Phosphodiesterase-2 Is Up-Regulated in Human Failing Hearts and Blunts β-Adrenergic Responses in Cardiomyocytes

2013 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Phosphodiesterase-2 Is Up-Regulated in Human Failing Hearts and Blunts β-Adrenergic Responses in Cardiomyocytes​
Mehel, H.; Emons, J.; Vettel, C. ; Wittköpper, K.; Seppelt, D.; Dewenter, M.   & Lutz, S.  et al.​ (2013) 
Journal of the American College of Cardiology62(17) pp. 1596​-1606​.​ DOI: https://doi.org/10.1016/j.jacc.2013.05.057 

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Authors
Mehel, Hind; Emons, Julius; Vettel, Christiane ; Wittköpper, Katrin; Seppelt, Danilo; Dewenter, Matthias ; Lutz, Susanne ; Sossalla, Samuel ; Maier, Lars S. ; Lechêne, Patrick; Leroy, Jérôme; Lefebvre, Florence; Varin, Audrey; Eschenhagen, Thomas ; Nattel, Stanley; Dobrev, Dobromir; Zimmermann, Wolfram-Hubertus ; Nikolaev, Viacheslav O. ; Vandecasteele, