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Updated: Mar 31, 2026

A Non-invasive and Technically Non-intensive Method for Induction and Phenotyping of Experimental Bacterial Pneumonia in Mice
Published on: September 28, 2016
Mortality factor 4 like 1 protein mediates epithelial cell death in a mouse model of pneumonia
Chunbin Zou1, Jin Li2, Sheng Xiong2
1Department of Medicine, Acute Lung Injury Center of Excellence, University of Pittsburgh, Pittsburgh, PA 15213, USA. mallampallirk@upmc.edu zouc@upmc.edu.
Abstract:
Unchecked epithelial cell death is fundamental to the pathogenesis of pneumonia. The recognition of unique signaling pathways that preserve epithelial cell viability may present new opportunities for interventional strategies. We describe that mortality factor 4 like 1 (Morf4l1), a protein involved in chromatin remodeling, is constitutively expressed at low levels in the lung because of its continuous degradation mediated by an orphan ubiquitin E3 ligase subunit, Fbxl18. Expression of Morf4l1 increases in humans with pneumonia and is up-regulated in lung epithelia after exposure to Pseudomonas aeruginosa or lipopolysaccharide. In a mouse model of pneumonia induced by P. aeruginosa, Morf4l1 is stabilized by acetylation that protects it from Fbxl18-mediated degradation. After P. aeruginosa infection of mice, overexpression of Morf4l1 resulted in lung epithelial cell death, whereas its depletion restored cell viability. Using in silico modeling and drug-target interaction studies, we identified that the U.S. Food and Drug Administration-approved thrombin inhibitor argatroban is a Morf4l1 antagonist. Argatroban inhibited Morf4l1-dependent histone acetylation, reduced its cytotoxicity, and improved survival of mice with experimental lung injury at doses that had no anticoagulant activity. These studies uncover a previously unrecognized biological mechanism whereby pathogens subvert cell viability by extending the life span of a cytotoxic host protein. Morf4l1 may be a potential molecular target for non-antibiotic pharmacotherapy during severe pulmonary infection.
Insights
Mortality factor 4 like 1 (Morf4l1) protein accumulation drives pneumonia pathogenesis by increasing epithelial cell death. Inhibiting Morf4l1 with argatroban reduces lung injury and improves survival in mice.
Area of Science:
- Pulmonary Medicine
- Cell Biology
- Molecular Mechanisms of Disease
Background:
- Epithelial cell death is a key factor in pneumonia development.
- Identifying pathways that maintain lung epithelial cell survival is crucial for new treatments.
Purpose of the Study:
- To investigate the role of mortality factor 4 like 1 (Morf4l1) in pneumonia pathogenesis.
- To identify potential therapeutic targets for non-antibiotic pneumonia treatment.
Main Methods:
- Studied Morf4l1 expression in human pneumonia and mouse models.
- Utilized in silico modeling and drug-target interaction studies.
- Investigated the effect of Morf4l1 modulation and argatroban treatment in mouse pneumonia models.
Main Results:
- Morf4l1 expression increases in pneumonia and promotes lung epithelial cell death.
- Acetylation stabilizes Morf4l1, protecting it from degradation.
- The thrombin inhibitor argatroban antagonizes Morf4l1, reducing cytotoxicity and improving survival in mice.
Conclusions:
- Morf4l1 is a critical mediator of pneumonia-induced epithelial cell death.
- Targeting Morf4l1 with agents like argatroban shows therapeutic potential for severe pulmonary infections.
- This study reveals a novel mechanism of pathogen-induced host cell death and a potential non-antibiotic therapeutic strategy.
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