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Updated: Mar 10, 2026

Evaluation of Keratinocyte Proliferation on Two- and Three-dimensional Type I Collagen Substrates
Published on: April 22, 2019
Discoidin domain receptor 1 kinase activity is required for regulating collagen IV synthesis
Corina M Borza1, Yan Su1, Truc-Linh Tran1
1Department of Medicine (Division of Nephrology), Vanderbilt University, Nashville, TN, United States.
Abstract:
Discoidin domain receptor 1 (DDR1) is a receptor tyrosine kinase that binds to and is activated by collagens. DDR1 expression increases following kidney injury and accumulating evidence suggests that it contributes to the progression of injury. To this end, deletion of DDR1 is beneficial in ameliorating kidney injury induced by angiotensin infusion, unilateral ureteral obstruction, or nephrotoxic nephritis. Most of the beneficial effects observed in the DDR1-null mice are attributed to reduced inflammatory cell infiltration to the site of injury, suggesting that DDR1 plays a pro-inflammatory effect. The goal of this study was to determine whether, in addition to its pro-inflammatory effect, DDR1 plays a deleterious effect in kidney injury by directly regulating extracellular matrix production. We show that DDR1-null mice have reduced deposition of glomerular collagens I and IV as well as decreased proteinuria following the partial renal ablation model of kidney injury. Using mesangial cells isolated from DDR1-null mice, we show that these cells produce significantly less collagen compared to DDR1-null cells reconstituted with wild type DDR1. Moreover, mutagenesis analysis revealed that mutations in the collagen binding site or in the kinase domain significantly reduce DDR1-mediated collagen production. Finally, we provide evidence that blocking DDR1 kinase activity with an ATP-competitive small molecule inhibitor reduces collagen production. In conclusion, our studies indicate that the kinase activity of DDR1 plays a key role in DDR1-induced collagen synthesis and suggest that blocking collagen-mediated DDR1 activation may be beneficial in fibrotic diseases.
Insights
Discoidin domain receptor 1 (DDR1) removal reduces kidney injury by decreasing collagen deposition. Blocking DDR1 kinase activity inhibits collagen synthesis, suggesting therapeutic potential for fibrotic diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- Discoidin domain receptor 1 (DDR1) is a collagen-activated receptor tyrosine kinase.
- DDR1 expression and activity increase during kidney injury, contributing to disease progression.
- Previous studies suggest DDR1 has pro-inflammatory effects in kidney injury.
Purpose of the Study:
- To investigate the role of DDR1 in regulating extracellular matrix production during kidney injury.
- To determine if DDR1 directly impacts collagen synthesis in the kidney.
Main Methods:
- Utilized DDR1-null mice in a partial renal ablation model of kidney injury.
- Analyzed glomerular collagen deposition and proteinuria.
- Cultured mesangial cells from DDR1-null mice and assessed collagen production.
- Performed mutagenesis analysis on DDR1 domains.
- Inhibited DDR1 kinase activity with a small molecule inhibitor.
Main Results:
- DDR1-null mice exhibited reduced deposition of glomerular collagens I and IV and decreased proteinuria.
- Mesangial cells from DDR1-null mice produced significantly less collagen.
- Mutations in DDR1's collagen binding or kinase domains reduced collagen production.
- Inhibiting DDR1 kinase activity decreased collagen production.
Conclusions:
- DDR1 kinase activity is crucial for DDR1-induced collagen synthesis.
- Blocking collagen-mediated DDR1 activation may offer a therapeutic strategy for kidney fibrotic diseases.
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