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Inhibition of K-RAS4B by a Unique Mechanism of Action: Stabilizing Membrane-Dependent Occlusion of the Effector-Binding Site

Authors :
Tadateru Nishikawa
Wolfgang Jahnke
Alvar D. Gossert
Christopher B. Marshall
Johanna M. Jansen
Mitsuhiko Ikura
Zhenhao Fang
Source :
Cell chemical biology. 25(11)
Publication Year :
2017

Abstract

Summary KRAS is frequently mutated in several of the most lethal types of cancer; however, the KRAS protein has proven a challenging drug target. K-RAS4B must be localized to the plasma membrane by prenylation to activate oncogenic signaling, thus we endeavored to target the protein-membrane interface with small-molecule compounds. While all reported lead compounds have low affinity for KRAS in solution, the potency of Cmpd2 was strongly enhanced when prenylated K-RAS4B is associated with a lipid bilayer. We have elucidated a unique mechanism of action of Cmpd2, which simultaneously engages a shallow pocket on KRAS and associates with the lipid bilayer, thereby stabilizing KRAS in an orientation in which the membrane occludes its effector-binding site, reducing RAF binding and impairing activation of RAF. Furthermore, enrichment of Cmpd2 on the bilayer enhances potency by promoting interaction with KRAS. This insight reveals a novel approach to developing inhibitors of membrane-associated proteins.

Details

ISSN :
24519448
Volume :
25
Issue :
11
Database :
OpenAIRE
Journal :
Cell chemical biology
Accession number :
edsair.doi.dedup.....f039587256183f3263e81afeefd9631f