubmed/35886992 http://dx.doi.org/10.3390/ijms23147646 Text en © 2022 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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hwu, Jih Ru
Roy, Animesh
Tsay, Shwu-Chen
Huang, Wen-Chieh
Lin, Chun-Cheng
Hwang, Kuo Chu
Hu, Yu-Chen
Shieh, Fa-Kuen
Leyssen, Pieter
Neyts, Johan
Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title_full Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title_fullStr Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title_full_unstemmed Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title_short Computer-Aided Design and Synthesis of (Functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate Conjugates against Chikungunya Virus
title_sort computer-aided design and synthesis of (functionalized quinazoline)–(α-substituted coumarin)–arylsulfonate conjugates against chikungunya virus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9322071/
https://www.ncbi.nlm.nih.gov/pubmed/35886992
http://dx.doi.org/10.3390/ijms23147646
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