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◆ Cell2026-09-11

Mitochondrial ATP promotes T cell differentiation through chromatin accessibility.

Charles Ng, Tak Shun Fung, Dayi Li, Korbinian N Kropp, Luis F Somarribas Patterson, Alexandria Markovitz, Daniel N Weinberg, Olivia Jones, Ji-Young Kim, Guoan Zhang, Richard Koche, Mara Monetti, Huayuan Tang, Yun He, Zhengshuang Xu, Xin Cai, Ziqi Yu, Geetha Bhagavatula, Sean P Colgan, Ya-Hui Lin, Zhuoning Li, Elizabeth M Steinert, Christopher A Klebanoff, Santosha A Vardhana, Navdeep S Chandel, Lin Wu, Craig B Thompson

原始摘要(英文原文)· Original abstract
Immune elimination of chronic infection or cancer requires cytotoxic CD8+ T cells that adopt and maintain an effector phenotype. Cytotoxic T cell function is a bioenergetically demanding process. Here, we report the ability of D-α-hydroxybutyrate (DAHB) to act as a signaling molecule that increases mitochondrial ATP production and drives the conversion of proliferating T cells into cytotoxic effector cells. DAHB signaling switches ATP production from glycolysis to oxidative phosphorylation supported by fatty acid oxidation. This conversion elevates the level of a phosphagen, phosphocreatine (PCr). Both the PCr bioenergetic reserve and oxidative phosphorylation were required for T cell effector differentiation. DAHB-induced CD8 effector gene transcription was coupled to bioenergetics by BAF-complex-dependent remodeling of chromatin at effector loci. DAHB-enhanced CD8+ T cell antitumor activity both in vitro and in vivo. Together, these findings link cellular bioenergetics to the regulation of chromatin accessibility and gene expression required to support effector function.
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Mitochondrial ATP promotes T cell differentiation through chromatin accessibility. — 科研速览 Science Skim