Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.

The cytoplasmic loop between the second and third transmembrane segments is pivotal in the regulation of TRESK (TWIK-related spinal cord K+ channel, K2P18.1, KCNK18). Calcineurin binds to this region and activates the channel by dephosphorylation in response to the calcium signal. Phosphorylation-de...

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Main Authors: Péter Enyedi, Irén Veres, Gabriella Braun, Gábor Czirják
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4022642?pdf=render
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spelling doaj-412715d76c1e4ad0bb50173853eefeaf2020-11-24T21:35:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0195e9785410.1371/journal.pone.0097854Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.Péter EnyediIrén VeresGabriella BraunGábor CzirjákThe cytoplasmic loop between the second and third transmembrane segments is pivotal in the regulation of TRESK (TWIK-related spinal cord K+ channel, K2P18.1, KCNK18). Calcineurin binds to this region and activates the channel by dephosphorylation in response to the calcium signal. Phosphorylation-dependent anchorage of 14-3-3 adaptor protein also modulates TRESK at this location. In the present study, we identified molecular interacting partners of the intracellular loop. By an affinity chromatography approach using the cytoplasmic loop as bait, we have verified the specific association of calcineurin and 14-3-3 to the channel. In addition to these known interacting proteins, we observed substantial binding of tubulin to the intracellular loop. Successive truncation of the polypeptide and pull-down experiments from mouse brain cytosol narrowed down the region sufficient for the binding of tubulin to a 16 amino acid sequence: LVLGRLSYSIISNLDE. The first six residues of this sequence are similar to the previously reported tubulin-binding region of P2X2 purinergic receptor. The tubulin-binding site of TRESK is located close to the protein kinase A (PKA)-dependent 14-3-3-docking motif of the channel. We provide experimental evidence suggesting that 14-3-3 competes with tubulin for the binding to the cytoplasmic loop of TRESK. It is intriguing that the 16 amino acid tubulin-binding sequence includes the serines, which were previously shown to be phosphorylated by microtubule-affinity regulating kinases (MARK kinases) and contribute to channel inhibition. Although tubulin binds to TRESK in vitro, it remains to be established whether the two proteins also interact in the living cell.http://europepmc.org/articles/PMC4022642?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Péter Enyedi
Irén Veres
Gabriella Braun
Gábor Czirják
spellingShingle Péter Enyedi
Irén Veres
Gabriella Braun
Gábor Czirják
Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
PLoS ONE
author_facet Péter Enyedi
Irén Veres
Gabriella Braun
Gábor Czirják
author_sort Péter Enyedi
title Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
title_short Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
title_full Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
title_fullStr Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
title_full_unstemmed Tubulin binds to the cytoplasmic loop of TRESK background K⁺ channel in vitro.
title_sort tubulin binds to the cytoplasmic loop of tresk background k⁺ channel in vitro.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The cytoplasmic loop between the second and third transmembrane segments is pivotal in the regulation of TRESK (TWIK-related spinal cord K+ channel, K2P18.1, KCNK18). Calcineurin binds to this region and activates the channel by dephosphorylation in response to the calcium signal. Phosphorylation-dependent anchorage of 14-3-3 adaptor protein also modulates TRESK at this location. In the present study, we identified molecular interacting partners of the intracellular loop. By an affinity chromatography approach using the cytoplasmic loop as bait, we have verified the specific association of calcineurin and 14-3-3 to the channel. In addition to these known interacting proteins, we observed substantial binding of tubulin to the intracellular loop. Successive truncation of the polypeptide and pull-down experiments from mouse brain cytosol narrowed down the region sufficient for the binding of tubulin to a 16 amino acid sequence: LVLGRLSYSIISNLDE. The first six residues of this sequence are similar to the previously reported tubulin-binding region of P2X2 purinergic receptor. The tubulin-binding site of TRESK is located close to the protein kinase A (PKA)-dependent 14-3-3-docking motif of the channel. We provide experimental evidence suggesting that 14-3-3 competes with tubulin for the binding to the cytoplasmic loop of TRESK. It is intriguing that the 16 amino acid tubulin-binding sequence includes the serines, which were previously shown to be phosphorylated by microtubule-affinity regulating kinases (MARK kinases) and contribute to channel inhibition. Although tubulin binds to TRESK in vitro, it remains to be established whether the two proteins also interact in the living cell.
url http://europepmc.org/articles/PMC4022642?pdf=render
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