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Updated: Jul 24, 2025

Alveolar Macrophage Phagocytosis and Bacteria Clearance in Mice
Published on: March 2, 2019
A novel reporter mouse line for studying alveolar macrophages
Xiaoyun Zhao1,2,3, Liang Li1,2,3, Hongxiang Sun1,2,3
1Shanghai Institute of Immunology, Department of Immunology and Microbiology, and the Ministry of Education Key Laboratory of Cell Death and Differentiation, Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, China.
Abstract:
Alveolar macrophages (AMs) are self-maintained immune cells that play vital roles in lung homeostasis and immunity. Although reporter mice and culture systems have been established for studying macrophages, an accurate and specific reporter line for alveolar macrophage study is still not available. Here we reported a novel Rspo1-tdTomato gene reporter mouse line that could specifically label mouse AMs in a cell-intrinsic manner. Using this reporter system, we visualized the dynamics of alveolar macrophages intravitally under steady state and characterized the alveolar macrophage differentiation under in vitro condition. By performing ATAC-seq, we found that insertion of the tdTomato cassette in the Rspo1 locus increased the accessibility of a PPARE motif within the Rspo1 locus and revealed a potential regulation by key transcription factor PPAR-γ for alveolar macrophage differentiation in vitro and in vivo. Consistently, perturbation of PPAR-γ by its agonist rosiglitazone or inhibitor GW9662 resulted in corresponding alteration of tdTomato expression in alveolar macrophages together with the transcription of PPAR-γ downstream target genes. Furthermore, global transcriptomic analyses of AMs from the wild type mice and the Rspo1-tdTomato mice showed comparable gene expression profiles, especially those AM-specific genes, confirming that the insertion of the tdTomato cassette in the Rspo1 locus does not impact the cell identity and biological function of AMs under normal condition. Taken together, our study provides an alternative tool for in vivo and in vitro labeling of alveolar macrophages with high specificity which could also be utilized as an indicator of PPAR-γ activity for future development of PPAR-γ specific targeting drugs.
Insights
Researchers developed a novel Rspo1-tdTomato reporter mouse line for specific alveolar macrophage (AM) labeling. This tool aids in studying AM dynamics and reveals PPAR-γ
Area of Science:
- Immunology
- Cell Biology
- Genetics
Background:
- Alveolar macrophages (AMs) are crucial for lung homeostasis and immunity.
- Existing reporter systems lack specificity for studying AMs.
- A precise tool is needed to track AM behavior and differentiation.
Purpose of the Study:
- To develop and validate a novel Rspo1-tdTomato gene reporter mouse line for specific AM labeling.
- To investigate AM dynamics in vivo and differentiation in vitro.
- To explore the role of PPAR-γ in AM differentiation using the reporter system.
Main Methods:
- Generation of the Rspo1-tdTomato reporter mouse line.
- Intravital imaging of AMs.
- In vitro differentiation assays.
- ATAC-seq and transcriptomic analyses.
- Perturbation of PPAR-γ activity using agonists and inhibitors.
Main Results:
- The Rspo1-tdTomato line specifically labels AMs cell-intrinsically.
- Reporter system visualized AM dynamics and characterized in vitro differentiation.
- ATAC-seq identified increased accessibility at a PPARE motif in the Rspo1 locus, suggesting PPAR-γ regulation.
- PPAR-γ perturbation altered tdTomato expression and downstream gene transcription.
- Transcriptomic analysis confirmed the reporter insertion did not affect AM identity or function.
Conclusions:
- The Rspo1-tdTomato mouse line is a highly specific tool for in vivo and in vitro AM labeling.
- This reporter system offers insights into AM differentiation and PPAR-γ activity.
- The tool can facilitate the development of targeted therapies for lung diseases.
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