糖酵解
氧化磷酸化
磷酸化
细胞内
生物
细胞生物学
生物化学
柠檬酸循环
巨噬细胞
新陈代谢
体外
作者
Feilong Wang,Song Zhang,Ivan Vučković,Ryoung‐Hoon Jeon,Amir Lerman,Clifford D.L. Folmes,Petras P. Dzeja,Joerg Herrmann
出处
期刊:Cell Metabolism
[Elsevier]
日期:2018-09-01
卷期号:28 (3): 463-475.e4
被引量:277
标识
DOI:10.1016/j.cmet.2018.08.012
摘要
Enhanced glucose uptake and a switch to glycolysis are key traits of M1 macrophages, whereas enhanced fatty acid oxidation and oxidative phosphorylation are the main metabolic characteristics of M2 macrophages. Recent studies challenge this traditional view, indicating that glycolysis may also be critically important for M2 macrophage differentiation, based on experiments with 2-DG. Here we confirm the inhibitory effect of 2-DG on glycolysis, but also demonstrate that 2-DG impairs oxidative phosphorylation and significantly reduces 13C-labeled Krebs cycle metabolites and intracellular ATP levels. These metabolic derangements were associated with reduced JAK-STAT6 pathway activity and M2 differentiation marker expression. While glucose deprivation and glucose substitution with galactose effectively suppressed glycolytic activity, there was no effective suppression of oxidative phosphorylation, intracellular ATP levels, STAT6 phosphorylation, and M2 differentiation marker expression. These data indicate that glycolytic stimulation is not required for M2 macrophage differentiation as long as oxidative phosphorylation remains active.
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