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Published on: January 10, 2025
AP-1 (Activated Protein-1) Transcription Factor JunD Regulates Ischemia/Reperfusion Brain Damage via IL-1β
Candela Diaz-Cañestro1, Martin F Reiner1,2, Nicole R Bonetti1
1From the Center for Molecular Cardiology, University of Zurich, Schlieren, Switzerland (C.D.-C., M.F.R., N.R.B., L.L., P.W., H.A., S.B.-S., J.H.B., A.A., T.F.L., G.G.C.).
Insights
JunD protein suppresses interleukin-1β, reducing brain damage after stroke. Lower JunD levels in stroke patients suggest its protective role in brain injury.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- Inflammation is a key factor in ischemia/reperfusion brain injury, a major cause of stroke.
- JunD, an AP-1 transcription factor, regulates interleukin-1β (IL-1β) synthesis and macrophage activation.
- Targeting inflammatory mediators is a promising therapeutic strategy for stroke.
Purpose of the Study:
- To investigate the role of JunD in the pathogenesis of ischemia/reperfusion-induced brain injury.
- To determine if JunD modulates IL-1β levels during stroke.
- To assess JunD expression in human stroke patients.
Main Methods:
- Wild-type mice underwent transient middle cerebral artery occlusion and reperfusion after JunD or scramble siRNA treatment.
- Evaluated stroke size, neurological deficits, cytokines, and oxidative stress.
- Investigated IL-1β's role using anti-IL-1β antibody treatment and assessed JunD in human monocytes.
Main Results:
- JunD knockdown exacerbated stroke size and neurological deficits, increasing systemic inflammation.
- IL-1β brain levels were elevated in JunD-deficient mice; other cytokines and oxidative stress markers were unchanged.
- Anti-IL-1β antibody treatment rescued the negative effects of JunD silencing.
- JunD expression was decreased in monocytes from acute ischemic stroke patients.
Conclusions:
- JunD acts as a protective factor against ischemia/reperfusion brain injury.
- JunD mitigates brain damage by suppressing IL-1β production.
- Reduced JunD expression in stroke patients may contribute to disease severity.
Abstract:
Background and Purpose- Inflammation is a major pathogenic component of ischemia/reperfusion brain injury, and as such, interventions aimed at inhibiting inflammatory mediators promise to be effective strategies in stroke therapy. JunD-a member of the AP-1 (activated protein-1) family of transcription factors-was recently shown to regulate inflammation by targeting IL (interleukin)-1β synthesis and macrophage activation. The purpose of the present study was to assess the role of JunD in ischemia/reperfusion-induced brain injury. Methods- WT (wild type) mice randomly treated with either JunD or scramble (control) siRNA were subjected to 45 minutes of transient middle cerebral artery occlusion followed by 24 hours of reperfusion. Stroke size, neurological deficit, plasma/brain cytokines, and oxidative stress determined by 4-hydroxynonenal immunofluorescence staining were evaluated 24 hours after reperfusion. Additionally, the role of IL-1β was investigated by treating JunD siRNA mice with an anti-IL-1β monoclonal antibody on reperfusion. Finally, JunD expression was assessed in peripheral blood monocytes isolated from patients with acute ischemic stroke. Results- In vivo JunD knockdown resulted in increased stroke size, reduced neurological function, and increased systemic inflammation, as confirmed by higher neutrophil count and lymphopenia. Brain tissue IL-1β levels were augmented in JunD siRNA mice as compared with scramble siRNA, whereas no difference was detected in IL-6, TNF-α (tumor necrosis factor-α), and 4-hydroxynonenal levels. The deleterious effects of silencing of JunD were rescued by treating mice with an anti-IL-1β antibody. In addition, JunD expression was decreased in peripheral blood monocytes of patients with acute ischemic stroke at 6 and 24 hours after onset of stroke symptoms compared with sex- and age-matched healthy controls. Conclusions- JunD blunts ischemia/reperfusion-induced brain injury via suppression of IL-1β.
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