Low signaling efficiency from receptor to effector in olfactory transduction: A quantified ligand-triggered GPCR pathway.

Li, Rong-Chang; Molday, Laurie L; Lin, Chih-Chun; Ren, Xiaozhi; Fleischmann, Alexander; Molday, Robert S; Yau, King-Wai · Proc Natl Acad Sci U S A · 2022

basic_science · Level V

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Abstract

G protein-coupled receptor (GPCR) signaling is ubiquitous. As an archetype of this signaling motif, rod phototransduction has provided many fundamental, quantitative details, including a dogma that one active GPCR molecule activates a substantial number of downstream G protein/enzyme effector complexes. However, rod phototransduction is light-activated, whereas GPCR pathways are predominantly ligand-activated. Here, we report a detailed study of the ligand-triggered GPCR pathway in mammalian olfactory transduction, finding that an odorant-receptor molecule when (one-time) complexed with its most effective odorants produces on average much less than one downstream effector. Further experiments gave a nominal success probability of tentatively ∼10<sup>-4</sup> (more conservatively, ∼10<sup>-2</sup> to ∼10<sup>-5</sup>). This picture is potentially more generally representative of GPCR signaling than is rod phototransduction, constituting a paradigm shift.

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