Copper bioavailability is a KRAS-specific vulnerability in colorectal cancer

铜的生物利用度是结直肠癌中 KRAS 基因特异性的脆弱性

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作者:Léo Aubert #, Neethi Nandagopal #, Zachary Steinhart, Geneviève Lavoie, Sami Nourreddine, Jacob Berman, Marc K Saba-El-Leil, David Papadopoli, Sichun Lin, Traver Hart, Graham Macleod, Ivan Topisirovic, Louis Gaboury, Christoph J Fahrni, Daniel Schramek, Sylvain Meloche, Stephane Angers, Philippe P R

Abstract

Despite its importance in human cancers, including colorectal cancers (CRC), oncogenic KRAS has been extremely challenging to target therapeutically. To identify potential vulnerabilities in KRAS-mutated CRC, we characterize the impact of oncogenic KRAS on the cell surface of intestinal epithelial cells. Here we show that oncogenic KRAS alters the expression of a myriad of cell-surface proteins implicated in diverse biological functions, and identify many potential surface-accessible therapeutic targets. Cell surface-based loss-of-function screens reveal that ATP7A, a copper-exporter upregulated by mutant KRAS, is essential for neoplastic growth. ATP7A is upregulated at the surface of KRAS-mutated CRC, and protects cells from excess copper-ion toxicity. We find that KRAS-mutated cells acquire copper via a non-canonical mechanism involving macropinocytosis, which appears to be required to support their growth. Together, these results indicate that copper bioavailability is a KRAS-selective vulnerability that could be exploited for the treatment of KRAS-mutated neoplasms.

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