Genes & Development · 2018 · 132 citations · 45 references
Inflammatory Lung DiseaseLung InflammationImmunologyCell DeathInnate ImmunityOxidative StressInflammationMolecular PharmacologyAutophagyPparγ LigandMetabolic SignalingCell SignalingRedox SignalingMolecular PhysiologyAllergyChronic InflammationReactive Oxygen SpecieCell BiologyPhagocyteAlternative ActivationCytokineGlutamine MetabolismAnti-inflammatoryImmune Cell DevelopmentMacrophage RespirationMedicine
The nuclear receptor peroxisome proliferator-activated receptor γ (PPARγ) is known to regulate lipid metabolism in many tissues, including macrophages. Here we report that peritoneal macrophage respiration is enhanced by rosiglitazone, an activating PPARγ ligand, in a PPARγ-dependent manner. Moreover, PPARγ is required for macrophage respiration even in the absence of exogenous ligand. Unexpectedly, the absence of PPARγ dramatically affects the oxidation of glutamine. Both glutamine and PPARγ have been implicated in alternative activation (AA) of macrophages, and PPARγ was required for interleukin 4 (IL4)-dependent gene expression and stimulation of macrophage respiration. Indeed, unstimulated macrophages lacking PPARγ contained elevated levels of the inflammation-associated metabolite itaconate and express a proinflammatory transcriptome that, remarkably, phenocopied that of macrophages depleted of glutamine. Thus, PPARγ functions as a checkpoint, guarding against inflammation, and is permissive for AA by facilitating glutamine metabolism. However, PPARγ expression is itself markedly increased by IL4. This suggests that PPARγ functions at the center of a feed-forward loop that is central to AA of macrophages.
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Ultrafast and memory-efficient alignment of short DNA sequences to the human genome
Ben Langmead, Cole Trapnell, Mihai Pop et al. · Genome biology · 2009 · 22.5K citations · Full text
Sven Heinz, Christopher Benner, Nathanael J. Spann et al. · Molecular Cell · 2010 · 14K citations · Full text
Transcriptional Regulation, B Cell Identities, Cell Lineage +9