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  3. Memory CD8+ T Cells Balance Pro- and Anti-inflammatory Activity by Reprogramming Cellular Acetate Handling at Sites of Infection.
 

Memory CD8+ T Cells Balance Pro- and Anti-inflammatory Activity by Reprogramming Cellular Acetate Handling at Sites of Infection.

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BORIS DOI
10.48350/150216
Publisher DOI
10.1016/j.cmet.2020.07.004
PubMed ID
32738204
Description
Serum acetate increases upon systemic infection. Acutely, assimilation of acetate expands the capacity of memory CD8+ T cells to produce IFN-γ. Whether acetate modulates memory CD8+ T cell metabolism and function during pathogen re-encounter remains unexplored. Here we show that at sites of infection, high acetate concentrations are being reached, yet memory CD8+ T cells shut down the acetate assimilating enzymes ACSS1 and ACSS2. Acetate, being thus largely excluded from incorporation into cellular metabolic pathways, now had different effects, namely (1) directly activating glutaminase, thereby augmenting glutaminolysis, cellular respiration, and survival, and (2) suppressing TCR-triggered calcium flux, and consequently cell activation and effector cell function. In vivo, high acetate abundance at sites of infection improved pathogen clearance while reducing immunopathology. This indicates that, during different stages of the immune response, the same metabolite-acetate-induces distinct immunometabolic programs within the same cell type.
Date of Publication
2020-09-01
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
acetate glutaminolysis immunometabolism immunopathology infection memory CD8+ T cells
Language(s)
en
Contributor(s)
Balmer, Maria Luisa
Universitätsklinik für Diabetologie, Endokrinologie, Ernährungsmedizin & Metabolismus (UDEM)
Ma, Eric H
Thompson, Andrew J
Epple, Raja
Unterstab, Gunhild
Lötscher, Jonas
Dehio, Philippe
Schürch, Christian M
Warncke, Jan D
Perrin, Gaëlle
Woischnig, Anne-Kathrin
Grählert, Jasmin
Löliger, Jordan
Assmann, Nadine
Bantug, Glenn R
Schären, Olivier Pascalorcid-logo
Institut für Infektionskrankheiten, Forschung
Khanna, Nina
Egli, Adrian
Bubendorf, Lukas
Rentsch, Katharina
Hapfelmeier, Siegfried Hektororcid-logo
Institut für Infektionskrankheiten, Forschung
Jones, Russell G
Hess, Christoph
Additional Credits
Institut für Infektionskrankheiten, Forschung
Universitätsklinik für Diabetologie, Endokrinologie, Ernährungsmedizin & Metabolismus (UDEM)
Series
Cell metabolism
Publisher
Elsevier
ISSN
1932-7420
Access(Rights)
restricted
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