<p>Lipids are essential components of cancer cells due to their structural and signalling roles<sup><CitationRef CitationID="CR1">1</CitationRef></sup>. To meet metabolic demands, many cancers take up extracellular lipids<sup><CitationRef AdditionalCitationIDS="CR3 CR4" CitationID="CR2">2</CitationRef>–<CitationRef CitationID="CR5">5</CitationRef></sup>; however, how these lipids contribute to cancer growth and progression remains poorly understood. Here, using functional genetic screens, we identify uptake of lipoproteins—the primary mechanism for lipid transport in circulation—as a key determinant of ferroptosis sensitivity in cancer. Lipoprotein supplementation robustly inhibits ferroptosis across diverse cancer types, primarily through the delivery of α-tocopherol (α-toc), the most abundant form of vitamin E in human lipoproteins. Mechanistically, cancer cells take up lipoproteins through a pathway dependent on sulfated glycosaminoglycans (GAGs) linked to cell-surface proteoglycans. Disrupting GAG biosynthesis or acutely degrading surface GAGs reduces lipoprotein uptake, sensitizes cancer cells to ferroptosis and impairs tumour growth in mice. Notably, human clear cell renal cell carcinomas—a lipid-rich malignancy—exhibit elevated levels of chondroitin sulfate and increased lipoprotein-derived α-toc compared with normal kidney tissue. Together, our study establishes lipoprotein uptake as a critical anti-ferroptotic mechanism in cancer and implicates GAG biosynthesis as a therapeutic target.</p>

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

Glycosaminoglycan-driven lipoprotein uptake protects tumours from ferroptosis

  • Dylan Calhoon,
  • Lingjie Sang,
  • Fubo Ji,
  • Divya Bezwada,
  • Sheng-Chieh Hsu,
  • Feng Cai,
  • Nathaniel Kim,
  • Amrita Basu,
  • Renfei Wu,
  • Anastasia Pimentel,
  • Bailey Brooks,
  • Konnor La,
  • Ana Paulina Serrano,
  • Daniel L. Cassidy,
  • Ling Cai,
  • Vanina Toffessi-Tcheuyap,
  • Maryam E. Moussa,
  • Winnie Uritboonthai,
  • Linh Truc Hoang,
  • Meghana Kolli,
  • Brooklyn Jackson,
  • Vitaly Margulis,
  • Gary Siuzdak,
  • James Brugarolas,
  • Ian Corbin,
  • Derek A. Pratt,
  • Ryan J. Weiss,
  • Ralph J. DeBerardinis,
  • Kıvanç Birsoy,
  • Javier Garcia-Bermudez

摘要

Lipids are essential components of cancer cells due to their structural and signalling roles1. To meet metabolic demands, many cancers take up extracellular lipids25; however, how these lipids contribute to cancer growth and progression remains poorly understood. Here, using functional genetic screens, we identify uptake of lipoproteins—the primary mechanism for lipid transport in circulation—as a key determinant of ferroptosis sensitivity in cancer. Lipoprotein supplementation robustly inhibits ferroptosis across diverse cancer types, primarily through the delivery of α-tocopherol (α-toc), the most abundant form of vitamin E in human lipoproteins. Mechanistically, cancer cells take up lipoproteins through a pathway dependent on sulfated glycosaminoglycans (GAGs) linked to cell-surface proteoglycans. Disrupting GAG biosynthesis or acutely degrading surface GAGs reduces lipoprotein uptake, sensitizes cancer cells to ferroptosis and impairs tumour growth in mice. Notably, human clear cell renal cell carcinomas—a lipid-rich malignancy—exhibit elevated levels of chondroitin sulfate and increased lipoprotein-derived α-toc compared with normal kidney tissue. Together, our study establishes lipoprotein uptake as a critical anti-ferroptotic mechanism in cancer and implicates GAG biosynthesis as a therapeutic target.