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CD8+ T cell activation occurs 24 hours after AAV administration and is driven by muscle promoter specificity
Lindsay Jeanpierre, Coralie Pecquet, Hanadi Saliba, Pauline Finard, Stéphane Terry, Gianni Tavella, Inès Guesmia, Sylvie Boutin, Bérangère Bertin, Sofia Benkhelifa-Ziyyat, Giuseppe Ronzitti, David-Alexandre Gross
Lindsay Jeanpierre, Coralie Pecquet, Hanadi Saliba, Pauline Finard, Stéphane Terry, Gianni Tavella, Inès Guesmia, Sylvie Boutin, Bérangère Bertin, Sofia Benkhelifa-Ziyyat, Giuseppe Ronzitti, David-Alexandre Gross
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Research Article Immunology Muscle biology

CD8+ T cell activation occurs 24 hours after AAV administration and is driven by muscle promoter specificity

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Abstract

Immune responses against transgene products can compromise adeno-associated virus–mediated (AAV-mediated) gene transfer. Although several factors influencing this immunogenicity have been described, the early in vivo events driving CD8+ T cell activation remain poorly defined. Here, we examined antigen presentation kinetics following intramuscular AAV administration in mice. Strikingly, viral genomes were detected in draining lymph nodes as early as 1 hour after injection, and transgene-derived peptides were presented to CD8+ T cells from day 1, resulting in progressive activation and first cell divisions detected at day 4. Removal of the injection site demonstrated that AAV particles reaching draining lymph nodes within the first hour were sufficient to induce cytotoxic transgene-specific CD8+ T cells. Finally, AAV vectors incorporating different muscle-specific promoters and regulatory sequences were evaluated. Although muscle specific, all promoters exhibited variable transgene expression in dendritic cells in vitro, correlating with early T cell activation in vivo; notably, those associated with higher early antigen presentation induced robust T cell response, whereas reduced presentation correlated with absence of CD8+ T cells. These findings reveal an unexpectedly early onset of transgene-derived epitope presentation, modulated by promoter specificity, which critically shapes CD8+ T cell response. This provides a rationale for evaluating and mitigating AAV immunogenicity in gene therapy design.

Authors

Lindsay Jeanpierre, Coralie Pecquet, Hanadi Saliba, Pauline Finard, Stéphane Terry, Gianni Tavella, Inès Guesmia, Sylvie Boutin, Bérangère Bertin, Sofia Benkhelifa-Ziyyat, Giuseppe Ronzitti, David-Alexandre Gross

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Figure 5

Enforced muscle-specific expression inhibits proper CD8+ T cell activation.

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Enforced muscle-specific expression inhibits proper CD8+ T cell activati...
(A) Transgene mRNA was quantified by specific RT-qPCR 24 hours after transduction of DC2.4 cells by 1 × 105 vg/cell of indicated AAV1-OVA257 vectors. (B) DC2.4 cells were transduced with indicated MOIs of the different AAV1-OVA257 vectors for 24 hours, and cocultured with CD8+ OT-I T cells for 18 hours. Expression of CD69/CD25 on CD8+ OT-I T cells was assessed by flow cytometry. (C–J) C57BL/6 mice were injected intramuscularly in the left TA with 1 × 1010 vg of either AAV1–SPc5-12–OVA257, AAV1–SPc5-12–OVA257–miR, or an irrelevant vector (Irr) encoding murine SEAP under the control of the PGK promoter. (C and D) Twenty-four hours after AAV, mice (n = 5–10) received intravenously 1 × 106 splenocytes from OT-I donor mice. dLNs and TA were collected 18 hours later. (C) Histogram showing the frequencies of CD69+CD25+ in live CD45.1+CD8+ OT-I T cells. (D) Transgene mRNA levels in the left TA were quantified by RT-qPCR. (E and F) Two weeks after AAV, dLNs and spleen were collected and analyzed by flow cytometry (n = 3). (E) Frequencies of KbOVA257 tetramer+ CD44+ cells in live CD8+ cells. (F) Immunofluorescence staining of left TA for CD8 (red), laminin (green), and DAPI (blue). Scale bars: 100 μM. (G–J) Mice (n = 3) received 1 × 105 VPD-labeled splenocytes from OT-I donor mice before AAV injection in the left TA (1 × 1010 vg). Proliferation of OT-I cells in dLNs at day 7 (G and H) and frequency in spleen and dLNs at indicated time points (I and J) were assessed by flow cytometry. Each dot represents an individual mouse. Data are pooled from 3 (A, C, and D) or 1 (B, E–J) independent experiments and are represented as mean ± SEM. Statistical analysis: (A and E) Kruskal-Wallis test with Dunn’s multiple-comparison test: vs. Ctrl or Irr, *P < 0.1, **P < 0.01. (C, D, and H) Mann-Whitney U test: *P < 0.1, ***P > 0,0001. (I and J) 2-way ANOVA: vs. SPc5-12; *P < 0.1, **P < 0.01.

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