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Alveolar Macrophage Phagocytosis and Bacteria Clearance in Mice
Published on: March 2, 2019
Alveolar macrophage development in mice requires L-plastin for cellular localization in alveoli
Elizabeth M Todd1, Julie Y Zhou1, Taylor P Szasz1
1Division of Infectious Diseases, Department of Pediatrics.
Abstract:
Alveolar macrophages are lung-resident sentinel cells that develop perinatally and protect against pulmonary infection. Molecular mechanisms controlling alveolar macrophage generation have not been fully defined. Here, we show that the actin-bundling protein L-plastin (LPL) is required for the perinatal development of alveolar macrophages. Mice expressing a conditional allele of LPL (CD11c.Crepos-LPLfl/fl) exhibited significant reductions in alveolar macrophages and failed to effectively clear pulmonary pneumococcal infection, showing that immunodeficiency results from reduced alveolar macrophage numbers. We next identified the phase of alveolar macrophage development requiring LPL. In mice, fetal monocytes arrive in the lungs during a late fetal stage, maturing to alveolar macrophages through a prealveolar macrophage intermediate. LPL was required for the transition from prealveolar macrophages to mature alveolar macrophages. The transition from prealveolar macrophage to alveolar macrophage requires the upregulation of the transcription factor peroxisome proliferator-activated receptor-γ (PPAR-γ), which is induced by exposure to granulocyte-macrophage colony-stimulating factor (GM-CSF). Despite abundant lung GM-CSF and intact GM-CSF receptor signaling, PPAR-γ was not sufficiently upregulated in developing alveolar macrophages in LPL-/- pups, suggesting that precursor cells were not correctly localized to the alveoli, where GM-CSF is produced. We found that LPL supports 2 actin-based processes essential for correct localization of alveolar macrophage precursors: (1) transmigration into the alveoli, and (2) engraftment in the alveoli. We thus identify a molecular pathway governing neonatal alveolar macrophage development and show that genetic disruption of alveolar macrophage development results in immunodeficiency.
Insights
The actin-bundling protein L-plastin (LPL) is crucial for developing alveolar macrophages in newborns. LPL deficiency impairs macrophage development, leading to immunodeficiency and increased susceptibility to lung infections.
Area of Science:
- Immunology
- Cell Biology
- Developmental Biology
Background:
- Alveolar macrophages are critical for lung immunity, developing perinatally.
- The precise molecular mechanisms governing their development remain incompletely understood.
Purpose of the Study:
- To investigate the role of the actin-bundling protein L-plastin (LPL) in perinatal alveolar macrophage development.
- To elucidate the specific stage and mechanisms by which LPL influences alveolar macrophage generation.
Main Methods:
- Utilized conditional knockout mice (CD11c.Crepos-LPLfl/fl) to study LPL function.
- Analyzed alveolar macrophage populations and their developmental stages.
- Assessed pulmonary bacterial clearance in LPL-deficient mice.
- Investigated the role of PPAR-γ and GM-CSF signaling in LPL-dependent development.
Main Results:
- L-plastin (LPL) deficiency significantly reduced alveolar macrophage numbers in neonatal mice.
- LPL-deficient mice exhibited impaired clearance of *Streptococcus pneumoniae* infection, indicating immunodeficiency.
- LPL was essential for the transition of prealveolar macrophages to mature alveolar macrophages.
- LPL supports actin-dependent transmigration and engraftment of macrophage precursors into the alveoli, impacting PPAR-γ upregulation.
Conclusions:
- L-plastin is indispensable for the perinatal development and proper localization of alveolar macrophages.
- Disruption of LPL-mediated alveolar macrophage development leads to neonatal immunodeficiency.
- Identified a novel pathway involving LPL, actin dynamics, and precursor cell localization in governing lung immunity.

