Dynamics connect substrate recognition to catalysis in protein kinase A
- 3 October 2010
- journal article
- research article
- Published by Springer Nature in Nature Chemical Biology
- Vol. 6 (11) , 821-828
- https://doi.org/10.1038/nchembio.452
Abstract
Structural analysis of protein kinase A had previously focused on static pictures with bound inhibitors. The first analyses of the protein with a substrate peptide identify dynamic hot spots and slow steps in catalysis, pointing toward a model of conformational selection in binding. Atomic resolution studies of protein kinases have traditionally been carried out in the inhibitory state, limiting our current knowledge on the mechanisms of substrate recognition and catalysis. Using NMR, X-ray crystallography and thermodynamic measurements, we analyzed the substrate recognition process of cAMP-dependent protein kinase (PKA), finding that entropy and protein dynamics play a prominent role. The nucleotide acts as a dynamic and allosteric activator by coupling the two lobes of apo PKA, enhancing the enzyme dynamics synchronously and priming it for catalysis. The formation of the ternary complex is entropically driven, and NMR spin relaxation data reveal that both substrate and PKA are dynamic in the closed state. Our results show that the enzyme toggles between open and closed states, which indicates that a conformational selection rather than an induced-fit mechanism governs substrate recognition.Keywords
This publication has 50 references indexed in Scilit:
- The role of conformational entropy in molecular recognition by calmodulinNature Chemical Biology, 2010
- Defining the conserved internal architecture of a protein kinaseBiochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2009
- Solution Conformations and Dynamics of ABL Kinase-Inhibitor Complexes Determined by NMR Substantiate the Different Binding Modes of Imatinib/Nilotinib and DasatinibJournal of Biological Chemistry, 2008
- A Coupled Equilibrium Shift Mechanism in Calmodulin-Mediated Signal TransductionStructure, 2008
- Dynamically driven protein allosteryNature Structural & Molecular Biology, 2006
- Fast Time Scale Dynamics of Protein Backbones: NMR Relaxation Methods, Applications, and Functional ConsequencesChemical Reviews, 2006
- PKA: a portrait of protein kinase dynamicsBiochimica et Biophysica Acta (BBA) - Proteins and Proteomics, 2004
- Dynamics of cAMP-Dependent Protein KinaseChemical Reviews, 2001
- Physiological Substrates of cAMP-Dependent Protein KinaseChemical Reviews, 2001
- Multiple pathway signal tran sduction by the cAMP‐dependent protein kinaseThe FASEB Journal, 1994