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Wortel, C. M.

Publications and source records attributed to Wortel, C. M..

2 recordsLinked to original sources

Clonal autoantibodies identify microbial antigen as trigger of autoreactive B cells in systemic sclerosis

ObjectivesTransformative observations demonstrate unprecedented success of B cell-depleting interventions in many human autoimmune diseases, calling for a deeper understanding of the triggers leading to B cell-mediated autoimmunity and its perpetuation in human disease. Here, we investigated whether the autoreactive B cell response targeting human topoisomerase 1 (TOP1), a hallmark of systemic sclerosis, could cross-react with TOP1 of microbial origin. MethodsHomologies between human and microbial TOP1 were analyzed using Foldseek. TOP1-reactive monoclonal antibodies from patient-derived, human TOP1-reactive B cell receptors were generated and assessed for reactivity against human TOP1 and TOP1 from a prototypic yeast, Saccharomyces cerevisiae (S. cerevisiae). Reactivity of polyclonal serum IgG from anti-TOP1 autoantibody (ATA)+, anti-centromere autoantibody (ACA)+ SSc patients and healthy donors (HDs) was tested. Finally, B cell lines were generated expressing human ATA to study B cell activation upon antigenic stimulation. ResultsStructural homologues of human TOP1 were found in many microbes, particularly in fungi. Taking TOP1 from S. cerevisiae as a prototype, microbial TOP1 was recognized by polyclonal patient IgG and by several monoclonal ATAs. Importantly, S. cerevisiae TOP1 also activated B cells expressing a patient-derived, human TOP1-reactive B cell receptor. Patients affected by interstitial lung disease most frequently showed recognition of microbial TOP1. ConclusionsThese findings identify fungi as potential drivers of immune dysregulation in human autoimmunity, specifically in SSc, highlighting microbial antigen cross-reactive cells as important therapeutic targets. Moreover, these data provide first functional evidence for a breach of B cell tolerance against human TOP1 triggered by cross-reactivity to fungal TOP1.

immunology↗

Enhanced recognition of topoisomerase 1 upon DNA binding by a subset of anti-topoisomerase 1 autoantibodies in systemic sclerosis

ObjectivesSystemic sclerosis (SSc) is a deleterious disease. Its clinical management is complicated by strong interpatient heterogeneity. Progressive organ fibrosis is linked to autoantibodies against topoisomerase 1 (TOP1). Here, we hypothesized that the molecular interaction between anti-TOP1 autoantibodies (ATAs) and TOP1 could be a relevant determinant of SSc pathogenesis. DNA binding by TOP1 might affect its interaction with ATAs. Therefore, we studied the effect of DNA binding by TOP1 on ATA recognition. MethodsATA monoclonal antibodies (ATA mAbs) were generated from patient-derived TOP1-reactive B cells. Reactivity of ATA mAbs and antibodies in patient plasma towards TOP1 and TOP1-DNA cleavage complexes (TOP1cc) was determined by ELISA and mass photometry. Immunostimulatory properties of ATA mAbs in complex with TOP1/TOP1cc were assessed by stimulation of monocytic THP-1 cells. ResultsDNA binding by TOP1 differentially affected the recognition of TOP1 by ATA mAbs. A subset of mAbs showed enhanced binding to TOP1cc, whereas others recognized TOP1 and TOP1cc to a similar extent. ATAs with enhanced TOP1cc recognition were observed in plasma of ATA+ SSc patients and correlated with ATA levels and interstitial lung disease. These TOP1cc-enhanced ATAs variably affected the enzymatic function of TOP1 and circulated predominantly as IgG1 and IgM. The interaction of TOP1cc-enhanced ATA mAbs with TOP1cc strongly increased IL-8 production by THP-1 cells. ConclusionsThe differential recognition of TOP1 upon DNA binding by ATAs demonstrates heterogeneity in the ATA B cell response, possibly impacting on disease-relevant processes in severe SSc.

immunology↗