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Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating

Cx43 hemichannels (HCs) are electrically and chemically gated transmembrane pores with low open probability and multiple conductance states, which makes kinetic studies of channel gating in large datasets challenging. Here, we developed open access software, named HemiGUI, to analyze HC gating trans...

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Autores principales: Lissoni, Alessio, Wang, Nan, Nezlobinskii, Timur, De Smet, Maarten, Panfilov, Alexander V., Vandersickel, Nele, Leybaert, Luc, Witschas, Katja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7583728/
https://www.ncbi.nlm.nih.gov/pubmed/33027889
http://dx.doi.org/10.3390/ijms21197340
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author Lissoni, Alessio
Wang, Nan
Nezlobinskii, Timur
De Smet, Maarten
Panfilov, Alexander V.
Vandersickel, Nele
Leybaert, Luc
Witschas, Katja
author_facet Lissoni, Alessio
Wang, Nan
Nezlobinskii, Timur
De Smet, Maarten
Panfilov, Alexander V.
Vandersickel, Nele
Leybaert, Luc
Witschas, Katja
author_sort Lissoni, Alessio
collection PubMed
description Cx43 hemichannels (HCs) are electrically and chemically gated transmembrane pores with low open probability and multiple conductance states, which makes kinetic studies of channel gating in large datasets challenging. Here, we developed open access software, named HemiGUI, to analyze HC gating transitions and investigated voltage-induced HC opening based on up to ≈4000 events recorded in HeLa-Cx43-overexpressing cells. We performed a detailed characterization of Cx43 HC gating profiles and specifically focused on the role of the C-terminal tail (CT) domain by recording the impact of adding an EGFP tag to the Cx43 CT end (Cx43-EGFP) or by supplying the Cx43 HC-inhibiting peptide Gap19 that interferes with CT interaction with the cytoplasmic loop (CL). We found that Gap19 not only decreased HC opening activity to the open state (≈217 pS) but also increased the propensity of subconductance (≈80 pS) transitions that additionally became slower as compared to the control. The work demonstrates that large sample transition analysis allows detailed investigations on Cx43 HC gating and shows that Gap19 acts as a HC gating modifier by interacting with the CT that forms a crucial gating element.
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spelling pubmed-75837282020-10-28 Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating Lissoni, Alessio Wang, Nan Nezlobinskii, Timur De Smet, Maarten Panfilov, Alexander V. Vandersickel, Nele Leybaert, Luc Witschas, Katja Int J Mol Sci Article Cx43 hemichannels (HCs) are electrically and chemically gated transmembrane pores with low open probability and multiple conductance states, which makes kinetic studies of channel gating in large datasets challenging. Here, we developed open access software, named HemiGUI, to analyze HC gating transitions and investigated voltage-induced HC opening based on up to ≈4000 events recorded in HeLa-Cx43-overexpressing cells. We performed a detailed characterization of Cx43 HC gating profiles and specifically focused on the role of the C-terminal tail (CT) domain by recording the impact of adding an EGFP tag to the Cx43 CT end (Cx43-EGFP) or by supplying the Cx43 HC-inhibiting peptide Gap19 that interferes with CT interaction with the cytoplasmic loop (CL). We found that Gap19 not only decreased HC opening activity to the open state (≈217 pS) but also increased the propensity of subconductance (≈80 pS) transitions that additionally became slower as compared to the control. The work demonstrates that large sample transition analysis allows detailed investigations on Cx43 HC gating and shows that Gap19 acts as a HC gating modifier by interacting with the CT that forms a crucial gating element. MDPI 2020-10-05 /pmc/articles/PMC7583728/ /pubmed/33027889 http://dx.doi.org/10.3390/ijms21197340 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lissoni, Alessio
Wang, Nan
Nezlobinskii, Timur
De Smet, Maarten
Panfilov, Alexander V.
Vandersickel, Nele
Leybaert, Luc
Witschas, Katja
Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title_full Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title_fullStr Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title_full_unstemmed Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title_short Gap19, a Cx43 Hemichannel Inhibitor, Acts as a Gating Modifier That Decreases Main State Opening While Increasing Substate Gating
title_sort gap19, a cx43 hemichannel inhibitor, acts as a gating modifier that decreases main state opening while increasing substate gating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7583728/
https://www.ncbi.nlm.nih.gov/pubmed/33027889
http://dx.doi.org/10.3390/ijms21197340
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