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Impact of ATEVs on transcriptional profile of pancreatic tumor tissues derived from a poorly immunogenic pancreatic cancer cell clone

GSE325678 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2026/03/24 Platform GPL24247
Summary
Antigen processing and presentation (APP) is essential for adaptive immunosurveillance. We uncover a mechanism whereby activated T cell-derived extracellular vesicles (ATEVs) drive a positive feedback loop that enhances antigen presentation and immune responses in normal physiology and cancer. ATEV-induced immunogenicity relies on extracellular vesicular double-stranded DNA (EVDNA), which is notably abundant and primarily composed of genomic DNA enriched in immune-related genes, including those encoding APP machinery. Mechanistically, granzyme B (Gzmb) packaged by ATEVs disrupts the nuclear envelope of recipient cells, facilitating intranuclear transfer and subsequent transient expression of EVDNA encoding APP genes. DNase treatment removes most AT-EVDNA, abrogating APP upregulation and thus T cell activation and recruitment to tumors. Notably, ATEVs hold promise as an acellular immunotherapy, restoring APP and synergizing with checkpoint blockade in immunotherapy-refractory tumors. Collectively, our findings uncover a mechanism of transient, non-viral gene delivery by ATEVs which boosts APP and anti-tumor immunity while limiting autoimmunity.
Published in
Activated T cell extracellular vesicle DNA transfer enhances antigen presentation and anti-tumor immunity
Hu M, Liu DA, Wortzel I et al. · Cancer cell 2026 · PMID 42066762 · doi:10.1016/j.ccell.2026.03.023
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Also filed as BioProject PRJNA1441449 and SRA study SRP685920. Searching any of these in the dataset finder brings you back here.

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