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ADP is not an agonist at P2X(1) receptors: evidence for separate receptors stimulated by ATP and ADP on human platelets.
Mahaut-Smith MP, Ennion SJ, Rolf MG, Evans RJ.
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ADP, an important agonist in thrombosis and haemostasis, has been reported to activate platelets via three receptors, P2X(1), P2Y(1) and P2T(AC). Given the low potency of ADP at P2X(1) receptors and recognized contamination of commercial samples of adenosine nucleotides, we have re-examined the activation of P2X(1) receptors by ADP following HPLC and enzymatic purification. Native P2X(1) receptor currents in megakaryocytes were activated by alpha, beta-meATP (10 microM) and commercial samples of ADP (10 microM), but not by purified ADP (10 - 100 microM). Purified ADP (up to 1 mM) was also inactive at recombinant human P2X(1) receptors expressed in Xenopus oocytes. Purification did not modify the ability of ADP to activate P2Y receptors coupled to Ca(2+) mobilization in rat megakaryocytes. In human platelets, P2X(1) and P2Y receptor-mediated [Ca(2+)](i) responses were distinguished by their different kinetics at 13 degrees C. In 1 mM Ca(2+) saline, alpha,beta-meATP (10 microM) and commercial ADP (40 microM) activated a rapid [Ca(2+)](i) increase (lag time < or =0.5 s) through the activation of P2X(1) receptors. Hexokinase treatment of ADP shifted the lag time by approximately 2 s, indicating loss of the P2X(1) receptor-mediated response. A revised scheme is proposed for physiological activation of P2 receptors in human platelets. ATP stimulates P2X(1) receptors, whereas ADP is a selective agonist at metabotropic (P2Y(1) and P2T(AC)) receptors.
Bezprozvanny,
The inositol 1,4,5-trisphosphate (InsP3) receptor.
1995, Pubmed
Bezprozvanny,
The inositol 1,4,5-trisphosphate (InsP3) receptor.
1995,
Pubmed Boarder,
The regulation of vascular function by P2 receptors: multiple sites and multiple receptors.
1998,
Pubmed Boeynaems,
P2Y receptors: in the middle of the road.
2000,
Pubmed Boeynaems,
P2 purinoceptors on vascular endothelial cells: physiological significance and transduction mechanisms.
1990,
Pubmed Born,
Source and concentration of extracellular adenosine triphosphate during haemostasis in rats, rabbits and man.
1984,
Pubmed BORN,
Aggregation of blood platelets by adenosine diphosphate and its reversal.
1962,
Pubmed Buell,
An antagonist-insensitive P2X receptor expressed in epithelia and brain.
1996,
Pubmed Burnstock,
Overview. Purinergic mechanisms.
1990,
Pubmed Chen,
A P2X purinoceptor expressed by a subset of sensory neurons.
1995,
Pubmed
,
Xenbase Daniel,
Role of intracellular signaling events in ADP-induced platelet aggregation.
1999,
Pubmed Daniel,
Molecular basis for ADP-induced platelet activation. I. Evidence for three distinct ADP receptors on human platelets.
1998,
Pubmed Eberhard,
Intracellular Ca2+ activates phospholipase C.
1988,
Pubmed Evans,
Pharmacological characterization of heterologously expressed ATP-gated cation channels (P2x purinoceptors).
1995,
Pubmed Evans,
Characterization of P2-purinoceptors in the smooth muscle of the rat tail artery: a comparison between contractile and electrophysiological responses.
1994,
Pubmed Fabre,
Decreased platelet aggregation, increased bleeding time and resistance to thromboembolism in P2Y1-deficient mice.
1999,
Pubmed Flodgaard,
Abundant amounts of diadenosine 5',5"'-P1,P4-tetraphosphate are present and releasable, but metabolically inactive, in human platelets.
1982,
Pubmed Fredholm,
Towards a revised nomenclature for P1 and P2 receptors.
1997,
Pubmed GAARDER,
Adenosine diphosphate in red cells as a factor in the adhesiveness of human blood platelets.
1961,
Pubmed Hechler,
The P2Y1 receptor is necessary for adenosine 5'-diphosphate-induced platelet aggregation.
1998,
Pubmed Hechler,
ATP derivatives are antagonists of the P2Y1 receptor: similarities to the platelet ADP receptor.
1998,
Pubmed Holmsen,
Secretable storage pools in platelets.
1979,
Pubmed Hourani,
Receptors for ADP on human blood platelets.
