自噬
粒细胞生成
生物
细胞生物学
线粒体
脂解
脂滴
糖酵解
脂质代谢
细胞分化
生物化学
新陈代谢
造血
干细胞
细胞凋亡
脂肪组织
基因
作者
Thomas Riffelmacher,Alexander J. Clarke,Felix Clemens Richter,Amanda J. Stranks,Sumeet Pandey,Sara Danielli,Philip Hublitz,Zhanru Yu,Errin Johnson,Tobias Schwerd,James McCullagh,Holm H. Uhlig,Sten Eirik W. Jacobsen,Anna Katharina Simon
出处
期刊:Immunity
[Cell Press]
日期:2017-09-01
卷期号:47 (3): 466-480.e5
被引量:285
标识
DOI:10.1016/j.immuni.2017.08.005
摘要
Neutrophils are critical and short-lived mediators of innate immunity that require constant replenishment. Their differentiation in the bone marrow requires extensive cytoplasmic and nuclear remodeling, but the processes governing these energy-consuming changes are unknown. While previous studies show that autophagy is required for differentiation of other blood cell lineages, its function during granulopoiesis has remained elusive. Here, we have shown that metabolism and autophagy are developmentally programmed and essential for neutrophil differentiation in vivo. Atg7-deficient neutrophil precursors had increased glycolytic activity but impaired mitochondrial respiration, decreased ATP production, and accumulated lipid droplets. Inhibiting autophagy-mediated lipid degradation or fatty acid oxidation alone was sufficient to cause defective differentiation, while administration of fatty acids or pyruvate for mitochondrial respiration rescued differentiation in autophagy-deficient neutrophil precursors. Together, we show that autophagy-mediated lipolysis provides free fatty acids to support a mitochondrial respiration pathway essential to neutrophil differentiation.
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