Glycan modification of antigen alters its intracellular routing in dendritic cells, promoting priming of T cells

Antigen uptake by dendritic cells and intracellular routing of antigens to specific compartments is regulated by C-type lectin receptors that recognize glycan structures. We show that the modification of Ovalbumin (OVA) with the glycan-structure LewisX (LeX) re-directs OVA to the C-type lectin recep...

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Bibliographic Details
Main Authors: Ingeborg Streng-Ouwehand, Nataschja I Ho, Manja Litjens, Hakan Kalay, Martine Annemarie Boks, Lenneke AM Cornelissen, Satwinder Kaur Singh, Eirikur Saeland, Juan J Garcia-Vallejo, Ferry A Ossendorp, Wendy WJ Unger, Yvette van Kooyk
Format: Article
Language:English
Published: eLife Sciences Publications Ltd 2016-03-01
Series:eLife
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Online Access:https://elifesciences.org/articles/11765
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Summary:Antigen uptake by dendritic cells and intracellular routing of antigens to specific compartments is regulated by C-type lectin receptors that recognize glycan structures. We show that the modification of Ovalbumin (OVA) with the glycan-structure LewisX (LeX) re-directs OVA to the C-type lectin receptor MGL1. LeX-modification of OVA favored Th1 skewing of CD4+ T cells and enhanced cross-priming of CD8+ T cells. While cross-presentation of native OVA requires high antigen dose and TLR stimuli, LeX modification reduces the required amount 100-fold and obviates its dependence on TLR signaling. The OVA-LeX-induced enhancement of T cell cross-priming is MGL1-dependent as shown by reduced CD8+ effector T cell frequencies in MGL1-deficient mice. Moreover, MGL1-mediated cross-presentation of OVA-LeX neither required TAP-transporters nor Cathepsin-S and was still observed after prolonged intracellular storage of antigen in Rab11+LAMP1+ compartments. We conclude that controlled neo-glycosylation of antigens can crucially influence intracellular routing of antigens, the nature and strength of immune responses and should be considered for optimizing current vaccination strategies.
ISSN:2050-084X