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Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts

To avoid outbreaks of influenza virus epidemics and pandemics among human populations, modern medicine requires the development of new universal vaccines that are able to provide protection from a wide range of influenza A virus strains. In the course of development of a universal vaccine, it is nec...

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Autores principales: Tutykhina, Irina, Esmagambetov, Ilias, Bagaev, Alexander, Pichugin, Alexey, Lysenko, Andrey, Shcherbinin, Dmitry, Sedova, Elena, Logunov, Denis, Shmarov, Maxim, Ataullakhanov, Ravshan, Naroditsky, Boris, Gintsburg, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788337/
https://www.ncbi.nlm.nih.gov/pubmed/29377916
http://dx.doi.org/10.1371/journal.pone.0191574
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author Tutykhina, Irina
Esmagambetov, Ilias
Bagaev, Alexander
Pichugin, Alexey
Lysenko, Andrey
Shcherbinin, Dmitry
Sedova, Elena
Logunov, Denis
Shmarov, Maxim
Ataullakhanov, Ravshan
Naroditsky, Boris
Gintsburg, Alexander
author_facet Tutykhina, Irina
Esmagambetov, Ilias
Bagaev, Alexander
Pichugin, Alexey
Lysenko, Andrey
Shcherbinin, Dmitry
Sedova, Elena
Logunov, Denis
Shmarov, Maxim
Ataullakhanov, Ravshan
Naroditsky, Boris
Gintsburg, Alexander
author_sort Tutykhina, Irina
collection PubMed
description To avoid outbreaks of influenza virus epidemics and pandemics among human populations, modern medicine requires the development of new universal vaccines that are able to provide protection from a wide range of influenza A virus strains. In the course of development of a universal vaccine, it is necessary to consider that immunity must be generated even against viruses from different hosts because new human epidemic virus strains have their origins in viruses of birds and other animals. We have enriched conserved viral proteins–nucleoprotein (NP) and matrix protein 2 (M2)—by B and T-cell epitopes not only human origin but also swine and avian origin. For this purpose, we analyzed M2 and NP sequences with respect to changes in the sequences of known T and B-cell epitopes and chose conserved and evolutionarily significant epitopes. Eventually, we found consensus sequences of M2 and NP that have the maximum quantity of epitopes that are 100% coincident with them. Consensus epitope-enriched amino acid sequences of M2 and NP proteins were included in a recombinant adenoviral vector. Immunization with Ad5-tet-M2NP induced strong CD8 and CD4 T cells responses, specific to each of the encoded antigens, i.e. M2 and NP. Eight months after immunization with Ad5-tet-M2NP, high numbers of M2- and NP-responding “effector memory” CD44posCD62neg T cells were found in the mouse spleens, which revealed a long-term T cell immune memory conferred by the immunization. In all, the challenge experiments showed an extraordinarily wide-ranging efficacy of protection by the Ad5-tet-M2NP vaccine, covering 5 different heterosubtypes of influenza A virus (2 human, 2 avian and 1 swine).
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spelling pubmed-57883372018-02-09 Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts Tutykhina, Irina Esmagambetov, Ilias Bagaev, Alexander Pichugin, Alexey Lysenko, Andrey Shcherbinin, Dmitry Sedova, Elena Logunov, Denis Shmarov, Maxim Ataullakhanov, Ravshan Naroditsky, Boris Gintsburg, Alexander PLoS One Research Article To avoid outbreaks of influenza virus epidemics and pandemics among human populations, modern medicine requires the development of new universal vaccines that are able to provide protection from a wide range of influenza A virus strains. In the course of development of a universal vaccine, it is necessary to consider that immunity must be generated even against viruses from different hosts because new human epidemic virus strains have their origins in viruses of birds and other animals. We have enriched conserved viral proteins–nucleoprotein (NP) and matrix protein 2 (M2)—by B and T-cell epitopes not only human origin but also swine and avian origin. For this purpose, we analyzed M2 and NP sequences with respect to changes in the sequences of known T and B-cell epitopes and chose conserved and evolutionarily significant epitopes. Eventually, we found consensus sequences of M2 and NP that have the maximum quantity of epitopes that are 100% coincident with them. Consensus epitope-enriched amino acid sequences of M2 and NP proteins were included in a recombinant adenoviral vector. Immunization with Ad5-tet-M2NP induced strong CD8 and CD4 T cells responses, specific to each of the encoded antigens, i.e. M2 and NP. Eight months after immunization with Ad5-tet-M2NP, high numbers of M2- and NP-responding “effector memory” CD44posCD62neg T cells were found in the mouse spleens, which revealed a long-term T cell immune memory conferred by the immunization. In all, the challenge experiments showed an extraordinarily wide-ranging efficacy of protection by the Ad5-tet-M2NP vaccine, covering 5 different heterosubtypes of influenza A virus (2 human, 2 avian and 1 swine). Public Library of Science 2018-01-29 /pmc/articles/PMC5788337/ /pubmed/29377916 http://dx.doi.org/10.1371/journal.pone.0191574 Text en © 2018 Tutykhina 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Tutykhina, Irina
Esmagambetov, Ilias
Bagaev, Alexander
Pichugin, Alexey
Lysenko, Andrey
Shcherbinin, Dmitry
Sedova, Elena
Logunov, Denis
Shmarov, Maxim
Ataullakhanov, Ravshan
Naroditsky, Boris
Gintsburg, Alexander
Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title_full Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title_fullStr Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title_full_unstemmed Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title_short Vaccination potential of B and T epitope-enriched NP and M2 against Influenza A viruses from different clades and hosts
title_sort vaccination potential of b and t epitope-enriched np and m2 against influenza a viruses from different clades and hosts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788337/
https://www.ncbi.nlm.nih.gov/pubmed/29377916
http://dx.doi.org/10.1371/journal.pone.0191574
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