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Development and Identification of a Novel Subpopulation of Human Neutrophil-derived Giant Phagocytes In Vitro
Published on: January 25, 2017
MCPIP-1 Restricts Inflammation via Promoting Apoptosis of Neutrophils
Ewelina Dobosz1, Marta Wadowska1, Marta Kaminska1
1Department of Microbiology, Faculty of Biochemistry, Biophysics and Biotechnology of Jagiellonian University, Krakow, Poland.
Abstract:
Monocyte chemoattractant protein-induced protein-1 (MCPIP-1) is a potent inhibitor of inflammatory response to pathogens. Acting as endonuclease against transcripts of inflammatory cytokines or transcription factors MCPIP-1 can significantly reduce the cytokine storm, thus limiting the tissue damage. As the adequate resolution of inflammation depends also on the efficient clearance of accumulated neutrophils, we focused on the role of MCPIP-1 in apoptosis and retention of neutrophils. We used peritoneal neutrophils from cell-specific MCPIP-1 knockout mice and showed prolonged survival of these cells. Moreover, we confirmed that MCPIP-1-dependent degradation of transcripts of antiapoptotic genes, including BCL3, BCL2A1, BCL2L1, and for the first time MCL-1, serves as an early event in spontaneous apoptosis of primary neutrophils. Additionally, we identified previously unknown miRNAs as potential binding partners to the MCPIP-1 transcript and their regulation suggest a role in MCPIP-1 half-life and translation. These phenomena may play a role as a molecular switch that balances the MCPIP-1-dependent apoptosis. Besides that, we determined these particular miRNAs as integral components of the GM-CSF-MCPIP-1 axis. Taken together, we identified the novel anti-inflammatory role of MCPIP-1 as a regulator of accumulation and survival of neutrophils that simultaneously promotes an adequate resolution of inflammation.
Insights
Monocyte chemoattractant protein-induced protein-1 (MCPIP-1) regulates neutrophil apoptosis and survival, promoting inflammation resolution. This protein degrades anti-apoptotic gene transcripts, aiding neutrophil clearance and limiting tissue damage.
Area of Science:
- Immunology
- Molecular Biology
Background:
- Monocyte chemoattractant protein-induced protein-1 (MCPIP-1) inhibits inflammatory responses.
- Efficient neutrophil clearance is crucial for inflammation resolution.
Purpose of the Study:
- To investigate the role of MCPIP-1 in neutrophil apoptosis and retention.
- To identify molecular mechanisms regulating MCPIP-1 activity in neutrophils.
Main Methods:
- Utilized MCPIP-1 knockout mice to study peritoneal neutrophils.
- Analyzed gene transcript degradation and miRNA interactions with MCPIP-1 mRNA.
Main Results:
- MCPIP-1 deficiency prolonged neutrophil survival.
- MCPIP-1 degrades transcripts of anti-apoptotic genes (BCL3, BCL2A1, BCL2L1, MCL-1), inducing neutrophil apoptosis.
- Identified novel miRNAs regulating MCPIP-1 stability and translation.
Conclusions:
- MCPIP-1 plays a novel anti-inflammatory role by regulating neutrophil accumulation and survival.
- MCPIP-1 acts as a molecular switch balancing neutrophil apoptosis.
- MiRNAs are integral to the GM-CSF-MCPIP-1 axis, influencing MCPIP-1 function.
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