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  • Molecular mechanism of Gαi activation by non-GPCR proteins with a Gα-Binding and Activating motif.

Molecular mechanism of Gαi activation by non-GPCR proteins with a Gα-Binding and Activating motif.

Nature communications (2017-05-19)
Alain Ibáñez de Opakua, Kshitij Parag-Sharma, Vincent DiGiacomo, Nekane Merino, Anthony Leyme, Arthur Marivin, Maider Villate, Lien T Nguyen, Miguel Angel de la Cruz-Morcillo, Juan B Blanco-Canosa, Sekar Ramachandran, George S Baillie, Richard A Cerione, Francisco J Blanco, Mikel Garcia-Marcos
ABSTRACT

Heterotrimeric G proteins are quintessential signalling switches activated by nucleotide exchange on Gα. Although activation is predominantly carried out by G-protein-coupled receptors (GPCRs), non-receptor guanine-nucleotide exchange factors (GEFs) have emerged as critical signalling molecules and therapeutic targets. Here we characterize the molecular mechanism of G-protein activation by a family of non-receptor GEFs containing a Gα-binding and -activating (GBA) motif. We combine NMR spectroscopy, computational modelling and biochemistry to map changes in Gα caused by binding of GBA proteins with residue-level resolution. We find that the GBA motif binds to the SwitchII/α3 cleft of Gα and induces changes in the G-1/P-loop and G-2 boxes (involved in phosphate binding), but not in the G-4/G-5 boxes (guanine binding). Our findings reveal that G-protein-binding and activation mechanisms are fundamentally different between GBA proteins and GPCRs, and that GEF-mediated perturbation of nucleotide phosphate binding is sufficient for Gα activation.

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