Vitamin D3 Induces Tolerance in Human Dendritic Cells by Activation of Intracellular Metabolic Pathways
Author(s) -
Gabriela B. Ferreira,
An-Sofie Vanherwegen,
Guy Eelen,
Antonia Gutiérrez,
Leentje Van Lommel,
Kathleen Marchal,
Lieve Verlinden,
Annemieke Verstuyf,
Tatiane Mendonça Nogueira,
Μαρία Γεωργιάδου,
Frans Schuit,
Décio L. Eizirik,
Conny Gysemans,
Peter Carmeliet,
Lut Overbergh,
Chantal Mathieu
Publication year - 2015
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2015.01.013
Subject(s) - microbiology and biotechnology , immune system , glycolysis , pi3k/akt/mtor pathway , biology , dendritic cell , metabolic pathway , oxidative phosphorylation , reprogramming , chemistry , metabolism , biochemistry , signal transduction , cell , immunology
Metabolic switches in various immune cell subsets enforce phenotype and function. In the present study, we demonstrate that the active form of vitamin D, 1,25-dihydroxyvitamin D 3 (1,25(OH) 2 D 3 ), induces human monocyte-derived tolerogenic dendritic cells (DC) by metabolic reprogramming. Microarray analysis demonstrated that 1,25(OH) 2 D 3 upregulated several genes directly related to glucose metabolism, tricarboxylic acid cycle (TCA), and oxidative phosphorylation (OXPHOS). Although OXPHOS was promoted by 1,25(OH) 2 D 3 , hypoxia did not change the tolerogenic function of 1,25(OH) 2 D 3 -treated DCs. Instead, glucose availability and glycolysis, controlled by the PI3K/Akt/mTOR pathway, dictate the induction and maintenance of the 1,25(OH) 2 D 3 -conditioned tolerogenic DC phenotype and function. This metabolic reprogramming is unique for 1,25(OH) 2 D 3 , because the tolerogenic DC phenotype induced by other immune modulators did not depend on similar metabolic changes. We put forward that these metabolic insights in tolerogenic DC biology can be used to advance DC-based immunotherapies, influencing DC longevity and their resistance to environmental metabolic stress.
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