UTP binding and phosphoinositidase C activation in ampulla from frog semicircular canal

Author:

Teixeira Marie1,Ferrary Evelyne1,Butlen Daniel1

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale, Unité 426, Faculté de Médecine Xavier Bichat, 75870 Paris Cedex 18, France

Abstract

Pyrimidine nucleotide-sensitive phosphoinositidase C activity (PLC), previously identified in frog semicircular canal ampulla, was pharmacologically characterized. Binding of [3H]UTP and abilities of unlabeled nucleotide analogs to inhibit binding and to stimulate PLC in myo-[3H]inositol-loaded ampullas were determined. Specific [3H]UTP binding was competitively inhibited by UTP [apparent dissociation binding constant = 0.8 μM; Hill coefficient = 0.7]. Scatchard analysis revealed a minor class of high-affinity binding sites [45 fmol UTP bound/μg protein; dissociation constant ( K D1) = 0.4 μM] and a major class of moderate-affinity binding sites (365 fmol UTP bound/μg protein; K D2 = 10 μM). The stereospecificity pattern for UTP analog recognition was UMP > UDP ≥ ADP = UTP = dTTP > adenosine 5′- O-(3-thiotriphosphate) = ATP = CTP = 2′-and 3′- O-4-(benzoylbenzoyl)-ATP (Bz-ATP) ≥ AMP ≥ 2-methylthio-ATP = α,β-methylene-ATP > uridine = diadenosine tetraphosphate (Ap4A); cAMP and adenosine were inactive. Antagonist recognition pattern was DIDS = pyridoxal-phosphate-6-azophenyl-2′,4′-disulfonic acid (PPADS) = reactive blue 2 > suramin. The rank order of potencies for agonist-induced PLC activation was UDP ≥ UTP ≥ Ap4A ≥ UMP = Bz-ATP; uridine was inactive. UTP-stimulated PLC activity was inhibited by DIDS = reactive blue 2 = PPADS > suramin. These results suggest that the population of [3H]UTP-labeled binding sites is heterogeneous, with a low number of high-affinity UTP receptors whose function(s) need to be determined and a large number of moderate-affinity receptors triggering PLC activation.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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1. Evolution of Purinergic Signalling;Purinergic Signalling and the Nervous System;2012

2. Evolutionary origins of the purinergic signalling system;Acta Physiologica;2009-04

3. Physiology and Pathophysiology of Purinergic Neurotransmission;Physiological Reviews;2007-04

4. Structure-Activity Relationships of Suramin and Pyridoxal-5-phosphate Derivatives as P2 Receptor Antagonists;Current Pharmaceutical Design;2002-12-01

5. Purine and pyrimidine nucleotide-sensitive phospholipase A2 in ampulla from frog semicircular canal;American Journal of Physiology-Regulatory, Integrative and Comparative Physiology;2001-02-01

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