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Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development

Human metapneumovirus (HMPV) is a major pediatric respiratory pathogen with currently no specific treatment or licensed vaccine. Different strategies to prevent this infection have been evaluated, including live-attenuated vaccines (LAV) based on SH and/or G protein deletions. This approach showed p...

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Autores principales: Dubois, Julia, Pizzorno, Andrés, Cavanagh, Marie-Hélène, Padey, Blandine, Nicolas de Lamballerie, Claire, Uyar, Olus, Venable, Marie-Christine, Carbonneau, Julie, Traversier, Aurélien, Julien, Thomas, Lavigne, Sophie, Couture, Christian, Lina, Bruno, Hamelin, Marie-Ève, Terrier, Olivier, Rosa-Calatrava, Manuel, Boivin, Guy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6963613/
https://www.ncbi.nlm.nih.gov/pubmed/31671656
http://dx.doi.org/10.3390/vaccines7040164
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author Dubois, Julia
Pizzorno, Andrés
Cavanagh, Marie-Hélène
Padey, Blandine
Nicolas de Lamballerie, Claire
Uyar, Olus
Venable, Marie-Christine
Carbonneau, Julie
Traversier, Aurélien
Julien, Thomas
Lavigne, Sophie
Couture, Christian
Lina, Bruno
Hamelin, Marie-Ève
Terrier, Olivier
Rosa-Calatrava, Manuel
Boivin, Guy
author_facet Dubois, Julia
Pizzorno, Andrés
Cavanagh, Marie-Hélène
Padey, Blandine
Nicolas de Lamballerie, Claire
Uyar, Olus
Venable, Marie-Christine
Carbonneau, Julie
Traversier, Aurélien
Julien, Thomas
Lavigne, Sophie
Couture, Christian
Lina, Bruno
Hamelin, Marie-Ève
Terrier, Olivier
Rosa-Calatrava, Manuel
Boivin, Guy
author_sort Dubois, Julia
collection PubMed
description Human metapneumovirus (HMPV) is a major pediatric respiratory pathogen with currently no specific treatment or licensed vaccine. Different strategies to prevent this infection have been evaluated, including live-attenuated vaccines (LAV) based on SH and/or G protein deletions. This approach showed promising outcomes but has not been evaluated further using different viral strains. In that regard, we previously showed that different HMPV strains harbor distinct in vitro fusogenic and in vivo pathogenic phenotypes, possibly influencing the selection of vaccine strains. In this study, we investigated the putative contribution of the low conserved SH or G accessory proteins in such strain-dependent phenotypes and generated recombinant wild type (WT) and SH- or G-deleted viruses derived from two different patient-derived HMPV strains, A1/C-85473 and B2/CAN98-75. The ΔSH and ΔG deletions led to different strain-specific phenotypes in both LLC-MK2 cell and reconstituted human airway epithelium models. More interestingly, the ΔG-85473 and especially ΔSH-C-85473 recombinant viruses conferred significant protection against HMPV challenge and induced immunogenicity against a heterologous strain. In conclusion, our results show that the viral genetic backbone should be considered in the design of live-attenuated HMPV vaccines, and that a SH-deleted virus based on the A1/C-85473 HMPV strain could be a promising LAV candidate as it is both attenuated and protective in mice while being efficiently produced in a cell-based system.
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spelling pubmed-69636132020-01-27 Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development Dubois, Julia Pizzorno, Andrés Cavanagh, Marie-Hélène Padey, Blandine Nicolas de Lamballerie, Claire Uyar, Olus Venable, Marie-Christine Carbonneau, Julie Traversier, Aurélien Julien, Thomas Lavigne, Sophie Couture, Christian Lina, Bruno Hamelin, Marie-Ève Terrier, Olivier Rosa-Calatrava, Manuel Boivin, Guy Vaccines (Basel) Article Human metapneumovirus (HMPV) is a major pediatric respiratory pathogen with currently no specific treatment or licensed vaccine. Different strategies to prevent this infection have been evaluated, including live-attenuated vaccines (LAV) based on SH and/or G protein deletions. This approach showed promising outcomes but has not been evaluated further using different viral strains. In that regard, we previously showed that different HMPV strains harbor distinct in vitro fusogenic and in vivo pathogenic phenotypes, possibly influencing the selection of vaccine strains. In this study, we investigated the putative contribution of the low conserved SH or G accessory proteins in such strain-dependent phenotypes and generated recombinant wild type (WT) and SH- or G-deleted viruses derived from two different patient-derived HMPV strains, A1/C-85473 and B2/CAN98-75. The ΔSH and ΔG deletions led to different strain-specific phenotypes in both LLC-MK2 cell and reconstituted human airway epithelium models. More interestingly, the ΔG-85473 and especially ΔSH-C-85473 recombinant viruses conferred significant protection against HMPV challenge and induced immunogenicity against a heterologous strain. In conclusion, our results show that the viral genetic backbone should be considered in the design of live-attenuated HMPV vaccines, and that a SH-deleted virus based on the A1/C-85473 HMPV strain could be a promising LAV candidate as it is both attenuated and protective in mice while being efficiently produced in a cell-based system. MDPI 2019-10-30 /pmc/articles/PMC6963613/ /pubmed/31671656 http://dx.doi.org/10.3390/vaccines7040164 Text en © 2019 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
Dubois, Julia
Pizzorno, Andrés
Cavanagh, Marie-Hélène
Padey, Blandine
Nicolas de Lamballerie, Claire
Uyar, Olus
Venable, Marie-Christine
Carbonneau, Julie
Traversier, Aurélien
Julien, Thomas
Lavigne, Sophie
Couture, Christian
Lina, Bruno
Hamelin, Marie-Ève
Terrier, Olivier
Rosa-Calatrava, Manuel
Boivin, Guy
Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title_full Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title_fullStr Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title_full_unstemmed Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title_short Strain-Dependent Impact of G and SH Deletions Provide New Insights for Live-Attenuated HMPV Vaccine Development
title_sort strain-dependent impact of g and sh deletions provide new insights for live-attenuated hmpv vaccine development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6963613/
https://www.ncbi.nlm.nih.gov/pubmed/31671656
http://dx.doi.org/10.3390/vaccines7040164
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