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Discovery of CD4+ T cell–recognized B. pertussis antigens that reduce airway colonization
Mohamed M. Shamseldin, Jesse M. Hall, Griffin M. Lawrence, Gabrielle M. Hernandez, Yue Liu, Alexa R. Aubrey, Eva K. Verzani, Rajendar Deora, Amy Lovett-Racke, Jennifer G. Abelin, Purnima Dubey
Mohamed M. Shamseldin, Jesse M. Hall, Griffin M. Lawrence, Gabrielle M. Hernandez, Yue Liu, Alexa R. Aubrey, Eva K. Verzani, Rajendar Deora, Amy Lovett-Racke, Jennifer G. Abelin, Purnima Dubey
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Research Article Immunology Infectious disease

Discovery of CD4+ T cell–recognized B. pertussis antigens that reduce airway colonization

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Abstract

Despite widespread vaccination, Bordetella pertussis (Bp) cases are resurging globally. Although CD4+ T cells are known to be essential for sustained protection, the antigens they recognize are not fully characterized, hindering vaccine refinement. Using immunopeptidomics, bioinformatics, and functional T cell assays, we identified high-affinity epitopes from reference and clinical Bp strains presented on MHC-II I-Ab. A subset of these epitopes stimulated systemic and mucosal CD4+ T cells of mice immunized with heat-killed Bp, and peripheral blood T cells from humans vaccinated with the whole-cell pertussis vaccine. Mice immunized with a subunit vaccine comprising two recombinant proteins identified in our screen were subsequently challenged with Bp. Bacterial burden was nearly eliminated from the lower respiratory tract and significantly reduced in the upper respiratory tract. Th1/Th17-polarized CD4+ tissue-resident memory T cells (Trms) were induced in nasal and pulmonary tissues. Depleting memory CD4+ T cells before challenge abolished protection, confirming that antigen-specific CD4+ T cells are critical for clearing Bp from the respiratory tract. Our integrated antigen identification and T cell assay approach revealed previously untested Bp antigens that elicit protective CD4+ T cell–mediated immunity, suggesting that incorporating them into new vaccines may help curb the resurgence of pertussis.

Authors

Mohamed M. Shamseldin, Jesse M. Hall, Griffin M. Lawrence, Gabrielle M. Hernandez, Yue Liu, Alexa R. Aubrey, Eva K. Verzani, Rajendar Deora, Amy Lovett-Racke, Jennifer G. Abelin, Purnima Dubey

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Figure 7

Prime-pull immunization with a subunit vaccine containing BP0205 and YiaO reduces Bp respiratory tract colonization.

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Prime-pull immunization with a subunit vaccine containing BP0205 and Yia...
(A) Immunization and challenge scheme. (B–D) Bacterial burden in the lungs (B), trachea (C), and nose (D) was determined on days 7, 14, and 21 after challenge. Dotted line indicates the limit of detection. (E–H) The number of CD4+CD45–CD44+CD62L–CD69+ Trms in the lungs (E) that express IFN-γ (F), IL-5 (G), and IL-17 (H). (I–L) The number of CD4+CD45–CD44+CD62L–CD69+ Trms in the nose (I) that produce IFN-γ (J), IL-5 (K), and IL-17 (L). Data shown are mean ± SEM. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001 compared with unimmunized mice, and #P < 0.05, ##P < 0.01 comparing immunization groups at each day after challenge, by 1-way ANOVA with Dunnett’s post hoc test. One experiment of 2 independent experiments.

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ISSN 2379-3708

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