Two open states of P2X receptor channels

The occupancy of the ATP binding sites of P2X receptor (P2XR) channels causes the rapid opening of a small cation-permeable pore, followed by a gradual dilation that renders the pore permeable to large organic cations. Electrophysiologically, this phenomenon was shown using whole-cell current record...

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Main Authors: Milos B. Rokic, Stanko S. Stojilkovic
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-11-01
Series:Frontiers in Cellular Neuroscience
Subjects:
ATP
Online Access:http://journal.frontiersin.org/Journal/10.3389/fncel.2013.00215/full
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spelling doaj-c54ac3a9c1f14f8b86d053d639d225e32020-11-24T22:38:01ZengFrontiers Media S.A.Frontiers in Cellular Neuroscience1662-51022013-11-01710.3389/fncel.2013.0021568619Two open states of P2X receptor channelsMilos B. Rokic0Stanko S. Stojilkovic1National Institutes of HealthNational Institutes of HealthThe occupancy of the ATP binding sites of P2X receptor (P2XR) channels causes the rapid opening of a small cation-permeable pore, followed by a gradual dilation that renders the pore permeable to large organic cations. Electrophysiologically, this phenomenon was shown using whole-cell current recording on P2X2R-, P2X2/X5R-, P2X4R- and P2X7R-expressing cells that were bathed in N-methyl-D-glucamine-containing buffers in the presence and/or absence of small monovalent and divalent cations. The pore dilation of P2X4R and P2X7R caused a secondary current growth, whereas that of P2X2R showed a sustained kinetic coupling of dilation and desensitization, leading to receptor channel closure. The pore size of the P2X7R open and dilated states was estimated to be approximately 0.85 nm and greater than 1 nm, respectively. The P2XR pore dilation was also observed in intact cells by measurement of fluorescent dye uptake/release, application of polyethylene glycols of different sizes, and atomic force microscopy. However, pore dilation was not observed at the single channel level. Structural data describing the dilated state are not available, and the relevance of orthosteric and allosteric ligand interactions to pore dilation was not studied.http://journal.frontiersin.org/Journal/10.3389/fncel.2013.00215/fullATPGatingpurinergic receptor channelspore openingpore dilationNMDG
collection DOAJ
language English
format Article
sources DOAJ
author Milos B. Rokic
Stanko S. Stojilkovic
spellingShingle Milos B. Rokic
Stanko S. Stojilkovic
Two open states of P2X receptor channels
Frontiers in Cellular Neuroscience
ATP
Gating
purinergic receptor channels
pore opening
pore dilation
NMDG
author_facet Milos B. Rokic
Stanko S. Stojilkovic
author_sort Milos B. Rokic
title Two open states of P2X receptor channels
title_short Two open states of P2X receptor channels
title_full Two open states of P2X receptor channels
title_fullStr Two open states of P2X receptor channels
title_full_unstemmed Two open states of P2X receptor channels
title_sort two open states of p2x receptor channels
publisher Frontiers Media S.A.
series Frontiers in Cellular Neuroscience
issn 1662-5102
publishDate 2013-11-01
description The occupancy of the ATP binding sites of P2X receptor (P2XR) channels causes the rapid opening of a small cation-permeable pore, followed by a gradual dilation that renders the pore permeable to large organic cations. Electrophysiologically, this phenomenon was shown using whole-cell current recording on P2X2R-, P2X2/X5R-, P2X4R- and P2X7R-expressing cells that were bathed in N-methyl-D-glucamine-containing buffers in the presence and/or absence of small monovalent and divalent cations. The pore dilation of P2X4R and P2X7R caused a secondary current growth, whereas that of P2X2R showed a sustained kinetic coupling of dilation and desensitization, leading to receptor channel closure. The pore size of the P2X7R open and dilated states was estimated to be approximately 0.85 nm and greater than 1 nm, respectively. The P2XR pore dilation was also observed in intact cells by measurement of fluorescent dye uptake/release, application of polyethylene glycols of different sizes, and atomic force microscopy. However, pore dilation was not observed at the single channel level. Structural data describing the dilated state are not available, and the relevance of orthosteric and allosteric ligand interactions to pore dilation was not studied.
topic ATP
Gating
purinergic receptor channels
pore opening
pore dilation
NMDG
url http://journal.frontiersin.org/Journal/10.3389/fncel.2013.00215/full
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