Development of a Trivalent Construct Omp18/AhpC/FlgH Multi Epitope Peptide Vaccine Against Campylobacter jejuni
Hongqiang Lou1, Xusheng Li1, Xiusheng Sheng1
1Medical Molecular Biology Laboratory, School of Medicine, Jinhua Polytechnic, Jinhua, China.
Insights
A new trivalent epitope vaccine candidate, AhpC-2/Omp18-1/FlgH-1, was developed for Campylobacter jejuni. This vaccine candidate significantly reduced bacterial colonization in mice, offering a promising strategy against C. jejuni infections.
Area of Science:
- Microbiology and Immunology
- Vaccine Development
- Bioinformatics
Background:
- Campylobacter jejuni (C. jejuni) is a primary cause of human enteritis, leading to severe complications like Guillain-Barre syndrome.
- Despite extensive research, no effective vaccine against C. jejuni exists, highlighting the need for novel prevention strategies beyond biosecurity.
- Surface proteins Omp18, AhpC, and FlgH show potential as antigens due to their antigenicity, strain variability, and conserved sequences.
Purpose of the Study:
- To analyze T-B antigenic epitopes of C. jejuni Omp18, AhpC, and FlgH using bioinformatics.
- To screen for dominant T-B combined epitopes and construct a prokaryotic expression system for tandem repeats.
- To evaluate the immunoprotective efficacy of a trivalent epitope vaccine candidate in a mouse model.
Main Methods:
- Bioinformatic analysis of T-B epitopes for Omp18, AhpC, and FlgH in C. jejuni NCTC11168.
- ELISA and Western Blot assays to identify dominant T-B combined epitopes.
- Construction of a prokaryotic expression system using GGS linkers for tandem epitope peptides (AhpC-2/Omp18-1/FlgH-1) and assessment in a mouse infection model.
Main Results:
- A stable and antigenic trivalent tandem epitope, AhpC-2/Omp18-1/FlgH-1, was successfully constructed.
- Immunization of BALB/c mice with the tandem epitope induced protective immunity, characterized by IgG2a antibody response and IFN-γ cytokine production.
- Significant reduction in C. jejuni colonization was observed in immunized mice, indicating vaccine efficacy.
Conclusions:
- The developed trivalent epitope AhpC-2/Omp18-1/FlgH-1 shows promise as a candidate antigen for a genetic engineering vaccine against C. jejuni.
- This approach enhances epitope stability and antigenicity, leading to effective immune responses and reduced bacterial load.
- Further development of this candidate antigen could provide a novel preventative measure against C. jejuni infections.
Abstract:
Campylobacter jejuni (C. jejuni) is one of the major pathogens contributing to the enteritis in humans. Infection can lead to numerous complications, including but not limited to Guillain-Barre syndrome, reactive arthritis, and Reiter's syndrome. Over the past two decades, joint efforts have been made toward developing a proper strategy of limiting the transmission of C. jejuni to humans. Nevertheless, except for biosecurity measures, no available vaccine has been developed so far. Judging from the research findings, Omp18, AhpC outer membrane protein, and FlgH flagellin subunits of C. jejuni could be adopted as surface protein antigens of C. jejuni for screening dominant epitope thanks to their strong antigenicity, expression of varying strains, and conservative sequence. In this study, bioinformatics technology was adopted to analyze the T-B antigenic epitopes of Omp18, AhpC, and FlgH in C. jejuni strain NCTC11168. Both ELISA and Western Blot methods were adopted to screen the dominant T-B combined epitope. GGS (GGCGGTAGC) sequence was adopted to connect the dominant T-B combined epitope peptides and to construct the prokaryotic expression system of tandem repeats of antigenic epitope peptides. The mouse infection model was adopted to assess the immunoprotective effect imposed by the trivalent T-B combined with antigen epitope peptide based on Omp18/AhpC/FlgH. In this study, a tandem epitope AhpC-2/Omp18-1/FlgH-1 was developed, which was composed of three epitopes and could effectively enhance the stability and antigenicity of the epitope while preserving its structure. The immunization of BALB/c mice with a tandem epitope could induce protective immunity accompanied by the generation of IgG2a antibody response through the in vitro synthesis of IFN-γ cytokines. Judging from the results of immune protection experiments, the colonization of C. jejuni declined to a significant extent, and it was expected that AhpC-2/Omp18-1/FlgH-1 could be adopted as a candidate antigen for genetic engineering vaccine of C. jejuni MAP.
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