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Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation

Human metapneumovirus (hMPV) is a paramyxovirus that is a common cause of bronchiolitis and pneumonia in children less than five years of age. The hMPV fusion (F) glycoprotein is the primary target of neutralizing antibodies and is thus a critical vaccine antigen. To facilitate structure-based vacci...

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Autores principales: Más, Vicente, Rodriguez, Laura, Olmedillas, Eduardo, Cano, Olga, Palomo, Concepción, Terrón, María C., Luque, Daniel, Melero, José A., McLellan, Jason S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017722/
https://www.ncbi.nlm.nih.gov/pubmed/27611367
http://dx.doi.org/10.1371/journal.ppat.1005859
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author Más, Vicente
Rodriguez, Laura
Olmedillas, Eduardo
Cano, Olga
Palomo, Concepción
Terrón, María C.
Luque, Daniel
Melero, José A.
McLellan, Jason S.
author_facet Más, Vicente
Rodriguez, Laura
Olmedillas, Eduardo
Cano, Olga
Palomo, Concepción
Terrón, María C.
Luque, Daniel
Melero, José A.
McLellan, Jason S.
author_sort Más, Vicente
collection PubMed
description Human metapneumovirus (hMPV) is a paramyxovirus that is a common cause of bronchiolitis and pneumonia in children less than five years of age. The hMPV fusion (F) glycoprotein is the primary target of neutralizing antibodies and is thus a critical vaccine antigen. To facilitate structure-based vaccine design, we stabilized the ectodomain of the hMPV F protein in the postfusion conformation and determined its structure to a resolution of 3.3 Å by X-ray crystallography. The structure resembles an elongated cone and is very similar to the postfusion F protein from the related human respiratory syncytial virus (hRSV). In contrast, significant differences were apparent with the postfusion F proteins from other paramyxoviruses, such as human parainfluenza type 3 (hPIV3) and Newcastle disease virus (NDV). The high similarity of hMPV and hRSV postfusion F in two antigenic sites targeted by neutralizing antibodies prompted us to test for antibody cross-reactivity. The widely used monoclonal antibody 101F, which binds to antigenic site IV of hRSV F, was found to cross-react with hMPV postfusion F and neutralize both hRSV and hMPV. Despite the cross-reactivity of 101F and the reported cross-reactivity of two other antibodies, 54G10 and MPE8, we found no detectable cross-reactivity in the polyclonal antibody responses raised in mice against the postfusion forms of either hMPV or hRSV F. The postfusion-stabilized hMPV F protein did, however, elicit high titers of hMPV-neutralizing activity, suggesting that it could serve as an effective subunit vaccine. Structural insights from these studies should be useful for designing novel immunogens able to induce wider cross-reactive antibody responses.
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spelling pubmed-50177222016-09-27 Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation Más, Vicente Rodriguez, Laura Olmedillas, Eduardo Cano, Olga Palomo, Concepción Terrón, María C. Luque, Daniel Melero, José A. McLellan, Jason S. PLoS Pathog Research Article Human metapneumovirus (hMPV) is a paramyxovirus that is a common cause of bronchiolitis and pneumonia in children less than five years of age. The hMPV fusion (F) glycoprotein is the primary target of neutralizing antibodies and is thus a critical vaccine antigen. To facilitate structure-based vaccine design, we stabilized the ectodomain of the hMPV F protein in the postfusion conformation and determined its structure to a resolution of 3.3 Å by X-ray crystallography. The structure resembles an elongated cone and is very similar to the postfusion F protein from the related human respiratory syncytial virus (hRSV). In contrast, significant differences were apparent with the postfusion F proteins from other paramyxoviruses, such as human parainfluenza type 3 (hPIV3) and Newcastle disease virus (NDV). The high similarity of hMPV and hRSV postfusion F in two antigenic sites targeted by neutralizing antibodies prompted us to test for antibody cross-reactivity. The widely used monoclonal antibody 101F, which binds to antigenic site IV of hRSV F, was found to cross-react with hMPV postfusion F and neutralize both hRSV and hMPV. Despite the cross-reactivity of 101F and the reported cross-reactivity of two other antibodies, 54G10 and MPE8, we found no detectable cross-reactivity in the polyclonal antibody responses raised in mice against the postfusion forms of either hMPV or hRSV F. The postfusion-stabilized hMPV F protein did, however, elicit high titers of hMPV-neutralizing activity, suggesting that it could serve as an effective subunit vaccine. Structural insights from these studies should be useful for designing novel immunogens able to induce wider cross-reactive antibody responses. Public Library of Science 2016-09-09 /pmc/articles/PMC5017722/ /pubmed/27611367 http://dx.doi.org/10.1371/journal.ppat.1005859 Text en © 2016 Más et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Más, Vicente
Rodriguez, Laura
Olmedillas, Eduardo
Cano, Olga
Palomo, Concepción
Terrón, María C.
Luque, Daniel
Melero, José A.
McLellan, Jason S.
Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title_full Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title_fullStr Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title_full_unstemmed Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title_short Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
title_sort engineering, structure and immunogenicity of the human metapneumovirus f protein in the postfusion conformation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5017722/
https://www.ncbi.nlm.nih.gov/pubmed/27611367
http://dx.doi.org/10.1371/journal.ppat.1005859
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