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Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure

BACKGROUND: Increased activity of single ventricular L-type Ca(2+)-channels (L-VDCC) is a hallmark in human heart failure. Recent findings suggest differential modulation by several auxiliary β-subunits as a possible explanation. METHODS AND RESULTS: By molecular and functional analyses of human and...

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Autores principales: Hullin, Roger, Matthes, Jan, von Vietinghoff, Sibylle, Bodi, Ilona, Rubio, Marta, D'Souza, Karen, Friedrich Khan, Ismail, Rottländer, Dennis, Hoppe, Uta C., Mohacsi, Paul, Schmitteckert, Eva, Gilsbach, Ralf, Bünemann, Moritz, Hein, Lutz, Schwartz, Arnold, Herzig, Stefan
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1808423/
https://www.ncbi.nlm.nih.gov/pubmed/17356701
http://dx.doi.org/10.1371/journal.pone.0000292
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author Hullin, Roger
Matthes, Jan
von Vietinghoff, Sibylle
Bodi, Ilona
Rubio, Marta
D'Souza, Karen
Friedrich Khan, Ismail
Rottländer, Dennis
Hoppe, Uta C.
Mohacsi, Paul
Schmitteckert, Eva
Gilsbach, Ralf
Bünemann, Moritz
Hein, Lutz
Schwartz, Arnold
Herzig, Stefan
author_facet Hullin, Roger
Matthes, Jan
von Vietinghoff, Sibylle
Bodi, Ilona
Rubio, Marta
D'Souza, Karen
Friedrich Khan, Ismail
Rottländer, Dennis
Hoppe, Uta C.
Mohacsi, Paul
Schmitteckert, Eva
Gilsbach, Ralf
Bünemann, Moritz
Hein, Lutz
Schwartz, Arnold
Herzig, Stefan
author_sort Hullin, Roger
collection PubMed
description BACKGROUND: Increased activity of single ventricular L-type Ca(2+)-channels (L-VDCC) is a hallmark in human heart failure. Recent findings suggest differential modulation by several auxiliary β-subunits as a possible explanation. METHODS AND RESULTS: By molecular and functional analyses of human and murine ventricles, we find that enhanced L-VDCC activity is accompanied by altered expression pattern of auxiliary L-VDCC β-subunit gene products. In HEK293-cells we show differential modulation of single L-VDCC activity by coexpression of several human cardiac β-subunits: Unlike β(1) or β(3) isoforms, β(2a) and β(2b) induce a high-activity channel behavior typical of failing myocytes. In accordance, β(2)-subunit mRNA and protein are up-regulated in failing human myocardium. In a model of heart failure we find that mice overexpressing the human cardiac Ca(V)1.2 also reveal increased single-channel activity and sarcolemmal β(2) expression when entering into the maladaptive stage of heart failure. Interestingly, these animals, when still young and non-failing (“Adaptive Phase”), reveal the opposite phenotype, viz : reduced single-channel activity accompanied by lowered β(2) expression. Additional evidence for the cause-effect relationship between β(2)-subunit expression and single L-VDCC activity is provided by newly engineered, double-transgenic mice bearing both constitutive Ca(V)1.2 and inducible β(2) cardiac overexpression. Here in non-failing hearts induction of β(2)-subunit overexpression mimicked the increase of single L-VDCC activity observed in murine and human chronic heart failure. CONCLUSIONS: Our study presents evidence of the pathobiochemical relevance of β(2)-subunits for the electrophysiological phenotype of cardiac L-VDCC and thus provides an explanation for the single L-VDCC gating observed in human and murine heart failure.
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spelling pubmed-18084232007-03-14 Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure Hullin, Roger Matthes, Jan von Vietinghoff, Sibylle Bodi, Ilona Rubio, Marta D'Souza, Karen Friedrich Khan, Ismail Rottländer, Dennis Hoppe, Uta C. Mohacsi, Paul Schmitteckert, Eva Gilsbach, Ralf Bünemann, Moritz Hein, Lutz Schwartz, Arnold Herzig, Stefan PLoS One Research Article BACKGROUND: Increased activity of single ventricular L-type Ca(2+)-channels (L-VDCC) is a hallmark in human heart failure. Recent findings suggest differential modulation by several auxiliary β-subunits as a possible explanation. METHODS AND RESULTS: By molecular and functional analyses of human and murine ventricles, we find that enhanced L-VDCC activity is accompanied by altered expression pattern of auxiliary L-VDCC β-subunit gene products. In HEK293-cells we show differential modulation of single L-VDCC activity by coexpression of several human cardiac β-subunits: Unlike β(1) or β(3) isoforms, β(2a) and β(2b) induce a high-activity channel behavior typical of failing myocytes. In accordance, β(2)-subunit mRNA and protein are up-regulated in failing human myocardium. In a model of heart failure we find that mice overexpressing the human cardiac Ca(V)1.2 also reveal increased single-channel activity and sarcolemmal β(2) expression when entering into the maladaptive stage of heart failure. Interestingly, these animals, when still young and non-failing (“Adaptive Phase”), reveal the opposite phenotype, viz : reduced single-channel activity accompanied by lowered β(2) expression. Additional evidence for the cause-effect relationship between β(2)-subunit expression and single L-VDCC activity is provided by newly engineered, double-transgenic mice bearing both constitutive Ca(V)1.2 and inducible β(2) cardiac overexpression. Here in non-failing hearts induction of β(2)-subunit overexpression mimicked the increase of single L-VDCC activity observed in murine and human chronic heart failure. CONCLUSIONS: Our study presents evidence of the pathobiochemical relevance of β(2)-subunits for the electrophysiological phenotype of cardiac L-VDCC and thus provides an explanation for the single L-VDCC gating observed in human and murine heart failure. Public Library of Science 2007-03-14 /pmc/articles/PMC1808423/ /pubmed/17356701 http://dx.doi.org/10.1371/journal.pone.0000292 Text en Hullin 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
Hullin, Roger
Matthes, Jan
von Vietinghoff, Sibylle
Bodi, Ilona
Rubio, Marta
D'Souza, Karen
Friedrich Khan, Ismail
Rottländer, Dennis
Hoppe, Uta C.
Mohacsi, Paul
Schmitteckert, Eva
Gilsbach, Ralf
Bünemann, Moritz
Hein, Lutz
Schwartz, Arnold
Herzig, Stefan
Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title_full Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title_fullStr Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title_full_unstemmed Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title_short Increased Expression of the Auxiliary β(2)-subunit of Ventricular L-type Ca(2+) Channels Leads to Single-Channel Activity Characteristic of Heart Failure
title_sort increased expression of the auxiliary β(2)-subunit of ventricular l-type ca(2+) channels leads to single-channel activity characteristic of heart failure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1808423/
https://www.ncbi.nlm.nih.gov/pubmed/17356701
http://dx.doi.org/10.1371/journal.pone.0000292
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