Genetic Reconstitution of Functional Acetylcholine Receptor Channels in Mouse Fibroblasts
- 18 December 1987
- journal article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 238 (4834), 1688-1694
- https://doi.org/10.1126/science.3686008
Abstract
Foreign genes can be stably integrated into the genome of a cell by means of DNA-mediated gene transfer techniques, and large quantities of homogenous cells that continuously express these gene products can then be isolated. Such an expression system can be used to study the functional consequences of introducing specific mutations into genes and to study the expressed protein in the absence of cellular components with which it is normally in contact. All four Torpedo acetylcholine receptor (AChR) subunit complementary DNA's were introduced into the genome of a mouse fibroblast cell by DNA-mediated gene transfer. A clonal cell line that stably produced high concentrations of correctly assembled cell surface AChR's and formed proper ligand-gated ion channels was isolated. With this new expression system, recombinant DNA, biochemical, pharmacological, and electrophysiological techniques were combined to study Torpedo AChR's in a single intact system. The physiological and pharmacological profiles of Torpedo AChR's expressed in mouse fibroblast cells differ in some details from those described earlier, and may provide a more accurate reflection of the properties of this receptor in its natural environment.Keywords
This publication has 45 references indexed in Scilit:
- Recombinant DNA technology in the study of ion channelsTrends in Pharmacological Sciences, 1986
- Location of functional regions of acetylcholine receptor α-subunit by site-directed mutagenesisNature, 1985
- Acetylcholine receptor in planar lipid bilayers. Characterization of the channel properties of the purified nicotinic acetylcholine receptor from Torpedo californica reconstituted in planar lipid bilayers.The Journal of general physiology, 1984
- Degradation of acetylcholine receptors in muscle cells: effect of leupeptin on turnover rate, intracellular pool sizes, and receptor properties.The Journal of cell biology, 1983
- Activation and inactivation kinetics of Torpedo californica acetylcholine receptor in reconstituted membranesBiochemistry, 1982
- A simple method for displaying the hydropathic character of a proteinJournal of Molecular Biology, 1982
- Prediction of protein antigenic determinants from amino acid sequences.Proceedings of the National Academy of Sciences, 1981
- 3′ Non-coding region sequences in eukaryotic messenger RNANature, 1976
- Detection of specific sequences among DNA fragments separated by gel electrophoresisJournal of Molecular Biology, 1975
- Changes in size and secondary structure of the ribosomal transcription unit during vertebrate evolutionJournal of Molecular Biology, 1975