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Immunometabolic Pathways in BCG-Induced Trained Immunity

Cell Reports · 2016 · Vol. 17(10) · pp. 2562–2571
Rob J.W. ArtsAgostinho CarvalhoClaudia La RoccaCarla PalmaFernando RodriguesRicardo SilvestreJohanneke KleinnijenhuisEkta LachmandasLuís G. GonçalvesAna BelinhaCristina CunhaMarije OostingLeo A. B. JoostenGiuseppe MatareseReinout van CrevelMihai G. Netea

Abstract

The protective effects of the tuberculosis vaccine Bacillus Calmette-Guerin (BCG) on unrelated infections are thought to be mediated by long-term metabolic changes and chromatin remodeling through histone modifications in innate immune cells such as monocytes, a process termed trained immunity. Here, we show that BCG induction of trained immunity in monocytes is accompanied by a strong increase in glycolysis and, to a lesser extent, glutamine metabolism, both in an in-vitro model and after vaccination of mice and humans. Pharmacological and genetic modulation of rate-limiting glycolysis enzymes inhibits trained immunity, changes that are reflected by the effects on the histone marks (H3K4me3 and H3K9me3) underlying BCG-induced trained immunity. These data demonstrate that a shift of the glucose metabolism toward glycolysis is crucial for the induction of the histone modifications and functional changes underlying BCG-induced trained immunity. The identification of these pathways may be a first step toward vaccines that combine immunological and metabolic stimulation.

Immune responses and vaccinationsEpigenetics and DNA MethylationImmune cells in cancerImmunityBiologyHistoneImmune systemGlycolysisInnate immune systemImmunologyMetabolic pathwayGlutamineAcquired immune system

MeSH terms

AnimalsBCG VaccineGlycolysisHumansImmunity, InnateImmunologic MemoryMonocytesTuberculosisChromatin Assembly and DisassemblyHistone CodeEpigenesis, GeneticMice

Funding

  • Federación Española de Enfermedades Raras
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • European Research Council
  • Fundação para a Ciência e a Tecnologia
  • European Regional Development Fund
Citations
633
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18.34
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45
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100%
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Cited by
Defining trained immunity and its role in health and disease
Nature reviews. Immunology · 2020 · 2,374 citations
References
Metabolic Reprograming in Macrophage Polarization
Frontiers in Immunology · 2014 · 911 citations
THE METABOLISM OF TUMORS IN THE BODY
The Journal of General Physiology · 1927 · 4,290 citations
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