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Publication : Uncoupling Catalytic and Binding Functions in the Cyclic AMP-Dependent Protein Kinase A.

First Author  Kim J Year  2016
Journal  Structure Volume  24
Issue  3 Pages  353-63
PubMed ID  26833386 Mgi Jnum  J:245325
Mgi Id  MGI:5917744 Doi  10.1016/j.str.2015.11.016
Citation  Kim J, et al. (2016) Uncoupling Catalytic and Binding Functions in the Cyclic AMP-Dependent Protein Kinase A. Structure 24(3):353-63
abstractText  The canonical function of kinases is to transfer a phosphoryl group to substrates, initiating a signaling cascade; while their non-canonical role is to bind other kinases or substrates, acting as scaffolds, competitors, and signal integrators. Here, we show how to uncouple kinases' dual function by tuning the binding cooperativity between nucleotide (or inhibitors) and substrate allosterically. We demonstrate this new concept for the C subunit of protein kinase A (PKA-C). Using thermocalorimetry and nuclear magnetic resonance, we found a linear correlation between the degree of cooperativity and the population of the closed state of PKA-C. The non-hydrolyzable ATP analog (ATPgammaC) does not follow this correlation, suggesting that changing the chemical groups around the phosphoester bond can uncouple kinases' dual function. Remarkably, this uncoupling was also found for two ATP-competitive inhibitors, H89 and balanol. Since the mechanism for allosteric cooperativity is not conserved in different kinases, these results may suggest new approaches for designing selective kinase inhibitors.
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