Publication | Open Access
Discovery and Structure-Based Optimization of Benzimidazole-Derived Activators of SOS1-Mediated Nucleotide Exchange on RAS
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Citations
34
References
2018
Year
Combinatorial ChemistryGtp-bound RasMolecular BiologyStructure-based OptimizationNew SeriesClick ChemistryChemical BiologyCancer BiologyPharmaceutical ChemistryTumor BiologyMolecular PharmacologyAnti-cancer AgentMolecular SignalingBiochemistryG Protein-coupled ReceptorBioconjugationOligonucleotideSevenless Homologue 1Cell BiologyTumor MicroenvironmentMolecular MedicineDrug TargetingSignal TransductionNatural SciencesMolecular BasisMedicineBenzimidazole-derived ActivatorsSos1-mediated Nucleotide ExchangeSmall MoleculesDrug Discovery
Son of sevenless homologue 1 (SOS1) is a guanine nucleotide exchange factor that catalyzes the exchange of GDP for GTP on RAS. In its active form, GTP-bound RAS is responsible for numerous critical cellular processes. Aberrant RAS activity is involved in ∼30% of all human cancers; hence, SOS1 is an attractive therapeutic target for its role in modulating RAS activation. Here, we describe a new series of benzimidazole-derived SOS1 agonists. Using structure-guided design, we discovered small molecules that increase nucleotide exchange on RAS in vitro at submicromolar concentrations, bind to SOS1 with low double-digit nanomolar affinity, rapidly enhance cellular RAS-GTP levels, and invoke biphasic signaling changes in phosphorylation of ERK 1/2. These compounds represent the most potent series of SOS1 agonists reported to date.
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