Induction of Flexibility through Protein-Protein Interactions

The d imerization/ d ocking (D/D) domain of the cyclic AMP-dependent protein kinase (PKA) holoenzyme mediates important protein-protein interactions that direct the subcellular localization of the enzyme. A k inase a nchoring p roteins (AKAPs) provide the molecular scaffold for the localization of P...

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Veröffentlicht in:The Journal of biological chemistry 2003-05, Vol.278 (20), p.18581-18587
Hauptverfasser: Fayos, Rosa, Melacini, Giuseppe, Newlon, Marceen G, Burns, Lora, Scott, John D, Jennings, Patricia A
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Sprache:eng
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Zusammenfassung:The d imerization/ d ocking (D/D) domain of the cyclic AMP-dependent protein kinase (PKA) holoenzyme mediates important protein-protein interactions that direct the subcellular localization of the enzyme. A k inase a nchoring p roteins (AKAPs) provide the molecular scaffold for the localization of PKA. The recent solution structures of two D/D AKAP complexes revealed that the AKAP binds to a surface-exposed, hydrophobic groove on the D/D. In the present study, we present an analysis of the changes in hydrogen/deuterium exchange protection and internal motions of the backbone of the D/D when free and bound to the prototype anchoring protein, Ht31 pep . We observe that formation of the complex results in significant, but small, increases in H/D exchange protection factors as well as increase s in backbone flexibility, throughout the D/D, and in particular, in the hydrophobic binding groove. This unusual observation of increased backbone flexibility and marginal H/D exchange protection, despite high affinity protein-ligand interactions, may be a general effect observed for the stabilization of hydrophobic ligand/hydrophobic pocket interactions.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M300866200