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Allelic variation alters expression and antigen presentation of MR1 allomorphs.

The major histocompatibility complex (MHC) class I-related protein 1 (MR1) presents vitamin B-derived metabolites to mucosal-associated invariant T (MAIT) and other T cells. There is limited polymorphism of MR1, the functional impact of which is not understood. We examined the impact of allelic variation of MR1 on the expression, structure and function of the known MR1 allomorphs. The expression and function of MR1∗02, MR1∗03, and MR1∗06 were similar to the canonical MR1∗01. Crystal structures of four MR1 allomorphs show that their polymorphisms do not impact the three-dimensional fold of MR1. Despite the binding of 5-OP-RU to MR1∗05 and its cell surface upregulation, this allomorph was severely impaired in its ability to activate primary MAIT cells. This phenotype was controlled by two (His90Gln and Glu52Gly) of its three polymorphisms, which led to the loss of structurally stabilizing interactions. When cells expressing the MR1 allomorphs were infected with herpes simplex virus type 1 (HSV-1), the nascent expression of all allomorphs was severely impaired, but surface expression of MR1∗04:01 and MR1∗04:02 was relatively less impacted. Hence, MR1 allelic variation alters the expression and function of the MR1∗04 and MR1∗05 allomorphs, with implications for MAIT cell and diverse MR1-reactive T cell immunity.

Humans

Eltrombopag-associated remodeling of the MAIT, MR1+ and γδ T cells in pediatric immune thrombocytopenia.

Pediatric immune thrombocytopenia (ITP) is an autoimmune cytopenia characterized by immune-mediated platelet destruction and impaired thrombopoiesis. Mucosa-associated invariant T (MAIT) cells are innate-like T cells activated by MR1-presented microbial metabolites and inflammatory cytokines, but their role in pediatric ITP and their relationship to eltrombopag therapy remain unclear. We analyzed peripheral blood mononuclear cells from healthy controls (n = 20), untreated pediatric ITP patients (n = 60), and eltrombopag-treated patients (n = 16). MAIT cells were quantified using MR1-5-OP-RU tetramers and surrogate gating (CD3+Vα7.2+CD161+). MAIT subsets, memory phenotype, chemokine receptor expression (CXCR3, CXCR5, CCR6), HLA-DR, intracellular cytokines (IFN-γ, TNF-α, IL-17 A, IL-22), and MR1+CD3- cells were analyzed by flow cytometry. Tetramer-defined MAIT cells were reduced in absolute number in pediatric ITP, including eltrombopag-treated patients, most prominently within the CD8+ subset, whereas their frequency among CD3+ T cells did not differ between untreated and eltrombopag-treated groups. In contrast, CD3+Vα7.2+CD161+ cells increased in untreated ITP and were lower in eltrombopag-treated patients. Untreated ITP patients exhibited reduced frequencies of IFN-γ- and TNF-α-producing MAIT cells, accompanied by increased IL-17-producing cells and TNF-α signal intensity. Conventional αβ T cells were reduced, whereas γδ T cells were increased; eltrombopag-treated patients exhibited γδ T-cell frequencies and cytokine-positive fractions closer to those of healthy controls. MR1+CD3- cells were expanded and displayed reduced HLA-DR expression in untreated ITP, whereas eltrombopag-treated patients showed lower MR1+CD3- frequencies and HLA-DR levels closer to healthy controls. These findings demonstrate coordinated alterations of the MAIT/MR1 axis and unconventional T-cell compartments in pediatric ITP and identify immunophenotypic differences associated with eltrombopag treatment.

Humans

Complementation between genetic variants affecting the response of chicken leukocytes to concanavalin A.

Birds of the partially inbred G-B1 chicken line can be classified as either high or low responders to Con A, on the basis of the amount of 3H-thymidine incorporated by Con A-containing cultures of their peripheral blood leukocytes. The pattern of inheritance of the high and low responder traits suggests that the variation in response is due to genetic polymorphism at a single autosomal locus. However, the allele responsible for the low responder trait of the G-B1 line is not identical to the allele of the previously described Mr1 locus carried by the inbred low responder CC line, since (CC x G-B1 low responder)F1 birds are uniformly high responders to Con A. The responses to Con A of mixtures of CC and G-B1 low responder cells are not significantly higher than the responses of either component of the mixture alone. Thus, the gene products responsible for the complementation observed in F1 hybrids cannot complement extracellularly, and are not readily transferable from one cell to another.

Animals