Structure of the active G<sub>i</sub>-coupled human lysophosphatidic acid receptor 1 complexed with a potent agonist.

Akasaka, Hiroaki; Tanaka, Tatsuki; Sano, Fumiya K; Matsuzaki, Yuma; Shihoya, Wataru; Nureki, Osamu · Nat Commun · 2022

basic_science · Level V

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Abstract

Lysophosphatidic acid receptor 1 (LPA<sub>1</sub>) is one of the six G protein-coupled receptors activated by the bioactive lipid, lysophosphatidic acid (LPA). LPA<sub>1</sub> is a drug target for various diseases, including cancer, inflammation, and neuropathic pain. Notably, LPA<sub>1</sub> agonists have potential therapeutic value for obesity and urinary incontinence. Here, we report a cryo-electron microscopy structure of the active human LPA<sub>1</sub>-G<sub>i</sub> complex bound to ONO-0740556, an LPA analog with more potent activity against LPA<sub>1</sub>. Our structure elucidated the details of the agonist binding mode and receptor activation mechanism mediated by rearrangements of transmembrane segment 7 and the central hydrophobic core. A structural comparison of LPA<sub>1</sub> and other phylogenetically-related lipid-sensing GPCRs identified the structural determinants for lipid preference of LPA<sub>1</sub>. Moreover, we characterized the structural polymorphisms at the receptor-G-protein interface, which potentially reflect the G-protein dissociation process. Our study provides insights into the detailed mechanism of LPA<sub>1</sub> binding to agonists and paves the way toward the design of drug-like agonists targeting LPA<sub>1</sub>.

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