癌细胞
内吞作用
癌症干细胞
生物
癌症
细胞
细胞生物学
转移
CD44细胞
化学
癌症研究
生物化学
干细胞
遗传学
作者
Whitney S. Henry,Sebastian Müller,Jia‐Shu Yang,Sarah Innes-Gold,Sunny Das,Ferenc Reinhardt,Kim Sigmund,Vaishnavi V. Phadnis,Zhengpeng Wan,Elinor Ng Eaton,Júlio L. Sampaio,George W. Bell,Amartya Viravalli,Paula T. Hammond,Roger D. Kamm,Adam E. Cohen,Natalie Boehnke,Victor W. Hsu,Kandice R. Levental,Raphaël Rodriguez
标识
DOI:10.1101/2024.03.20.585922
摘要
ABSTRACT Cancer cell fate has been widely ascribed to mutational changes within proteincoding genes associated with tumor suppressors and oncogenes. In contrast, the mechanisms through which the biophysical properties of membrane lipids influence cancer cell survival, dedifferentiation and metastasis have received little scrutiny. Here, we report that cancer cells endowed with high metastatic ability and cancer stem celllike traits employ ether lipids to maintain low membrane tension and high membrane fluidity. Using genetic approaches and lipid reconstitution assays, we show that these ether lipid-regulated biophysical properties permit non-clathrin-mediated iron endocytosis via CD44, resulting in significant increases in intracellular redox-active iron and enhanced ferroptosis susceptibility. Using a combination of in vitro threedimensional microvascular network systems and in vivo animal models, we show that loss of ether lipids from plasma membranes also strongly attenuates extravasation, metastatic burden and cancer stemness. These findings illuminate a mechanism whereby ether lipids in carcinoma cells serve as key regulators of malignant progression while conferring a unique vulnerability that can be exploited for therapeutic intervention.
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