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Published on: June 13, 2019
Intracellular C3 Protects Human Airway Epithelial Cells from Stress-associated Cell Death
Hrishikesh S Kulkarni1,2, Michelle L Elvington2, Yi-Chieh Perng2
11 Division of Pulmonary and Critical Care Medicine, and.
Insights
Airway epithelial cells synthesize and store complement C3 intracellularly, protecting themselves from stress. This finding reveals a novel role for complement in airway host defense.
Area of Science:
- Immunology
- Cell Biology
- Respiratory Medicine
Background:
- The complement system is crucial for host defense against pathogens and stress.
- Complement component 3 (C3) is central to this system and found in blood and BAL fluid.
- Previous work showed C3 uptake and intracellular cleavage in certain cell types.
Purpose of the Study:
- To investigate the role of complement at environmental interfaces, specifically the respiratory tract.
- To determine if airway epithelial cells (AECs) synthesize and store C3 intracellularly.
- To explore the protective functions of intracellular C3 in AECs.
Main Methods:
- Culture of primary human tracheobronchial cells and BEAS-2B cell line in C3-free media.
- Analysis of intracellular C3 forms (pro-C3 and storage form) using CRISPR knockout and siRNA.
- Assessment of C3 expression and uptake under proinflammatory cytokine exposure and stress conditions.
- Examination of C3 stores in AECs from lung tissues of patients with end-stage lung diseases.
Main Results:
- AECs uniquely synthesize and store intracellular C3 (pro-C3 and storage forms) in C3-free media.
- Endogenous C3 generation in AECs was confirmed via CRISPR and siRNA.
- Proinflammatory cytokines increased intracellular and secreted C3.
- AEC uptake of exogenous C3 mitigated stress-induced cell death.
- Intracellular C3 stores were elevated in AECs from diseased lung tissues.
Conclusions:
- Airway epithelial cells actively manage intracellular C3 through biosynthesis and uptake.
- Intracellular C3 stores provide protection against specific cell death inducers.
- These findings highlight the significance of intracellular C3 in airway epithelial biology.
- Novel pathways for complement-mediated host protection in the airway are suggested.
Abstract:
The complement system provides host defense against pathogens and environmental stress. C3, the central component of complement, is present in the blood and increases in BAL fluid after injury. We recently discovered that C3 is taken up by certain cell types and cleaved intracellularly to C3a and C3b. C3a is required for CD4+ T-cell survival. These observations made us question whether complement operates at environmental interfaces, particularly in the respiratory tract. We found that airway epithelial cells (AECs, represented by both primary human tracheobronchial cells and BEAS-2B [cell line]) cultured in C3-free media were unique from other cell types in that they contained large intracellular stores of de novo synthesized C3. A fraction of this protein reduced ("storage form") but the remainder did not, consistent with it being pro-C3 ("precursor form"). These two forms of intracellular C3 were absent in CRISPR knockout-induced C3-deficient AECs and decreased with the use of C3 siRNA, indicating endogenous generation. Proinflammatory cytokine exposure increased both stored and secreted forms of C3. Furthermore, AECs took up C3 from exogenous sources, which mitigated stress-associated cell death (e.g., from oxidative stress or starvation). C3 stores were notably increased within AECs in lung tissues from individuals with different end-stage lung diseases. Thus, at-risk cells furnish C3 through biosynthesis and/or uptake to increase locally available C3 during inflammation, while intracellularly, these stores protect against certain inducers of cell death. These results establish the relevance of intracellular C3 to airway epithelial biology and suggest novel pathways for complement-mediated host protection in the airway.
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