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Publication : STAT3 Activation-Induced Fatty Acid Oxidation in CD8<sup>+</sup> T Effector Cells Is Critical for Obesity-Promoted Breast Tumor Growth.

First Author  Zhang C Year  2020
Journal  Cell Metab Volume  31
Issue  1 Pages  148-161.e5
PubMed ID  31761565 Mgi Jnum  J:286267
Mgi Id  MGI:6400697 Doi  10.1016/j.cmet.2019.10.013
Citation  Zhang C, et al. (2020) STAT3 Activation-Induced Fatty Acid Oxidation in CD8(+) T Effector Cells Is Critical for Obesity-Promoted Breast Tumor Growth. Cell Metab 31(1):148-161.e5
abstractText  Although obesity is known to be critical for cancer development, how obesity negatively impacts antitumor immune responses remains largely unknown. Here, we show that increased fatty acid oxidation (FAO) driven by activated STAT3 in CD8(+) T effector cells is critical for obesity-associated breast tumor progression. Ablating T cell Stat3 or treatment with an FAO inhibitor in obese mice spontaneously developing breast tumor reduces FAO, increases glycolysis and CD8(+) T effector cell functions, leading to inhibition of breast tumor development. Moreover, PD-1 ligation in CD8(+) T cells activates STAT3 to increase FAO, inhibiting CD8(+) T effector cell glycolysis and functions. Finally, leptin enriched in mammary adipocytes and fat tissues downregulates CD8(+) T cell effector functions through activating STAT3-FAO and inhibiting glycolysis. We identify a critical role of increased oxidation of fatty acids driven by leptin and PD-1 through STAT3 in inhibiting CD8(+) T effector cell glycolysis and in promoting obesity-associated breast tumorigenesis.
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