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MiR-144-3p induced by SP1 promotes IL-1β-induced pyroptosis in chondrocytes via PTEN/PINK1/Parkin axis
Jin-Mei Jiang1, Mei-Li Mo1, Xiao-Ping Long2
1The First Affiliated Hospital, Department of Rheumatology and Immunology, Hengyang Medical College, University of South China,, Hengyang, Hunan, China.
Abstract:
Rheumatoid arthritis (RA) often leads to functional disabilities and deformities. MiRNA plays a vital role in cell pyroptosis. Nevertheless, the function and underlying mechanism of miR-144-3p in pyroptosis during the progression of RA remains unclear. In this study, N1511 cells were stimulated with IL-1β to construct a RA model. 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2-H-tetrazolium bromide (MTT) assay was performed to assess the cell viability. Cell pyroptosis was detected by flow cytometry. The levels of inflammatory cytokines (TNF-α, IL-6, and IL-18) were assessed by enzyme-linked immunosorbent assay (ELISA). The relationship among specific protein 1 (SP1), microRNA-144-3p (miR-144-3p), and phosphatase and tensin homolog (PTEN) was explored by dual-luciferase reporter assay, RNA immunoprecipitation (RIP), and chromatin immunoprecipitation (ChIP), respectively. The level of miR-144-3p in N1511 cells was upregulated by IL-1β. MiR-144-3p knockdown inhibited IL-1β-induced pyroptosis in N1511 cells, and the expressions of NOD-like receptor family pyrin domain containing 3 (NLRP3), Cleaved caspase-1, Gasdermin D (GSDMD), and Cleaved caspase-3 in IL-1β-stimulated N1511 cells were increased. The levels of inflammatory cytokines in N1511 cells were increased by IL-1β, which were restored by miR-144-3p knockdown. MiR-144-3p knockdown abolished IL-1β-induced inactivation of putative kinase 1 (PINK1)/Parkin RBR E3 ubiquitin-protein (Parkin) signalling. Moreover, transcription factor SP1 could upregulate miR-144-3p expression and miR-144-3p negatively regulated PTEN expression. In summary, MiR-144-3p induced by SP1 could promote IL-1β-induced chondrocyte pyroptosis via inhibiting PTEN expression and suppressing the activation of PINK1/Parkin signalling, which provided a new strategy against RA.
Insights
MicroRNA-144-3p promotes rheumatoid arthritis (RA) progression by inducing chondrocyte pyroptosis. Targeting miR-144-3p offers a potential therapeutic strategy for RA by inhibiting inflammation and cell death.
Area of Science:
- Molecular Biology
- Immunology
- Cell Biology
Background:
- Rheumatoid arthritis (RA) is characterized by functional disabilities and deformities.
- MicroRNAs (miRNAs) are implicated in cellular pyroptosis, a key inflammatory cell death pathway.
- The specific role of miR-144-3p in RA-associated pyroptosis remains largely unelucidated.
Purpose of the Study:
- To investigate the function and mechanism of miR-144-3p in interleukin-1 beta (IL-1β)-induced pyroptosis in a rheumatoid arthritis (RA) model.
- To explore the regulatory relationship between transcription factor SP1, miR-144-3p, and PTEN in RA pathogenesis.
Main Methods:
- A rheumatoid arthritis (RA) model was established using N1511 cells stimulated with IL-1β.
- Cell viability was assessed using MTT assays, and pyroptosis was detected via flow cytometry.
- Levels of inflammatory cytokines (TNF-α, IL-6, IL-18) were quantified using ELISA. SP1, miR-144-3p, and PTEN interactions were analyzed using dual-luciferase reporter assays, RIP, and ChIP.
Main Results:
- IL-1β upregulated miR-144-3p expression in N1511 cells, promoting pyroptosis and increasing inflammatory cytokine levels.
- Knockdown of miR-144-3p inhibited IL-1β-induced pyroptosis, NLRP3 inflammasome activation, and inflammatory cytokine release.
- Transcription factor SP1 upregulated miR-144-3p, which in turn negatively regulated PTEN expression, suppressing PINK1/Parkin signaling.
Conclusions:
- SP1-induced miR-144-3p promotes IL-1β-induced chondrocyte pyroptosis in RA by inhibiting PTEN expression and PINK1/Parkin signaling.
- MiR-144-3p acts as a pro-pyroptotic factor in RA pathogenesis.
- Targeting miR-144-3p presents a potential therapeutic strategy for managing rheumatoid arthritis.
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