7-Dehydrocholesterol dictates ferroptosis sensitivity Journal Article


Authors: Li, Y.; Ran, Q.; Duan, Q.; Jin, J.; Wang, Y.; Yu, L.; Wang, C.; Zhu, Z.; Chen, X.; Weng, L.; Li, Z.; Wang, J.; Wu, Q.; Wang, H.; Tian, H.; Song, S.; Shan, Z.; Zhai, Q.; Qin, H.; Chen, S.; Fang, L.; Yin, H.; Zhou, H.; Jiang, X.; Wang, P.
Article Title: 7-Dehydrocholesterol dictates ferroptosis sensitivity
Abstract: Ferroptosis, a form of regulated cell death that is driven by iron-dependent phospholipid peroxidation, has been implicated in multiple diseases, including cancer1–3, 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. © The Author(s), under exclusive licence to Springer Nature Limited 2024.
Keywords: signal transduction; controlled study; unclassified drug; human cell; disease course; nonhuman; drug targeting; animal cell; mouse; animal tissue; gene; metastasis; animal experiment; animal model; genome-wide association study; gene function; in vivo study; carcinogenesis; enzyme analysis; cell membrane; iron; cholesterol; tumor growth; tumor; oxidoreductase; mitochondrial membrane; lipid peroxidation; mitochondrion; metabolite; injury; pharmacology; phospholipid; autooxidation; acyl coenzyme a desaturase; chemical compound; cholesterol metabolism; ferroptosis; cholesterol synthesis; cancer; human; male; article; cyp51a1 gene; clustered regularly interspaced short palindromic repeat; sterol; crispr-cas9 system; renal ischemia reperfusion injury; regulated cell death; 7 dehydrocholesterol; protein 7 dehydrocholesterol reductase; immunoreactive insulin; ebp gene; msmo1 gene; sc5d gene
Journal Title: Nature
Volume: 626
Issue: 7998
ISSN: 0028-0836
Publisher: Nature Publishing Group  
Date Published: 2024-02-08
Start Page: 411
End Page: 418
Language: English
DOI: 10.1038/s41586-023-06983-9
PUBMED: 38297130
PROVIDER: scopus
PMCID: PMC11298758
DOI/URL:
Notes: Source: Scopus
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  1. Xuejun Jiang
    121 Jiang