Literature DB >> 18082287

[Orn5]URP acts as a pure antagonist of urotensinergic receptors in rat cortical astrocytes.

Mickaël Diallo1, Marie Jarry, Laurence Desrues, Hélène Castel, David Chatenet, Jérôme Leprince, Hubert Vaudry, Marie-Christine Tonon, Pierrick Gandolfo.   

Abstract

Cultured rat astrocytes, which express functional urotensin II (UII)/UII-related peptide (URP) receptors (UT), represent a very suitable model to investigate the pharmacological profile of UII and URP analogs towards native UT. We have recently designed three URP analogs [D-Trp4]URP, [Orn5]URP and [D-Tyr6]URP, that act as UT antagonists in the rat aortic ring bioassay. However, it has been previously reported that UII/URP analogs capable of inhibiting the contractile activity of UII possess agonistic activity on UT-transfected cells. In the present study, we have compared the ability of URP analogs to compete for [125 I]URP binding and to modulate cytosolic calcium concentration ([Ca2+]c) in cultured rat astrocytes. All three analogs displaced radioligand binding: [D-Trp4]URP and [D-Tyr6]URP interacted with high- and low-affinity sites whereas [Orn5]URP only bound high-affinity sites. [D-Trp4]URP and [D-Tyr6]URP both induced a robust increase in [Ca2+]c in astrocytes while [Orn5]URP was totally devoid of activity. [Orn5]URP provoked a concentration-dependent inhibition of URP- and UII-evoked [Ca2+]c increase and a rightward shift of the URP and UII dose-response curves. The present data indicate that [D-Trp4]URP and [D-Tyr6]URP, which act as UII antagonists in the rat aortic ring assay, behave as agonists in the [Ca2+]c mobilization assay in cultured astrocytes, whereas [Orn5]URP is a pure selective antagonist in both rat aortic ring contraction and astrocyte [Ca2+]c mobilization assays.

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Year:  2007        PMID: 18082287     DOI: 10.1016/j.peptides.2007.10.023

Source DB:  PubMed          Journal:  Peptides        ISSN: 0196-9781            Impact factor:   3.750


  2 in total

1.  Down-regulation of GABA(A) receptor via promiscuity with the vasoactive peptide urotensin II receptor. Potential involvement in astrocyte plasticity.

Authors:  Laurence Desrues; Thomas Lefebvre; Céline Lecointre; Marie-Thérèse Schouft; Jérôme Leprince; Vincent Compère; Fabrice Morin; François Proust; Pierrick Gandolfo; Marie-Christine Tonon; Hélène Castel
Journal:  PLoS One       Date:  2012-05-01       Impact factor: 3.240

2.  Development of Novel 111-In-Labelled DOTA Urotensin II Analogues for Targeting the UT Receptor Overexpressed in Solid Tumours.

Authors:  Benjamin Poret; Laurence Desrues; Marc-André Bonin; Martin Pédard; Martine Dubois; Richard Leduc; Romain Modzelewski; Pierre Decazes; Fabrice Morin; Pierre Vera; Hélène Castel; Pierre Bohn; Pierrick Gandolfo
Journal:  Biomolecules       Date:  2020-03-19
  2 in total

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