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Non-classical ferroptosis inhibition by a small molecule targeting PHB2.

Wei YangBo MuJing YouChenyu TianHuachao BinZhiqiang XuLiting ZhangRonggang MaMing WuGuo ZhangChong HuangLinli LiZhenhua ShaoLunzhi DaiLaurent DésaubrySheng-Yong Yang
Published in: Nature communications (2022)
Ferroptosis is a new type of programmed cell death characterized by iron-dependent lipid peroxidation. Ferroptosis inhibition is thought as a promising therapeutic strategy for a variety of diseases. Currently, a majority of known ferroptosis inhibitors belong to either antioxidants or iron-chelators. Here we report a new ferroptosis inhibitor, termed YL-939, which is neither an antioxidant nor an iron-chelator. Chemical proteomics revealed the biological target of YL-939 to be prohibitin 2 (PHB2). Mechanistically, YL-939 binding to PHB2 promotes the expression of the iron storage protein ferritin, hence reduces the iron content, thereby decreasing the susceptibility to ferroptosis. We further showed that YL-939 could substantially ameliorate liver damage in a ferroptosis-related acute liver injury model by targeting the PHB2/ferritin/iron axis. Overall, we identified a non-classical ferroptosis inhibitor and revealed a new regulation mechanism of ferroptosis. These findings may present an attractive intervention strategy for ferroptosis-related diseases.
Keyphrases
  • cell death
  • iron deficiency
  • liver injury
  • drug induced
  • small molecule
  • oxidative stress
  • poor prognosis
  • single cell
  • liver failure
  • long non coding rna
  • respiratory failure
  • protein protein
  • fatty acid
  • amino acid