Wnt/beta-catenin signaling promotes renal interstitial fibrosis

Weichun He1, Chunsun Dai, Yingjian Li

  • 1Department of Pathology, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.

Insights

Wnt signaling, typically active in development, is reactivated in adult kidneys during fibrosis. Blocking Wnt/beta-catenin with Dickkopf-1 gene therapy reduced kidney fibrosis and target gene expression.

Area of Science:

  • Molecular Biology
  • Renal Physiology
  • Developmental Biology

Background:

  • Wnt signaling proteins are crucial for kidney development.
  • Their expression in adult kidneys is generally considered silenced.
  • The role of Wnt signaling in adult renal fibrosis is not well understood.

Purpose of the Study:

  • To investigate Wnt signaling pathway expression and regulation in normal and fibrotic adult kidneys.
  • To determine the role of Wnt/beta-catenin signaling in the pathogenesis of obstructive nephropathy.
  • To evaluate the therapeutic potential of targeting Wnt signaling in renal fibrosis.

Main Methods:

  • Analysis of Wnt, frizzled receptor, and antagonist gene expression in normal and unilaterally ureter-obstructed mouse kidneys.
  • Assessment of beta-catenin accumulation and Wnt/beta-catenin target gene induction.
  • Gene therapy using Dickkopf-1 (Dkk-1) to inhibit Wnt signaling and evaluate its effects on renal fibrosis markers.

Main Results:

  • Wnt gene expression, except for Wnt5b, Wnt8b, and Wnt9b, was upregulated in fibrotic kidneys.
  • Obstructive injury induced beta-catenin accumulation and activated Wnt/beta-catenin target genes.
  • Dickkopf-1 gene delivery reduced beta-catenin, inhibited target gene expression, suppressed myofibroblast activation, and decreased collagen content.

Conclusions:

  • Wnt/beta-catenin signaling plays a significant role in the pathogenesis of renal fibrosis.
  • The Wnt/beta-catenin pathway represents a potential therapeutic target for treating kidney fibrosis.
  • Targeting Wnt signaling with antagonists like Dickkopf-1 shows promise in preclinical models of obstructive nephropathy.

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