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Molecular Analysis of Endothelial-mesenchymal Transition Induced by Transforming Growth Factor-β Signaling
Published on: August 3, 2018
Transforming Growth Factor β Activation Primes Canonical Wnt Signaling Through Down-Regulation of Axin-2
Justin Gillespie1, Rebecca L Ross2, Clarissa Corinaldesi2
1University of Leeds and Leeds Teaching Hospitals NHS Trust, Leeds, UK.
Objective:
Aberrant activation of Wnt signaling has been observed in tissues from patients with systemic sclerosis (SSc). This study aimed to determine the role of transforming growth factor β (TGFβ) in driving the increased Wnt signaling, through modulation of axis inhibition protein 2 (Axin-2), a critical regulator of the Wnt canonical pathway.
Methods:
Canonical Wnt signaling activation was analyzed by TOPflash T cell factor/lymphoid enhancer factor promoter assays. Axin-2 was evaluated in vitro by analysis of Axin-2 primary/mature transcript expression and decay, TGFβ receptor type I (TGFβRI) blockade, small interfering RNA-mediated depletion of tristetraprolin 1, and XAV-939-mediated Axin-2 stabilization. In vivo, Axin-2 messenger RNA (mRNA) and protein expression was determined in skin and lung biopsy samples from mice that express a kinase-deficient TGFβRII specifically on fibroblasts (TβRIIΔk-fib-transgenic mice) and from littermate controls.
Results:
SSc fibroblasts displayed an increased response to canonical Wnt ligands despite basal levels of Wnt signaling that were comparable to those in healthy control fibroblasts in vitro. Notably, we showed that SSc fibroblasts had reduced basal expression of Axin-2, which was caused by an endogenous TGFβ-dependent increase in Axin-2 mRNA decay. Accordingly, we observed that TGFβ decreased Axin-2 expression both in vitro in healthy control fibroblasts and in vivo in TβRIIΔk-fib-transgenic mice. Additionally, using Axin-2 gain- and loss-of-function experiments, we demonstrated that the TGFβ-induced increased response to Wnt activation characteristic of SSc fibroblasts depended on reduced bioavailability of Axin-2.
Conclusion:
This study highlights the importance of reduced bioavailability of Axin-2 in mediating the increased canonical Wnt response observed in SSc fibroblasts. This novel mechanism extends our understanding of the processes involved in Wnt/β-catenin-driven pathology and supports the rationale for targeting the TGFβ pathway to regulate the aberrant Wnt signaling observed during fibrosis.
Insights
Transforming growth factor β (TGFβ) reduces axis inhibition protein 2 (Axin-2) expression in systemic sclerosis (SSc) fibroblasts. This decrease in Axin-2 bioavailability drives aberrant Wnt signaling, a key factor in SSc.
Area of Science:
- Fibrosis research
- Molecular biology
- Cell signaling
Background:
- Aberrant Wnt signaling is implicated in systemic sclerosis (SSc).
- Transforming growth factor β (TGFβ) is a key mediator in fibrotic diseases.
- Axis inhibition protein 2 (Axin-2) is a critical regulator of the canonical Wnt pathway.
Purpose of the Study:
- To investigate the role of TGFβ in driving increased Wnt signaling in SSc.
- To determine if TGFβ modulates Axin-2 expression in SSc.
- To elucidate the mechanism linking TGFβ, Axin-2, and Wnt signaling in SSc.
Main Methods:
- Assessed canonical Wnt signaling activation using TOPflash reporter assays.
- Evaluated Axin-2 expression and regulation in vitro and in vivo.
- Utilized TGFβ receptor blockade, siRNA, and chemical inhibitors for mechanistic studies.
- Examined Axin-2 mRNA and protein in SSc fibroblasts and transgenic mouse models.
Main Results:
- SSc fibroblasts showed increased Wnt ligand response despite comparable basal Wnt signaling.
- Reduced basal Axin-2 expression in SSc fibroblasts was linked to TGFβ-induced mRNA decay.
- TGFβ decreased Axin-2 expression both in vitro and in vivo.
- TGFβ-induced Wnt activation in SSc fibroblasts was dependent on reduced Axin-2 bioavailability.
Conclusions:
- Reduced Axin-2 bioavailability is crucial for the heightened Wnt response in SSc fibroblasts.
- This study reveals a novel mechanism in Wnt/β-catenin-driven fibrotic pathology.
- Targeting the TGFβ pathway may offer a strategy to control aberrant Wnt signaling in fibrosis.
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