bioRxiv · 10.1101/2022.10.25.513771
Proximity-dependent labeling identifies dendritic cells that prime the antitumor CD4+ T cell response
Abstract
Dendritic cells (DCs) are uniquely capable of transporting tumoral antigens to tumor-draining lymph nodes (tdLNs), and also interact with effector T cells within the tumor microenvironment (TME) itself, mediating both natural antitumor immunity and the response to checkpoint blockade immunotherapy. Using LIPSTIC (Labeling Immune Partnerships by SorTagging Intercellular Contacts)-based single-cell transcriptomics, we identify individual DCs capable of presenting antigen to CD4+ T cells in the tdLN as well as inside the tumor microenvironment (TME). Our findings reveal that DCs with similar hyperactivated transcriptional phenotypes interact with helper T cells both within tumors and in the tdLN, and that checkpoint blockade drugs enhance these interactions. These findings show that a relatively small fraction of DCs is responsible for most of the antigen presentation within the tdLN and TME to both CD4+ and CD8+ tumor-specific T cells and that classical checkpoint blockade enhances CD40-driven DC activation at both sites.
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Chudnovskiy, A., Nakandakari-Higa, S., Castro, T. B., Cui, A., Lin, C.-H., Sade-Feldman, M., Phillips, B. K., Pae, J., Mesin, L., Bortolatto, J., Schweitzer, L. D., Pasqual, G., Lu, L.-F., Hacohen, N., Victora, G. D.. 2022-10-25. Proximity-dependent labeling identifies dendritic cells that prime the antitumor CD4+ T cell response. https://doi.org/10.1101/2022.10.25.513771
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