Discovery and Structure–Activity Relationship of a Bioactive Fragment of ELABELA that Modulates Vascular and Cardiac Functions

Alexandre Murza(Université de Sherbrooke), Xavier Sainsily(Université de Sherbrooke), David Coquerel(Université de Sherbrooke), Jérôme Côté(Université de Sherbrooke), Patricia Marx(Université de Sherbrooke), Élie Besserer‐Offroy(Université de Sherbrooke), Jean‐Michel Longpré(Université de Sherbrooke), Jean Lainé(Université de Sherbrooke), Bruno Reversade(Institute of Medical Biology), Dany Salvail, Richard Leduc(Université de Sherbrooke), Robert Dumaine(Université de Sherbrooke), Olivier Lesur(Université de Sherbrooke), Mannix Auger‐Messier(Université de Sherbrooke), Philippe Sarret(Université de Sherbrooke), Éric Marsault(Université de Sherbrooke)
Journal of Medicinal Chemistry
March 17, 2016
Cited by 122Open Access
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Abstract

ELABELA (ELA) was recently discovered as a novel endogenous ligand of the apelin receptor (APJ), a G protein-coupled receptor. ELA signaling was demonstrated to be crucial for normal heart and vasculature development during embryogenesis. We delineate here ELA's structure-activity relationships and report the identification of analogue 3 (ELA(19-32)), a fragment of ELA that binds to APJ, activates the Gαi1 and β-arrestin-2 signaling pathways, and induces receptor internalization similarly to its parent endogenous peptide. An alanine scan performed on 3 revealed that the C-terminal residues are critical for binding to APJ and signaling. Finally, using isolated-perfused hearts and in vivo hemodynamic and echocardiographic measurements, we demonstrate that ELA and 3 both reduce arterial pressure and exert positive inotropic effects on the heart. Altogether, these results present ELA and 3 as potential therapeutic options in managing cardiovascular diseases.


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