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Molecular basis for potent B cell responses to antigen displayed on particles of viral size.


ABSTRACT: Multivalent viral epitopes induce rapid, robust and T cell-independent humoral immune responses, but the biochemical basis for such potency remains incompletely understood. We take advantage of a set of liposomes of viral size engineered to display affinity mutants of the model antigen (Ag) hen egg lysozyme. Particulate Ag induces potent 'all-or-none' B cell responses that are density dependent but affinity independent. Unlike soluble Ag, particulate Ag induces signal amplification downstream of the B cell receptor by selectively evading LYN-dependent inhibitory pathways and maximally activates NF-κB in a manner that mimics T cell help. Such signaling induces MYC expression and enables even low doses of particulate Ag to trigger robust B cell proliferation in vivo in the absence of adjuvant. We uncover a molecular basis for highly sensitive B cell responses to viral Ag display that is independent of encapsulated nucleic acids and is not merely accounted for by avidity and B cell receptor cross-linking.

SUBMITTER: Brooks JF 

PROVIDER: S-EPMC10950062 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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Molecular basis for potent B cell responses to antigen displayed on particles of viral size.

Brooks Jeremy F JF   Riggs Julianne J   Mueller James L JL   Mathenge Raisa R   Wholey Wei-Yun WY   Meyer Alexander R AR   Yoda Sekou-Tidiane ST   Vykunta Vivasvan S VS   Nielsen Hailyn V HV   Cheng Wei W   Zikherman Julie J  

Nature immunology 20230831 10


Multivalent viral epitopes induce rapid, robust and T cell-independent humoral immune responses, but the biochemical basis for such potency remains incompletely understood. We take advantage of a set of liposomes of viral size engineered to display affinity mutants of the model antigen (Ag) hen egg lysozyme. Particulate Ag induces potent 'all-or-none' B cell responses that are density dependent but affinity independent. Unlike soluble Ag, particulate Ag induces signal amplification downstream of  ...[more]

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