Src-mediated crosstalk between FXR and YAP protects against renal fibrosis

Dong-Hyun Kim1, Hoon-In Choi1, Jung Sun Park1

  • 1Department of Internal Medicine, Chonnam National University Medical School, Gwangju, South Korea.

Insights

Farnesoid X receptor (FXR) activation inhibits Src kinase, preventing kidney fibrosis by modulating YAP localization. This FXR-Src-YAP pathway offers a potential therapeutic target for chronic kidney disease.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Cell Biology

Background:

  • Renal fibrosis is a key driver of chronic kidney disease (CKD) progression.
  • The nuclear receptor Farnesoid X receptor (FXR) exhibits antifibrotic properties in the kidney, but its mechanisms are unclear.
  • Understanding FXR's role is crucial for developing novel CKD therapies.

Purpose of the Study:

  • To elucidate the molecular mechanisms by which FXR activation protects against renal fibrosis.
  • To investigate the interplay between FXR, Src kinase, and YAP in the context of kidney fibrosis.
  • To evaluate FXR-targeting drugs as potential treatments for renal fibrosis.

Main Methods:

  • Utilized human renal proximal tubule epithelial (HK2) cells treated with TGF-β.
  • Investigated the effects of FXR agonist GW4064 and Src inhibitor PP2.
  • Analyzed phosphorylation and localization of YAP and Src.
  • Examined renal fibrosis markers in FXR knockout mice and in vivo models of kidney injury.

Main Results:

  • FXR activation by GW4064 suppressed renal fibrosis and Src phosphorylation (Tyr416) in HK2 cells.
  • GW4064 increased YAP phosphorylation (Ser127) and cytosolic accumulation, promoting Hippo pathway kinase interactions.
  • Src inhibition by PP2 mimicked these effects, reducing fibrosis and altering YAP localization.
  • FXR deficiency exacerbated fibrosis markers and YAP target genes in mice.
  • GW4064 and WAY-362450 protected against unilateral ureteral obstruction-induced renal fibrosis.

Conclusions:

  • FXR activation inhibits renal fibrosis through a novel pathway involving Src-mediated crosstalk with YAP.
  • This pathway regulates YAP phosphorylation and nuclear translocation, crucial for fibrotic processes.
  • Targeting the FXR-Src-YAP axis presents a promising therapeutic strategy for managing chronic kidney disease.

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