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1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease

The nonstructural (NS) protein NS3/4A protease is a critical factor for hepatitis C virus (HCV) maturation that requires activation by NS4A. Synthetic peptide mutants of NS4A were found to inhibit NS3 function. The bridging from peptide inhibitors to heterocyclic peptidomimetics of NS4A has not been...

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Autores principales: Omar, Abdelsattar M., Elfaky, Mahmoud A., Arold, Stefan T., Soror, Sameh H., Khayat, Maan T., Asfour, Hani Z., Bamane, Faida H., El-Araby, Moustafa E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175367/
https://www.ncbi.nlm.nih.gov/pubmed/32245218
http://dx.doi.org/10.3390/biom10030479
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author Omar, Abdelsattar M.
Elfaky, Mahmoud A.
Arold, Stefan T.
Soror, Sameh H.
Khayat, Maan T.
Asfour, Hani Z.
Bamane, Faida H.
El-Araby, Moustafa E.
author_facet Omar, Abdelsattar M.
Elfaky, Mahmoud A.
Arold, Stefan T.
Soror, Sameh H.
Khayat, Maan T.
Asfour, Hani Z.
Bamane, Faida H.
El-Araby, Moustafa E.
author_sort Omar, Abdelsattar M.
collection PubMed
description The nonstructural (NS) protein NS3/4A protease is a critical factor for hepatitis C virus (HCV) maturation that requires activation by NS4A. Synthetic peptide mutants of NS4A were found to inhibit NS3 function. The bridging from peptide inhibitors to heterocyclic peptidomimetics of NS4A has not been considered in the literature and, therefore, we decided to explore this strategy for developing a new class of NS3 inhibitors. In this report, a structure-based design approach was used to convert the bound form of NS4A into 1H-imidazole-2,5-dicarboxamide derivatives as first generation peptidomimetics. This scaffold mimics the buried amino acid sequence Ile-25` to Arg-28` at the core of NS4A(21`–33`) needed to activate the NS3 protease. Some of the synthesized compounds (Coded MOC) were able to compete with and displace NS4A(21`–33`) for binding to NS3. For instance, N(5)-(4-guanidinobutyl)-N(2)-(n-hexyl)-1H-imidazole-2,5-dicarboxamide (MOC-24) inhibited the binding of NS4A(21`–33`) with a competition half maximal inhibitory concentration (IC(50)) of 1.9 ± 0.12 µM in a fluorescence anisotropy assay and stabilized the denaturation of NS3 by increasing the aggregation temperature (40% compared to NS4A(21`–33`)). MOC-24 also inhibited NS3 protease activity in a fluorometric assay. Molecular dynamics simulations were conducted to rationalize the differences in structure–activity relationship (SAR) between the active MOC-24 and the inactive MOC-26. Our data show that MOC compounds are possibly the first examples of NS4A peptidomimetics that have demonstrated promising activities against NS3 proteins.
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spelling pubmed-71753672020-04-28 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease Omar, Abdelsattar M. Elfaky, Mahmoud A. Arold, Stefan T. Soror, Sameh H. Khayat, Maan T. Asfour, Hani Z. Bamane, Faida H. El-Araby, Moustafa E. Biomolecules Article The nonstructural (NS) protein NS3/4A protease is a critical factor for hepatitis C virus (HCV) maturation that requires activation by NS4A. Synthetic peptide mutants of NS4A were found to inhibit NS3 function. The bridging from peptide inhibitors to heterocyclic peptidomimetics of NS4A has not been considered in the literature and, therefore, we decided to explore this strategy for developing a new class of NS3 inhibitors. In this report, a structure-based design approach was used to convert the bound form of NS4A into 1H-imidazole-2,5-dicarboxamide derivatives as first generation peptidomimetics. This scaffold mimics the buried amino acid sequence Ile-25` to Arg-28` at the core of NS4A(21`–33`) needed to activate the NS3 protease. Some of the synthesized compounds (Coded MOC) were able to compete with and displace NS4A(21`–33`) for binding to NS3. For instance, N(5)-(4-guanidinobutyl)-N(2)-(n-hexyl)-1H-imidazole-2,5-dicarboxamide (MOC-24) inhibited the binding of NS4A(21`–33`) with a competition half maximal inhibitory concentration (IC(50)) of 1.9 ± 0.12 µM in a fluorescence anisotropy assay and stabilized the denaturation of NS3 by increasing the aggregation temperature (40% compared to NS4A(21`–33`)). MOC-24 also inhibited NS3 protease activity in a fluorometric assay. Molecular dynamics simulations were conducted to rationalize the differences in structure–activity relationship (SAR) between the active MOC-24 and the inactive MOC-26. Our data show that MOC compounds are possibly the first examples of NS4A peptidomimetics that have demonstrated promising activities against NS3 proteins. MDPI 2020-03-21 /pmc/articles/PMC7175367/ /pubmed/32245218 http://dx.doi.org/10.3390/biom10030479 Text en © 2020 by the authors. 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/).
spellingShingle Article
Omar, Abdelsattar M.
Elfaky, Mahmoud A.
Arold, Stefan T.
Soror, Sameh H.
Khayat, Maan T.
Asfour, Hani Z.
Bamane, Faida H.
El-Araby, Moustafa E.
1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title_full 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title_fullStr 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title_full_unstemmed 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title_short 1H-Imidazole-2,5-Dicarboxamides as NS4A Peptidomimetics: Identification of a New Approach to Inhibit HCV-NS3 Protease
title_sort 1h-imidazole-2,5-dicarboxamides as ns4a peptidomimetics: identification of a new approach to inhibit hcv-ns3 protease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7175367/
https://www.ncbi.nlm.nih.gov/pubmed/32245218
http://dx.doi.org/10.3390/biom10030479
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