Permissive central tolerance plus defective peripheral checkpoints licence pathogenic memory B cells in CASPR2-antibody encephalitis
Sun, B.; Fernandes, D.; Soltys, J.; Kathrin-Kienzler, A.; Paneva, S.; Harrison, R.; Ramanathan, S.; Harrison, A.; Makuch, M.; Fichtner, M.; Donat, R.; Akdeniz, D.; Bayuangga, H.; Im, M. G.; Williams, R.; Vasconcelos, A.; Thompson, S.; Fower, A.; Sun, R.; Fox, H.; Mgbachi, V.; Davies, A.; Tseng, M.; Handel, A.; Kelly, M.; Zhao, M.; Bancroft, J.; Bashford-Rogers, R.; Pluvinage, J.; Dandekar, R.; Alvarenga, B.; Dustin, L.; Rinaldi, S.; Owens, R.; Anthony, D.; Bennett, D.; Waters, P.; Davis, S.; Wilson, M.; O'Connor, K.; Carvalho, A. L.; Irani, S.
Show abstract
Autoimmunity affects 10% of the population. Within this umbrella, autoantibody-mediated diseases targeting one autoantigen provide a unique opportunity to comprehensively understand the developmental pathway of disease-causing B cells and autoantibodies. While such autoreactivities are believed to be generated during germinal centre reactions, the roles of earlier immune checkpoints in autoantigen-specific B cell tolerance are poorly understood. We address this concept in patients with CASPR2-autoantibody encephalitis and healthy controls. In both groups, comparable and high ([~]0.5%) frequencies of unmutated CASPR2-reactive naive B cells were identified. By contrast, CASPR2-reactive memory B cells were exclusive to patients, and their B cell receptors demonstrated affinity-enhancing somatic mutations with heterogenous binding kinetics. These effector molecules possessed epitope-dependent pathogenic effects in vitro neuronal cultures and in vivo. The unmutated common ancestors of these memory B cells showed a distinctive balance between strong CASPR2 reactivity and very limited binding across the remaining human proteome. Our results are the first to propose mechanisms underlying autoantigen-specific tolerance in humans. We identify permissive central tolerance, defective peripheral tolerance and heterogenous autoantibody binding properties as sequential pathogenic steps which licence CASPR2-directed pathology. By leveraging the basic immunobiology, we rationally direct tolerance-restoring approaches in CASPR2-antibody diseases. This paradigm is applicable across autoimmune conditions.
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