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Molecular and functional characterization of human P2X(2) receptors
K J Lynch1, E Touma, W Niforatos
1Neurological and Urological Diseases Research, Abbott Laboratories, Abbott Park, Illinois 60064, USA. Kevin.Lynch@abott.com
Abstract:
P2X receptors are a family of ATP-gated ion channels. Four cDNAs with a high degree of homology to the rat P2X(2) receptor were isolated from human pituitary and pancreas RNA. Genomic sequence indicated that these cDNAs represent alternatively spliced messages. Northern analysis revealed high levels of human P2X(2) (hP2X(2)) message in the pancreas, and splice variants could be detected in a variety of tissues. Two cDNAs encoded functional ion channels when expressed in Xenopus oocytes, a receptor structurally homologous to the prototype rat P2X(2) receptor (called hP2X(2a)) and a variant containing a deletion within its cytoplasmic C terminus (called hP2X(2b)). Pharmacologically, these functional human P2X(2) receptors were virtually indistinguishable, with the P2X receptor agonists ATP, 2-methylthio-ATP, 2' and 3'-O-(4-benzoylbenzoyl)-ATP, and ATP5'-O-(3-thiotriphosphate) being approximately equipotent (EC(50) = 1 microM) in eliciting extracellular Ca(2+) influx. The P2 receptor agonists alpha,beta-methylene ATP, adenosine, adenosine 5'-O-(2-thiodiphosphate), and UTP were inactive at concentrations up to 100 microM. Both hP2X(2a) and hP2X(2b) receptors were sensitive to the P2 receptor antagonist pyridoxal-5-phosphate-6-azophenyl-2', 4'-disulfonic acid (IC(50) = 3 microM). In contrast to the analogous rat P2X(2) and P2X(2b) receptors, the desensitization rates of the hP2X(2a) and hP2X(2b) receptors were equivalent. Both functional forms of the human P2X(2) receptors formed heteromeric channels with the human P2X(3) receptor. These data demonstrate that the gene structure and mRNA heterogeneity of the P2X(2) receptor subtype are evolutionarily conserved between rat and human, but also suggest that alternative splicing serves a function other than regulating the desensitization rate of the human receptor.
Insights
Researchers identified human P2X(2) receptor variants from pituitary and pancreas RNA. These functional ATP-gated ion channels show conserved gene structure with rats but suggest alternative splicing has roles beyond desensitization.
Area of Science:
- Molecular Biology
- Neuroscience
- Pharmacology
Background:
- P2X receptors are ATP-gated ion channels crucial for cellular signaling.
- Understanding human P2X receptor subtypes is vital for their therapeutic targeting.
Purpose of the Study:
- To isolate and characterize human P2X(2) receptor cDNAs and their splice variants.
- To investigate the functional and pharmacological properties of human P2X(2) receptors.
- To compare human P2X(2) receptor characteristics with their rat counterparts.
Main Methods:
- Isolation of cDNAs from human pituitary and pancreas RNA.
- Genomic sequence analysis to identify alternative splicing.
- Expression of cDNAs in Xenopus oocytes for functional studies.
- Pharmacological characterization using various P2X receptor agonists and antagonists.
- Analysis of receptor desensitization rates and heteromeric channel formation.
Main Results:
- Four human P2X(2) receptor cDNAs were identified, representing alternatively spliced messages.
- Two functional variants, hP2X(2a) and hP2X(2b), were characterized as ATP-gated ion channels.
- Both variants exhibited similar pharmacological profiles and sensitivity to agonists and antagonists.
- Human P2X(2) receptors showed equivalent desensitization rates, unlike rat counterparts.
- Functional hP2X(2) receptors formed heteromeric channels with hP2X(3) receptors.
Conclusions:
- The gene structure and mRNA heterogeneity of the P2X(2) receptor subtype are conserved between rats and humans.
- Alternative splicing of human P2X(2) receptors may serve functions beyond regulating desensitization rates.
- Human P2X(2) receptors represent important targets for pharmacological intervention.