Heparan Sulfate Proteoglycans Promote Telomerase Internalization and MHC Class II Presentation on Dendritic Cells

硫酸肝素蛋白聚糖促进端粒酶内化和 MHC II 类分子在树突状细胞上的呈递

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作者:Jeanne Galaine, Guillaume Kellermann, Yves Guillaume, Romain Boidot, Emilie Picard, Romain Loyon, Lise Queiroz, Laura Boullerot, Laurent Beziaud, Marine Jary, Laura Mansi, Claire André, Lydie Lethier, Evelyne Ségal-Bendirdjian, Christophe Borg, Yann Godet, Olivier Adotévi

Abstract

Telomerase is a prototype-shared tumor Ag and represents an attractive target for anticancer immunotherapy. We have previously described promiscuous and immunogenic HLA-DR-restricted peptides derived from human telomerase reverse transcriptase (hTERT) and referred as universal cancer peptide (UCP). In nonsmall cell lung cancer, the presence of spontaneous UCP-specific CD4 T cell responses increases the survival of chemotherapy-responding patients. However, the precise mechanisms of hTERT's uptake, processing, and presentation on MHC-II molecules to stimulate CD4 T cells are poorly understood. In this work, by using well-characterized UCP-specific CD4 T cell clones, we showed that hTERT processing and presentation on MHC-II involve both classical endolysosomal and nonclassical cytosolic pathways. Furthermore, to our knowledge, we demonstrated for the first time that hTERT's internalization by dendritic cells requires its interaction with surface heparan sulfate proteoglycans. Altogether, our findings provide a novel mechanism of tumor-specific CD4 T cell activation and will be useful for the development of novel cancer immunotherapies that harness CD4 T cells.

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