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◇ bioRxiv2026-09-28· cell biology

A Novel PD-L1 Splice Isoform Modulates β Cell Communication in Response to Interferon Signaling

C. Rao, F. Huang, S. Roy, M. C. Austin, M. B. Johnson, K. B. Kaylan, I. Amalraj, A. G. De Oliveira, D. L. Eizirik, C. Evans-Molina, A. K. Linnemann, J. D. Piganelli, R. Oram, R. Mirmira, E. K. Sims

一句话结论

Together these findings define PD-L1{Delta}3 as an IFN-induced splice variant that diverts PD-L1 away from its immunoregulatory, EV-competent form, revealing a post-transcriptional axis that shapes {beta} cell immune communication.

原始摘要(原文)
{beta} cell expression of the immune checkpoint ligand PD-L1 (encoded by CD274) limits autoimmune {beta} cell destruction in type 1 diabetes (T1D). {beta} cell display PD-L1 not only at the cell surface but also secreted on extracellular vesicles (EVs), which bind PD-1 and restrain CD8+ T cell activation. {beta} cell IFN signaling is an early driver of T1D pathogenesis, yet the mechanisms linking IFN signaling to the fate of PD-L1 protein remain undefined. Here, we identify an IFN- and coxsackievirus-inducible alternatively spliced isoform of PD-L1, PD-L1{Delta}3, lacking cassette exon 3 and generated in human {beta} cells and islets in response to IFN signaling or viral infection. PD-L1{Delta}3 transcripts are elevated in islets from donors with single autoantibody positivity (AAB+) and T1D. Unlike full-length PD-L1, which localizes to the plasma membrane, PD-L1{Delta}3 is retained intracellularly and loses the capacity to bind PD-1. Functionally, PD-L1{Delta}3 fails to suppress CD8+ and CD4+ T cell proliferation, activation, and cytotoxic cytokine release, and is not efficiently sorted into EVs. Convergently, a germline CD274 splice-site variant (c.682+1G>A) found in siblings with neonatal T1D yields a protein with the same intracellular retention, reduced {beta} cell PD-1 binding, and reduced {beta} cell and circulating EV PD-L1. Together these findings define PD-L1{Delta}3 as an IFN-induced splice variant that diverts PD-L1 away from its immunoregulatory, EV-competent form, revealing a post-transcriptional axis that shapes {beta} cell immune communication.
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