Journal of Medicinal Chemistry · 2011 · 53 citations · 22 references
Drug TargetChemoprevention StrategyChemical BiologyMedicinal ChemistryDrug DesignReceptor Tyrosine KinaseStructure-based DesignAnti-cancer AgentCell SignalingCompound 1BiochemistryStructure-based Drug DesignPhosphoinositide-dependent Protein Kinase-1PharmacologyCell BiologyTumor MicroenvironmentMolecular DockingNatural SciencesRational Drug DesignTumor SuppressorMedicineDrug DiscoveryLead Optimization
Phosphoinositide-dependent protein kinase-1(PDK1) is a master regulator of the AGC family of kinases and an integral component of the PI3K/AKT/mTOR pathway. As this pathway is among the most commonly deregulated across all cancers, a selective inhibitor of PDK1 might have utility as an anticancer agent. Herein we describe our lead optimization of compound 1 toward highly potent and selective PDK1 inhibitors via a structure-based design strategy. The most potent and selective inhibitors demonstrated submicromolar activity as measured by inhibition of phosphorylation of PDK1 substrates as well as antiproliferative activity against a subset of AML cell lines. In addition, reduction of phosphorylation of PDK1 substrates was demonstrated in vivo in mice bearing OCl-AML2 xenografts. These observations demonstrate the utility of these molecules as tools to further delineate the biology of PDK1 and the potential pharmacological uses of a PDK1 inhibitor.
22
Ligand efficiency indices as guideposts for drug discovery
C ABADZAPATERO, J Metz · Drug Discovery Today · 2005 · 522 citations
Hypomorphic Mutation of PDK1 Suppresses Tumorigenesis in PTEN+/− Mice
José R. Bayascas, Nicholas R. Leslie, Ramon Parsons et al. · Current Biology · 2005 · 143 citations · Full text