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The binding characteristics of a human bladder recombinant P2X purinoceptor, labelled with [3H]-alpha beta meATP, [35S]-ATP gamma S or [33P]-ATP.

Abstract
1. The binding of [3H]-alpha beta meATP, [35s]-ATP gamma S and [alpha 33P]-ATP to a human bladder P2X purinoceptor, transiently expressed in CHO-K1 cells using the Semliki Forest Virus (SFV) expression system, was examined. The characteristics of the binding sites were compared with results obtained in rat vas deferens, a tissue in which the radioligands are thought to label P2X purinoceptors and in which the endogenous P2X purinoceptor displays high homology with the human bladder P2X purinoceptor. 2. In non-infected CHO-K1 cells, 100 microM ATP evoked only small inward currents (40 pA) in approximately 30% of the cells when studied by the whole-cell voltage clamp technique. In membranes prepared from either these non-infected cells or cells infected with SFV containing the LacZ gene (SFV-LacZ), [3H]-alpha beta meATP bound with low affinity (pKd = 7.04; Bmax = 8.88 pmol ml-1 protein) and there was only a low density of [35S]-ATP gamma S binding sites (pKd = 8.74; Bmax = 358 fmol ml-1 protein). These binding sites differed from those present in rat vas deferens. Thus, pIC50 values for alpha beta meATP (6.5) and L-beta gamma meATP (4.0) at the [3H]-alpha beta meATP binding sites in non-infected CHO-K1 cells were much lower than the respective pIC50 values of 8.3 and 7.7, determined in rat vas deferens. Similarly, affinity estimates (pIC50 values) for ATP (6.82), 2-meS-ATP (5.43), ATP gamma S (7.06) and alpha beta meATP (4.84) at the [35S]-ATP gamma S binding sites in non-infected CHO-K1 cells were up to 2291 fold lower than the respective values of 9.01, 8.79, 8.73 and 7.57, determined in rat vas deferens. 3. In CHO-K1 cells infected using SFV containing the cDNA for the human bladder P2X purinoceptor (SFV-h.P2X), ATP, 2-meS-ATP and alpha beta meATP evoked large inward currents (2-7 nA) in whole cell voltage clamp studies. In membranes prepared from these SFV-h.P2X infected cells, [3H]-alpha beta meATP binding was increased, compared to that measured in the non infected or SFV-LacZ infected cells, with only high affinity [3H]-alpha beta meATP binding sites being detected (pKd = 9.21; Bmax = 3.54 pmol mg-1 protein). The pIC50 values for alpha beta meATP (8.2) and L-beta gamma meATP (7.2) in competing for these sites were the same or similar to the values determined in rat vas deferens. 4. A high density of [35H]-ATP gamma S binding sites (pKd = 9.09; Bmax = 6.82 pmol mg-1 protein) was also present in the membranes from CHO-K1 cells infected with SFV-h.P2X and affinity estimates (pIC50 values) for ATP (8.93), 2-meS-ATP (8.23), ATP gamma S (8.08), and alpha beta meATP (7.17) at competing for these sites were as much as 631 fold higher than the respective values determined in non-infected CHO-K1 cells but were close to the values determined in rat vas deferens. Similar data were obtained with [alpha 33P]-ATP as radioligand. 5. These data suggest that [3H]-alpha beta meATP, [35S]-ATP gamma S and [33P]-ATP label the human bladder recombinant P2X purinoceptor expressed in CHO-K1 cells following infection with SFV-h.P2X and provide further corroborative evidence to support the contention that the high affinity binding sites for these radioligands in rat vas deferens are P2X purinoceptors.
AuthorsA D Michel, K Lundström, G N Buell, A Surprenant, S Valera, P P Humphrey
JournalBritish journal of pharmacology (Br J Pharmacol) Vol. 117 Issue 6 Pg. 1254-60 (Mar 1996) ISSN: 0007-1188 [Print] England
PMID8882623 (Publication Type: Comparative Study, Journal Article)
Chemical References
  • Phosphorus Radioisotopes
  • Receptors, Purinergic P2
  • Recombinant Proteins
  • Sulfur Radioisotopes
  • Tritium
  • adenosine 5'-O-(3-thiotriphosphate)
  • Adenosine Triphosphate
  • alpha,beta-methyleneadenosine 5'-triphosphate
Topics
  • Adenosine Triphosphate (analogs & derivatives, metabolism)
  • Animals
  • CHO Cells
  • Cell Line
  • Cricetinae
  • Humans
  • Male
  • Patch-Clamp Techniques
  • Phosphorus Radioisotopes
  • Polymerase Chain Reaction
  • Rats
  • Rats, Sprague-Dawley
  • Receptors, Purinergic P2 (drug effects, metabolism)
  • Recombinant Proteins (metabolism)
  • Sulfur Radioisotopes
  • Tritium
  • Urinary Bladder (metabolism)
  • Vas Deferens (metabolism)

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