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Published on: August 26, 2018
Inflammation-Induced Alternative Pre-mRNA Splicing in Mouse Alveolar Macrophages
William J Janssen1,2, Thomas Danhorn3, Chelsea Harris3,4,5
1Department of Medicine.
Abstract:
Alveolar macrophages serve as central orchestrators of inflammatory responses in the lungs, both initiating their onset and promoting their resolution. However, the mechanisms that program macrophages for these dynamic responses are not fully understood. Over 95% of all mammalian genes undergo alternative pre-mRNA splicing. While alternative splicing has been shown to regulate inflammatory responses in macrophages in vitro, it has not been investigated on a genome-wide scale in vivo Here we used RNAseq to investigate alternative pre-mRNA splicing in alveolar macrophages isolated from lipopolysaccharide (LPS)-treated mice during the peak of inflammation and during its resolution. We found that lung inflammation induced substantial alternative pre-mRNA splicing in alveolar macrophages. The number of changes in isoform usage was greatest at the peak of inflammation and involved multiple classes of alternative pre-mRNA splicing events. Comparative pathway analysis of inflammation-induced changes in alternative pre-mRNA splicing and differential gene expression revealed overlap of pathways enriched for immune responses such as chemokine signaling and cellular metabolism. Moreover, alternative pre-mRNA splicing of genes in metabolic pathways differed in tissue resident vs. recruited (blood monocyte-derived) alveolar macrophages and corresponded to changes in core metabolism, including a switch to Warburg-like metabolism in recruited macrophages with increased glycolysis and decreased flux through the tricarboxylic acid cycle.
Insights
Lung inflammation significantly alters gene splicing in alveolar macrophages. This study reveals how alternative splicing impacts immune responses and cellular metabolism during inflammation resolution in vivo.
Area of Science:
- Immunology
- Molecular Biology
- Genomics
Background:
- Alveolar macrophages orchestrate lung inflammatory responses.
- Mechanisms programming macrophage responses remain unclear.
- Alternative pre-mRNA splicing's role in vivo is largely uninvestigated.
Purpose of the Study:
- To investigate genome-wide alternative pre-mRNA splicing in alveolar macrophages during lung inflammation in vivo.
- To understand how alternative splicing contributes to inflammatory and metabolic reprogramming.
Main Methods:
- RNA sequencing (RNAseq) of alveolar macrophages from lipopolysaccharide (LPS)-treated mice.
- Analysis of alternative splicing events at peak inflammation and resolution.
- Comparative pathway analysis with differential gene expression.
Main Results:
- Lung inflammation induced substantial alternative pre-mRNA splicing in alveolar macrophages.
- Splicing changes were most abundant at peak inflammation, affecting multiple event classes.
- Alternative splicing impacts immune response pathways (e.g., chemokine signaling) and cellular metabolism.
- Metabolic gene splicing differed between tissue-resident and recruited macrophages.
- Recruited macrophages exhibited a switch to Warburg-like metabolism.
Conclusions:
- Alternative pre-mRNA splicing is a key regulator of alveolar macrophage function during lung inflammation.
- Splicing patterns reflect distinct metabolic states of macrophage populations.
- This highlights splicing as a critical layer of immune and metabolic control in the lung.
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