B Cell Receptor Signaling Sets Boundaries for Selection of Broadly Neutralizing Antibody Functional Mutations
Singh, A.; Anasti, K.; Itallie, E. V.; Newman, A.; Kane, A. P.; Barr, M.; Parks, R.; Venkatayogi, S.; Tian, M.; Saunders, K.; Henderson, R.; Cain, D. W.; Alt, F. W.; Haynes, B. F.; Verkoczy, L.; Wiehe, K.; Alam, S. M.
Show abstract
B cell signaling is required for germinal center (GC) selection and synergizes with T cell-help leading to differentiation into effector cells and a protective antibody response. Here, we studied the relationship between B cell signaling and the selection of functional mutations in a humanized mouse model of a CD4 binding-site specific HIV-1 broadly neutralizing antibody precursor. While BCR signaling increased with antigen affinity, immunization-induced frequency of a functional mutation was inversely related to affinity and favored a gain in association rate. Antigen-specific GC B cells and key mutation frequency were higher in the mid-affinity (0.5 - 5M) than in either the higher or lower affinity group, and were consistent with the significantly higher serum neutralization titers in the mid-range group. Our studies show that BCR signaling imposes boundaries (upper/lower) for selection of antibody functional mutations and support a "Goldilocks Zone" model that defines the favored BCR signaling strength for GC selection.
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