Cargando…

Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines

Studies evaluating the immunogenicity of two pediatric tick-borne encephalitis virus (TBEV) vaccines have reported contradictory results. These vaccines are based on two different strains of the European TBEV subtype: FSME-Immun Junior is based on the Neudörfl (Nd) strain, whereas Encepur Children i...

Descripción completa

Detalles Bibliográficos
Autores principales: Beck, Yvonne, Fritz, Richard, Orlinger, Klaus, Kiermayr, Stefan, Ilk, Reinhard, Portsmouth, Daniel, Pöllabauer, Eva-Maria, Löw-Baselli, Alexandra, Hessel, Annett, Kölch, Doris, Howard, M. Keith, Barrett, P. Noel, Kreil, Thomas R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4734018/
https://www.ncbi.nlm.nih.gov/pubmed/26656681
http://dx.doi.org/10.1128/JVI.02985-15
_version_ 1782412877297090560
author Beck, Yvonne
Fritz, Richard
Orlinger, Klaus
Kiermayr, Stefan
Ilk, Reinhard
Portsmouth, Daniel
Pöllabauer, Eva-Maria
Löw-Baselli, Alexandra
Hessel, Annett
Kölch, Doris
Howard, M. Keith
Barrett, P. Noel
Kreil, Thomas R.
author_facet Beck, Yvonne
Fritz, Richard
Orlinger, Klaus
Kiermayr, Stefan
Ilk, Reinhard
Portsmouth, Daniel
Pöllabauer, Eva-Maria
Löw-Baselli, Alexandra
Hessel, Annett
Kölch, Doris
Howard, M. Keith
Barrett, P. Noel
Kreil, Thomas R.
author_sort Beck, Yvonne
collection PubMed
description Studies evaluating the immunogenicity of two pediatric tick-borne encephalitis virus (TBEV) vaccines have reported contradictory results. These vaccines are based on two different strains of the European TBEV subtype: FSME-Immun Junior is based on the Neudörfl (Nd) strain, whereas Encepur Children is based on the Karlsruhe (K23) strain. The antibody (Ab) response induced by these two vaccines might be influenced by antigenic differences in the envelope (E) protein, which is the major target of neutralizing antibodies. We used an established hybrid virus assay platform to compare the levels of induction of neutralizing antibodies against the two vaccine virus strains in children aged 1 to 11 years who received two immunizations with FSME-Immun Junior or Encepur Children. The influence of amino acid differences between the E proteins of the Nd and K23 vaccine strains was investigated by mutational analyses and three-dimensional computer modeling. FSME-Immun Junior induced 100% seropositivity and similar neutralizing antibody titers against hybrid viruses containing the TBEV E protein of the two vaccine strains. Encepur Children induced 100% seropositivity only against the hybrid virus containing the E protein of the homologous K23 vaccine strain. Antibody responses induced by Encepur Children to the hybrid virus containing the E protein of the heterologous Nd strain were substantially and significantly (P < 0.001) lower than those to the K23 vaccine strain hybrid virus. Structure-based mutational analyses of the TBEV E protein indicated that this is due to a mutation in the DI-DII hinge region of the K23 vaccine strain E protein which may have occurred during production of the vaccine seed virus and which is not present in any wild-type TBE viruses. IMPORTANCE Our data suggest that there are major differences in the abilities of two European subtype pediatric TBEV vaccines to induce antibodies capable of neutralizing heterologous TBEV strains. This is a result of a mutation in the DI-DII hinge region of the E protein of the K23 vaccine virus strain used to manufacture Encepur Children which is not present in the Nd strain used to manufacture FSME-Immun Junior or in any other known naturally occurring TBEVs.
format Online
Article
Text
id pubmed-4734018
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-47340182016-02-13 Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines Beck, Yvonne Fritz, Richard Orlinger, Klaus Kiermayr, Stefan Ilk, Reinhard Portsmouth, Daniel Pöllabauer, Eva-Maria Löw-Baselli, Alexandra Hessel, Annett Kölch, Doris Howard, M. Keith Barrett, P. Noel Kreil, Thomas R. J Virol Vaccines and Antiviral Agents Studies evaluating the immunogenicity of two pediatric tick-borne encephalitis virus (TBEV) vaccines have reported contradictory results. These vaccines are based on two different strains of the European TBEV subtype: FSME-Immun Junior is based on the Neudörfl (Nd) strain, whereas Encepur Children is based on the Karlsruhe (K23) strain. The antibody (Ab) response induced by these two vaccines might be influenced by antigenic differences in the envelope (E) protein, which is the major target of neutralizing antibodies. We used an established hybrid virus assay platform to compare the levels of induction of neutralizing antibodies against the two vaccine virus strains in children aged 1 to 11 years who received two immunizations with FSME-Immun Junior or Encepur Children. The influence of amino acid differences between the E proteins of the Nd and K23 vaccine strains was investigated by mutational analyses and three-dimensional computer modeling. FSME-Immun Junior induced 100% seropositivity and similar neutralizing antibody titers against hybrid viruses containing the TBEV E protein of the two vaccine strains. Encepur Children induced 100% seropositivity only against the hybrid virus containing the E protein of the homologous K23 vaccine strain. Antibody responses induced by Encepur Children to the hybrid virus containing the E protein of the heterologous Nd strain were substantially and significantly (P < 0.001) lower than those to the K23 vaccine strain hybrid virus. Structure-based mutational analyses of the TBEV E protein indicated that this is due to a mutation in the DI-DII hinge region of the K23 vaccine strain E protein which may have occurred during production of the vaccine seed virus and which is not present in any wild-type TBE viruses. IMPORTANCE Our data suggest that there are major differences in the abilities of two European subtype pediatric TBEV vaccines to induce antibodies capable of neutralizing heterologous TBEV strains. This is a result of a mutation in the DI-DII hinge region of the E protein of the K23 vaccine virus strain used to manufacture Encepur Children which is not present in the Nd strain used to manufacture FSME-Immun Junior or in any other known naturally occurring TBEVs. American Society for Microbiology 2016-01-28 /pmc/articles/PMC4734018/ /pubmed/26656681 http://dx.doi.org/10.1128/JVI.02985-15 Text en Copyright © 2016 Beck et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Vaccines and Antiviral Agents
Beck, Yvonne
Fritz, Richard
Orlinger, Klaus
Kiermayr, Stefan
Ilk, Reinhard
Portsmouth, Daniel
Pöllabauer, Eva-Maria
Löw-Baselli, Alexandra
Hessel, Annett
Kölch, Doris
Howard, M. Keith
Barrett, P. Noel
Kreil, Thomas R.
Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title_full Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title_fullStr Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title_full_unstemmed Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title_short Molecular Basis of the Divergent Immunogenicity of Two Pediatric Tick-Borne Encephalitis Virus Vaccines
title_sort molecular basis of the divergent immunogenicity of two pediatric tick-borne encephalitis virus vaccines
topic Vaccines and Antiviral Agents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4734018/
https://www.ncbi.nlm.nih.gov/pubmed/26656681
http://dx.doi.org/10.1128/JVI.02985-15
work_keys_str_mv AT beckyvonne molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT fritzrichard molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT orlingerklaus molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT kiermayrstefan molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT ilkreinhard molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT portsmouthdaniel molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT pollabauerevamaria molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT lowbasellialexandra molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT hesselannett molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT kolchdoris molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT howardmkeith molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT barrettpnoel molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines
AT kreilthomasr molecularbasisofthedivergentimmunogenicityoftwopediatrictickborneencephalitisvirusvaccines