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.

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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