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Published on: November 30, 2013
MicroRNA-27b targets gremlin 1 to modulate fibrotic responses in pulmonary cells
Julie R Graham1, Cara M M Williams, Zhiyong Yang
1Inflammation and Remodeling Research Unit, Pfizer, Inc., Cambridge, Massachusetts, 02140.
Abstract:
Fibrosis is a chronic disease characterized by an excessive deposition of scar tissue in the affected organs. A central mediator of this process is transforming growth factor-β (TGF-β), which stimulates the production of extracellular matrix proteins such as collagens. MicroRNAs (miRNAs) have been implicated in both fibrosis as well as in TGF-β signaling, but the extent of their regulation has not been fully defined. A functional screen was conducted using a library of miRNA inhibitors to identify miRNAs that affect TGF-β-induced type I collagen expression, a key event in the development of fibrosis. The inhibition of one miRNA in particular, miR-27b, caused a significant increase in type I collagen expression. We found that miR-27b directly targets Gremlin 1 by binding to its 3'-UTR, reducing its mRNA levels. TGF-β signaling decreased miR-27b expression and caused a corresponding increase in Gremlin 1 levels, suggesting that TGF-β regulates Gremlin 1 expression in part by modulating miR-27b expression. Reducing Gremlin 1 levels by either siRNA-mediated gene silencing or by using the miR-27b mimic inhibited the expression of several genes known to be involved in fibrosis, while increasing Gremlin 1 levels by the addition of either recombinant protein or the miR-27b inhibitor enhanced the expression of these genes. In summary, we have demonstrated that miR-27b targets Gremlin 1, and that this regulation likely represents an important control point in fibrotic pathways.
Insights
MicroRNAs (miRNAs) regulate fibrosis by controlling Gremlin 1. Specifically, miR-27b inhibits Gremlin 1, impacting scar tissue formation in fibrotic diseases.
Area of Science:
- Cell Biology
- Molecular Biology
- Pathology
Background:
- Fibrosis involves excessive scar tissue deposition.
- Transforming growth factor-β (TGF-β) is a key mediator of fibrosis.
- MicroRNAs (miRNAs) play roles in fibrosis and TGF-β signaling.
Purpose of the Study:
- Identify miRNAs regulating TGF-β-induced type I collagen expression.
- Define the role of miR-27b in fibrotic pathways.
- Investigate the regulatory relationship between miR-27b, Gremlin 1, and TGF-β signaling.
Main Methods:
- Functional screen using miRNA inhibitors.
- Assay of type I collagen expression.
- 3'-UTR binding analysis for miR-27b and Gremlin 1.
- siRNA-mediated gene silencing and miRNA mimic experiments.
Main Results:
- Inhibition of miR-27b increased type I collagen expression.
- miR-27b directly targets Gremlin 1 mRNA.
- TGF-β signaling reduced miR-27b and increased Gremlin 1.
- Modulating Gremlin 1 levels affected fibrosis-related gene expression.
Conclusions:
- miR-27b targets Gremlin 1, regulating fibrotic processes.
- The miR-27b/Gremlin 1 axis is a potential control point in fibrosis.
- This pathway offers therapeutic targets for fibrotic diseases.
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