The autophagy machinery restrains iNKT cell activation through CD1D1 internalization |
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Authors: | Christian W. Keller Monica Loi Svenja Ewert Isaak Quast Romina Theiler Monique Gannagé |
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Affiliation: | 1. Institute of Experimental Immunology, Laboratory of Neuroinflammation, University of Zurich, Zurich, Switzerland;2. Institute of Experimental Immunology, Laboratory of Viral Immunobiology, University of Zurich, Zurich, Switzerland;3. Institute of Pathology, Laboratory of Immunopathology, University of Bern, Bern, Switzerland;4. Department of Immunology &5. Pathology, Central Clinical School, Monash University, Melbourne, Australia;6. Department of Pathology and Immunology, School of Medicine — CMU, University of Geneva, Geneva, Switzerland;7. Division of Rheumatology, Department of Internal Medicine, University Hospital, Geneva, Geneva, Switzerland |
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Abstract: | Invariant natural killer T (iNKT) cells are innate T cells with powerful immune regulatory functions that recognize glycolipid antigens presented by the CD1D protein. While iNKT cell-activating glycolipids are currently being explored for their efficacy to improve immunotherapy against infectious diseases and cancer, little is known about the mechanisms that control CD1D antigen presentation and iNKT cell activation in vivo. CD1D molecules survey endocytic pathways to bind lipid antigens in MHC class II-containing compartments (MIICs) before recycling to the plasma membrane. Autophagosomes intersect with MIICs and autophagy-related proteins are known to support antigen loading for increased CD4+ T cell immunity. Here, we report that mice with dendritic cell (DC)-specific deletion of the essential autophagy gene Atg5 showed better CD1D1-restricted glycolipid presentation in vivo. These effects led to enhanced iNKT cell cytokine production upon antigen recognition and lower bacterial loads during Sphingomonas paucimobilis infection. Enhanced iNKT cell activation was independent of receptor-mediated glycolipid uptake or costimulatory signals. Instead, loss of Atg5 in DCs impaired clathrin-dependent internalization of CD1D1 molecules via the adaptor protein complex 2 (AP2) and, thus, increased surface expression of stimulatory CD1D1-glycolipid complexes. These findings indicate that the autophagic machinery assists in the recruitment of AP2 to CD1D1 molecules resulting in attenuated iNKT cell activation, in contrast to the supporting role of macroautophagy in CD4+ T cell stimulation. |
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Keywords: | antigen presentation autophagy CD1D1 dendritic cells glycolipid innate-like lymphocytes internalization NKT cell T cell |
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