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  • A chemical biology screen i...
    Mahoney, Christopher E; Pirman, David; Chubukov, Victor; Sleger, Taryn; Hayes, Sebastian; Fan, Zi Peng; Allen, Eric L; Chen, Ying; Huang, Lingling; Liu, Meina; Zhang, Yingjia; McDonald, Gabrielle; Narayanaswamy, Rohini; Choe, Sung; Chen, Yue; Gross, Stefan; Cianchetta, Giovanni; Padyana, Anil K; Murray, Stuart; Liu, Wei; Marks, Kevin M; Murtie, Joshua; Dorsch, Marion; Jin, Shengfang; Nagaraja, Nelamangala; Biller, Scott A; Roddy, Thomas; Popovici-Muller, Janeta; Smolen, Gromoslaw A

    Nature communications, 01/2019, Letnik: 10, Številka: 1
    Journal Article

    Aberrant metabolism of cancer cells is well appreciated, but the identification of cancer subsets with specific metabolic vulnerabilities remains challenging. We conducted a chemical biology screen and identified a subset of neuroendocrine tumors displaying a striking pattern of sensitivity to inhibition of the cholesterol biosynthetic pathway enzyme squalene epoxidase (SQLE). Using a variety of orthogonal approaches, we demonstrate that sensitivity to SQLE inhibition results not from cholesterol biosynthesis pathway inhibition, but rather surprisingly from the specific and toxic accumulation of the SQLE substrate, squalene. These findings highlight SQLE as a potential therapeutic target in a subset of neuroendocrine tumors, particularly small cell lung cancers.