Redirecting TGF-β Signaling through the β-Catenin/Foxo Complex Prevents Kidney Fibrosis

Xi Qiao1,2, Padmashree Rao1, Yun Zhang1,3

  • 1Centre for Transplant and Renal Research, The Westmead Institute for Medical Research, The University of Sydney, Sydney, New South Wales, Australia.

Insights

Targeting beta-catenin/TCF signaling with ICG-001 redirects TGF-beta signaling. This enhances regulatory T cell differentiation and anti-inflammatory effects, reducing fibrosis and inflammation in organs.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • Transforming growth factor-beta (TGF-β) is a key profibrotic factor.
  • Targeting TGF-β for fibrosis can abolish its anti-inflammatory effects.

Purpose of the Study:

  • Investigate redirecting TGF-β signaling by inhibiting beta-catenin/TCF interaction.
  • Enhance beta-catenin interaction with Foxo to promote regulatory T cell differentiation and TGF-β's anti-inflammatory effects.

Main Methods:

  • Used EL4 T cells treated with recombinant human TGF-β1 (rhTGF-β1) and ICG-001.
  • Performed T cell fate mapping in Foxp3(gfp) Ly5.1/5.2 mice.
  • Utilized unilateral ureteric obstruction and ischemia-reperfusion injury models for kidney fibrosis.

Main Results:

  • ICG-001 increased Foxp3 expression, beta-catenin/Foxo1 interaction, and Foxo transcriptional activity in T cells.
  • Coadministration of rhTGF-β1 and ICG-001 enhanced regulatory T cell expansion.
  • Reduced inflammation and fibrosis in kidney, lung, and liver models.

Conclusions:

  • Diversion of beta-catenin from TCF to Foxo transcription inhibits TGF-β's profibrotic effects.
  • Enhances TGF-β's anti-inflammatory effects mediated by beta-catenin/Foxo.
  • Targeting beta-catenin/Foxo represents a novel therapeutic strategy for fibrotic diseases.

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