Macrophages play a key role in ozone-induced lung injury by regulating both the initiation and resolution of inflammation. These distinct activities are mediated by pro-inflammatory and anti-inflammatory/proresolution macrophages which sequentially accumulate in injured tissues. Macrophage activation is dependent, in part, on intracellular metabolism. Herein, we used RNA-sequencing (seq) to identify signaling pathways regulating macrophage immunometabolic activity following exposure of mice to ozone (0.8âppm, 3âh) or air control. Analysis of lung macrophages using an Agilent Seahorse showed that inhalation of ozone increased macrophage glycolytic activity and oxidative phosphorylation at 24 and 72âh post-exposure. An increase in the percentage of macrophages in S phase of the cell cycle was observed 24âh post ozone. RNA-seq revealed significant enrichment of pathways involved in innate immune signaling and cytokine production among differentially expressed genes at both 24 and 72âh after ozone, whereas pathways involved in cell cycle regulation were upregulated at 24âh and intracellular metabolism at 72âh. An interaction network analysis identified tumor suppressor 53 (TP53), E2F family of transcription factors (E2Fs), cyclin-dependent kinase inhibitor 1A (CDKN1a/p21), and cyclin D1 (CCND1) as upstream regulators of cell cycle pathways at 24âh and TP53, nuclear receptor subfamily 4 group a member 1 (NR4A1/Nur77), and estrogen receptor alpha (ESR1/ERα) as central upstream regulators of mitochondrial respiration pathways at 72âh. To assess whether ERα regulates metabolic activity, we used ERα-/- mice. In both air and ozone-exposed mice, loss of ERα resulted in increases in glycolytic capacity and glycolytic reserve in lung macrophages with no effect on mitochondrial oxidative phosphorylation. Taken together, these results highlight the complex interaction between cell cycle, intracellular metabolism, and macrophage activation which may be important in the initiation and resolution of inflammation following ozone exposure.
Transcriptional profiling of lung macrophages following ozone exposure in mice identifies signaling pathways regulating immunometabolic activation.
对小鼠暴露于臭氧后肺巨噬细胞的转录组进行分析,可以确定调节免疫代谢激活的信号通路
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作者:Smith Ley Cody, Abramova Elena, Vayas Kinal, Rodriguez Jessica, Gelfand-Titiyevksiy Benjamin, Roepke Troy A, Laskin Jeffrey D, Gow Andrew J, Laskin Debra L
| 期刊: | Toxicological Sciences | 影响因子: | 4.100 |
| 时间: | 2024 | 起止号: | 2024 Sep 1; 201(1):103-117 |
| doi: | 10.1093/toxsci/kfae081 | 研究方向: | 代谢、信号转导、细胞生物学 |
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