Author:
Wessendarp Matthew,Watanabe Miki,Liu Serena,Stankiewicz Traci,Ma Yan,Shima Kenjiro,Chalk Claudia,Carey Brenna,Rosendale Lindsey-Romick,Filippi Marie Dominique,Arumugam Paritha
Abstract
AbstractGranulocyte-macrophage colony-stimulating factor (GM-CSF) exerts pleiotropic effects on macrophages and is required for self-renewal but the mechanisms responsible are unknown. Using GM-CSF receptor-β-chain deficient (Csf2rb−/−) mice, we show GM-CSF is critical for mitochondrial turnover, functions, and integrity. GM-CSF signaling is essential for fatty acid β-oxidation and markedly increased tricarboxylic acid cycle activity, oxidative phosphorylation, and ATP production. GM-CSF also regulated cytosolic pathways including glycolysis, pentose phosphate pathway, and amino acid synthesis. We conclude that GM-CSF regulates macrophages in part through a critical role in maintaining mitochondria, which are necessary for cellular metabolism as well as proliferation and self-renewal.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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