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Small-molecule inhibition of MAP2K4 is synergistic with RAS inhibitors in <i>KRAS</i>-mutant cancers.

Robin A Jansen ,
Sara Mainardi ,
Matheus Henrique Dias ,
Astrid Bosma ,
Emma van Dijk ,
Roland Selig ,
Wolfgang Albrecht ,
Stefan A Laufer ,
Lars Zender ,
René Bernards

Abstract

The Kirsten rat sarcoma viral oncogene homologue KRAS is among the most commonly mutated oncogenes in human cancers, thus representing an attractive target for precision oncology. The approval for clinical use of the first selective inhibitors of G12C mutant KRAS therefore holds great promise for cancer treatment. However, despite initial encouraging clinical results, the overall survival benefit that patients experience following treatment with these inhibitors has been disappointing to date, pointing toward the need to develop more powerful combination therapies. Here, we show that responsiveness to KRASG12C and pan-RAS inhibitors in KRAS-mutant lung and colon cancer cells is limited by feedback activation of the parallel MAP2K4-JNK-JUN pathway. Activation of this pathway leads to elevated expression of receptor tyrosine kinases that reactivate KRAS and its downstream effectors in the presence of drug. We find that the combination of sotorasib, a drug targeting KRASG12C, and the MAP2K4 inhibitor HRX-0233 prevents this feedback activation and is highly synergistic in a panel of KRASG12C-mutant lung and colon cancer cells. Moreover, combining HRX-0233 and sotorasib is well-tolerated and resulted in durable tumor shrinkage in mouse xenografts of human lung cancer cells, suggesting a therapeutic strategy for KRAS-driven cancers.

More about this publication

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

Volume 121
Issue nr. 9
Pages e2319492121
Publication date 27-02-2024

Full text links

Publisher website (DOI) 10.1073/pnas.2319492121
Europe PubMed Central 38377196
Pubmed 38377196

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