We showed recently that the live-attenuated Δ lpp Δ msbB Δ ail and Δ lpp Δ msbB::ailL2 mutants of Yersinia pestis CO92 provided short-term protection to mice against developing subsequent lethal pneumonic plague. These mutants were either deleted for genes encoding Braun lipoprotein (Lpp), an acetyltransferase (MsbB) and the attachment invasion locus (Ail) (Δ lpp Δ msbB Δ ail ) or contained a modified version of the ail gene with diminished virulence (Δ lpp Δ msbB::ailL2 ). Here, long-term immune responses were first examined after intramuscular immunisation of mice with the above-mentioned mutants, as well as the newly constructed Δ lpp Δ msbB Δ pla mutant, deleted for the plasminogen-activator protease ( pla ) gene instead of ail . Y. pestis- specific IgG levels peaked between day 35 and 56 in the mutant-immunised mice and were sustained until the last tested day 112. Splenic memory B cells peaked earlier (day 42) before declining in the Δ lpp Δ msbB::ailL2 mutant-immunised mice while being sustained for 63 days in the Δ lpp Δ msbB Δ ail and Δ lpp Δ msbB Δ pla mutant-immunised mice. Splenic CD4 + T cells increased in all immunised mice by day 42 with differential cytokine production among the immunised groups. On day 120, immunised mice were exposed intranasally to wild-type (WT) CO92, and 80–100% survived pneumonic challenge. Mice immunised with the above-mentioned three mutants had increased innate as well as CD4 + responses immediately after WT CO92 exposure, and coupled with sustained antibody production, indicated the role of both arms of the immune response in protection. Likewise, rats vaccinated with either Δ lpp Δ msbB Δ ail or the Δ lpp Δ msbB Δ pla mutant also developed long-term humoral and cell-mediated immune responses to provide 100% protection against developing pneumonic plague. On the basis of the attenuated phenotype, the Δ lpp Δ msbB Δ ail mutant was recently excluded from the Centers for Disease Control and Prevention select agent list.
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Tiner et al. (2016) studied this question.
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