Recognition of Amino Acid Motifs, Rather Than Specific Proteins, by Human Plasma Cell–Derived Monoclonal Antibodies to Posttranslationally Modified Proteins in Rheumatoid Arthritis

Johanna Stéen(Karolinska University Hospital), Björn Forsström(KTH Royal Institute of Technology), Peter Sahlström(Karolinska University Hospital), Victoria O’Dowd(UCB Pharma (United Kingdom)), Lena Israelsson(Karolinska University Hospital), Akilan Krishnamurthy(Karolinska University Hospital), Sara Badreh(Karolinska University Hospital), Linda Mathsson Alm(Uppsala University), Joanne Compson(UCB Pharma (United Kingdom)), Daniel Ramsköld(Karolinska University Hospital), Welcome Ndlovu(UCB Pharma (United Kingdom)), Stephen Rapecki(UCB Pharma (United Kingdom)), Monika Hansson(Karolinska University Hospital), Philip J. Titcombe(University of Minnesota), Holger Bang(Unitika (Japan)), Daniel L. Mueller(University of Minnesota Medical Center), Anca I. Catrina(Karolinska University Hospital), Caroline Grönwall(Karolinska University Hospital), Karl Skriner(Charité - Universitätsmedizin Berlin), Peter Nilsson(KTH Royal Institute of Technology), Daniel Lightwood(UCB Pharma (United Kingdom)), Lars Klareskog(Karolinska University Hospital), Vivianne Malmström(Karolinska University Hospital)
Arthritis & Rheumatology
August 28, 2018
Cited by 137Open Access
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Abstract

OBJECTIVE: Antibodies against posttranslationally modified proteins are a hallmark of rheumatoid arthritis (RA), but the emergence and pathogenicity of these autoantibodies are still incompletely understood. The aim of this study was to analyze the antigen specificities and mutation patterns of monoclonal antibodies (mAb) derived from RA synovial plasma cells and address the question of antigen cross-reactivity. METHODS: IgG-secreting cells were isolated from RA synovial fluid, and the variable regions of the immunoglobulins were sequenced (n = 182) and expressed in full-length mAb (n = 93) and also as germline-reverted versions. The patterns of reactivity with 53,019 citrullinated peptides and 49,211 carbamylated peptides and the potential of the mAb to promote osteoclastogenesis were investigated. RESULTS: Four unrelated anti-citrullinated protein autoantibodies (ACPAs), of which one was clonally expanded, were identified and found to be highly somatically mutated in the synovial fluid of a patient with RA. The ACPAs recognized >3,000 unique peptides modified by either citrullination or carbamylation. This highly multireactive autoantibody feature was replicated for Ig sequences derived from B cells from the peripheral blood of other RA patients. The plasma cell-derived mAb were found to target distinct amino acid motifs and partially overlapping protein targets. They also conveyed different effector functions as revealed in an osteoclast activation assay. CONCLUSION: These findings suggest that the high level of cross-reactivity among RA autoreactive B cells is the result of different antigen encounters, possibly at different sites and at different time points. This is consistent with the notion that RA is initiated in one context, such as in the mucosal organs, and thereafter targets other sites, such as the joints.


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