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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Extracellular vesicles from A23187-treated neutrophils cause cGAS-STING-dependent IL-6 production by macrophages
Edwina R Allen1, Kaitlyn M Whitefoot-Keliin1, Ellen M Palmatier1
1Department of Biology, Central Michigan University, Mount Pleasant, MI, United States.
Abstract:
In response to several types of bacteria, as well as pharmacological agents, neutrophils produce extracellular vesicles (EVs) and release DNA in the form of neutrophil extracellular traps (NETs). However, it is unknown whether these two neutrophil products cooperate to modulate inflammation. Consistent with vital NETosis, neutrophils challenged with S. aureus, as well as those treated with A23187, released significantly more DNA relative to untreated or fMLF-treated neutrophils, with no lysis occurring for any condition. To test the hypothesis that EVs generated during NETosis caused macrophage inflammation, we isolated and characterized EVs from A23187-treated neutrophils (A23187-EVs). A23187-EVs associated with neutrophil granule proteins, histone H3, transcription factor A, mitochondrial (TFAM), and nuclear and mitochondrial DNA (mtDNA). We showed that DNA from A23187-EVs, when transfected into macrophages, led to production of IL-6 and IFN-α2, and this response was blunted by pre-treatment with the STING inhibitor H151. Next, we confirmed that A23187-EVs were engulfed by macrophages, and showed that they induced cGAS-STING-dependent IL-6 production. In contrast, neither EVs from untreated or fMLF-treated cells exhibited pro-inflammatory activity. Although detergent-mediated lysis of A23187-EVs diminished IL-6 production, removal of surface-associated DNA with DNase I treatment had no effect, and A23187-EVs did not induce IFN-α2 production. Given these unexpected results, we investigated whether macrophage mtDNA activated the cGAS-STING signaling axis. Consistent with mitochondrial outer membrane permeabilization (MOMP), a defined mechanism of mtDNA release, we observed macrophage mitochondrial membrane depolarization, a decrease in cytosolic Bax, and a decrease in mitochondrial cytochrome c, suggesting that macrophage mtDNA may initiate this EV-dependent signaling cascade. All together, these data demonstrate that A23187-EVs behave differently than transfected NET- or EV-DNA, and that neutrophil-derived EVs could be used as a model to study NF-κB-dependent STING activation.
Insights
Neutrophil extracellular vesicles (EVs) carrying mitochondrial DNA (mtDNA) can trigger inflammation in macrophages via the cGAS-STING pathway. These findings suggest neutrophil-derived EVs are a novel model for studying STING activation in inflammation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Neutrophils release extracellular vesicles (EVs) and neutrophil extracellular traps (NETs) in response to stimuli.
- The interplay between neutrophil EVs and NETs in modulating inflammation remains unclear.
- NETosis involves DNA release without cell lysis, but the role of associated EVs is not fully understood.
Purpose of the Study:
- To investigate whether EVs generated during neutrophil extracellular trap formation (NETosis) contribute to macrophage inflammation.
- To elucidate the mechanism by which neutrophil-derived EVs induce inflammatory responses in macrophages.
- To explore the potential of neutrophil EVs as a model for studying STING pathway activation.
Main Methods:
- Isolation and characterization of EVs from neutrophils stimulated with A23187.
- Transfection of macrophage cells with DNA from A23187-treated EVs.
- Assessment of inflammatory cytokine production (IL-6, IFN-α2) and STING pathway activation.
- Analysis of mitochondrial integrity and outer membrane permeabilization in macrophages.
Main Results:
- EVs from A23187-treated neutrophils (A23187-EVs) contained neutrophil granule proteins, histone H3, TFAM, and nuclear/mitochondrial DNA (mtDNA).
- Transfection of macrophages with DNA from A23187-EVs induced IL-6 and IFN-α2 production, dependent on the STING pathway.
- Macrophage uptake of A23187-EVs triggered cGAS-STING-dependent IL-6 production, with evidence of mitochondrial outer membrane permeabilization.
Conclusions:
- Neutrophil-derived A23187-EVs, particularly their associated mtDNA, can activate the cGAS-STING signaling axis in macrophages, leading to inflammation.
- The inflammatory potential of A23187-EVs differs from transfected NETs or isolated EV DNA, highlighting the importance of EV context.
- Neutrophil-derived EVs serve as a valuable model for studying NF-κB-dependent STING activation and its role in inflammatory processes.
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