Targeting de novo lipogenesis and the Lands cycle induces ferroptosis in KRAS-mutant lung cancer

Author:

Bartolacci Caterina,Andreani CristinaORCID,Vale GonçaloORCID,Berto StefanoORCID,Melegari Margherita,Crouch Anna Colleen,Baluya Dodge L.,Kemble George,Hodges Kurt,Starrett Jacqueline,Politi Katerina,Starnes Sandra L.,Lorenzini Daniele,Raso Maria GabrielaORCID,Solis Soto Luisa M.ORCID,Behrens Carmen,Kadara Humam,Gao BoningORCID,Wistuba Ignacio I.,Minna John D.ORCID,McDonald Jeffrey G.ORCID,Scaglioni Pier PaoloORCID

Abstract

AbstractMutant KRAS (KM), the most common oncogene in lung cancer (LC), regulates fatty acid (FA) metabolism. However, the role of FA in LC tumorigenesis is still not sufficiently characterized. Here, we show that KMLC has a specific lipid profile, with high triacylglycerides and phosphatidylcholines (PC). We demonstrate that FASN, the rate-limiting enzyme in FA synthesis, while being dispensable in EGFR-mutant or wild-type KRAS LC, is required for the viability of KMLC cells. Integrating lipidomic, transcriptomic and functional analyses, we demonstrate that FASN provides saturated and monounsaturated FA to the Lands cycle, the process remodeling oxidized phospholipids, such as PC. Accordingly, blocking either FASN or the Lands cycle in KMLC, promotes ferroptosis, a reactive oxygen species (ROS)- and iron-dependent cell death, characterized by the intracellular accumulation of oxidation-prone PC. Our work indicates that KM dictates a dependency on newly synthesized FA to escape ferroptosis, establishing a targetable vulnerability in KMLC.

Funder

U.S. Department of Health & Human Services | NIH | National Cancer Institute

Cancer Prevention and Research Institute of Texas

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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