错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

7-Dehydrocholesterol dictates ferroptosis sensitivity

  • Yaxu Li,
  • Qiao Ran,
  • Qiuhui Duan,
  • Jiali Jin,
  • Yanjin Wang,
  • Lei Yu,
  • Chaojie Wang,
  • Zhenyun Zhu,
  • Xin Chen,
  • Linjun Weng,
  • Zan Li,
  • Jia Wang,
  • Qi Wu,
  • Hui Wang,
  • Hongling Tian,
  • Sihui Song,
  • Zezhi Shan,
  • Qiwei Zhai,
  • Huanlong Qin,
  • Shili Chen,
  • Lan Fang,
  • Huiyong Yin,
  • Hu Zhou,
  • Xuejun Jiang,
  • Ping Wang

摘要

Ferroptosis, a form of regulated cell death that is driven by iron-dependent phospholipid peroxidation, has been implicated in multiple diseases, including cancer13, degenerative disorders4 and organ ischaemia–reperfusion injury (IRI)5,6. Here, using genome-wide CRISPR–Cas9 screening, we identified that the enzymes involved in distal cholesterol biosynthesis have pivotal yet opposing roles in regulating ferroptosis through dictating the level of 7-dehydrocholesterol (7-DHC)—an intermediate metabolite of distal cholesterol biosynthesis that is synthesized by sterol C5-desaturase (SC5D) and metabolized by 7-DHC reductase (DHCR7) for cholesterol synthesis. We found that the pathway components, including MSMO1, CYP51A1, EBP and SC5D, function as potential suppressors of ferroptosis, whereas DHCR7 functions as a pro-ferroptotic gene. Mechanistically, 7-DHC dictates ferroptosis surveillance by using the conjugated diene to exert its anti-phospholipid autoxidation function and shields plasma and mitochondria membranes from phospholipid autoxidation. Importantly, blocking the biosynthesis of endogenous 7-DHC by pharmacological targeting of EBP induces ferroptosis and inhibits tumour growth, whereas increasing the 7-DHC level by inhibiting DHCR7 effectively promotes cancer metastasis and attenuates the progression of kidney IRI, supporting a critical function of this axis in vivo. In conclusion, our data reveal a role of 7-DHC as a natural anti-ferroptotic metabolite and suggest that pharmacological manipulation of 7-DHC levels is a promising therapeutic strategy for cancer and IRI.