Literature DB >> 35302493

Effector membrane translocation biosensors reveal G protein and βarrestin coupling profiles of 100 therapeutically relevant GPCRs.

Charlotte Avet1, Arturo Mancini2, Billy Breton2, Christian Le Gouill1, Alexander S Hauser3, Claire Normand2, Hiroyuki Kobayashi1, Florence Gross2, Mireille Hogue1, Viktoriya Lukasheva1, Stéphane St-Onge1, Marilyn Carrier1, Madeleine Héroux1, Sandra Morissette2, Eric B Fauman4, Jean-Philippe Fortin5, Stephan Schann6, Xavier Leroy6, David E Gloriam3, Michel Bouvier1.   

Abstract

The recognition that individual GPCRs can activate multiple signaling pathways has raised the possibility of developing drugs selectively targeting therapeutically relevant ones. This requires tools to determine which G proteins and βarrestins are activated by a given receptor. Here, we present a set of BRET sensors monitoring the activation of the 12 G protein subtypes based on the translocation of their effectors to the plasma membrane (EMTA). Unlike most of the existing detection systems, EMTA does not require modification of receptors or G proteins (except for Gs). EMTA was found to be suitable for the detection of constitutive activity, inverse agonism, biased signaling and polypharmacology. Profiling of 100 therapeutically relevant human GPCRs resulted in 1500 pathway-specific concentration-response curves and revealed a great diversity of coupling profiles ranging from exquisite selectivity to broad promiscuity. Overall, this work describes unique resources for studying the complexities underlying GPCR signaling and pharmacology.
© 2022, Avet et al.

Entities:  

Keywords:  G protein activation; biochemistry; biosensor; chemical biology; effector membrane translocation assay; enhanced bystander bioluminescence resonance energy transfer; g protein-coupled receptor; high-throughput assay; human

Mesh:

Substances:

Year:  2022        PMID: 35302493      PMCID: PMC9005190          DOI: 10.7554/eLife.74101

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.713


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