The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel

Two subclasses of ligand-gated ion channels (ASIC3 and P2X3) are both present at sensory neurons and might be therefore subject to receptor crosstalk. Here authors use electrophysiology, biochemistry and co-immunoprecipitation to show that the two ion channels interact and affect P2X3 currents.

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Autores principales: Gabriele Stephan, Lumei Huang, Yong Tang, Sandra Vilotti, Elsa Fabbretti, Ye Yu, Wolfgang Nörenberg, Heike Franke, Flóra Gölöncsér, Beáta Sperlágh, Anke Dopychai, Ralf Hausmann, Günther Schmalzing, Patrizia Rubini, Peter Illes
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/a74b5c103f5b4b358a8a947c36ebe64a
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spelling oai:doaj.org-article:a74b5c103f5b4b358a8a947c36ebe64a2021-12-02T15:33:54ZThe ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel10.1038/s41467-018-03728-52041-1723https://doaj.org/article/a74b5c103f5b4b358a8a947c36ebe64a2018-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03728-5https://doaj.org/toc/2041-1723Two subclasses of ligand-gated ion channels (ASIC3 and P2X3) are both present at sensory neurons and might be therefore subject to receptor crosstalk. Here authors use electrophysiology, biochemistry and co-immunoprecipitation to show that the two ion channels interact and affect P2X3 currents.Gabriele StephanLumei HuangYong TangSandra VilottiElsa FabbrettiYe YuWolfgang NörenbergHeike FrankeFlóra GölöncsérBeáta SperlághAnke DopychaiRalf HausmannGünther SchmalzingPatrizia RubiniPeter IllesNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-18 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gabriele Stephan
Lumei Huang
Yong Tang
Sandra Vilotti
Elsa Fabbretti
Ye Yu
Wolfgang Nörenberg
Heike Franke
Flóra Gölöncsér
Beáta Sperlágh
Anke Dopychai
Ralf Hausmann
Günther Schmalzing
Patrizia Rubini
Peter Illes
The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
description Two subclasses of ligand-gated ion channels (ASIC3 and P2X3) are both present at sensory neurons and might be therefore subject to receptor crosstalk. Here authors use electrophysiology, biochemistry and co-immunoprecipitation to show that the two ion channels interact and affect P2X3 currents.
format article
author Gabriele Stephan
Lumei Huang
Yong Tang
Sandra Vilotti
Elsa Fabbretti
Ye Yu
Wolfgang Nörenberg
Heike Franke
Flóra Gölöncsér
Beáta Sperlágh
Anke Dopychai
Ralf Hausmann
Günther Schmalzing
Patrizia Rubini
Peter Illes
author_facet Gabriele Stephan
Lumei Huang
Yong Tang
Sandra Vilotti
Elsa Fabbretti
Ye Yu
Wolfgang Nörenberg
Heike Franke
Flóra Gölöncsér
Beáta Sperlágh
Anke Dopychai
Ralf Hausmann
Günther Schmalzing
Patrizia Rubini
Peter Illes
author_sort Gabriele Stephan
title The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
title_short The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
title_full The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
title_fullStr The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
title_full_unstemmed The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel
title_sort asic3/p2x3 cognate receptor is a pain-relevant and ligand-gated cationic channel
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/a74b5c103f5b4b358a8a947c36ebe64a
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