Nicotinic ACh (acetylcholine) and 5-HT3 (5-hydroxytryptamine type-3) receptors are cation-selective ion channels of the Cys-loop transmitter-gated ion channel superfamily. Numerous lines of evidence indicate that the channel lining domain of such receptors is formed by the α-helical M2 domain (second transmembrane domain) contributed by each of five subunits present within the receptor complex. Specific amino acid residues within the M2 domain have accordingly been demonstrated to influence both single-channel conductance (γ) and ion selectivity. However, it is now clear from work performed on the homomeric 5-HT3A receptor, heteromeric 5-HT3A/5-HT3B receptor and 5-HT3A/5-HT3B receptor subunit chimaeric constructs that an additional major determinant of γ resides within a cytoplasmic domain of the receptor termed the MA-stretch (membrane-associated stretch). The MA-stretch, within the M3–M4 loop, is not traditionally thought to be implicated in ion permeation and selection. Here, we describe how such observations extend to a representative neuronal nicotinic ACh receptor composed of α4 and β2 subunits and, by inference, probably other members of the Cys-loop family. In addition, we will attempt to interpret our results within the context of a recently developed atomic scale model of the nicotinic ACh receptor of Torpedo marmorata (marbled electric ray).
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October 2006
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Conference Article|
October 25 2006
Novel structural determinants of single-channel conductance in nicotinic acetylcholine and 5-hydroxytryptamine type-3 receptors
J.A. Peters;
J.A. Peters
1
*Neurosciences Institute, Division of Pathology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, U.K.
1To whom correspondence should be addressed (email j.a.peters@dundee.ac.uk).
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J.E. Carland;
J.E. Carland
*Neurosciences Institute, Division of Pathology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, U.K.
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M.A. Cooper;
M.A. Cooper
*Neurosciences Institute, Division of Pathology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, U.K.
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M.R. Livesey;
M.R. Livesey
*Neurosciences Institute, Division of Pathology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, U.K.
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T.Z. Deeb;
T.Z. Deeb
†Department of Pharmacology and Physiology, The George Washington University, 2300 Eye Street NW, Washington, DC 20037, U.S.A.
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T.G. Hales;
T.G. Hales
†Department of Pharmacology and Physiology, The George Washington University, 2300 Eye Street NW, Washington, DC 20037, U.S.A.
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J.J. Lambert
J.J. Lambert
*Neurosciences Institute, Division of Pathology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, U.K.
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Biochem Soc Trans (2006) 34 (5): 882–886.
Article history
Received:
August 02 2006
Citation
J.A. Peters, J.E. Carland, M.A. Cooper, M.R. Livesey, T.Z. Deeb, T.G. Hales, J.J. Lambert; Novel structural determinants of single-channel conductance in nicotinic acetylcholine and 5-hydroxytryptamine type-3 receptors. Biochem Soc Trans 1 October 2006; 34 (5): 882–886. doi: https://doi.org/10.1042/BST0340882
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