GPCR-dependent biasing of GIRK channel signaling dynamics by RGS6 in mouse sinoatrial nodal cells.

Anderson, Allison; Masuho, Ikuo; Marron Fernandez de Velasco, Ezequiel; Nakano, Atsushi; Birnbaumer, Lutz; Martemyanov, Kirill A; Wickman, Kevin · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

How G protein-coupled receptors (GPCRs) evoke specific biological outcomes while utilizing a limited array of G proteins and effectors is poorly understood, particularly in native cell systems. Here, we examined signaling evoked by muscarinic (M<sub>2</sub>R) and adenosine (A<sub>1</sub>R) receptor activation in the mouse sinoatrial node (SAN), the cardiac pacemaker. M<sub>2</sub>R and A<sub>1</sub>R activate a shared pool of cardiac G protein-gated inwardly rectifying K<sup>+</sup> (GIRK) channels in SAN cells from adult mice, but A<sub>1</sub>R-GIRK responses are smaller and slower than M<sub>2</sub>R-GIRK responses. Recordings from mice lacking Regulator of G protein Signaling 6 (RGS6) revealed that RGS6 exerts a GPCR-dependent influence on GIRK-dependent signaling in SAN cells, suppressing M<sub>2</sub>R-GIRK coupling efficiency and kinetics and A<sub>1</sub>R-GIRK signaling amplitude. Fast kinetic bioluminescence resonance energy transfer assays in transfected HEK cells showed that RGS6 prefers Gα<sub>o</sub> over Gα<sub>i</sub> as a substrate for its catalytic activity and that M<sub>2</sub>R signals preferentially via Gα<sub>o</sub>, while A<sub>1</sub>R does not discriminate between inhibitory G protein isoforms. The impact of atrial/SAN-selective ablation of Gα<sub>o</sub> or Gα<sub>i2</sub> was consistent with these findings. Gα<sub>i2</sub> ablation had minimal impact on M<sub>2</sub>R-GIRK and A<sub>1</sub>R-GIRK signaling in SAN cells. In contrast, Gα<sub>o</sub> ablation decreased the amplitude and slowed the kinetics of M<sub>2</sub>R-GIRK responses, while enhancing the sensitivity and prolonging the deactivation rate of A<sub>1</sub>R-GIRK signaling. Collectively, our data show that differences in GPCR-G protein coupling preferences, and the Gα<sub>o</sub> substrate preference of RGS6, shape A<sub>1</sub>R- and M<sub>2</sub>R-GIRK signaling dynamics in mouse SAN cells.

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