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Detection of Inflammasome Activation and Pyroptotic Cell Death in Murine Bone Marrow-derived Macrophages
Published on: May 21, 2018
Dynamin-Related Protein 1 Is Involved in Mitochondrial Damage, Defective Mitophagy, and NLRP3 Inflammasome Activation
Hui Jiang1,2, Feng Chen1,2, DianZe Song1,2
1Institute of Basic Medicine and Forensic Medicine, North Sichuan Medical College and Institute of Rheumatology and Immunology, The Affiliated Hospital of North Sichuan Medical College, No. 1 South Maoyuan Road, Nanchong, 637001 Sichuan, China.
Abstract:
Excessive generation of reactive oxygen species (ROS) has great impacts on MSU crystal-induced inflammation. Drp1-dependent mitochondrial fission is closely associated with mitochondrial ROS levels. However, whether Drp1 signaling contributes to MSU crystal-induced inflammation remains unclear. Mice bone marrow-derived macrophages (BMDMs) were primed with LPS and then stimulated with MSU suspensions for 12 h. The protein levels associated with mitochondrial dynamics, oxidative stress, and mitophagy were detected by Western blot. BMDMs were loaded with MitoTracker Green probe to detect mitochondrial morphology. To measure mitochondrial reactive oxygen species (ROS) and total ROS levels, cells were loaded, respectively, with MitoSOX and DHE probes. The effects of Mito-TEMPO, an antioxidant that targets the mitochondria or DRP1 inhibitor (Mdivi-1) on MSU crystal-induced peritonitis and arthritis mouse models, were evaluated. Our study revealed that MSU crystal stimulation resulted in elevation of mitochondrial fragmentation of BMDMs. Treatment with Mito-TEMPO or Drp1 knockdown significantly ameliorated the mitochondrial damage induced by MSU crystals. BMDMs exposure to MSU crystals increased the expression of auto/mitophagy marker proteins and promoted the fusion of mitophagosomes with lysosomes, leading to accumulation of mitolysosomes. Drp1 knockdown alleviated defective mitophagy and activation of the NLRP3 inflammasome in MSU crystal-treated BMDMs. This study indicates that there is crosstalk between mitochondrial ROS and Drp1 signaling in MSU crystal-induced inflammation. Drp1 signaling is involved in MSU crystal-induced mitochondrial damage, impaired mitophagy and NLRP3 inflammasome activation.
Insights
Mitochondrial fission protein Drp1 contributes to MSU crystal-induced inflammation by damaging mitochondria and impairing mitophagy. Inhibiting Drp1 or using antioxidants reduces inflammation, revealing a link between mitochondrial ROS and Drp1 signaling.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Excessive reactive oxygen species (ROS) generation significantly impacts monosodium urate (MSU) crystal-induced inflammation.
- Drp1-dependent mitochondrial fission is linked to mitochondrial ROS levels, but its role in MSU crystal inflammation is unclear.
Purpose of the Study:
- To investigate the role of Drp1 signaling in MSU crystal-induced inflammation.
- To explore the relationship between mitochondrial ROS and Drp1 in this inflammatory process.
Main Methods:
- Mice bone marrow-derived macrophages (BMDMs) were stimulated with MSU crystals.
- Mitochondrial morphology, ROS levels, mitophagy markers, and inflammasome activation were analyzed.
- Mice models of peritonitis and arthritis were treated with an antioxidant (Mito-TEMPO) or Drp1 inhibitor (Mdivi-1).
Main Results:
- MSU crystal stimulation led to increased mitochondrial fragmentation and ROS in BMDMs.
- Drp1 knockdown or antioxidant treatment ameliorated MSU crystal-induced mitochondrial damage.
- MSU crystals impaired mitophagy and activated the NLRP3 inflammasome, which was alleviated by Drp1 knockdown.
Conclusions:
- Drp1 signaling is involved in MSU crystal-induced mitochondrial damage, mitophagy impairment, and NLRP3 inflammasome activation.
- There is a crosstalk between mitochondrial ROS and Drp1 signaling in MSU crystal-induced inflammation.
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