Ligand-directed Signalling at Beta-adrenoceptors
Overview
Affiliations
beta-Adrenoceptors (ARs) classically mediate responses to the endogenous ligands adrenaline and noradrenaline by coupling to Gsalpha and stimulating cAMP production; however, drugs designed as beta-AR agonists or antagonists can activate alternative cell signalling pathways, with the potential to influence clinical efficacy. Furthermore, drugs acting at beta-ARs have differential capacity for pathway activation, described as stimulus trafficking, biased agonism, functional selectivity or ligand-directed signalling. These terms refer to responses where drug A has higher efficacy than drug B for one signalling pathway, but a lower efficacy than drug B for a second pathway. The accepted explanation for such responses is that drugs A and B have the capacity to induce or stabilize distinct active conformations of the receptor that in turn display altered coupling efficiency to different effectors. This is consistent with biophysical studies showing that drugs can indeed promote distinct conformational states. Agonists acting at beta-ARs display ligand-directed signalling, but many drugs acting as cAMP antagonists are also able to activate signalling pathways central to cell survival and proliferation or cell death. The observed complexity of drug activity at beta-ARs, prototypical G protein-coupled receptors, necessitates rethinking of the approaches used for screening and characterization of novel therapeutic agents. Most studies of ligand-directed signalling employ recombinant cell systems with high receptor abundance. While such systems are valid for examining upstream signalling events, such as receptor conformational changes and G protein activation, they are less robust when comparing downstream signalling outputs as these are likely to be affected by complex pathway interactions.
Han Y, Dawson J, DeMarco K, Rouen K, Ngo K, Bekker S iScience. 2025; 28(2):111741.
PMID: 39898043 PMC: 11787599. DOI: 10.1016/j.isci.2024.111741.
Adrenoceptors: Receptors, Ligands and Their Clinical Uses, Molecular Pharmacology and Assays.
Baker J, Summers R Handb Exp Pharmacol. 2024; 285:55-145.
PMID: 38926158 DOI: 10.1007/164_2024_713.
Introduction: A Short History of Adrenoceptor Research.
Michel M Handb Exp Pharmacol. 2024; 285:1-12.
PMID: 38797750 DOI: 10.1007/164_2024_718.
Talamonti E, Davegardh J, Kalinovich A, van Beek S, Dehvari N, Halleskog C Mol Metab. 2024; 85:101931.
PMID: 38796310 PMC: 11258667. DOI: 10.1016/j.molmet.2024.101931.
Role of G protein-coupled receptor kinases (GRKs) in β -adrenoceptor-mediated glucose uptake.
Ham S, Mukaida S, Sato M, Keov P, Bengtsson T, Furness S Pharmacol Res Perspect. 2024; 12(1):e1176.
PMID: 38332691 PMC: 10853676. DOI: 10.1002/prp2.1176.