An integrated model of RAF inhibitor action predicts inhibitor activity against oncogenic BRAF signaling Journal Article


Authors: Karoulia, Z.; Wu, Y.; Ahmed, T. A.; Xin, Q.; Bollard, J.; Krepler, C.; Wu, X.; Zhang, C.; Bollag, G.; Herlyn, M.; Fagin, J. A.; Lujambio, A.; Gavathiotis, E.; Poulikakos, P. I.
Article Title: An integrated model of RAF inhibitor action predicts inhibitor activity against oncogenic BRAF signaling
Abstract: The complex biochemical effects of RAF inhibitors account for both the effectiveness and mechanisms of resistance to these drugs, but a unified mechanistic model has been lacking. Here we show that RAF inhibitors exert their effects via two distinct allosteric mechanisms. Drug resistance due to dimerization is determined by the position of the αC helix stabilized by inhibitor, whereas inhibitor-induced RAF priming and dimerization are the result of inhibitor-induced formation of the RAF/RAS-GTP complex. The biochemical effect of RAF inhibitor in cells is the combined outcome of the two mechanisms. Therapeutic strategies including αC-helix-IN inhibitors are more effective in multiple mutant BRAF-driven tumor models, including colorectal and thyroid BRAFV600E cancers, in which first-generation RAF inhibitors have been ineffective. © 2016 Elsevier Inc.
Journal Title: Cancer Cell
Volume: 30
Issue: 3
ISSN: 1535-6108
Publisher: Cell Press  
Date Published: 2016-09-12
Start Page: 485
End Page: 498
Language: English
DOI: 10.1016/j.ccell.2016.06.024
PROVIDER: scopus
PMCID: PMC5021590
PUBMED: 27523909
DOI/URL:
Notes: Article -- Export Date: 6 December 2016 -- Source: Scopus
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  1. James A Fagin
    180 Fagin