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[Preprint]. 2024 Jun 1:2023.08.25.554830.
doi: 10.1101/2023.08.25.554830.

Histone Lactylation Drives CD8 T Cell Metabolism and Function

Histone Lactylation Drives CD8 T Cell Metabolism and Function

Deblina Raychaudhuri et al. bioRxiv. .

Update in

  • Histone lactylation drives CD8+ T cell metabolism and function.
    Raychaudhuri D, Singh P, Chakraborty B, Hennessey M, Tannir AJ, Byregowda S, Natarajan SM, Trujillo-Ocampo A, Im JS, Goswami S. Raychaudhuri D, et al. Nat Immunol. 2024 Nov;25(11):2140-2151. doi: 10.1038/s41590-024-01985-9. Epub 2024 Oct 7. Nat Immunol. 2024. PMID: 39375549

Abstract

The activation and functional differentiation of CD8 T cells are linked to metabolic pathways that result in the production of lactate. Lactylation is a lactate-derived histone post-translational modification (hPTM); however, the relevance of histone lactylation in the context of CD8 T cell activation and function is not known. Here, we show the enrichment of H3K18-lactylation (H3K18la) and H3K9-lactylation (H3K9la) in human and murine CD8 T cells which act as transcription initiators of key genes regulating CD8 T cell phenotype and function. Further, we note distinct impacts of H3K18la and H3K9la on CD8 T cell subsets linked to their specific metabolic profiles. Importantly, we demonstrate that modulation of H3K18la and H3K9la by targeting metabolic and epigenetic pathways regulates CD8 T cell effector function including anti-tumor immunity in preclinical models. Overall, our study uncovers the unique contributions of H3K18la and H3K9la in modulating CD8 T cell phenotype and function intricately associated with metabolic state.

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