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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

Molecular Pharmacology
|November 26, 1999
PubMed

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.

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