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Selective killing of K-ras mutant cancer cells by small molecule inducers of oxidative stress.


ABSTRACT: Activating K-RAS mutations are the most frequent oncogenic mutations in human cancer. Numerous downstream signaling pathways have been shown to be deregulated by oncogenic K-ras. However, to date there are still no effective targeted therapies for this genetically defined subset of patients. Here we report the results of a small molecule, synthetic lethal screen using mouse embryonic fibroblasts derived from a mouse model harboring a conditional oncogenic K-ras(G12D) allele. Among the >50,000 compounds screened, we identified a class of drugs with selective activity against oncogenic K-ras-expressing cells. The most potent member of this class, lanperisone, acts by inducing nonapoptotic cell death in a cell cycle- and translation-independent manner. The mechanism of cell killing involves the induction of reactive oxygen species that are inefficiently scavenged in K-ras mutant cells, leading to oxidative stress and cell death. In mice, treatment with lanperisone suppresses the growth of K-ras-driven tumors without overt toxicity. Our findings establish the specific antitumor activity of lanperisone and reveal oxidative stress pathways as potential targets in Ras-mediated malignancies.

SUBMITTER: Shaw AT 

PROVIDER: S-EPMC3102385 | biostudies-literature | 2011 May

REPOSITORIES: biostudies-literature

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Selective killing of K-ras mutant cancer cells by small molecule inducers of oxidative stress.

Shaw Alice T AT   Winslow Monte M MM   Magendantz Margaret M   Ouyang Chensi C   Dowdle James J   Subramanian Aravind A   Lewis Timothy A TA   Maglathin Rebecca L RL   Tolliday Nicola N   Jacks Tyler T  

Proceedings of the National Academy of Sciences of the United States of America 20110509 21


Activating K-RAS mutations are the most frequent oncogenic mutations in human cancer. Numerous downstream signaling pathways have been shown to be deregulated by oncogenic K-ras. However, to date there are still no effective targeted therapies for this genetically defined subset of patients. Here we report the results of a small molecule, synthetic lethal screen using mouse embryonic fibroblasts derived from a mouse model harboring a conditional oncogenic K-ras(G12D) allele. Among the >50,000 co  ...[more]

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