Abstract

Legionnaires' disease, a kind of systemic disease with pneumonia as the main manifestation, is caused by Legionella pneumophila (L. pneumophila). In order to prevent the disease, we optimized Mip and FlaA, the virulence factors of L. pneumophila, to design recombinant Mip-FlaA dominant epitope vaccine against the pathogen. Firstly, the coding sequences of mip and flaA were optimized by DNAStar software and Expasy protein analysis system, and then, the tertiary structure and function of recombinant Mip-FlaA were predicted by PHYRE2 Protein Fold Recognition Server. After that, the optimized mip, flaA and mip-flaA were cloned, expressed and purified, and the proteins were used as dominant epitope vaccines to immunize BABL/c mice. Moreover, the IgG titers, histological changes in lung and the level of TNF-α, IFN-γ, IL-6 and IL-1β were detected to reflect the immunogenicity and protective immunity of the vaccines. The results of SDS-PAGE and Western blot proved the recombinant Mip-FlaA was successfully expressed. ELISA results of IgG titers and these cytokines showed Mip-FlaA group was capable to induce the strongest immune response, compared to PBS, Mip and FlaA groups. In addition, histopathology analysis demonstrated the mice immunized with Mip-FlaA showed better immune protection. Therefore, the work indicated that the above-described biological tools were useful in optimization of epitope vaccine. Antigenic characterization and immune protection of recombinant Mip-FlaA would be of great value in understanding the immunopathogenesis of the disease and in developing possible vaccine against the pathogen.

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