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Lipidated peptides derived from intracellular loops 2 and 3 of the urotensin II receptor act as biased allosteric ligands

Authors :
Alain Fournier
Bruce G. Allen
Tuan Anh Hoang
Terence E. Hébert
Ryan D. Martin
Alfonso Carotenuto
Juliana C. C. Dallagnol
Myriam Létourneau
Hassan Nassour
David Chatenet
Étienne Billard
Jason C. Tanny
Ettore Novellino
Nassour, Hassan
Hoang, Tuan Anh
Martin, Ryan D
Dallagnol, Juliana C C
Billard, Étienne
Létourneau, Myriam
Novellino, Ettore
Carotenuto, Alfonso
Allen, Bruce G
Tanny, Jason C
Fournier, Alain
Hébert, Terence E
Chatenet, David
Source :
The Journal of Biological Chemistry
Publication Year :
2021
Publisher :
American Society for Biochemistry and Molecular Biology, 2021.

Abstract

Over the last decade, the urotensinergic system, composed of one G protein-coupled receptor and two endogenous ligands, has garnered significant attention as a promising new target for the treatment of various cardiovascular diseases. Indeed, this system is associated with various biomarkers of cardiovascular dysfunctions and is involved in changes in cardiac contractility, fibrosis, and hypertrophy contributing, like the angiotensinergic system, to the pathogenesis and progression of heart failure. Significant investment has been made toward the development of clinically relevant UT ligands for therapeutic intervention, but with little or no success to date. This system therefore remains to be therapeutically exploited. Pepducins and other lipidated peptides have been used as both mechanistic probes and potential therapeutics; therefore, pepducins derived from the human urotensin II receptor might represent unique tools to generate signaling bias and study hUT signaling networks. Two hUT-derived pepducins, derived from the second and the third intracellular loop of the receptor (hUT-Pep2 and [Trp1, Leu2]hUT-Pep3, respectively), were synthesized and pharmacologically characterized. Our results demonstrated that hUT-Pep2 and [Trp1, Leu2]hUT-Pep3 acted as biased ago-allosteric modulators, triggered ERK1/2 phosphorylation and, to a lesser extent, IP1 production, and stimulated cell proliferation yet were devoid of contractile activity. Interestingly, both hUT-derived pepducins were able to modulate human urotensin II (hUII)- and urotensin II-related peptide (URP)-mediated contraction albeit to different extents. These new derivatives represent unique tools to reveal the intricacies of hUT signaling and also a novel avenue for the design of allosteric ligands selectively targeting hUT signaling potentially.

Subjects

Subjects :
Protein Conformation, alpha-Helical
Peptide Hormones
G-protein-coupled receptors
UT, urotensin II receptor
Ligands
Biochemistry
7TMR, 7-transmembrane receptor
RP-HPLC, reverse-phase high-performance liquid chromatography
Receptors, G-Protein-Coupled
chemistry.chemical_compound
HEK293 Cell
lipidated peptide
Receptor
Chemistry
HEK 293 cells, human embryonic kidney 293 cells
lipidated peptides
Intracellular Signaling Peptides and Proteins
allosteric modulator
Fmoc, fluorenylmethyloxycarbamate
Cell biology
DCM, dichloromethane
Peptide
Phosphorylation
allosteric modulators
DMF, dimethylformamide
Human
Research Article
Signal Transduction
Cell signaling
G-protein-coupled receptor
pepducin
Allosteric regulation
Ligand
Urotensin-II receptor
DQF-COSY, double-quantum filtered correlated spectroscopy
UII, urotensin II
BOP, (benzotriazol-1-yloxy)tris(dimethylamino) phosphonium hexafluorophosphate
Allosteric Regulation
NOESY, nuclear Overhauser enhancement spectroscopy
pepducins
DPC, dodecylphosphocholine
Humans
urotensin II receptor
BRET, bioluminescence resonance energy transfer
NMR, nuclear magnetic resonance
Molecular Biology
MALDI-TOF, matrix-assisted laser desorption/ionization–time of flight
G protein-coupled receptor
GPCR, G-protein-coupled receptor
Cell Proliferation
HEK 293 cells
URP, urotensin II-related peptide
Cell Biology
CHO cells, Chinese hamster ovary cells
TOCSY, total correlated spectroscopy
HEK293 Cells
Intracellular Signaling Peptides and Protein
Peptide Hormone
TSP, 3-(trimethylsilanyl)propionic acid
cellular signaling
DIEA, N,N-diisopropylethylamine
Urotensin-II
Peptides

Details

Language :
English
ISSN :
1083351X and 00219258
Volume :
297
Issue :
3
Database :
OpenAIRE
Journal :
The Journal of Biological Chemistry
Accession number :
edsair.doi.dedup.....31fe3abca6a81eb53384d871fe901993