Metabolic sensor AMPK licenses intestinal CD103 + DCs to induce T reg responses

Intestinal dendritic cells (DCs) play a central role in maintaining gut tolerance through priming of peripheral regulatory T cells (pT reg cells). DC tolerogenicity has been linked to catabolic metabolism, but the role of AMP-activated kinase (AMPK), a key regulator of catabolic metabolism, in regulating intestinal tolerance remains unclear. We found high AMPK activation in intestinal DCs, and loss of AMPKα1 in CD11c-expressing cells (CD11c ΔAMPKα1 ) led to reduced frequencies of intestinal RALDH + CD103 + cDC2s. This was associated with reduced pT reg cell induction and consequently increased type 2 immunity in models of intestinal helminth infection. Correspondingly, CD103 + cDC2s from helminth-infected CD11c ΔAMPKα1 mice failed to prime T reg cells ex vivo. Similarly, T reg cell induction by AMPK-deficient human retinoic acid (RA)–induced tolerogenic CD103 + DCs was compromised. Mechanistically, AMPK underpinned RA-driven tolerogenicity by promoting RALDH activity and TGF-β secretion in a FoxO3-dependent manner, independent from metabolic reprogramming. Our findings identify AMPK as a key regulator of intestinal DC-mediated tolerance and as a therapeutic target to counter intestinal inflammatory disease.

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Journal
Science Advances
Published
2026-09-16
DOI
https://doi.org/10.1126/sciadv.aeb4813
Primary Topic
Metabolism, Diabetes, and Cancer
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article
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article

Metabolic sensor AMPK licenses intestinal CD103 + DCs to induce T reg responses

Anna Zawistowska‐Deniziak, Rick M. Maizels, Alwin J. van der Ham, Graham A. Heieis et al.
Science Advances
Metabolism, Diabetes, and Cancer
article

Metabolic sensor AMPK licenses intestinal CD103 + DCs to induce T reg responses

Anna Zawistowska‐Deniziak, Rick M. Maizels, Alwin J. van der Ham, Graham A. Heieis, Bruno Guigas, Eline C. Brombacher, Thiago A. Patente, Leonard R. Pelgrom, Lukas J.A.C. Hawinkels, Joost M. Lambooij, Arifa Ozir‐Fazalalikhan, Bart Everts, José Alexandre Marzagão Barbuto, José Javier Fernández, Martina Erbì, Johan van der Reijden, Julian van Duijvenvoorde, Frank Otto, Sara Barnhoorn
article en

Abstract

Intestinal dendritic cells (DCs) play a central role in maintaining gut tolerance through priming of peripheral regulatory T cells (pT reg cells). DC tolerogenicity has been linked to catabolic metabolism, but the role of AMP-activated kinase (AMPK), a key regulator of catabolic metabolism, in regulating intestinal tolerance remains unclear. We found high AMPK activation in intestinal DCs, and loss of AMPKα1 in CD11c-expressing cells (CD11c ΔAMPKα1 ) led to reduced frequencies of intestinal RALDH + CD103 + cDC2s. This was associated with reduced pT reg cell induction and consequently increased type 2 immunity in models of intestinal helminth infection. Correspondingly, CD103 + cDC2s from helminth-infected CD11c ΔAMPKα1 mice failed to prime T reg cells ex vivo. Similarly, T reg cell induction by AMPK-deficient human retinoic acid (RA)–induced tolerogenic CD103 + DCs was compromised. Mechanistically, AMPK underpinned RA-driven tolerogenicity by promoting RALDH activity and TGF-β secretion in a FoxO3-dependent manner, independent from metabolic reprogramming. Our findings identify AMPK as a key regulator of intestinal DC-mediated tolerance and as a therapeutic target to counter intestinal inflammatory disease.

Science AdvancesVol. 12(38)
Universidade de São Paulo (BR), Leiden University Medical Center (NL), University of Warsaw (PL), University of Glasgow (GB)
Openalex Percentile: Top 18%
Metabolism, Diabetes, and Cancer
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