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Published on: October 15, 2013
Development of Melioidosis Subunit Vaccines Using an Enzymatically Inactive Burkholderia pseudomallei AhpC
Lindsey K Schmidt1, Caitlyn E Orne1, Teresa L Shaffer1
1Department of Microbiology and Immunology, University of Nevada, Reno School of Medicine, Reno, Nevada, USA.
Abstract:
Burkholderia pseudomallei, the causative agent of melioidosis, is a facultative intracellular, Gram-negative pathogen that is highly infectious via the respiratory route and can cause severe, debilitating, and often fatal diseases in humans and animals. At present, no licensed vaccines for immunization against this CDC Tier 1 select agent exist. Studies in our lab have previously demonstrated that subunit vaccine formulations consisting of a B. pseudomallei capsular polysaccharide (CPS)-based glycoconjugate (CPS-CRM197) combined with hemolysin-coregulated protein (Hcp1) provided C57BL/6 mice with high-level protection against an acute inhalational challenge of B. pseudomallei. In this study, we evaluated the immunogenicity and protective capacity of B. pseudomallei alkyl hydroperoxide reductase subunit C (AhpC) in combination with CPS-CRM197. AhpC is a peroxiredoxin involved in oxidative stress reduction and is a potential protective antigen. To facilitate our studies and maximize safety in animals, recombinant B. pseudomallei AhpC harboring an active site mutation (AhpCC57G) was expressed in Escherichia coli and purified using tandem nickel-cobalt affinity chromatography. Immunization of C57BL/6 mice with CPS-CRM197 combined with AhpCC57G stimulated high-titer IgG responses against the CPS component of the glycoconjugate as well as stimulated high-titer IgG and robust interferon gamma (IFN-γ)-, interleukin-5 (IL-5)-, and IL-17-secreting T cell responses against AhpCC57G. When challenged via an inhalational route with a high dose (~27 50% lethal doses [LD50s]) of B. pseudomallei, 70% of the immunized mice survived 35 days postchallenge. Collectively, our findings demonstrate that AhpCC57G is a potent activator of cellular and humoral immune responses and may be a promising candidate to include in future melioidosis subunit vaccines.
Insights
A new subunit vaccine combining Burkholderia pseudomallei capsular polysaccharide (CPS) with a mutated alkyl hydroperoxide reductase subunit C (AhpCC57G) shows promise. This melioidosis vaccine candidate induced strong immune responses and protected mice against lethal B. pseudomallei infection.
Area of Science:
- * Microbiology
- * Immunology
- * Vaccinology
Background:
- * Burkholderia pseudomallei causes melioidosis, a severe disease with no licensed vaccines.
- * Previous studies showed protection using a capsular polysaccharide (CPS)-based glycoconjugate (CPS-CRM197) combined with hemolysin-coregulated protein (Hcp1).
- * Alkyl hydroperoxide reductase subunit C (AhpC) is a potential antigen involved in oxidative stress reduction.
Purpose of the Study:
- * To evaluate the immunogenicity and protective efficacy of a B. pseudomallei AhpC mutant (AhpCC57G) combined with CPS-CRM197.
- * To assess the cellular and humoral immune responses elicited by this novel vaccine formulation.
- * To determine the survival rate of immunized mice following a lethal inhalational challenge with B. pseudomallei.
Main Methods:
- * Recombinant B. pseudomallei AhpCC57G was expressed in E. coli and purified.
- * C57BL/6 mice were immunized with a combination of CPS-CRM197 and AhpCC57G.
- * Immunogenicity was assessed by measuring IgG titers and T cell cytokine production (IFN-γ, IL-5, IL-17).
- * Protective capacity was evaluated through an acute inhalational challenge with a high dose of B. pseudomallei.
Main Results:
- * Immunization with CPS-CRM197 and AhpCC57G stimulated high-titer IgG responses against CPS.
- * Robust IgG and T cell responses secreting IFN-γ, IL-5, and IL-17 were observed against AhpCC57G.
- * 70% of immunized mice survived a high-dose inhalational B. pseudomallei challenge 35 days post-exposure.
Conclusions:
- * The mutated AhpCC57G is a potent activator of both humoral and cellular immunity.
- * AhpCC57G in combination with CPS-CRM197 demonstrates significant protective capacity against B. pseudomallei.
- * This formulation represents a promising candidate for future melioidosis subunit vaccines.

