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Halofuginone inhibition of COL1A2 promoter activity via a c-Jun-dependent mechanism
Tracy L McGaha1, Takao Kodera, Harry Spiera
1Department of Microbiology, The Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, NY 10029, USA.
Objective:
The naturally occurring compound halofuginone has been shown to antagonize collagen synthesis by fibroblasts both in vitro and in vivo. We previously demonstrated that this inhibitory property was related to the ability of halofuginone to disrupt transforming growth factor beta signal transduction. The present study further analyzed the ability of halofuginone to affect transcription factors that can regulate type I collagen gene expression by examining its effect on c-Jun, the negative regulator of collagen gene transcription.
Methods:
The phosphorylation state of c-Jun in the presence of halofuginone was examined via direct Western blotting, and the transcriptional activity of the activator protein 1 (AP-1) binding element via electrophoretic mobility shift assay and luciferase reporter assay. We determined whether the effect of halofuginone on collagen synthesis was dependent on the presence of c-Jun by ectopic expression of a wild-type or dominant-negative c-Jun construct in the presence of halofuginone and assaying alpha2(I) collagen promoter strength via luciferase reporter assay. The effect of halofuginone on alpha2(I) collagen message levels in fibroblasts when wild-type or dominant-negative c-Jun was overexpressed was determined. We also determined whether halofuginone had an effect on the phosphorylation state of c-Jun in the skin of TSK/+ mice via immunohistochemistry.
Results:
Treatment of fibroblasts with 10(-8)M halofuginone enhanced basal and mitogen-mediated phosphorylation of c-Jun in culture. This elevated phosphorylation of c-Jun correlated with enhanced DNA binding and transcriptional activation of an AP-1 complex consisting of c-Jun and Fos but lacking the c-Jun antagonist JunB. Overexpression of c-Jun enhanced in a dose-dependent manner the ability of halofuginone to inhibit the activity of a luciferase reporter construct under control of the -3200-bp to +54-bp COL1A2 promoter, whereas the expression of a dominant-negative c-Jun construct abolished this effect. Northern blotting showed that overexpression of c-Jun enhanced the ability of halofuginone to reduce collagen alpha2(I) messenger RNA levels in fibroblasts, whereas expression of the dominant-negative c-Jun abolished this effect. Topical administration of a halofuginone-containing cream for 20 days to TSK mice, which spontaneously develop dermal fibrosis, greatly increased the phosphorylated form of c-Jun in the skin; this was followed by a decrease in skin thickness and type I collagen messenger RNA expression.
Conclusion:
Our findings illustrate the powerful down-regulatory property of c-Jun toward type I collagen and establish that halofuginone exerts its effect on collagen synthesis in a c-Jun-dependent manner.
Insights
Halofuginone inhibits collagen synthesis by activating c-Jun, a negative regulator of collagen gene transcription. This study confirms halofuginone
Area of Science:
- Molecular Biology
- Biochemistry
- Dermatology
Background:
- Halofuginone is a natural compound that inhibits fibroblast collagen synthesis.
- Previous research linked this inhibition to disruption of transforming growth factor beta (TGF-β) signaling.
- The transcription factor c-Jun is a known negative regulator of collagen gene expression.
Purpose of the Study:
- To investigate the role of c-Jun in mediating halofuginone's inhibitory effects on type I collagen synthesis.
- To analyze how halofuginone affects the transcriptional activity of c-Jun and its associated complexes.
- To determine if halofuginone's impact on collagen production is dependent on c-Jun levels.
Main Methods:
- Western blotting to assess c-Jun phosphorylation.
- Electrophoretic mobility shift assay (EMSA) and luciferase reporter assays to evaluate activator protein 1 (AP-1) activity.
- Ectopic expression of wild-type and dominant-negative c-Jun constructs in fibroblasts.
- Northern blotting to quantify alpha2(I) collagen mRNA levels.
- Immunohistochemistry in TSK/+ mouse skin to examine c-Jun phosphorylation in vivo.
Main Results:
- Halofuginone treatment increased c-Jun phosphorylation and AP-1 DNA binding activity in fibroblasts.
- Overexpression of c-Jun potentiated halofuginone's inhibition of the COL1A2 promoter and collagen alpha2(I) mRNA levels.
- Conversely, dominant-negative c-Jun abolished halofuginone's inhibitory effects.
- In TSK/+ mice, topical halofuginone increased skin c-Jun phosphorylation, reduced skin thickness, and decreased type I collagen mRNA.
Conclusions:
- c-Jun possesses a potent down-regulatory effect on type I collagen expression.
- Halofuginone inhibits collagen synthesis through a mechanism that is dependent on the activation of c-Jun.
- These findings elucidate a novel pathway for controlling collagen synthesis.
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