Regulatory T cell differentiation is controlled by αKG-induced alterations in mitochondrial metabolism and lipid homeostasis
- Creators
- Matias, Maria
- Yong, Carmen
- Foroushani, Amir
- Goldsmith, Chloe
- Mongellaz, Cédric
- Sezgin, Erdinc
- Levental, Kandice
- Talebi, Ali
- Perrault, Julie
- Rivière, Anais
- Dehairs, Jonas
- Delos, Océane
- Bertand-Michel, Justine
- Portais, Jean-Charles
- Wong, Madeline
- Marie, Julien
- Kelekar, Ameeta
- Kinet, Sandrina
- Zimmermann, Valérie
- Levental, Ilya
- Yvan-Charvet, Laurent
- Swinnen, Johannes
- Muljo, Stefan
- Hernandez-Vargas, Hector
- Tardito, Saverio
- Taylor, Naomi
- Dardalhon, Valérie
- Others:
- Institut de Génétique Moléculaire de Montpellier (IGMM) ; Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)
- Peter Mac Callum Cancer Centre
- National Institute of Allergy and Infectious Diseases [Bethesda] (NIAID-NIH) ; National Institutes of Health [Bethesda] (NIH)
- Centre de Recherche en Cancérologie de Lyon (UNICANCER/CRCL) ; Centre Léon Bérard [Lyon]-Université Claude Bernard Lyon 1 (UCBL) ; Université de Lyon-Université de Lyon-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)
- Karolinska Institute
- University of Virginia [Charlottesville]
- Leuven Cancer Institute [Leuven, Belgium] (LKI)
- MetaToul-MetaboHUB ; Génopole Toulouse Midi-Pyrénées [Auzeville] (GENOTOUL) ; Université Toulouse III - Paul Sabatier (UT3) ; Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Ecole Nationale Vétérinaire de Toulouse (ENVT) ; Institut National Polytechnique (Toulouse) (Toulouse INP) ; Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National Polytechnique (Toulouse) (Toulouse INP) ; Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (INRAE)-Université Toulouse III - Paul Sabatier (UT3) ; Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Ecole Nationale Vétérinaire de Toulouse (ENVT) ; Institut National Polytechnique (Toulouse) (Toulouse INP) ; Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National Polytechnique (Toulouse) (Toulouse INP) ; Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (INRAE)
- University of Minnesota [MN, USA]
- Centre méditerranéen de médecine moléculaire (C3M) ; Université Nice Sophia Antipolis (1965 - 2019) (UNS) ; COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Côte d'Azur (UCA)
- Cancer Research UK Beatson Institute [Glasgow]
- National Cancer Institute [Bethesda] (NCI-NIH) ; National Institutes of Health [Bethesda] (NIH)
Description
Suppressive regulatory T cell (Treg) differentiation is controlled by diverse immunometabolic signaling pathways and intracellular metabolites. Here we show that cell-permeable α-ketoglutarate (αKG) alters the DNA methylation profile of naive CD4 T cells activated under Treg polarizing conditions, markedly attenuating FoxP3+ Treg differentiation and increasing inflammatory cytokines. Adoptive transfer of these T cells into tumor-bearing mice results in enhanced tumor infiltration, decreased FoxP3 expression, and delayed tumor growth. Mechanistically, αKG leads to an energetic state that is reprogrammed toward a mitochondrial metabolism, with increased oxidative phosphorylation and expression of mitochondrial complex enzymes. Furthermore, carbons from ectopic αKG are directly utilized in the generation of fatty acids, associated with lipidome remodeling and increased triacylglyceride stores. Notably, inhibition of either mitochondrial complex II or DGAT2-mediated triacylglyceride synthesis restores Treg differentiation and decreases the αKG-induced inflammatory phenotype. Thus, we identify a crosstalk between αKG, mitochondrial metabolism and triacylglyceride synthesis that controls Treg fate.
Abstract
International audience
Additional details
- URL
- https://hal.umontpellier.fr/hal-03799675
- URN
- urn:oai:HAL:hal-03799675v1
- Origin repository
- UNICA