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Reijm, S.

Publications and source records attributed to Reijm, S..

2 recordsLinked to original sources

Multiple sclerosis-associated HLA demarcates EBV-specific CD8+ T cells with an exhausted and brain residency phenotype

Specific HLA class I subtypes as well as circulating antibodies against Epstein-Barr virus (EBV) have been associated with increased susceptibility to develop multiple sclerosis (MS). It is currently unclear whether and how these risk factors are functionally related. Here, we assessed the impact of MS risk allele HLA-B7 and protective allele HLA-A2 on the effector phenotype of EBV-specific CD8+ T cells and if this corresponds with anti-EBV IgG titers. For this, we selected HLA-A2+ and/or HLA-B7+ donors with and without MS and analyzed HLA-restricted, EBV- specific CD8+ T cells with different fine-specificities using 38 color-based spectral flow cytometry. In contrast to HLA-A2-restricted CD8+ T cells, HLA-B7-restricted CD8+ T cells showed a confined response to EBV, which was mainly directed against latent peptide EBNA3A(379-387). These HLA-B7-restricted EBV-specific CD8+ T cells expressed higher levels of CNS residency markers CXCR3 and CD20 and were most abundant in fresh single-cell suspensions derived from different post-mortem CNS compartments of an HLA-A2+B7+ MS donor. Moreover, HLA-B7- restricted EBV-specific CD8+ T cells displayed a more exhausted phenotype (PD- 1+CD244+CD160+KLRG1+TIGIT+) that stood out in the blood from people with MS (pwMS). Accordingly, in the blood, increased IgG titers against EBV were found for pwMS carrying HLA- B7 but lacking HLA-A2, which seemed to coincide with HLA-B7-restricted EBV-specific CD8+ T cells having such an effector phenotype. These data support a model in which the confined response against EBV makes circulating HLA-B7-restricted CD8+ T cells less able to control EBV and more prone to infiltrate the CNS in pwMS.

immunology↗

Autoreactive B cells in rheumatoid arthritis consist of activated CXCR3+ memory B cells and plasmablasts

Many autoimmune diseases (AIDs) are characterized by persistence of autoreactive B cell responses which is often directly implicated in disease pathogenesis. How and why these cells are generated or how they are maintained for years is largely unknown. Rheumatoid arthritis is among the most common AIDs and characterized by autoantibodies recognizing proteins with post-translational modifications (PTMs). This PTM-directed, autoreactive B cell compartment is ill defined. Here, we visualized the B cell response against the three main types of PTM antigens implicated in RA by spectral flow cytometry. Our results show extensive cross-reactivity of autoreactive B cells against all three PTM antigens (citrulline, homocitrulline and acetyllysine). Unsupervised clustering revealed several distinct memory B cell (mBC) populations. Autoreactive cells clustered with the most recently activated, class-switched mBC phenotype, expressing high CD80, low CD24 and low CD21. Notably, patients also harbored large fractions of autoreactive plasmablasts (PB). Both PTM-directed mBC and PB showed high expression of CXCR3, a receptor for chemokines abundantly present in arthritic joints. Together, our data provide novel, detailed insight into the biology of B cell autoreactivity and its remarkable, seemingly exhaustless persistence in a prominent human AID.

immunology↗