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In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel

Pharmacological inhibition of cardiac hERG K(+) channels is associated with increased risk of lethal arrhythmias. Many drugs reduce hERG current by directly binding to the channel, thereby blocking ion conduction. Mutation of two aromatic residues (F656 and Y652) substantially decreases the potency...

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Autores principales: Knape, Kirsten, Linder, Tobias, Wolschann, Peter, Beyer, Anton, Stary-Weinzinger, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3240635/
https://www.ncbi.nlm.nih.gov/pubmed/22194911
http://dx.doi.org/10.1371/journal.pone.0028778
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author Knape, Kirsten
Linder, Tobias
Wolschann, Peter
Beyer, Anton
Stary-Weinzinger, Anna
author_facet Knape, Kirsten
Linder, Tobias
Wolschann, Peter
Beyer, Anton
Stary-Weinzinger, Anna
author_sort Knape, Kirsten
collection PubMed
description Pharmacological inhibition of cardiac hERG K(+) channels is associated with increased risk of lethal arrhythmias. Many drugs reduce hERG current by directly binding to the channel, thereby blocking ion conduction. Mutation of two aromatic residues (F656 and Y652) substantially decreases the potency of numerous structurally diverse compounds. Nevertheless, some drugs are only weakly affected by mutation Y652A. In this study we utilize molecular dynamics simulations and docking studies to analyze the different effects of mutation Y652A on a selected number of hERG blockers. MD simulations reveal conformational changes in the binding site induced by mutation Y652A. Loss of π-π-stacking between the two aromatic residues induces a conformational change of the F656 side chain from a cavity facing to cavity lining orientation. Docking studies and MD simulations qualitatively reproduce the diverse experimentally observed modulatory effects of mutation Y652A and provide a new structural interpretation for the sensitivity differences.
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spelling pubmed-32406352011-12-22 In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel Knape, Kirsten Linder, Tobias Wolschann, Peter Beyer, Anton Stary-Weinzinger, Anna PLoS One Research Article Pharmacological inhibition of cardiac hERG K(+) channels is associated with increased risk of lethal arrhythmias. Many drugs reduce hERG current by directly binding to the channel, thereby blocking ion conduction. Mutation of two aromatic residues (F656 and Y652) substantially decreases the potency of numerous structurally diverse compounds. Nevertheless, some drugs are only weakly affected by mutation Y652A. In this study we utilize molecular dynamics simulations and docking studies to analyze the different effects of mutation Y652A on a selected number of hERG blockers. MD simulations reveal conformational changes in the binding site induced by mutation Y652A. Loss of π-π-stacking between the two aromatic residues induces a conformational change of the F656 side chain from a cavity facing to cavity lining orientation. Docking studies and MD simulations qualitatively reproduce the diverse experimentally observed modulatory effects of mutation Y652A and provide a new structural interpretation for the sensitivity differences. Public Library of Science 2011-12-15 /pmc/articles/PMC3240635/ /pubmed/22194911 http://dx.doi.org/10.1371/journal.pone.0028778 Text en Knape et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Knape, Kirsten
Linder, Tobias
Wolschann, Peter
Beyer, Anton
Stary-Weinzinger, Anna
In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title_full In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title_fullStr In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title_full_unstemmed In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title_short In silico Analysis of Conformational Changes Induced by Mutation of Aromatic Binding Residues: Consequences for Drug Binding in the hERG K+ Channel
title_sort in silico analysis of conformational changes induced by mutation of aromatic binding residues: consequences for drug binding in the herg k+ channel
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3240635/
https://www.ncbi.nlm.nih.gov/pubmed/22194911
http://dx.doi.org/10.1371/journal.pone.0028778
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