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Dendritic cells process synthetic long peptides better than whole protein,improving antigen presentation and T‐cell activation
Authors:Rodney A Rosalia  Esther D Quakkelaar  Anke Redeker  Selina Khan  Marcel Camps  Jan W Drijfhout  Ana Luisa Silva  Wim Jiskoot  Thorbald van Hall  Peter A van Veelen  George Janssen  Kees Franken  Luis J Cruz  Angelino Tromp  Jaap Oostendorp  Sjoerd H van der Burg  Ferry Ossendorp  Cornelis J M Melief
Institution:1. Department of Clinical Pharmacy and Toxicology, Leiden University Medical Center, , Leiden, The Netherlands;2. Department of Immunohematology and Blood Transfusion, Leiden University Medical Center, , Leiden, The Netherlands;3. Division of Drug Delivery Technology, Leiden Academic Centre for Drug Research, Leiden University Medical Center, , Leiden, The Netherlands;4. Department of Clinical Oncology, Leiden University Medical Center, , Leiden, The Netherlands;5. Department of Molecular Cell Biology, Leiden University Medical Center, , Leiden, The Netherlands;6. Department of Endocrinology, Leiden University Medical Center, , Leiden, The Netherlands;7. ISA Pharmaceuticals, , Leiden, The Netherlands
Abstract:The efficiency of antigen (Ag) processing by dendritic cells (DCs) is vital for the strength of the ensuing T‐cell responses. Previously, we and others have shown that in comparison to protein vaccines, vaccination with synthetic long peptides (SLPs) has shown more promising (pre‐)clinical results. Here, we studied the unknown mechanisms underlying the observed vaccine efficacy of SLPs. We report an in vitro processing analysis of SLPs for MHC class I and class II presentation by murine DCs and human monocyte‐derived DCs. Compared to protein, SLPs were rapidly and much more efficiently processed by DCs, resulting in an increased presentation to CD4+ and CD8+ T cells. The mechanism of access to MHC class I loading appeared to differ between the two forms of Ag. Whereas whole soluble protein Ag ended up largely in endolysosomes, SLPs were detected very rapidly outside the endolysosomes after internalization by DCs, followed by proteasome‐ and transporter associated with Ag processing‐dependent MHC class I presentation. Compared to the slower processing route taken by whole protein Ags, our results indicate that the efficient internalization of SLPs, accomplished by DCs but not by B or T cells and characterized by a different and faster intracellular routing, leads to enhanced CD8+ T‐cell activation.
Keywords:Antigen presentation/processing  Cellular immunology  CD8 T   cells  Dendritic cells
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