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Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels

Phosphatidylinosital-4,5-bisphosphate (PIP(2)) acts as an essential factor regulating the activity of all Kir channels. In most Kir members, the dependence on PIP(2) is modulated by other factors, such as protein kinases (in Kir1), G(βγ) (in Kir3), and the sulfonylurea receptor (in Kir6). So far, ho...

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Autores principales: Xie, Lai-Hua, John, Scott A., Ribalet, Bernard, Weiss, James N.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2266595/
https://www.ncbi.nlm.nih.gov/pubmed/16316973
http://dx.doi.org/10.1085/jgp.200509380
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author Xie, Lai-Hua
John, Scott A.
Ribalet, Bernard
Weiss, James N.
author_facet Xie, Lai-Hua
John, Scott A.
Ribalet, Bernard
Weiss, James N.
author_sort Xie, Lai-Hua
collection PubMed
description Phosphatidylinosital-4,5-bisphosphate (PIP(2)) acts as an essential factor regulating the activity of all Kir channels. In most Kir members, the dependence on PIP(2) is modulated by other factors, such as protein kinases (in Kir1), G(βγ) (in Kir3), and the sulfonylurea receptor (in Kir6). So far, however, no regulator has been identified in Kir2 channels. Here we show that polyamines, which cause inward rectification by selectively blocking outward current, also regulate the interaction of PIP(2) with Kir2.1 channels to maintain channel availability. Using spermine and diamines as polyamine analogs, we demonstrate that both spontaneous and PIP(2) antibody–induced rundown of Kir2.1 channels in excised inside-out patches was markedly slowed by long polyamines; in contrast, polyamines with shorter chain length were ineffective. In K188Q mutant channels, which have a low PIP(2) affinity, application PIP(2) (10 μM) was unable to activate channel activity in the absence of polyamines, but markedly activated channels in the presence of long diamines. Using neomycin as a measure of PIP(2) affinity, we found that long polyamines were capable of strengthening either the wild type or K188Q channels' interaction with PIP(2). The negatively charged D172 residue inside the transmembrane pore region was critical for the shift of channel–PIP(2) binding affinity by long polyamines. Sustained pore block by polyamines was neither sufficient nor necessary for this effect. We conclude that long polyamines serve a dual role as both blockers and coactivators (with PIP(2)) of Kir2.1 channels.
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spelling pubmed-22665952008-03-21 Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels Xie, Lai-Hua John, Scott A. Ribalet, Bernard Weiss, James N. J Gen Physiol Article Phosphatidylinosital-4,5-bisphosphate (PIP(2)) acts as an essential factor regulating the activity of all Kir channels. In most Kir members, the dependence on PIP(2) is modulated by other factors, such as protein kinases (in Kir1), G(βγ) (in Kir3), and the sulfonylurea receptor (in Kir6). So far, however, no regulator has been identified in Kir2 channels. Here we show that polyamines, which cause inward rectification by selectively blocking outward current, also regulate the interaction of PIP(2) with Kir2.1 channels to maintain channel availability. Using spermine and diamines as polyamine analogs, we demonstrate that both spontaneous and PIP(2) antibody–induced rundown of Kir2.1 channels in excised inside-out patches was markedly slowed by long polyamines; in contrast, polyamines with shorter chain length were ineffective. In K188Q mutant channels, which have a low PIP(2) affinity, application PIP(2) (10 μM) was unable to activate channel activity in the absence of polyamines, but markedly activated channels in the presence of long diamines. Using neomycin as a measure of PIP(2) affinity, we found that long polyamines were capable of strengthening either the wild type or K188Q channels' interaction with PIP(2). The negatively charged D172 residue inside the transmembrane pore region was critical for the shift of channel–PIP(2) binding affinity by long polyamines. Sustained pore block by polyamines was neither sufficient nor necessary for this effect. We conclude that long polyamines serve a dual role as both blockers and coactivators (with PIP(2)) of Kir2.1 channels. The Rockefeller University Press 2005-12 /pmc/articles/PMC2266595/ /pubmed/16316973 http://dx.doi.org/10.1085/jgp.200509380 Text en Copyright © 2005, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Xie, Lai-Hua
John, Scott A.
Ribalet, Bernard
Weiss, James N.
Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title_full Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title_fullStr Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title_full_unstemmed Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title_short Long Polyamines Act as Cofactors in PIP(2) Activation of Inward Rectifier Potassium (Kir2.1) Channels
title_sort long polyamines act as cofactors in pip(2) activation of inward rectifier potassium (kir2.1) channels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2266595/
https://www.ncbi.nlm.nih.gov/pubmed/16316973
http://dx.doi.org/10.1085/jgp.200509380
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