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Yersinia pestis Yop secretion protein F: purification, characterization, and protective efficacy against bubonic
Wieslaw Swietnicki1, Bradford S Powell, Jeremy Goodin
1Division of Toxinology, US Army Medical Research Institute of Infectious Diseases, Fort Detrick, MD 21702, USA. wes.swietnick@amedd.army.mil
Abstract:
Yersinia pestis is a gram-negative human pathogen that uses a type III secretion system to deliver virulence factors into human hosts. The delivery is contact-dependent and it has been proposed that polymerization of Yop secretion protein F (YscF) is used to puncture mammalian cell membranes to facilitate delivery of Yersinia outer protein effectors into host cells. To evaluate the potential immunogenicity and protective efficacy of YscF against Y. pestis, we used a purified recombinant YscF protein as a potential vaccine candidate in a mouse subcutaneous infection model. YscF was expressed and purified from Escherichia coli by immobilized metal-ion affinity chromatography and protein identity was confirmed by ion trap mass spectrometry. The recombinant protein was highly alpha-helical and formed relatively stable aggregates under physiological conditions. The properties were consistent with behavior expected for the native YscF, suggesting that the antigen was properly folded. Ten mice were inoculated subcutaneously, administered booster injections after one month, and challenged with 130 LD(50) of wild type Y. pestis CO92. Six animals in the vaccinated group but none in the control group survived the challenge. The vaccinated animals produced high levels of specific antibodies against YscF as determined by Western blot. The data were statistically significant (P = 0.053 by two-tailed Fisher's test), suggesting that the YscF protein can provide a protective immune response against lethal plague challenge during subcutaneous plague infection.
Insights
Recombinant Yop secretion protein F (YscF) from Yersinia pestis showed potential as a vaccine candidate. Vaccination with YscF protected mice against lethal plague challenge, indicating its protective immune response.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Yersinia pestis is a gram-negative bacterium causing plague.
- Type III secretion system (T3SS) delivers virulence factors.
- YscF polymerization may facilitate effector delivery by puncturing host cell membranes.
Purpose of the Study:
- To evaluate the immunogenicity and protective efficacy of YscF as a vaccine candidate against Y. pestis.
Main Methods:
- Purified recombinant YscF protein expressed in E. coli.
- Protein identity confirmed by mass spectrometry.
- Mice vaccinated subcutaneously, boosted, and challenged with Y. pestis.
Main Results:
- Recombinant YscF was properly folded and formed stable aggregates.
- Six out of ten vaccinated mice survived lethal Y. pestis challenge.
- Vaccinated mice produced high levels of specific anti-YscF antibodies.
Conclusions:
- YscF protein demonstrated statistically significant protective immune response against Y. pestis.
- YscF is a promising vaccine candidate for preventing plague.
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