Raychaudhuri Deblina, Singh Pratishtha, Hennessey Mercedes, Chakraborty Bidisha, Tannir Aminah J, Trujillo-Ocampo Abel, Im Jin Seon, Goswami Sangeeta
bioRxiv. 2024 Jun 1:2023.08.25.554830. doi: 10.1101/2023.08.25.554830.
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.
CD8 T细胞的激活和功能分化与导致乳酸产生的代谢途径相关。乳酰化是一种源自乳酸的组蛋白翻译后修饰(hPTM);然而,组蛋白乳酰化在CD8 T细胞激活和功能背景下的相关性尚不清楚。在此,我们展示了人源和鼠源CD8 T细胞中H3K18-乳酰化(H3K18la)和H3K9-乳酰化(H3K9la)的富集,它们作为调节CD8 T细胞表型和功能的关键基因的转录起始位点。此外,我们注意到H3K18la和H3K9la对与特定代谢谱相关的CD8 T细胞亚群有不同影响。重要的是,我们证明通过靶向代谢和表观遗传途径调节H3K18la和H3K9la可调控CD8 T细胞效应功能,包括临床前模型中的抗肿瘤免疫。总体而言,我们的研究揭示了H3K18la和H3K9la在复杂调节与代谢状态相关的CD8 T细胞表型和功能方面的独特作用。