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Published on: July 23, 2017
Th1 epitope peptides induce protective immunity against Rickettsia rickettsii infection in C3H/HeN mice
Pengcheng Wang1, Xiaolu Xiong1, Jun Jiao1
1State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, 20# Dong-Dia-Jie Street, Fengtai, Beijing 100071, China.
Abstract:
Rickettsia rickettsii is the causative pathogen of Rocky Mountain spotted fever (RMSF). Adr2, YbgF and OmpB are protective antigens of R. rickettsii. In this study, 90 candidate peptides were selected from these antigens based on their high-affinity binding capacity for the MHC class II molecule H2 I-A or H2 I-E using bioinformatic methods. Six peptides were determined using ELISPOT assay to be immunodominant based on the IFN-γ recall responses of CD4+ T cells from mice immunized with R. rickettsii. Six nucleotide sequences encoding the immunodominant peptides were linked in series and inserted into a plasmid for expression in Escherichia coli cells, resulting in a new, recombinant polypeptide termed GWP. After immunization and challenge, the rickettsial load or histopathological lesions in the organs of mice immunized with GWP or pooled peptides was significantly lower than that in organs of mice immunized with PBS or the individual peptide OmpB399. An in vitro neutralization test revealed that sera from mice immunized with GWP, OmpB399, or pooled peptides reduced R. rickettsii adherence to, and invasion of, vascular endothelial cells. Furthermore, significantly higher levels of IgG, IgG1, or IgG2a were detected in sera from mice immunized with GWP or pooled peptides, and significantly higher levels of IFN-γ or TNF-α secreted by CD4+ T cells from R. rickettsii-infected mice were detected after immunization with GWP. Altogether, our results indicated that polypeptides, especially GWP, could induce a Th1-type immune response against R. rickettsii infection, which might contribute to the rational design of peptide-based vaccines for RMSF.
Insights
This study developed a new polypeptide, GWP, from Rickettsia rickettsii antigens. GWP and pooled peptides significantly reduced bacterial load and improved immune responses against Rocky Mountain spotted fever in mice.
Area of Science:
- Immunology
- Vaccinology
- Microbiology
Background:
- Rocky Mountain spotted fever (RMSF) is caused by Rickettsia rickettsii.
- Identifying protective antigens and understanding immune responses are crucial for vaccine development.
Purpose of the Study:
- To design and evaluate a novel polypeptide vaccine candidate against R. rickettsii.
- To assess the immunogenicity and protective efficacy of a multi-peptide construct (GWP) in a mouse model.
Main Methods:
- Bioinformatic selection of 90 peptides from protective antigens (Adr2, YbgF, OmpB).
- Identification of six immunodominant peptides using ELISPOT assay and IFN-γ responses.
- Construction and expression of a recombinant polypeptide (GWP) in E. coli.
- Evaluation of GWP efficacy through immunization, R. rickettsii challenge, in vitro neutralization, and immune response assays.
Main Results:
- GWP and pooled peptides significantly reduced rickettsial load and organ lesions in mice.
- Sera from GWP-immunized mice neutralized R. rickettsii in vitro.
- GWP induced higher levels of specific IgG, IgG1, IgG2a, IFN-γ, and TNF-α, indicating a Th1-type response.
Conclusions:
- Polypeptides, particularly GWP, can elicit a protective Th1 immune response against R. rickettsii.
- These findings support the development of peptide-based vaccines for RMSF prevention.

