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Evaluation of Protective Immunity of Peptide Vaccines Composed of a 15-mer N-terminal Matrix Protein 2 and a Helper T-Cell Epitope Derived from Influenza A Virus

Authors
Kim, Jeong-KiCheong, SinyoungLee, Myung Kyu
Issue Date
Aug-2019
Publisher
KOREA ASSOC IMMUNOLOGISTS
Keywords
Influenza Vaccines; M2 protein; Influenza A virus; Vaccines; Subunit; ELISA; Antibodies; Neutralizing
Citation
IMMUNE NETWORK, v.19, no.4
Indexed
SCIE
SCOPUS
KCI
Journal Title
IMMUNE NETWORK
Volume
19
Number
4
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/63674
DOI
10.4110/in.2019.19.e29
ISSN
1598-2629
Abstract
The matrix protein 2 of influenza A virus (IFAV) has a relatively conserved ectodomain (M2e) composed of 23 amino acids, and M2e-based vaccines have been suggested to induce broad protective immunity in mice. In this study, we investigated whether N-terminal sequence of M2e (nM2e)-based vaccines with more conserved nM2e could induce influenza viral neutralizing activity. We constructed linear peptide vaccines with an nM2e sequence for PR8 virus (nM2Pr) connected to a probable 17-mer IFAV-derived helper T-cell epitope (ThE: T1, T2, or T3) at its N- or C-terminus. The peptide vaccines induced significant production of nM2e Abs regardless of either type or location of the ThE-epitope in BALB/c mice, while only T3 was effective in C57BL/6 mice. The Abs against nM2Pr-T3 elicited broader binding affinities to the nM2e peptides derived from various IFAVs than those against T3-nM2Pr. In addition, the nM2e-based vaccines efficiently protected the immunized mice from the lethal challenge of PR8 virus. These results suggest that the more conserved nM2e without cysteine will be useful for development of universal peptide vaccines than M2e.
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