| Literature DB >> 32783966 |
Martin Schröder1, Li Tan2, Jinhua Wang3, Yanke Liang3, Nathanael S Gray3, Stefan Knapp4, Apirat Chaikuad5.
Abstract
MKK7 (MEK7) is a key regulator of the JNK stress signaling pathway and targeting MKK7 has been proposed as a chemotherapeutic strategy. Detailed understanding of the MKK7 structure and factors that affect its activity is therefore of critical importance. Here, we present a comprehensive set of MKK7 crystal structures revealing insights into catalytic domain plasticity and the role of the N-terminal regulatory helix, conserved in all MAP2Ks, mediating kinase activation. Crystal structures harboring this regulatory helix revealed typical structural features of active kinase, providing exclusively a first model of the MAP2K active state. A small-molecule screening campaign yielded multiple scaffolds, including type II irreversible inhibitors a binding mode that has not been reported previously. We also observed an unprecedented allosteric pocket located in the N-terminal lobe for the approved drug ibrutinib. Collectively, our structural and functional data expand and provide alternative targeting strategies for this important MAP2K kinase.Entities:
Keywords: JNK inhibition; MEK activation; allosteric inhibitor; allosteric regulation; covalent inhibitor; kinase activation; kinase inhibitor; kinase regularoty helix; mitogen-activated protein kinase kinase 7; type-II covalent inhibitor
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Year: 2020 PMID: 32783966 DOI: 10.1016/j.chembiol.2020.07.014
Source DB: PubMed Journal: Cell Chem Biol ISSN: 2451-9448 Impact factor: 8.116