Lactate supports a metabolic-epigenetic link in macrophage polarization

乳酸支持巨噬细胞极化中的代谢表观遗传联系

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作者:Jordan T Noe, Beatriz E Rendon, Anne E Geller, Lindsey R Conroy, Samantha M Morrissey, Lyndsay E A Young, Ronald C Bruntz, Eun J Kim, Ashley Wise-Mitchell, Mariana Barbosa de Souza Rizzo, Eric R Relich, Becca V Baby, Lance A Johnson, Hayley C Affronti, Kelly M McMasters, Brian F Clem, Matthew S Gent

Abstract

Lactate accumulation is a hallmark of solid cancers and is linked to the immune suppressive phenotypes of tumor-infiltrating immune cells. We report herein that interleukin-4 (IL-4)–induced M0 → M2 macrophage polarization is accompanied by interchangeable glucose- or lactate-dependent tricarboxylic acid (TCA) cycle metabolism that directly drives histone acetylation, M2 gene transcription, and functional immune suppression. Lactate-dependent M0 → M2 polarization requires both mitochondrial pyruvate uptake and adenosine triphosphate–citrate lyase (ACLY) enzymatic activity. Notably, exogenous acetate rescues defective M2 polarization and histone acetylation following mitochondrial pyruvate carrier 1 (MPC1) inhibition or ACLY deficiency. Lastly, M2 macrophage–dependent tumor progression is impaired by conditional macrophage ACLY deficiency, further supporting a dominant role for glucose/lactate mitochondrial metabolism and histone acetylation in driving immune evasion. This work adds to our understanding of how mitochondrial metabolism affects macrophage functional phenotypes and identifies a unique tumor microenvironment (TME)–driven metabolic-epigenetic link in M2 macrophages.

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