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Inhibition of prenylated KRAS in a lipid environment.


ABSTRACT: RAS mutations lead to a constitutively active oncogenic protein that signals through multiple effector pathways. In this chemical biology study, we describe a novel coupled biochemical assay that measures activation of the effector BRAF by prenylated KRASG12V in a lipid-dependent manner. Using this assay, we discovered compounds that block biochemical and cellular functions of KRASG12V with low single-digit micromolar potency. We characterized the structural basis for inhibition using NMR methods and showed that the compounds stabilized the inactive conformation of KRASG12V. Determination of the biophysical affinity of binding using biolayer interferometry demonstrated that the potency of inhibition matches the affinity of binding only when KRAS is in its native state, namely post-translationally modified and in a lipid environment. The assays we describe here provide a first-time alignment across biochemical, biophysical, and cellular KRAS assays through incorporation of key physiological factors regulating RAS biology, namely a negatively charged lipid environment and prenylation, into the in vitro assays. These assays and the ligands we discovered are valuable tools for further study of KRAS inhibition and drug discovery.

SUBMITTER: Jansen JM 

PROVIDER: S-EPMC5383040 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Inhibition of prenylated KRAS in a lipid environment.

Jansen Johanna M JM   Wartchow Charles C   Jahnke Wolfgang W   Fong Susan S   Tsang Tiffany T   Pfister Keith K   Zavorotinskaya Tatiana T   Bussiere Dirksen D   Cheng Jan Marie JM   Crawford Kenneth K   Dai Yumin Y   Dove Jeffrey J   Fang Eric E   Feng Yun Y   Florent Jean-Michel JM   Fuller John J   Gossert Alvar D AD   Hekmat-Nejad Mohammad M   Henry Chrystèle C   Klopp Julia J   Lenahan William P WP   Lingel Andreas A   Ma Sylvia S   Meyer Arndt A   Mishina Yuji Y   Narberes Jamie J   Pardee Gwynn G   Ramurthy Savithri S   Rieffel Sebastien S   Stuart Darrin D   Subramanian Sharadha S   Tandeske Laura L   Widger Stephania S   Widmer Armin A   Winterhalter Aurelie A   Zaror Isabel I   Hardy Stephen S  

PloS one 20170406 4


RAS mutations lead to a constitutively active oncogenic protein that signals through multiple effector pathways. In this chemical biology study, we describe a novel coupled biochemical assay that measures activation of the effector BRAF by prenylated KRASG12V in a lipid-dependent manner. Using this assay, we discovered compounds that block biochemical and cellular functions of KRASG12V with low single-digit micromolar potency. We characterized the structural basis for inhibition using NMR method  ...[more]

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