A high-resolution description of β<sub>1</sub>-adrenergic receptor functional dynamics and allosteric coupling from backbone NMR.

Grahl, Anne; Abiko, Layara Akemi; Isogai, Shin; Sharpe, Timothy; Grzesiek, Stephan · Nat Commun · 2020

basic_science · Level V

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Abstract

Signal transmission and regulation of G-protein-coupled receptors (GPCRs) by extra- and intracellular ligands occurs via modulation of complex conformational equilibria, but their exact kinetic details and underlying atomic mechanisms are unknown. Here we quantified these dynamic equilibria in the β<sub>1</sub>-adrenergic receptor in its apo form and seven ligand complexes using <sup>1</sup>H/<sup>15</sup>N NMR spectroscopy. We observe three major exchanging conformations: an inactive conformation (C<sub>i</sub>), a preactive conformation (C<sub>p</sub>) and an active conformation (C<sub>a</sub>), which becomes fully populated in a ternary complex with a G protein mimicking nanobody. The C<sub>i</sub> ↔ C<sub>p</sub> exchange occurs on the microsecond scale, the C<sub>p</sub> ↔ C<sub>a</sub> exchange is slower than ~5 ms and only occurs in the presence of two highly conserved tyrosines (Y<sup>5.58</sup>, Y<sup>7.53</sup>), which stabilize the active conformation of TM6. The C<sub>p</sub>→C<sub>a</sub> chemical shift changes indicate a pivoting motion of the entire TM6 that couples the effector site to the orthosteric ligand pocket.

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