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Development of a candidate influenza vaccine based on virus-like particles displaying influenza M2e peptide into the immunodominant loop region of hepatitis B core antigen: Insertion of multiple copies of M2e increases immunogenicity and protective efficiency
Affiliation:1. Centre ‘Bioengineering’, Russian Academy of Sciences, 117312 Prosp. 60-letya Oktyabrya 7-1, Moscow, Russia;2. Research Institute of Influenza, Russian Federation Ministry of Health, St. Petersburg, Russia;1. Center for Inflammation, Immunity & Infection, Institute for Biomedical Sciences, Georgia State University, Atlanta, GA 30303, USA;2. Animal and Plant Quarantine Agency, Anyang City, Gyeonggi-do, Korea;3. Mogam Biotechnology Research Institute, Yongin-si, Gyeonggi-do, Korea;1. Tel Aviv Sourasky Medical Center CRC,, affiliated to Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv Israel;2. Clinical Pharmacology Unit, Division of Medicine, Hadassah University Hospital, Jerusalem, Israel;3. BiondVax Pharmaceuticals Ltd., 14 Einstein Street, Ness Ziona, 74140, Israel;1. Immune Targeting Systems Ltd., London, NW1 0NH, UK;2. Hammersmith Medicines Research Ltd., London, NW10 7EW, UK;1. AVIR Green Hills Biotechnology, 1200 Vienna, Austria;2. Medical University of Vienna, Department of Clinical Pharmacology, 1090 Vienna, Austria;1. AVIR Green Hills Biotechnology AG, Vienna, Austria;2. University of Natural Resources and Life Sciences, Vienna, Austria
Abstract:The extracellular domain of the transmembrane protein M2 (M2e) of influenza A virus is a promising target for the development of “universal” vaccines against influenza. M2e is a poor immunogen by itself; however, when M2e is linked to an appropriate carrier, such as hepatitis B virus core (HBc) particles, it becomes highly immunogenic. Insertions of target peptides into the surface-exposed major immunodominant loop region (MIR) of the HBc antigen are especially immunogenic, but such insertions often affect the protein folding and formation of recombinant virus-like particles. To facilitate an appropriate conformation of the M2e insert, we introduced flexible linkers at the junction points between the insert and flanking HBc sequences. This approach allowed the construction of recombinant HBc particles carrying 1, 2 and 4 copies of M2e in the MIR region. These particles were produced in Escherichia coli and purified to homogeneity. The immune response and protective activity of hybrid HBc particles in mice correlated with the number of inserted M2e peptides: the highest immunogenicity and complete protection of mice against the lethal challenge by influenza virus was observed with particles carrying four copies of M2e. The possibility of the simultaneous presentation of M2e peptides from several important influenza strains on a single HBc particle could also facilitate the development of a broad-specificity vaccine efficient not only against influenza A strains of human origin but also for newly emerging strains of animal origin, such as the avian influenza.
Keywords:Influenza virus  M2e  HBc particle  Vaccine
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