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Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression

Background: Phosphodiesterases (PDE) critically regulate myocardial cAMP and cGMP levels. PDE2 is stimulated by cGMP to hydrolyze cAMP, mediating a negative crosstalk between both pathways. PDE2 upregulation in heart failure contributes to desensitization to β-adrenergic overstimulation. After isopr...

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Autores principales: Wagner, Michael, Sadek, Mirna S., Dybkova, Nataliya, Mason, Fleur E., Klehr, Johann, Firneburg, Rebecca, Cachorro, Eleder, Richter, Kurt, Klapproth, Erik, Kuenzel, Stephan R., Lorenz, Kristina, Heijman, Jordi, Dobrev, Dobromir, El-Armouche, Ali, Sossalla, Samuel, Kämmerer, Susanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125727/
https://www.ncbi.nlm.nih.gov/pubmed/34062838
http://dx.doi.org/10.3390/ijms22094816
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author Wagner, Michael
Sadek, Mirna S.
Dybkova, Nataliya
Mason, Fleur E.
Klehr, Johann
Firneburg, Rebecca
Cachorro, Eleder
Richter, Kurt
Klapproth, Erik
Kuenzel, Stephan R.
Lorenz, Kristina
Heijman, Jordi
Dobrev, Dobromir
El-Armouche, Ali
Sossalla, Samuel
Kämmerer, Susanne
author_facet Wagner, Michael
Sadek, Mirna S.
Dybkova, Nataliya
Mason, Fleur E.
Klehr, Johann
Firneburg, Rebecca
Cachorro, Eleder
Richter, Kurt
Klapproth, Erik
Kuenzel, Stephan R.
Lorenz, Kristina
Heijman, Jordi
Dobrev, Dobromir
El-Armouche, Ali
Sossalla, Samuel
Kämmerer, Susanne
author_sort Wagner, Michael
collection PubMed
description Background: Phosphodiesterases (PDE) critically regulate myocardial cAMP and cGMP levels. PDE2 is stimulated by cGMP to hydrolyze cAMP, mediating a negative crosstalk between both pathways. PDE2 upregulation in heart failure contributes to desensitization to β-adrenergic overstimulation. After isoprenaline (ISO) injections, PDE2 overexpressing mice (PDE2 OE) were protected against ventricular arrhythmia. Here, we investigate the mechanisms underlying the effects of PDE2 OE on susceptibility to arrhythmias. Methods: Cellular arrhythmia, ion currents, and Ca(2+)-sparks were assessed in ventricular cardiomyocytes from PDE2 OE and WT littermates. Results: Under basal conditions, action potential (AP) morphology were similar in PDE2 OE and WT. ISO stimulation significantly increased the incidence of afterdepolarizations and spontaneous APs in WT, which was markedly reduced in PDE2 OE. The ISO-induced increase in I(CaL) seen in WT was prevented in PDE2 OE. Moreover, the ISO-induced, Epac- and CaMKII-dependent increase in I(NaL) and Ca(2+)-spark frequency was blunted in PDE2 OE, while the effect of direct Epac activation was similar in both groups. Finally, PDE2 inhibition facilitated arrhythmic events in ex vivo perfused WT hearts after reperfusion injury. Conclusion: Higher PDE2 abundance protects against ISO-induced cardiac arrhythmia by preventing the Epac- and CaMKII-mediated increases of cellular triggers. Thus, activating myocardial PDE2 may represent a novel intracellular anti-arrhythmic therapeutic strategy in HF.
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spelling pubmed-81257272021-05-17 Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression Wagner, Michael Sadek, Mirna S. Dybkova, Nataliya Mason, Fleur E. Klehr, Johann Firneburg, Rebecca Cachorro, Eleder Richter, Kurt Klapproth, Erik Kuenzel, Stephan R. Lorenz, Kristina Heijman, Jordi Dobrev, Dobromir El-Armouche, Ali Sossalla, Samuel Kämmerer, Susanne Int J Mol Sci Article Background: Phosphodiesterases (PDE) critically regulate myocardial cAMP and cGMP levels. PDE2 is stimulated by cGMP to hydrolyze cAMP, mediating a negative crosstalk between both pathways. PDE2 upregulation in heart failure contributes to desensitization to β-adrenergic overstimulation. After isoprenaline (ISO) injections, PDE2 overexpressing mice (PDE2 OE) were protected against ventricular arrhythmia. Here, we investigate the mechanisms underlying the effects of PDE2 OE on susceptibility to arrhythmias. Methods: Cellular arrhythmia, ion currents, and Ca(2+)-sparks were assessed in ventricular cardiomyocytes from PDE2 OE and WT littermates. Results: Under basal conditions, action potential (AP) morphology were similar in PDE2 OE and WT. ISO stimulation significantly increased the incidence of afterdepolarizations and spontaneous APs in WT, which was markedly reduced in PDE2 OE. The ISO-induced increase in I(CaL) seen in WT was prevented in PDE2 OE. Moreover, the ISO-induced, Epac- and CaMKII-dependent increase in I(NaL) and Ca(2+)-spark frequency was blunted in PDE2 OE, while the effect of direct Epac activation was similar in both groups. Finally, PDE2 inhibition facilitated arrhythmic events in ex vivo perfused WT hearts after reperfusion injury. Conclusion: Higher PDE2 abundance protects against ISO-induced cardiac arrhythmia by preventing the Epac- and CaMKII-mediated increases of cellular triggers. Thus, activating myocardial PDE2 may represent a novel intracellular anti-arrhythmic therapeutic strategy in HF. MDPI 2021-05-01 /pmc/articles/PMC8125727/ /pubmed/34062838 http://dx.doi.org/10.3390/ijms22094816 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wagner, Michael
Sadek, Mirna S.
Dybkova, Nataliya
Mason, Fleur E.
Klehr, Johann
Firneburg, Rebecca
Cachorro, Eleder
Richter, Kurt
Klapproth, Erik
Kuenzel, Stephan R.
Lorenz, Kristina
Heijman, Jordi
Dobrev, Dobromir
El-Armouche, Ali
Sossalla, Samuel
Kämmerer, Susanne
Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title_full Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title_fullStr Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title_full_unstemmed Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title_short Cellular Mechanisms of the Anti-Arrhythmic Effect of Cardiac PDE2 Overexpression
title_sort cellular mechanisms of the anti-arrhythmic effect of cardiac pde2 overexpression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125727/
https://www.ncbi.nlm.nih.gov/pubmed/34062838
http://dx.doi.org/10.3390/ijms22094816
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