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The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors

In ion channels, “rings” of ionized side chains that decorate the walls of the permeation pathway often lower the energetic barrier to ion conduction. Using single-channel electrophysiological recordings, we studied the poorly understood ring of four glutamates (and one glutamine) that dominate this...

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Autores principales: Cymes, Gisela D., Grosman, Claudio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3508336/
https://www.ncbi.nlm.nih.gov/pubmed/23064317
http://dx.doi.org/10.1038/nchembio.1092
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author Cymes, Gisela D.
Grosman, Claudio
author_facet Cymes, Gisela D.
Grosman, Claudio
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description In ion channels, “rings” of ionized side chains that decorate the walls of the permeation pathway often lower the energetic barrier to ion conduction. Using single-channel electrophysiological recordings, we studied the poorly understood ring of four glutamates (and one glutamine) that dominate this catalytic effect in the muscle nicotinic acetylcholine receptor (“the intermediate ring of charge”). We show that all four wild-type glutamate side chains are deprotonated in the 6.0–9.0 pH range; that only two of them contribute to the size of the single-channel current; that these side chains must be able to adopt alternate conformations that either allow or prevent their negative charges from increasing the rate of cation conduction; and that the location of these glutamate side chains squarely at one of the ends of the transmembrane pore is critical for their largely unshifted pK(a) values and for the unanticipated impact of their conformational flexibility on cation permeation.
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spelling pubmed-35083362013-06-01 The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors Cymes, Gisela D. Grosman, Claudio Nat Chem Biol Article In ion channels, “rings” of ionized side chains that decorate the walls of the permeation pathway often lower the energetic barrier to ion conduction. Using single-channel electrophysiological recordings, we studied the poorly understood ring of four glutamates (and one glutamine) that dominate this catalytic effect in the muscle nicotinic acetylcholine receptor (“the intermediate ring of charge”). We show that all four wild-type glutamate side chains are deprotonated in the 6.0–9.0 pH range; that only two of them contribute to the size of the single-channel current; that these side chains must be able to adopt alternate conformations that either allow or prevent their negative charges from increasing the rate of cation conduction; and that the location of these glutamate side chains squarely at one of the ends of the transmembrane pore is critical for their largely unshifted pK(a) values and for the unanticipated impact of their conformational flexibility on cation permeation. 2012-10-14 2012-12 /pmc/articles/PMC3508336/ /pubmed/23064317 http://dx.doi.org/10.1038/nchembio.1092 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Cymes, Gisela D.
Grosman, Claudio
The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title_full The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title_fullStr The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title_full_unstemmed The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title_short The unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
title_sort unanticipated complexity of the selectivity-filter glutamates of nicotinic receptors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3508336/
https://www.ncbi.nlm.nih.gov/pubmed/23064317
http://dx.doi.org/10.1038/nchembio.1092
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