BRG1 accelerates mesothelial cell senescence and peritoneal fibrosis by inhibiting mitophagy through repression of OXR1

Free Radic Biol Med. 2024 Mar:214:54-68. doi: 10.1016/j.freeradbiomed.2024.01.054. Epub 2024 Feb 2.

Abstract

Peritoneal mesothelial cell senescence promotes the development of peritoneal dialysis (PD)-related peritoneal fibrosis. We previously revealed that Brahma-related gene 1 (BRG1) is increased in peritoneal fibrosis yet its role in modulating peritoneal mesothelial cell senescence is still unknown. This study evaluated the mechanism of BRG1 in peritoneal mesothelial cell senescence and peritoneal fibrosis using BRG1 knockdown mice, primary peritoneal mesothelial cells and human peritoneal samples from PD patients. The augmentation of BRG1 expression accelerated peritoneal mesothelial cell senescence, which attributed to mitochondrial dysfunction and mitophagy inhibition. Mitophagy activator salidroside rescued fibrotic responses and cellular senescence induced by BRG1. Mechanistically, BRG1 was recruited to oxidation resistance 1 (OXR1) promoter, where it suppressed transcription of OXR1 through interacting with forkhead box protein p2. Inhibition of OXR1 abrogated the improvement of BRG1 deficiency in mitophagy, fibrotic responses and cellular senescence. In a mouse PD model, BRG1 knockdown restored mitophagy, alleviated senescence and ameliorated peritoneal fibrosis. More importantly, the elevation level of BRG1 in human PD was associated with PD duration and D/P creatinine values. In conclusion, BRG1 accelerates mesothelial cell senescence and peritoneal fibrosis by inhibiting mitophagy through repression of OXR1. This indicates that modulating BRG1-OXR1-mitophagy signaling may represent an effective treatment for PD-related peritoneal fibrosis.

Keywords: Brahma-related gene 1; Mesothelial-to-mesenchymal transition; Mitophagy; Oxidation resistance 1; Peritoneal dialysis; Peritoneal fibrosis.

MeSH terms

  • Animals
  • Cellular Senescence / genetics
  • Humans
  • Mice
  • Mitochondrial Proteins / metabolism
  • Mitophagy / genetics
  • Peritoneal Dialysis* / adverse effects
  • Peritoneal Fibrosis* / genetics
  • Peritoneal Fibrosis* / metabolism
  • Peritoneal Fibrosis* / pathology
  • Peritoneum / metabolism
  • Peritoneum / pathology

Substances

  • Mitochondrial Proteins
  • OXR1 protein, human
  • SMARCA4 protein, human
  • Smarca4 protein, mouse