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A Role for Mitochondrial Translation in Promotion of Viability in K-Ras Mutant Cells.


ABSTRACT: Activating mutations in the KRAS oncogene are highly prevalent in tumors, especially those of the colon, lung, and pancreas. To better understand the genetic dependencies that K-Ras mutant cells rely upon for their growth, we employed whole-genome CRISPR loss-of-function screens in two isogenic pairs of cell lines. Since loss of essential genes is uniformly toxic in CRISPR-based screens, we also developed a small hairpin RNA (shRNA) library targeting essential genes. These approaches uncovered a large set of proteins whose loss results in the selective reduction of K-Ras mutant cell growth. Pathway analysis revealed that many of these genes function in the mitochondria. For validation, we generated isogenic pairs of cell lines using CRISPR-based genome engineering, which confirmed the dependency of K-Ras mutant cells on these mitochondrial pathways. Finally, we found that mitochondrial inhibitors reduce the growth of K-Ras mutant tumors in vivo, aiding in the advancement of strategies to target K-Ras-driven malignancy.

SUBMITTER: Martin TD 

PROVIDER: S-EPMC5553568 | biostudies-literature | 2017 Jul

REPOSITORIES: biostudies-literature

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A Role for Mitochondrial Translation in Promotion of Viability in K-Ras Mutant Cells.

Martin Timothy D TD   Cook Danielle R DR   Choi Mei Yuk MY   Li Mamie Z MZ   Haigis Kevin M KM   Elledge Stephen J SJ  

Cell reports 20170701 2


Activating mutations in the KRAS oncogene are highly prevalent in tumors, especially those of the colon, lung, and pancreas. To better understand the genetic dependencies that K-Ras mutant cells rely upon for their growth, we employed whole-genome CRISPR loss-of-function screens in two isogenic pairs of cell lines. Since loss of essential genes is uniformly toxic in CRISPR-based screens, we also developed a small hairpin RNA (shRNA) library targeting essential genes. These approaches uncovered a  ...[more]

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