巴基斯坦卢比
厌氧糖酵解
HMGB1
瓦博格效应
糖酵解
丙酮酸激酶
细胞生物学
重编程
化学
缺氧(环境)
炎症
转录因子
生物
癌症研究
败血症
基因敲除
下调和上调
生物化学
新陈代谢
免疫学
细胞
基因
有机化学
氧气
作者
Lian-Yue Yang,Min Xie,Minghua Yang,Yanyan Yu,Shan Zhu,Wen-Shang Hou,Rui Kang,Michael T. Lotze,Timothy R. Billiar,Haichao Wang,Lizhi Cao,Daolin Tang
摘要
Increasing evidence suggests the important role of metabolic reprogramming in the regulation of the innate inflammatory response, but the underlying mechanism remains unclear. Here we provide evidence to support a novel role for the pyruvate kinase M2 (PKM2)-mediated Warburg effect, namely aerobic glycolysis, in the regulation of high-mobility group box 1 (HMGB1) release. PKM2 interacts with hypoxia-inducible factor 1α (HIF1α) and activates the HIF-1α-dependent transcription of enzymes necessary for aerobic glycolysis in macrophages. Knockdown of PKM2, HIF1α and glycolysis-related genes uniformly decreases lactate production and HMGB1 release. Similarly, a potential PKM2 inhibitor, shikonin, reduces serum lactate and HMGB1 levels, and protects mice from lethal endotoxemia and sepsis. Collectively, these findings shed light on a novel mechanism for metabolic control of inflammation by regulating HMGB1 release and highlight the importance of targeting aerobic glycolysis in the treatment of sepsis and other inflammatory diseases.
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