» Articles » PMID: 12040883

Functional Expression of Muscle-type Nicotinic Acetylcholine Receptors in Rat Forebrain Neurons in Vitro

Overview
Publisher Thomson Reuters
Specialty Pharmacology
Date 2002 Jun 4
PMID 12040883
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Molecular studies aimed at modifying ligand-gated ion channel function in primary neuronal cultures have been hampered by the limited efficacy of gene transfer techniques. Although viruses can effectively deliver genes to neurons, their preparation requires a substantial effort and their usefulness in delivering multiple subunits of a single protein has not been well established. In this study, we have successfully cotransfected mammalian expression plasmids for all subunits of the muscle nicotinic acetylcholine receptor (nAChR), along with a plasmid containing green fluorescent protein (GFP), into rat forebrain neurons using a calcium phosphate method. Immunostaining experiments and cell counting showed that the nAChR were successfully expressed in approximately 1% of the neurons in the culture. The functionality of the expressed receptors was demonstrated electrophysiologically as carbachol-induced currents were present in nearly 90% of the GFP-positive neurons tested. These currents could be completely inhibited by the irreversible antagonist alpha-cobratoxin. Surprisingly, no currents were obtained in any of the GFP-negative cells tested. These results demonstrate that gene delivery of complex, multi-subunit proteins can be successfully performed in cultured neurons, thereby opening new strategies for the pharmacological study of ligand-gated ion channels.

Citing Articles

Molecular Neuroprotection Induced by Zinc-Dependent Expression of Hepatitis C-Derived Protein NS5A Targeting Kv2.1 Potassium Channels.

Justice J, Manjooran D, Yeh C, Hartnett-Scott K, Schulien A, Kosobucki G J Pharmacol Exp Ther. 2018; 367(2):348-355.

PMID: 30190339 PMC: 6193254. DOI: 10.1124/jpet.118.252338.


SNARE-dependent upregulation of potassium chloride co-transporter 2 activity after metabotropic zinc receptor activation in rat cortical neurons in vitro.

Saadi R, He K, Hartnett K, Kandler K, Hershfinkel M, Aizenman E Neuroscience. 2012; 210:38-46.

PMID: 22441041 PMC: 3358579. DOI: 10.1016/j.neuroscience.2012.03.001.


Regulation of apoptotic potassium currents by coordinated zinc-dependent signalling.

Redman P, Hartnett K, Aras M, Levitan E, Aizenman E J Physiol. 2009; 587(Pt 18):4393-404.

PMID: 19622611 PMC: 2766646. DOI: 10.1113/jphysiol.2009.176321.


Microglia induce neurotoxicity via intraneuronal Zn(2+) release and a K(+) current surge.

Knoch M, Hartnett K, Hara H, Kandler K, Aizenman E Glia. 2007; 56(1):89-96.

PMID: 17955552 PMC: 2561170. DOI: 10.1002/glia.20592.


Mediation of neuronal apoptosis by Kv2.1-encoded potassium channels.

Pal S, Hartnett K, Nerbonne J, Levitan E, Aizenman E J Neurosci. 2003; 23(12):4798-802.

PMID: 12832499 PMC: 2945225.