Use of a Chemical Genetic Technique To Identify Myosin IIB as a Substrate of the Abl-Related Gene (Arg) Tyrosine Kinase
Boyle SN, Koleske AJ. Use of a Chemical Genetic Technique To Identify Myosin IIB as a Substrate of the Abl-Related Gene (Arg) Tyrosine Kinase. Biochemistry 2007, 46: 11614-11620. PMID: 17892306, DOI: 10.1021/bi701119s.Peer-Reviewed Original ResearchConceptsPutative substratesMyosin IIBGene Tyrosine KinaseUnnatural ATP analoguesProtein substrate specificityPhosphotyrosine-containing proteinsSer/ThrAbl/ArgChemical-genetic techniqueCell morphogenesisKinase substrateDirect substrateFamily kinasesTyrosine phosphorylationSubstrate specificityGenetic techniquesNucleotide specificityMolecular mechanismsTyrosine kinaseK-252aUnexpected high levelATP analogGene kinaseKinaseABLDissecting kinase signaling pathways
Boyle SN, Koleske AJ. Dissecting kinase signaling pathways. Drug Discovery Today 2007, 12: 717-724. PMID: 17826684, DOI: 10.1016/j.drudis.2007.07.019.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsAntibodies, MonoclonalAntibodies, Monoclonal, HumanizedAntineoplastic AgentsBenzamidesDrug Delivery SystemsHumansImatinib MesylateLapatinibNeoplasmsPhosphoproteinsPhosphorylationPiperazinesProtein Kinase InhibitorsProtein KinasesProteomicsPyrimidinesQuinazolinesSignal TransductionTrastuzumabConceptsSame protein substrateProtein Kinase SignalingKinase substratePutative substratesProtein substratesKinase signalingProtein kinaseMultiple kinasesPhysiological substratesKinaseHuman diseasesDrug targetsPhysiological relevanceSubstrate interactionsKinase inhibitorsPathwaySignalingSubstrateNeurological disordersInteractionHallmarkInhibitorsTarget