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A model for the acetylcholine binding site of the nicotinic acetylcholine receptor
Author(s) -
Luyten W.H.M.L.
Publication year - 1986
Publication title -
journal of neuroscience research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.72
H-Index - 160
eISSN - 1097-4547
pISSN - 0360-4012
DOI - 10.1002/jnr.490160107
Subject(s) - acetylcholine , acetylcholine receptor , chemistry , binding site , nicotinic acetylcholine receptor , stereochemistry , nicotinic agonist , antiparallel (mathematics) , biochemistry , biophysics , receptor , biology , pharmacology , physics , quantum mechanics , magnetic field
A detailed model for the acetylcholine binding site on the nicotinic acetylcholine receptor is proposed. It is derived from assumptions based on existing biochemical, structural, and pharmacological data, combined with molecular modeling and principles of protein evolution and architecture. Acetylcholine is proposed to fit into a pocket on one face of an antiparallel β‐pleated sheet formed by residues 128–142 on the α‐subunit. This sheet is flexible yet stable, in part because of a double cystine bridge at its end. Asp 138, Thr 133, and Gln 140 provide a ring of negative charges around the quaternary ammonium group of acetylcholine, Ile 131 and alkane segments of the other residues in the binding site provide hydrophobic interactions, and Gln 140 provides a hydrogen bond for acetylcholine's carbonyl group; Glu 129 would form part of the second anionic subsite for the bis‐quaternary ammonium compounds and curares. The model is compatible with the available evidence pertaining to the binding site and with structure‐activity relationship studies. It is precise and detailed, thereby making clear predictions, which are directly testable by affinity labeling and site‐directed mutagenesis. It should prove useful in the design of such experiments.

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