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Grydziuszko, E.

Publications and source records attributed to Grydziuszko, E..

2 recordsLinked to original sources

Pathogenic IgE-fated B cell memory retains functional plasticity

Long-lived immunoglobulin (Ig) E responses against innocuous environmental and dietary antigens (Ags) are maintained by an IgG1-dominant memory B cell (MBC) compartment primed for IL-4 responsiveness. The plasticity of the MBC compartment destined for IgE class switch recombination (CSR), however, remains poorly understood. In this work, we report a critical IL-4/IL-13 dependency for the pathogenic IgE fate of type 2-polarized MBCs. Initiating a recall response in the absence of IL-4/IL-13 signaling diminished the type 2 MBC phenotype in mice and humans and, in mice, permitted the emergence of long-lived Ag-specific IgG2c+ MBCs. The divergence to a type 1-like response was dependent on IFN-{gamma} signaling and arose from both unswitched and class-switched Ag-specific B cells in vivo. This reprogrammed fate was sustained even beyond therapeutic intervention, revealing fundamental insight into the plasticity of the allergen-specific MBC response. One Sentence SummaryB cell responses to allergens can be reprogrammed away from a pathogenic fate through IL-4/IL-13 signaling blockade.

immunology↗

Sequential Switching Through IgG1 is Redundant for Allergic Reactivity and Memory to Allergens

Allergic reactions to foods are driven by allergen-binding immunoglobulin (Ig)E antibodies. IgE- expressing cells can be generated through a sequential class switching pathway where activated B cells first switch to an intermediary isotype, most frequently IgG1, and then to IgE. It has been proposed that sequential class switch recombination is important in generating high affinity IgE, augmenting anaphylactic reactions, and in holding the memory of IgE responses. Here, we observed surprising redundancy of sequential switching through IgG1 for the functional affinity of the IgE repertoire against multiple food allergens as well as for the ability of IgE to elicit anaphylaxis. We further found that sequential switching via IgG1 was irrelevant for allergic memory. These results indicate that allergen-specific IgG1 B cells are redundant in sensitization, anaphylaxis, and food allergy persistence, thereby implicating other switching pathways as important considerations in the development of therapeutics for allergic diseases.

immunology↗