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ATRA ameliorates fibrosis by suppressing the pro-fibrotic molecule Fra2/AP-1 in systemic sclerosis
Zixin Pi1, Jiani Liu2, Yangfan Xiao3
1Department of Dermatology, The Second Xiangya Hospital, Central South University, Changsha, Hunan 410011, China; Hunan Key Laboratory of Medical Epigenetics, The Second Xiangya Hospital, Central South University, Changsha, Hunan 410011, China.; Department of Medical Genetics, The Second Xiangya Hospital, Central South University, Changsha, Hunan 410011, China.
Abstract:
Systemic sclerosis (SSc) is an autoimmune connective tissue disease that leads to irreversible fibrosis of the skin and the internal organs. The etiology of SSc is complex, its pathophysiology is poorly understood, and clinical therapeutic options are restricted. Thus, research into medications and targets for treating fibrosis is essential and urgent. Fos-related antigen 2 (Fra2) is a transcription factor that is a member of the activator protein-1 family. Fra2 transgenic mice were shown to have spontaneous fibrosis. All-trans retinoic acid (ATRA) is a vitamin A intermediate metabolite and ligand for the retinoic acid receptor (RAR), which possesses anti-inflammatory and anti-proliferative properties. Recent research has demonstrated that ATRA also has an anti-fibrotic effect. However, the exact mechanism is not fully understood. Interestingly, we identified potential binding sites for the transcription factor RARα to the promoter region of the FRA2 gene through JASPAR and PROMO databases. In this study, the pro-fibrotic effect of Fra2 in SSc is confirmed. SSc dermal fibroblasts and bleomycin-induced fibrotic tissues of SSc animals exhibit increased levels of Fra2. Inhibition of Fra2 expression in SSc dermal fibroblasts with Fra2 siRNA markedly decreased collagen I expression. ATRA reduced the expressions of Fra2, collagen I, and α-smooth muscle actin(α-SMA) in SSc dermal fibroblasts and bleomycin-induced fibrotic tissues of SSc mice. In addition, chromatin immunoprecipitation and dual-luciferase assays demonstrated that retinoic acid receptor RARα binds to the FRA2 promoter and modulates its transcriptional activity. ATRA decreases collagen I expression both in vivo and in vitro via the reduction of Fra2 expression. This work establishes the rationale for expanding the use of ATRA in the treatment of SSc and indicates that Fra2 can be used as an anti-fibrotic target.
Insights
Systemic sclerosis (SSc) involves fibrosis, and Fos-related antigen 2 (Fra2) drives this. All-trans retinoic acid (ATRA) reduces fibrosis by inhibiting Fra2, suggesting ATRA as a potential SSc treatment.
Area of Science:
- Immunology
- Dermatology
- Molecular Biology
Background:
- Systemic sclerosis (SSc) is an autoimmune disease causing irreversible fibrosis.
- Current treatments for SSc are limited, necessitating research into novel anti-fibrotic therapies.
- Fos-related antigen 2 (Fra2) is implicated in fibrosis, but its precise role and therapeutic targeting in SSc require elucidation.
Purpose of the Study:
- To investigate the role of Fra2 in SSc pathogenesis.
- To explore the anti-fibrotic mechanisms of all-trans retinoic acid (ATRA) in SSc.
- To determine if ATRA exerts its anti-fibrotic effects by modulating Fra2 expression.
Main Methods:
- Quantification of Fra2 expression in SSc dermal fibroblasts and animal models.
- Silencing Fra2 using siRNA in SSc fibroblasts to assess collagen I levels.
- Treatment of SSc fibroblasts and mice with ATRA to evaluate Fra2, collagen I, and α-SMA expression.
- Chromatin immunoprecipitation and dual-luciferase assays to confirm RARα binding to the FRA2 promoter.
Main Results:
- Fra2 expression was elevated in SSc dermal fibroblasts and fibrotic tissues from SSc animal models.
- Inhibition of Fra2 significantly reduced collagen I expression in SSc fibroblasts.
- ATRA treatment decreased Fra2, collagen I, and α-SMA expression in both in vitro and in vivo SSc models.
- Retinoic acid receptor alpha (RARα) was confirmed to bind the FRA2 promoter, modulating its activity.
Conclusions:
- Fra2 plays a pro-fibrotic role in Systemic Sclerosis.
- ATRA demonstrates anti-fibrotic effects in SSc by reducing Fra2 expression.
- Targeting Fra2 and utilizing ATRA represent promising therapeutic strategies for SSc treatment.
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