Back to Search Start Over

Molecular basis of agonist docking in a human GPR103 homology model by site-directed mutagenesis and structure–activity relationship studies

Authors :
Neveu, Cindy
Dulin, Fabienne
Lefranc, Benjamin
Galas, Ludovic
Calbrix, Colas
Bureau, Ronan
Rault, Sylvain
Chuquet, Julien
Boutin, Jean A
Guilhaudis, Laure
Ségalas-Milazzo, Isabelle
Vaudry, David
Vaudry, Hubert
Sopkova-De Oliveira Santos, Jana
Leprince, Jérôme
Différenciation et communication neuronale et neuroendocrine (DC2N)
Université de Rouen Normandie (UNIROUEN)
Normandie Université (NU)-Normandie Université (NU)-Institut National de la Santé et de la Recherche Médicale (INSERM)
Plate-Forme de Recherche en Imagerie Cellulaire de Haute-Normandie (PRIMACEN)
Normandie Université (NU)-Normandie Université (NU)-Institute for Research and Innovation in Biomedicine (IRIB)
Normandie Université (NU)-Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Rouen Normandie (UNIROUEN)
Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)
Centre d'Etudes et de Recherche sur le Médicament de Normandie (CERMN)
Université de Caen Normandie (UNICAEN)
Normandie Université (NU)-Normandie Université (NU)
Institut de Recherches Internationales Servier [Suresnes] (IRIS)
Chimie Organique et Bioorganique : Réactivité et Analyse (COBRA)
Institut Normand de Chimie Moléculaire Médicinale et Macromoléculaire (INC3M)
Institut de Chimie du CNRS (INC)-École Nationale Supérieure d'Ingénieurs de Caen (ENSICAEN)
Normandie Université (NU)-Normandie Université (NU)-Institut national des sciences appliquées Rouen Normandie (INSA Rouen Normandie)
Institut National des Sciences Appliquées (INSA)-Normandie Université (NU)-Institut National des Sciences Appliquées (INSA)-Université Le Havre Normandie (ULH)
Normandie Université (NU)-Université de Rouen Normandie (UNIROUEN)
Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Université de Caen Normandie (UNICAEN)
Normandie Université (NU)-Institut de Chimie du CNRS (INC)-École Nationale Supérieure d'Ingénieurs de Caen (ENSICAEN)
Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Institut de Chimie Organique Fine (IRCOF)
Institut National des Sciences Appliquées (INSA)-Normandie Université (NU)-Institut National des Sciences Appliquées (INSA)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS)
Source :
British Journal of Pharmacology, British Journal of Pharmacology, Wiley, 2014, 171 (19), pp.4425-4439. ⟨10.1111/bph.12808⟩
Publication Year :
2014
Publisher :
BlackWell Publishing Ltd, 2014.

Abstract

The neuropeptide 26RFa and its cognate receptor GPR103 are involved in the control of food intake and bone mineralization. Here, we have tested, experimentally, the predicted ligand-receptor interactions by site-directed mutagenesis of GPR103 and designed point-substituted 26RFa analogues.Using the X-ray structure of the β2 -adrenoceptor, a 3-D molecular model of GPR103 has been built. The bioactive C-terminal octapeptide 26RFa(19-26) , KGGFSFRF-NH2 , was docked in this GPR103 model and the ligand-receptor complex was submitted to energy minimization.In the most stable complex, the Phe-Arg-Phe-NH2 part was oriented inside the receptor cavity, whereas the N-terminal Lys residue remained outside. A strong intermolecular interaction was predicted between the Arg(25) residue of 26RFa and the Gln(125) residue located in the third transmembrane helix of GPR103. To confirm this interaction experimentally, we tested the ability of 26RFa and Arg-modified 26RFa analogues to activate the wild-type and the Q125A mutant receptors transiently expressed in CHO cells. 26RFa (10(-6) M) enhanced [Ca(2+) ]i in wild-type GPR103-transfected cells, but failed to increase [Ca(2+) ]i in Q125A mutant receptor-expressing cells. Moreover, asymmetric dimethylation of the side chain of arginine led to a 26RFa analogue, [ADMA(25) ]26RFa(20-26) , that was unable to activate the wild-type GPR103, but antagonized 26RFa-evoked [Ca(2+) ]i increase.Altogether, these data provide strong evidence for a functional interaction between the Arg(25) residue of 26RFa and the Gln(125) residue of GPR103 upon ligand-receptor activation, which can be exploited for the rational design of potent GPR103 agonists and antagonists.

Details

Language :
English
ISSN :
00071188 and 14765381
Database :
OpenAIRE
Journal :
British Journal of Pharmacology, British Journal of Pharmacology, Wiley, 2014, 171 (19), pp.4425-4439. ⟨10.1111/bph.12808⟩
Accession number :
edsair.pmid.dedup....37f42f43af70c0982df17a4c76de797b