Elsevier

Analytical Biochemistry

Volume 175, Issue 1, 15 November 1988, Pages 212-218
Analytical Biochemistry

An isotopic rubidium ion efflux assay for the functional characterization of nicotinic acetylcholine receptors on clonal cell lines

https://doi.org/10.1016/0003-2697(88)90380-6Get rights and content

Abstract

An isotopic rubidium ion efflux assay has been developed for the functional characterization of nicotinic acetylcholine receptors on cultured neurons. This assay first involves the intracellular sequestration of isotopic potassium ion analog by the ouabain-sensitive action of a sodium-potassium ATPase. Subsequently, the release of isotopic rubidium ion through nicotinic acetylcholine receptor-coupled monovalent cation channels is activated by application of nicotinic agonists. Specificity of receptor-mediated efflux is demonstrated by its sensitivity to blockade by nicotinic, but not muscarinic, antagonists. The time course of agonist-mediated efflux, within the temperal limitations of the assay, indicates a slow inactivation of receptor function on prolonged exposure to agonist. Dose-response profiles (i) have characteristic shapes for different nicotinic agonists, (ii) are described by three operationally defined parameters, and (iii) reflect different affinities of agonists for binding sites that control receptor activation and functional inhibition. The rubidium ion efflux assay provides fewer hazards but greater sensitivity and resolution than isotopic sodium or rubidium ion influx assays for functional nicotinic receptors.

References (17)

  • W.A. Catterall

    J. Biol. Chem

    (1975)
  • J. Patrick et al.

    J. Biol. Chem

    (1977)
  • A.J. Lapa et al.

    Exp. Neurol

    (1975)
  • R. Anholt et al.
  • O.P. Hamill et al.

    Pflugers Arch

    (1981)
  • B. Katz
  • W.B. Stallcup

    J. Physiol

    (1979)
  • D. Robinson et al.

    Mol. Pharmacol

    (1985)
There are more references available in the full text version of this article.

Cited by (0)

View full text