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Samassa, F.

Publications and source records attributed to Samassa, F..

2 recordsLinked to original sources

Coxsackievirus B Escapes Antiviral CD8⁺ T Cells but Triggers Robust CD4⁺ Memory Responses

Coxsackieviruses B (CVBs) are plausible triggers of the pancreatic islet autoimmunity leading to type 1 diabetes. Islet autoantibody seroconversion correlates with persistent CVB infections in the gut and pancreas, suggesting defective antiviral control and the need to define immune mechanisms at the intestinal entry site. We investigated how CVB3 modulates antigen presentation, the viral immunopeptidome of enterocytes and antigen-presenting cells, and downstream T-cell immunity. CVB3-infected enterocytes escaped immune recognition by downregulating HLA Class I and viral peptide presentation, impairing CD8+ T-cell responses in vitro. In CVB-seropositive individuals, circulating CVB-reactive CD8+ T cells were stalled in naive-like and exhausted effector/memory states. In contrast, CVB3 induced HLA class II upregulation, promoting robust CD4 T-cell activation. Circulating CVB3-reactive CD4 T cells fully differentiated into polyfunctional T helper memory. These findings indicate that CVB3 antiviral control is predominantly CD4 T-cell-mediated and provide a rationale for mucosal vaccination strategies and immune monitoring tools to follow infection or vaccination. TeaserCoxsackievirus evades CD8+ T-cell immunity in the gut, leaving CD4+ T cells as the main line of antiviral defense.

immunology↗

Interferon-α promotes neo-antigen formation andpreferential HLA-B-restricted antigen presentation in pancreatic β-cells

Interferon (IFN)- is the earliest cytokine signature observed in individuals at risk for type 1 diabetes (T1D), but its effect on the repertoire of HLA Class I (HLA-I)-bound peptides presented by pancreatic {beta}-cells is unknown. Using immunopeptidomics, we characterized the peptide/HLA-I presentation in in-vitro resting and IFN--exposed {beta}-cells. IFN- increased HLA-I expression and peptide presentation, including neo-sequences derived from alternative mRNA splicing, post-translational modifications - notably glutathionylation - and protein cis-splicing. This antigenic landscape relied on processing by both the constitutive and immune proteasome. The resting {beta}-cell immunopeptidome was dominated by HLA-A-restricted ligands. However, IFN- only marginally upregulated HLA-A and largely favored HLA-B, translating into a major increase in HLA-B-restricted peptides and into an increased activation of HLA-B-restricted vs. HLA-A-restricted CD8+ T-cells. A preferential HLA-B hyper-expression was also observed in the islets of T1D vs. non-diabetic donors, and we identified islet-infiltrating CD8+ T-cells from T1D donors reactive to HLA-B-restricted granule peptides. Thus, the inflammatory milieu of insulitis may skew the autoimmune response toward epitopes presented by HLA-B, hence recruiting a distinct T-cell repertoire that may be relevant to T1D pathogenesis.

immunology↗