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Publication : Distinct profiles of functional discrimination among G proteins determine the actions of G protein-coupled receptors.

First Author  Masuho I Year  2015
Journal  Sci Signal Volume  8
Issue  405 Pages  ra123
PubMed ID  26628681 Mgi Jnum  J:259487
Mgi Id  MGI:6141356 Doi  10.1126/scisignal.aab4068
Citation  Masuho I, et al. (2015) Distinct profiles of functional discrimination among G proteins determine the actions of G protein-coupled receptors. Sci Signal 8(405):ra123
abstractText  Members of the heterotrimeric guanine nucleotide-binding protein (G protein)-coupled receptor (GPCR) family play key roles in many physiological functions and are extensively exploited pharmacologically to treat diseases. Many of the diverse effects of individual GPCRs on cellular physiology are transduced by heterotrimeric G proteins, which are composed of alpha, beta, and gamma subunits. GPCRs interact with and stimulate the binding of guanosine triphosphate (GTP) to the alpha subunit to initiate signaling. Mammalian genomes encode 16 different G protein alpha subunits, each one of which has distinct properties. We developed a single-platform, optical strategy to monitor G protein activation in live cells. With this system, we profiled the coupling ability of individual GPCRs for different alpha subunits, simultaneously quantifying the magnitude of the signal and the rates at which the receptors activated the G proteins. We found that individual receptors engaged multiple G proteins with varying efficacy and kinetics, generating fingerprint-like profiles. Different classes of GPCR ligands, including full and partial agonists, allosteric modulators, and antagonists, distinctly affected these fingerprints to functionally bias GPCR signaling. Finally, we showed that intracellular signaling modulators further altered the G protein-coupling profiles of GPCRs, which suggests that their differential abundance may alter signaling outcomes in a cell-specific manner. These observations suggest that the diversity of the effects of GPCRs on cellular physiology may be determined by their differential engagement of multiple G proteins, coupling to which produces signals with varying signal magnitudes and activation kinetics, properties that may be exploited pharmacologically.
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