TGF-β uncouples glycolysis and inflammation in macrophages and controls survival during sepsis

促炎细胞因子 细胞因子 糖酵解 巨噬细胞 炎症 败血症 转化生长因子 癌症研究 下调和上调 生物 免疫学 内科学 内分泌学 医学 新陈代谢 生物化学 体外 基因
作者
Thierry Gauthier,Yao Chen,Tyrone Dowdy,Wenwen Jin,Yun-Ji Lim,Liliana Catherine Patiño,Na Liu,Shannon I. Ohlemacher,Andrew Bynum,Rida Kazmi,Carole A. Bewley,Mladen Mitrovic,Daniel Martin,Robert J. Morell,Michael Eckhaus,Mioara Larion,Roxane Tussiwand,John J. O’Shea,WanJun Chen
出处
期刊:Science Signaling [American Association for the Advancement of Science (AAAS)]
卷期号:16 (797) 被引量:11
标识
DOI:10.1126/scisignal.ade0385
摘要

Changes in metabolism of macrophages are required to sustain macrophage activation in response to different stimuli. We showed that the cytokine TGF-β (transforming growth factor–β) regulates glycolysis in macrophages independently of inflammatory cytokine production and affects survival in mouse models of sepsis. During macrophage activation, TGF-β increased the expression and activity of the glycolytic enzyme PFKL (phosphofructokinase-1 liver type) and promoted glycolysis but suppressed the production of proinflammatory cytokines. The increase in glycolysis was mediated by an mTOR–c-MYC–dependent pathway, whereas the inhibition of cytokine production was due to activation of the transcriptional coactivator SMAD3 and suppression of the activity of the proinflammatory transcription factors AP-1, NF-κB, and STAT1. In mice with LPS-induced endotoxemia and experimentally induced sepsis, the TGF-β–induced enhancement in macrophage glycolysis led to decreased survival, which was associated with increased blood coagulation. Analysis of septic patient cohorts revealed that the expression of PFKL , TGFBRI (which encodes a TGF-β receptor), and F13A1 (which encodes a coagulation factor) in myeloid cells positively correlated with COVID-19 disease. Thus, these results suggest that TGF-β is a critical regulator of macrophage metabolism and could be a therapeutic target in patients with sepsis.
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