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PMID: 18818303 Published · ppublish English Journal Article

Identification and functional characterization of allosteric agonists for the G protein-coupled receptor FFA2.

Molecular pharmacology ·Vol. 74 ·No. 6 ·2008-12-00 ·Pages 1599-609

Lee T, Schwandner R, Swaminath G, Weiszmann J, Cardozo M, Greenberg J, Jaeckel P, Ge H, Wang Y, Jiao X, Liu J, Kayser F, Tian H, Li Y

Abstract

FFA2 (GPR43) has been identified as a receptor for short-chain fatty acids (SCFAs) that include acetate and propionate. FFA2 is highly expressed in islets, a subset of immune cells, and adipocytes. Although the potential roles of FFA2 activation in these tissues have previously been described, the physiological functions are still unclear. The potency for SCFAs on FFA2 is low, in the high micromolar to millimolar concentrations. To identify better pharmacological tools to study receptor function, we used high-throughput screening (HTS) to discover a series of small molecule phenylacetamides as novel and more potent FFA2 agonists. This series is specific for FFA2 over FFA1 (GPR40) and FFA3 (GPR41), and it is able to activate both the Galpha(q) and Galpha(i) pathways in vitro on Chinese hamster ovary cells stably expressing FFA2. Treatment of adipocytes with these compounds also resulted in Galpha(i)-dependent inhibition of lipolysis similar to that of endogenous ligands (SCFAs). It is noteworthy that these compounds not only acted as FFA2 agonists but also exhibited positive cooperativity with acetate or propionate. The observed allosteric modulation was consistent in all the functional assays that we have explored, including cAMP, calcium mobilization, guanosine 5'-[gamma-thio]triphosphate binding, and lipolysis. Molecular modeling analysis of FFA2 based on human beta(2)-adrenergic receptor structure revealed potential nonoverlapping binding sites for the endogenous and synthetic ligands, further providing insight into the binding pocket for the allosteric interactions. This is the first report describing the identification of novel allosteric modulators with agonist activity for FFA2, and these compounds may serve as tools for further unraveling the physiological functions of the receptor and its involvement in various diseases.

MeSH Terms
3T3-L1 Cells Adipocytes/drug effects,metabolism Allosteric Regulation Amino Acid Sequence Animals Benzeneacetamides/chemistry,pharmacology CHO Cells Cricetinae Cricetulus Humans Ligands Lipolysis/drug effects Mice Models, Molecular Molecular Sequence Data Radioligand Assay Receptors, Cell Surface/agonists Structure-Activity Relationship Thiazoles/chemistry,pharmacology
Chemicals
Benzeneacetamides FFA2R protein, human Ligands Receptors, Cell Surface Thiazoles
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Lee Taeweon
Amgen Inc, South San Francisco, California 94080, USA.
Schwandner Ralf
Swaminath Gayathri
Weiszmann Jennifer
Cardozo Mario
Greenberg Joanne
Jaeckel Peter
Ge Hongfei
Wang Yingcai
Jiao Xianyun
Liu Jiwen
Kayser Frank
Tian Hui
Li Yang
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
1521-0111
Published
2008-12-00
Epub
2008-00-25
Pages
1599-609
Language
English
Region
United States
NLM ID
0035623
Subset
IM
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