Cargando…

Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus

Removal of genes coding for major parts of capsid (C), premembrane (prM), and envelope (E) proteins on the flavivirus genome aborts the production of infectious virus particles where the remaining genome forms a replicon that retains replicability in host cells. The C-prM-E proteins can also be expr...

Descripción completa

Detalles Bibliográficos
Autores principales: Tran, Pham-Tue-Hung, Höglund, Urban, Larsson, Olivia, Appelberg, Sofia, Mirazimi, Ali, Johansson, Magnus, Melik, Wessam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8874638/
https://www.ncbi.nlm.nih.gov/pubmed/35215177
http://dx.doi.org/10.3390/pathogens11020233
_version_ 1784657736591474688
author Tran, Pham-Tue-Hung
Höglund, Urban
Larsson, Olivia
Appelberg, Sofia
Mirazimi, Ali
Johansson, Magnus
Melik, Wessam
author_facet Tran, Pham-Tue-Hung
Höglund, Urban
Larsson, Olivia
Appelberg, Sofia
Mirazimi, Ali
Johansson, Magnus
Melik, Wessam
author_sort Tran, Pham-Tue-Hung
collection PubMed
description Removal of genes coding for major parts of capsid (C), premembrane (prM), and envelope (E) proteins on the flavivirus genome aborts the production of infectious virus particles where the remaining genome forms a replicon that retains replicability in host cells. The C-prM-E proteins can also be expressed in trans with the flavivirus replicons to generate single-round infectious replicon virus-like particles (RVPs). In this study, we characterized the use of RVPs based on the Kunjin strain of WNV (WNV(KUN)) as a putative WNV vaccine candidate. In addition, the WNV(KUN) C-prM-E genes were substituted with the Crimean–Congo hemorrhagic fever virus (CCHFV) genes encoding the glycoproteins Gn and Gc to generate a WNV(KUN) replicon expressing the CCHFV proteins. To generate RVPs, the WNV(KUN) replicon was transfected into a cell line expressing the WNV(KUN) C-prM-E. Using immunoblotting and immunofluorescence assays, we showed that the replicon can express the CCHFV Gn and Gc proteins and the RVPs can transduce cells to express WNV(KUN) proteins and the CCHFV Gn and Gc proteins. Our study also revealed that these RVPs have potential as a vaccine platform with low risk of recombination as it infects cells only in one cycle. The immunization of mice with the RVPs resulted in high seroconversion to both WNV E and NS1 but limited seroconversion to CCHFV Gn and Gc proteins. Interestingly, we found that there was enhanced production of WNV E, NS1 antibodies, and neutralizing antibodies by the inclusion of CCHFV Gc and Gn into WNV(KUN) RVPs. Thus, this study indicates a complementary effect of the CCHFV Gn and Gc proteins on the immunogenicity by WNV(KUN) RVPs, which may be applied to develop a future vaccine against the WNV.
format Online
Article
Text
id pubmed-8874638
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88746382022-02-26 Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus Tran, Pham-Tue-Hung Höglund, Urban Larsson, Olivia Appelberg, Sofia Mirazimi, Ali Johansson, Magnus Melik, Wessam Pathogens Article Removal of genes coding for major parts of capsid (C), premembrane (prM), and envelope (E) proteins on the flavivirus genome aborts the production of infectious virus particles where the remaining genome forms a replicon that retains replicability in host cells. The C-prM-E proteins can also be expressed in trans with the flavivirus replicons to generate single-round infectious replicon virus-like particles (RVPs). In this study, we characterized the use of RVPs based on the Kunjin strain of WNV (WNV(KUN)) as a putative WNV vaccine candidate. In addition, the WNV(KUN) C-prM-E genes were substituted with the Crimean–Congo hemorrhagic fever virus (CCHFV) genes encoding the glycoproteins Gn and Gc to generate a WNV(KUN) replicon expressing the CCHFV proteins. To generate RVPs, the WNV(KUN) replicon was transfected into a cell line expressing the WNV(KUN) C-prM-E. Using immunoblotting and immunofluorescence assays, we showed that the replicon can express the CCHFV Gn and Gc proteins and the RVPs can transduce cells to express WNV(KUN) proteins and the CCHFV Gn and Gc proteins. Our study also revealed that these RVPs have potential as a vaccine platform with low risk of recombination as it infects cells only in one cycle. The immunization of mice with the RVPs resulted in high seroconversion to both WNV E and NS1 but limited seroconversion to CCHFV Gn and Gc proteins. Interestingly, we found that there was enhanced production of WNV E, NS1 antibodies, and neutralizing antibodies by the inclusion of CCHFV Gc and Gn into WNV(KUN) RVPs. Thus, this study indicates a complementary effect of the CCHFV Gn and Gc proteins on the immunogenicity by WNV(KUN) RVPs, which may be applied to develop a future vaccine against the WNV. MDPI 2022-02-10 /pmc/articles/PMC8874638/ /pubmed/35215177 http://dx.doi.org/10.3390/pathogens11020233 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tran, Pham-Tue-Hung
Höglund, Urban
Larsson, Olivia
Appelberg, Sofia
Mirazimi, Ali
Johansson, Magnus
Melik, Wessam
Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title_full Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title_fullStr Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title_full_unstemmed Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title_short Enhanced Seroconversion to West Nile Virus Proteins in Mice by West Nile Kunjin Replicon Virus-like Particles Expressing Glycoproteins from Crimean–Congo Hemorrhagic Fever Virus
title_sort enhanced seroconversion to west nile virus proteins in mice by west nile kunjin replicon virus-like particles expressing glycoproteins from crimean–congo hemorrhagic fever virus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8874638/
https://www.ncbi.nlm.nih.gov/pubmed/35215177
http://dx.doi.org/10.3390/pathogens11020233
work_keys_str_mv AT tranphamtuehung enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT hoglundurban enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT larssonolivia enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT appelbergsofia enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT mirazimiali enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT johanssonmagnus enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus
AT melikwessam enhancedseroconversiontowestnilevirusproteinsinmicebywestnilekunjinrepliconviruslikeparticlesexpressingglycoproteinsfromcrimeancongohemorrhagicfevervirus