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Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation

BACKGROUND: Long QT syndrome (LQTS) leads to arrhythmic events and increased risk for sudden cardiac death (SCD). Homozygous KCNH2 mutations underlying LQTS-2 have previously been termed “human HERG knockout” and typically express severe phenotypes. We studied genotype-phenotype correlations of an L...

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Autores principales: Schweigmann, Ulrich, Biliczki, Peter, Ramirez, Rafael J., Marschall, Christoph, Takac, Ina, Brandes, Ralf P., Kotzot, Dieter, Girmatsion, Zenawit, Hohnloser, Stefan H., Ehrlich, Joachim R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4139196/
https://www.ncbi.nlm.nih.gov/pubmed/25140878
http://dx.doi.org/10.1371/journal.pone.0103150
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author Schweigmann, Ulrich
Biliczki, Peter
Ramirez, Rafael J.
Marschall, Christoph
Takac, Ina
Brandes, Ralf P.
Kotzot, Dieter
Girmatsion, Zenawit
Hohnloser, Stefan H.
Ehrlich, Joachim R.
author_facet Schweigmann, Ulrich
Biliczki, Peter
Ramirez, Rafael J.
Marschall, Christoph
Takac, Ina
Brandes, Ralf P.
Kotzot, Dieter
Girmatsion, Zenawit
Hohnloser, Stefan H.
Ehrlich, Joachim R.
author_sort Schweigmann, Ulrich
collection PubMed
description BACKGROUND: Long QT syndrome (LQTS) leads to arrhythmic events and increased risk for sudden cardiac death (SCD). Homozygous KCNH2 mutations underlying LQTS-2 have previously been termed “human HERG knockout” and typically express severe phenotypes. We studied genotype-phenotype correlations of an LQTS type 2 mutation identified in the homozygous index patient from a consanguineous Turkish family after his brother died suddenly during febrile illness. METHODS AND RESULTS: Clinical work-up, DNA sequencing, mutagenesis, cell culture, patch-clamp, in silico mathematical modelling, protein biochemistry, confocal microscopy were performed. Genetic analysis revealed a homozygous C-terminal KCNH2 mutation (p.R835Q) in the index patient (QTc ∼506 ms with notched T waves). Parents were I° cousins – both heterozygous for the mutation and clinically unremarkable (QTc ∼447 ms, father and ∼396 ms, mother). Heterologous expression of KCNH2-R835Q showed mildly reduced current amplitudes. Biophysical properties of ionic currents were also only nominally changed with slight acceleration of deactivation and more negative V(50) in R835Q-currents. Protein biochemistry and confocal microscopy revealed similar expression patterns and trafficking of WT and R835Q, even at elevated temperature. In silico analysis demonstrated mildly prolonged ventricular action potential duration (APD) compared to WT at a cycle length of 1000 ms. At a cycle length of 350 ms M-cell APD remained stable in WT, but displayed APD alternans in R835Q. CONCLUSION: Kv11.1 channels affected by the C-terminal R835Q mutation display mildly modified biophysical properties, but leads to M-cell APD alternans with elevated heart rate and could precipitate SCD under specific clinical circumstances associated with high heart rates.
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spelling pubmed-41391962014-08-25 Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation Schweigmann, Ulrich Biliczki, Peter Ramirez, Rafael J. Marschall, Christoph Takac, Ina Brandes, Ralf P. Kotzot, Dieter Girmatsion, Zenawit Hohnloser, Stefan H. Ehrlich, Joachim R. PLoS One Research Article BACKGROUND: Long QT syndrome (LQTS) leads to arrhythmic events and increased risk for sudden cardiac death (SCD). Homozygous KCNH2 mutations underlying LQTS-2 have previously been termed “human HERG knockout” and typically express severe phenotypes. We studied genotype-phenotype correlations of an LQTS type 2 mutation identified in the homozygous index patient from a consanguineous Turkish family after his brother died suddenly during febrile illness. METHODS AND RESULTS: Clinical work-up, DNA sequencing, mutagenesis, cell culture, patch-clamp, in silico mathematical modelling, protein biochemistry, confocal microscopy were performed. Genetic analysis revealed a homozygous C-terminal KCNH2 mutation (p.R835Q) in the index patient (QTc ∼506 ms with notched T waves). Parents were I° cousins – both heterozygous for the mutation and clinically unremarkable (QTc ∼447 ms, father and ∼396 ms, mother). Heterologous expression of KCNH2-R835Q showed mildly reduced current amplitudes. Biophysical properties of ionic currents were also only nominally changed with slight acceleration of deactivation and more negative V(50) in R835Q-currents. Protein biochemistry and confocal microscopy revealed similar expression patterns and trafficking of WT and R835Q, even at elevated temperature. In silico analysis demonstrated mildly prolonged ventricular action potential duration (APD) compared to WT at a cycle length of 1000 ms. At a cycle length of 350 ms M-cell APD remained stable in WT, but displayed APD alternans in R835Q. CONCLUSION: Kv11.1 channels affected by the C-terminal R835Q mutation display mildly modified biophysical properties, but leads to M-cell APD alternans with elevated heart rate and could precipitate SCD under specific clinical circumstances associated with high heart rates. Public Library of Science 2014-08-20 /pmc/articles/PMC4139196/ /pubmed/25140878 http://dx.doi.org/10.1371/journal.pone.0103150 Text en © 2014 Schweigmann 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
Schweigmann, Ulrich
Biliczki, Peter
Ramirez, Rafael J.
Marschall, Christoph
Takac, Ina
Brandes, Ralf P.
Kotzot, Dieter
Girmatsion, Zenawit
Hohnloser, Stefan H.
Ehrlich, Joachim R.
Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title_full Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title_fullStr Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title_full_unstemmed Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title_short Elevated Heart Rate Triggers Action Potential Alternans and Sudden Death. Translational Study of a Homozygous KCNH2 Mutation
title_sort elevated heart rate triggers action potential alternans and sudden death. translational study of a homozygous kcnh2 mutation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4139196/
https://www.ncbi.nlm.nih.gov/pubmed/25140878
http://dx.doi.org/10.1371/journal.pone.0103150
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