1994,
Pubmed Jankowski,
High-performance liquid chromatographic assay of the diadenosine polyphosphates in human platelets.
1999,
Pubmed Jin,
Coactivation of two different G protein-coupled receptors is essential for ADP-induced platelet aggregation.
1998,
Pubmed Jin,
Molecular basis for ADP-induced platelet activation. II. The P2Y1 receptor mediates ADP-induced intracellular calcium mobilization and shape change in platelets.
1998,
Pubmed Kawa,
ADP-induced rapid inward currents through Ca(2+)-permeable cation channels in mouse, rat and guinea-pig megakaryocytes: a patch-clamp study.
1996,
Pubmed Kunapuli,
P2 receptor subtypes in the cardiovascular system.
1998,
Pubmed Léon,
Defective platelet aggregation and increased resistance to thrombosis in purinergic P2Y(1) receptor-null mice.
1999,
Pubmed Léon,
The P2Y1 receptor is an ADP receptor antagonized by ATP and expressed in platelets and megakaryoblastic cells.
1997,
Pubmed Lewis,
Coexpression of P2X2 and P2X3 receptor subunits can account for ATP-gated currents in sensory neurons.
1995,
Pubmed Lewis,
Effects of diadenosine polyphosphates (Ap(n)As) and adenosine polyphospho guanosines (Ap(n)Gs) on rat mesenteric artery P2X receptor ion channels.
2000,
Pubmed MacKenzie,
Activation of receptor-operated cation channels via P2X1 not P2T purinoceptors in human platelets.
1996,
Pubmed Mahaut-Smith,
Depolarization-evoked Ca2+ release in a non-excitable cell, the rat megakaryocyte.
1999,
Pubmed Mahaut-Smith,
Rapid ADP-evoked currents in human platelets recorded with the nystatin permeabilized patch technique.
1992,
Pubmed Mahaut-Smith,
Receptor-activated single channels in intact human platelets.
1990,
Pubmed Mulryan,
Reduced vas deferens contraction and male infertility in mice lacking P2X1 receptors.
2000,
Pubmed Nicholas,
Uridine nucleotide selectivity of three phospholipase C-activating P2 receptors: identification of a UDP-selective, a UTP-selective, and an ATP- and UTP-specific receptor.
1996,
Pubmed North,
Nucleotide receptors.
1997,
Pubmed Ohlmann,
The human platelet ADP receptor activates Gi2 proteins.
1995,
Pubmed Palmer,
Agonist action of adenosine triphosphates at the human P2Y1 receptor.
1998,
Pubmed Paul,
Platelet shape change is mediated by both calcium-dependent and -independent signaling pathways. Role of p160 Rho-associated coiled-coil-containing protein kinase in platelet shape change.
1999,
Pubmed Ralevic,
Receptors for purines and pyrimidines.
1998,
Pubmed Sage,
ADP evokes biphasic Ca2+ influx in fura-2-loaded human platelets. Evidence for Ca2+ entry regulated by the intracellular Ca2+ store.
1990,
Pubmed Sage,
Purinoceptor-evoked calcium signalling in human platelets.
1997,
Pubmed Sage,
Resting and ADP-evoked changes in cytosolic free sodium concentration in human platelets loaded with the indicator SBFI.
1991,
Pubmed Sage,
The kinetics of changes in intracellular calcium concentration in fura-2-loaded human platelets.
1987,
Pubmed Savi,
Role of P2Y1 purinoceptor in ADP-induced platelet activation.
1998,
Pubmed Savi,
Characterization of P2x1 purinoreceptors on rat platelets: effect of clopidogrel.
1997,
Pubmed Somasundaram,
Three cation influx currents activated by purinergic receptor stimulation in rat megakaryocytes.
1994,
Pubmed Surprenant,
The cytolytic P2Z receptor for extracellular ATP identified as a P2X receptor (P2X7).
1996,
Pubmed Uneyama,
Cytoplasmic Ca2+ oscillation in rat megakaryocytes evoked by a novel type of purinoceptor.
1993,
Pubmed Valera,
A new class of ligand-gated ion channel defined by P2x receptor for extracellular ATP.
1994,
Pubmed
,
Xenbase Vial,
Presence of P2X1 purinoceptors in human platelets and megakaryoblastic cell lines.
1997,
Pubmed Vulchanova,
Differential distribution of two ATP-gated channels (P2X receptors) determined by immunocytochemistry.
1996,
Pubmed Wildman,
Selectivity of diadenosine polyphosphates for rat P2X receptor subunits.
1999,
Pubmed
,
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