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Development of a Multivalent Kunjin Virus Reporter Virus-Like Particle System Inducing Seroconversion for Ebola and West Nile Virus Proteins in Mice
Örebro University, School of Medical Sciences. (Inflammatory Response and Infection Susceptibility Centre (iRiSC))ORCID iD: 0000-0002-8366-9310
Örebro University, School of Medical Sciences. (Inflammatory Response and Infection Susceptibility Centre (iRiSC))ORCID iD: 0000-0003-4442-8503
Adlego Biomedical AB, Uppsala, Sweden.
Adlego Biomedical AB, Uppsala, Sweden.
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2020 (English)In: Microorganisms, E-ISSN 2076-2607, Vol. 8, no 12, article id 1890Article in journal (Refereed) Published
Abstract [en]

Kunjin virus (KUNV) is an attenuated strain of the severe neurotropic West Nile virus (WNV). The virus has a single-strand positive-sense RNA genome that encodes a polyprotein. Following gene expression, the polyprotein is cleaved into structural proteins for viral packaging and nonstructural proteins for viral replication and expression. Removal of the structural genes generate subgenomic replicons that maintain replication capacity. Co-expression of these replicons with the viral structural genes produces reporter virus-like particles (RVPs) which infect cells in a single round. In this study, we aimed to develop a system to generate multivalent RVPs based on KUNV to elicit an immune response against different viruses. We selected the Ebola virus (EBOV) glycoprotein (GP) and the matrix protein (VP40) genes, as candidates to be delivered by KUNV RVPs. Initially, we enhanced the production of KUNV RVPs by generating a stable cell line expressing the KUNV packaging system comprising capsid, precursor membrane, and envelope. Transfection of the DNA-based KUNV replicon into this cell line resulted in an enhanced RVP production. The replicon was expressed in the stable cell line to produce the RVPs that allowed the delivery of EBOV GP and VP40 genes into other cells. Finally, we immunized BALB/cN mice with RVPs, resulting in seroconversion for EBOV GP, EBOV VP40, WNV nonstructural protein 1, and WNV E protein. Thus, our study shows that KUNV RVPs may function as a WNV vaccine candidate and RVPs can be used as a gene delivery system in the development of future EBOV vaccines.

Place, publisher, year, edition, pages
Basel, Switzerland: MDPI, 2020. Vol. 8, no 12, article id 1890
Keywords [en]
Reporter virus-like particles (RVPs), replicons, Kunjin virus, Ebola virus, glycoprotein (GP), matrix protein (VP40), packaging system, stable cell line, seroconversion, vaccines
National Category
Other Medical Biotechnology
Research subject
Molecular Biology; Biomedicine; Molecular Cellbiology; Biomedical Laboratory Science
Identifiers
URN: urn:nbn:se:oru:diva-87720DOI: 10.3390/microorganisms8121890ISI: 000602425000001PubMedID: 33260425Scopus ID: 2-s2.0-85097158960OAI: oai:DiVA.org:oru-87720DiVA, id: diva2:1505501
Funder
Knowledge Foundation
Note

Funding Agency:

Faculty for Medicine and Health, Örebro University  

Available from: 2020-12-01 Created: 2020-12-01 Last updated: 2024-03-06Bibliographically approved
In thesis
1. Characterizing important flavivirus-host interactions: Replication, assembly, restriction factors and vaccine development
Open this publication in new window or tab >>Characterizing important flavivirus-host interactions: Replication, assembly, restriction factors and vaccine development
2022 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

The genus Flavivirus (family Flaviviridae) consists of important zoonotic viruses that cause morbidity and mortality worldwide. These viruses are enveloped and have a positive-sense single-stranded RNA genome encoding a polyprotein. Cleavages of the polyprotein by host and viral proteases result in individual viral proteins, including the structural capsid (C), pre-membrane (prM), envelope (E) proteins, and seven nonstructural proteins. Removal of the C-prM-E genes in the flavivirus genome results in replicons that can replicate in transfected cells but do not generate infectious virus particles. The replicon can be co-expressed with the C-prM-E genes in trans, resulting in packaging of the replicon and generation of replicon virus-like particles (RVPs).

During cellular infection, various host proteins are employed, supporting multiple stages of the virus life cycle. In this thesis, we identified and characterized functions of the host lunapark protein and two members of the Endosomal Sorting Complexes Required for Transport Machinery – ALIX and CHMP4A. We also revealed how the host proteins were recruited by virus proteins during infection.

To counteract the virus infection, virus-infected cells can express antiviral proteins. We demonstrated the antiviral mechanism of interferonstimulated gene (ISG) 15 and the E3 ligase for ISG15 conjugation HERC5, which degrades ALIX and CHMP4A, indirectly targets virus infection. Furthermore, using proteomic screening, we identified tripartite motif-containing proteins (TRIM) – TRIM21 and TRIM14 – as restriction factors to Langat virus and Zika virus.

We also established and characterized an RVP production system based on the West Nile virus (WNV) Kunjin strain. The system was used as a vector to express antigens from Ebola virus (EBOV), which can potentially be developed as a vaccine platform against WNV and EBOV.

Place, publisher, year, edition, pages
Örebro: Örebro University, 2022. p. 59
Series
Örebro Studies in Medicine, ISSN 1652-4063 ; 255
Keywords
Flaviviruses, virus-host cell interaction, lunapark, ESCRT, ALIX, CHMP4A, ISG15, TRIMs, replicon virus-like particles, vaccine
National Category
Other Basic Medicine
Identifiers
urn:nbn:se:oru:diva-95779 (URN)9789175294261 (ISBN)
Public defence
2022-03-11, Örebro universitet, Campus USÖ, hörsal C1, Södra Grev Rosengatan 32, Örebro, 09:00 (English)
Opponent
Supervisors
Available from: 2021-12-07 Created: 2021-12-07 Last updated: 2025-04-30Bibliographically approved

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