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A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM

Partial cleavage of a dengue virus envelope protein, prM, by furin results in a mixture of extracellular particles with variable levels of maturation and infectivity. Partially mature particles can infect leukocytes via interaction between the prM-anti-prM antibody complex with Fcγ receptors. Known...

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Autores principales: Keelapang, Poonsook, Supasa, Piyada, Sriburi, Rungtawan, Puttikhunt, Chunya, Cardosa, Jane, Kasinrerk, Watchara, Malasit, Prida, Sittisombut, Nopporn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742851/
https://www.ncbi.nlm.nih.gov/pubmed/36455752
http://dx.doi.org/10.1016/j.virusres.2022.199015
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author Keelapang, Poonsook
Supasa, Piyada
Sriburi, Rungtawan
Puttikhunt, Chunya
Cardosa, Jane
Kasinrerk, Watchara
Malasit, Prida
Sittisombut, Nopporn
author_facet Keelapang, Poonsook
Supasa, Piyada
Sriburi, Rungtawan
Puttikhunt, Chunya
Cardosa, Jane
Kasinrerk, Watchara
Malasit, Prida
Sittisombut, Nopporn
author_sort Keelapang, Poonsook
collection PubMed
description Partial cleavage of a dengue virus envelope protein, prM, by furin results in a mixture of extracellular particles with variable levels of maturation and infectivity. Partially mature particles can infect leukocytes via interaction between the prM-anti-prM antibody complex with Fcγ receptors. Known prM epitopes involved in antibody-mediated infection are localized to the pr domain. In this study, a group of murine anti-prM monoclonal antibodies with strong infection-enhancing activity was found to reduce the focus size of subsets of multiple dengue serotypes that they could enhance. By employing sets of overlapping peptides, four antibodies recognizing 2-mercaptoethanol-insensitive epitopes were mapped to a common tetrapeptide located distantly in the b-c loop and furin binding site. Substitution mutations of each, or both, of the tetrapeptides in virus-like particles, however, failed to reduce binding. Further mapping experiments were performed using immature virus-like particles with abolished furin binding site to minimize the differential influence of various pr substitutions on pr-M cleavage. Reduction of antibody binding was detected when single alanine substitutions were introduced into the ‘a’ strand and ‘c' strand of pr domain. These findings suggest that the pr ‘a and c' strands region is the major binding site of these unusual focus size-reducing anti-prM antibodies.
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spelling pubmed-97428512023-01-02 A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM Keelapang, Poonsook Supasa, Piyada Sriburi, Rungtawan Puttikhunt, Chunya Cardosa, Jane Kasinrerk, Watchara Malasit, Prida Sittisombut, Nopporn Virus Res Article Partial cleavage of a dengue virus envelope protein, prM, by furin results in a mixture of extracellular particles with variable levels of maturation and infectivity. Partially mature particles can infect leukocytes via interaction between the prM-anti-prM antibody complex with Fcγ receptors. Known prM epitopes involved in antibody-mediated infection are localized to the pr domain. In this study, a group of murine anti-prM monoclonal antibodies with strong infection-enhancing activity was found to reduce the focus size of subsets of multiple dengue serotypes that they could enhance. By employing sets of overlapping peptides, four antibodies recognizing 2-mercaptoethanol-insensitive epitopes were mapped to a common tetrapeptide located distantly in the b-c loop and furin binding site. Substitution mutations of each, or both, of the tetrapeptides in virus-like particles, however, failed to reduce binding. Further mapping experiments were performed using immature virus-like particles with abolished furin binding site to minimize the differential influence of various pr substitutions on pr-M cleavage. Reduction of antibody binding was detected when single alanine substitutions were introduced into the ‘a’ strand and ‘c' strand of pr domain. These findings suggest that the pr ‘a and c' strands region is the major binding site of these unusual focus size-reducing anti-prM antibodies. Elsevier 2022-11-29 /pmc/articles/PMC9742851/ /pubmed/36455752 http://dx.doi.org/10.1016/j.virusres.2022.199015 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Keelapang, Poonsook
Supasa, Piyada
Sriburi, Rungtawan
Puttikhunt, Chunya
Cardosa, Jane
Kasinrerk, Watchara
Malasit, Prida
Sittisombut, Nopporn
A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title_full A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title_fullStr A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title_full_unstemmed A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title_short A group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of Dengue Virus prM
title_sort group of infection-enhancing and focus size-reducing monoclonal antibodies recognized an ‘a and c’ strands epitope in the pr domain of dengue virus prm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9742851/
https://www.ncbi.nlm.nih.gov/pubmed/36455752
http://dx.doi.org/10.1016/j.virusres.2022.199015
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