
doi: 10.1038/nsmb859
pmid: 15543157
MEK1 and MEK2 are closely related, dual-specificity tyrosine/threonine protein kinases found in the Ras/Raf/MEK/ERK mitogen-activated protein kinase (MAPK) signaling pathway. Approximately 30% of all human cancers have a constitutively activated MAPK pathway, and constitutive activation of MEK1 results in cellular transformation. Here we present the X-ray structures of human MEK1 and MEK2, each determined as a ternary complex with MgATP and an inhibitor to a resolution of 2.4 A and 3.2 A, respectively. The structures reveal that MEK1 and MEK2 each have a unique inhibitor-binding pocket adjacent to the MgATP-binding site. The presence of the potent inhibitor induces several conformational changes in the unphosphorylated MEK1 and MEK2 enzymes that lock them into a closed but catalytically inactive species. Thus, the structures reported here reveal a novel, noncompetitive mechanism for protein kinase inhibition.
Models, Molecular, Binding Sites, Molecular Structure, MAP Kinase Kinase 2, MAP Kinase Kinase 1, Structural Homology, Protein, Humans, Enzyme Inhibitors, Protein Structure, Quaternary, Dimerization, Conserved Sequence
Models, Molecular, Binding Sites, Molecular Structure, MAP Kinase Kinase 2, MAP Kinase Kinase 1, Structural Homology, Protein, Humans, Enzyme Inhibitors, Protein Structure, Quaternary, Dimerization, Conserved Sequence
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