MAP kinase and autophagy pathways cooperate to maintain RAS mutant cancer cell survival Journal Article


Authors: Lee, C. S.; Lee, L. C.; Yuan, T. L.; Chakka, S.; Fellmann, C.; Lowe, S. W.; Caplen, N. J.; McCormick, F.; Luo, J.
Article Title: MAP kinase and autophagy pathways cooperate to maintain RAS mutant cancer cell survival
Abstract: Oncogenic mutations in the small GTPase KRAS are frequently found in human cancers, and, currently, there are no effective targeted therapies for these tumors. Using a combinatorial siRNA approach, we analyzed a panel of KRAS mutant colorectal and pancreatic cancer cell lines for their dependency on 28 gene nodes that represent canonical RAS effector pathways and selected stress response pathways. We found that RAF node knockdown best differentiated KRAS mutant and KRAS WT cancer cells, suggesting RAF kinases are key oncoeffectors for KRAS addiction. By analyzing all 376 pairwise combination of these gene nodes, we found that cotargeting the RAF, RAC, and autophagy pathways can improve the capture of KRAS dependency better than targeting RAF alone. In particular, codepletion of the oncoeffector kinases BRAF and CRAF, together with the autophagy E1 ligase ATG7, gives the best therapeutic window between KRAS mutant cells and normal, untransformed cells. Distinct patterns of RAS effector dependency were observed across KRAS mutant cell lines, indicative of heterogeneous utilization of effector and stress response pathways in supporting KRAS addiction. Our findings revealed previously unappreciated complexity in the signaling network downstream of the KRAS oncogene and suggest rational target combinations for more effective therapeutic intervention. © 2019 National Academy of Sciences. All Rights Reserved.
Keywords: kras; autophagy; mapk; sirna; raf
Journal Title: Proceedings of the National Academy of Sciences of the United States of America
Volume: 116
Issue: 10
ISSN: 0027-8424
Publisher: National Academy of Sciences  
Date Published: 2019-03-05
Start Page: 4508
End Page: 4517
Language: English
DOI: 10.1073/pnas.1817494116
PROVIDER: scopus
PMCID: PMC6410784
PUBMED: 30709910
DOI/URL:
Notes: Article -- Export Date: 1 April 2019 -- Source: Scopus
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  1. Scott W Lowe
    249 Lowe