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Published on: November 5, 2019
Hyperproliferation of B cells specific for a weakly immunogenic PorA in a meningococcal vaccine model
Thomas A Luijkx1, Jacqueline A M van Gaans-van den Brink, Harry H van Dijken
1Department of Vaccine Research, Unit for Research and Development, Netherlands Vaccine Institute, Bilthoven, The Netherlands. Thomas.Luijkx@SP.Nobilon.com
Abstract:
Highly homologous meningococcal porin A (PorA) proteins induce protective humoral immunity against Neisseria meningitidis group B infection but with large and consistent differences in the levels of serum bactericidal activity achieved. We investigated whether a poor PorA-specific serological outcome is associated with a limited size of the specific B-cell subpopulation involved. The numbers of PorA-specific splenic plasma cells, bone marrow (BM) plasma cells, and splenic memory B cells were compared between mice that received priming and boosting with the weakly immunogenic PorA (P1.7-2,4) protein and those that received priming and boosting with the highly immunogenic PorA (P1.5-1,2-2) protein. Immunoglobulin G (IgG) titers (except at day 42), bactericidal activity, and the avidity of IgG produced against P1.7-2,4 were significantly lower at all time points after priming and boosting than against P1.5-1,2-2. These differences, however, were not associated with a lack of P1.7-2,4-specific plasma cells. Instead, priming with both of the PorAs resulted in the initial expansion of comparable numbers of splenic and BM plasma cells. Moreover, P1.7-2,4-specific BM plasma cells, but not P1.5-1,2-2-specific plasma cells, expanded significantly further after boosting. Likewise, after a relative delay during the priming phase, the splenic P1.7-2,4-specific memory B cells largely outnumbered those specific for P1.5-1,2-2, upon boosting. These trends were observed with different vaccine formulations of the porins. Our results show for the first time that B-cell subpopulations involved in a successfully maturated antibody response against a clinically relevant vaccine antigen are maintained at smaller population sizes than those associated with poor affinity maturation. This bears consequences for the interpretation of immunological memory data in clinical vaccine trials.
Insights
Meningococcal PorA proteins trigger immune responses, but effectiveness varies. This study reveals that even weak responses involve substantial B-cell populations, challenging assumptions about immune memory in vaccine trials.
Area of Science:
- Immunology
- Vaccinology
Background:
- Meningococcal Porin A (PorA) proteins are key vaccine antigens for Neisseria meningitidis group B.
- Humoral immunity induced by PorA proteins shows significant variability in protective efficacy.
Purpose of the Study:
- To investigate if poor serological outcomes against PorA are linked to smaller specific B-cell subpopulations.
- To compare the expansion and maintenance of plasma cells and memory B cells following immunization with PorA variants of differing immunogenicity.
Main Methods:
- Mice were primed and boosted with either weakly (P1.7-2,4) or highly (P1.5-1,2-2) immunogenic PorA proteins.
- Quantification of PorA-specific splenic plasma cells, bone marrow (BM) plasma cells, and splenic memory B cells was performed.
- Serum bactericidal activity, immunoglobulin G (IgG) titers, and IgG avidity were measured.
Main Results:
- Despite lower IgG titers and bactericidal activity, the weakly immunogenic PorA (P1.7-2,4) did not result in fewer PorA-specific plasma cells.
- Both PorA variants induced comparable initial expansion of splenic and BM plasma cells.
- The P1.7-2,4 variant showed greater expansion of BM plasma cells post-boosting and a larger population of splenic memory B cells post-boosting compared to P1.5-1,2-2.
Conclusions:
- The size of B-cell subpopulations does not directly correlate with the level of antibody response or affinity maturation.
- Poor serological outcomes against PorA may not be due to limited B-cell expansion but potentially other factors affecting antibody quality or function.
- These findings necessitate a re-evaluation of immunological memory assessment in clinical vaccine trials for Neisseria meningitidis group B.
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