Characterization Of Nicotinic Acetylcholine Receptors Expressed By Cells Of The Sh-Sy5Y Human Neuroblastoma Clonal Line

Department

neurobiology

Document Type

Article

Abstract

Radioligand binding studies show that cells of the SH-SY5Y human neuroblastoma clonal line express a single class of neuronal/nicotinic α-bungarotoxin binding sites (nBgtS). These sites are defined by their ability to bind radioiodinated α-bungarotoxin (Bgt) with high affinity K(D) = 4 nM) and nicotinic ligands with lower (μM) affinity. Radioligand binding studies also show that SH-SY5Y cells express high affinity specific binding sites for 3H-labeled acetylcholine that could reflect interactions with two classes of sites (KD̍ = 1 nM, KD̎ = 100 nM). These sites are distinguished from nBgtS by their insensitivity to blockade by Bgt and by their ability to bind other nicotinic agonists with high (nM) affinity. 86Rb+ efflux studies indicate that SH-SY5Y cells express functional nicotinic acetylcholine receptor (nAChR) ion channels that, like radioagonist binding sites, are insensitive to blockade by Bgt. However, there are far more functional nAChR than high affinity radioagonist binding sites. Functional nAChR have a pharmacological profile expected of ganglia-type receptors composed of nAChR alpha3 and beta4 subunits. Northern blot analysis indicates that genes corresponding to human alpha3, alpha5, beta2, and beta4 subunits are expressed by SH-SY5Y cells. We conclude that SH-SY5Y cells express at least two members of the nAChR family (nBgtS and ganglia-type nAChR) and that high affinity radioagonist binding sites are a subset of functional ganglia-type nAChR. © 1993 Academic Press Inc.

Publication Date

4-1-1993

Publication Title

Molecular and Cellular Neurosciences

ISSN

10447431

Volume

4

Issue

1

First Page

1

Last Page

12

Digital Object Identifier (DOI)

10.1006/mcne.1993.1001

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