Switching Lysophosphatidylserine G Protein-Coupled Receptor Agonists to Antagonists by Acylation of the Hydrophilic Serine Amine

Three human G protein-coupled receptors (GPCRs)GPR34/LPS1, P2Y10/LPS2, and GPR174/LPS3are activated specifically by lysophosphatidylserine (LysoPS), an endogenous hydrolysis product of a cell membrane component, phosphatidylserine (PS). LysoPS consists of l-serine, glycerol, and fatty acid moietie...

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Veröffentlicht in:Journal of medicinal chemistry 2021-07, Vol.64 (14), p.10059-10101
Hauptverfasser: Sayama, Misa, Uwamizu, Akiharu, Ikubo, Masaya, Chen, Luying, Yan, Ge, Otani, Yuko, Inoue, Asuka, Aoki, Junken, Ohwada, Tomohiko
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Sprache:eng
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Zusammenfassung:Three human G protein-coupled receptors (GPCRs)GPR34/LPS1, P2Y10/LPS2, and GPR174/LPS3are activated specifically by lysophosphatidylserine (LysoPS), an endogenous hydrolysis product of a cell membrane component, phosphatidylserine (PS). LysoPS consists of l-serine, glycerol, and fatty acid moieties connected by phosphodiester and ester linkages. We previously generated potent and selective GPCR agonists by modification of the three modules and the ester linkage. Here, we show that a novel modification of the hydrophilic serine moiety, that is, N-acylations of the serine amine, converted a GPR174 agonist to potent GPR174 antagonists. Structural exploration of the amide functionality provided access to a range of activities from agonist to partial agonist to antagonist. The present study would provide a new strategy for the development of lysophospholipid receptor antagonists.
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.1c00347