Binding kinetics drive G protein subtype selectivity at the β<sub>1</sub>-adrenergic receptor.

Jones, Andrew J Y; Harman, Thomas H; Harris, Matthew; Lewis, Oliver E; Ladds, Graham; Nietlispach, Daniel · Nat Commun · 2024

basic_science · Level V

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Abstract

G protein-coupled receptors (GPCRs) bind to different G protein α-subtypes with varying degrees of selectivity. The mechanism by which GPCRs achieve this selectivity is still unclear. Using <sup>13</sup>C methyl methionine and <sup>19</sup>F NMR, we investigate the agonist-bound active state of β<sub>1</sub>AR and its ternary complexes with different G proteins in solution. We find the receptor in the ternary complexes adopts very similar conformations. In contrast, the full agonist-bound receptor active state assumes a conformation differing from previously characterised activation intermediates or from β<sub>1</sub>AR in ternary complexes. Assessing the kinetics of binding for the agonist-bound receptor with different G proteins, we find the increased affinity of β<sub>1</sub>AR for G<sub>s</sub> results from its much faster association with the receptor. Consequently, we suggest a kinetic-driven selectivity gate between canonical and secondary coupling which arises from differential favourability of G protein binding to the agonist-bound receptor active state.

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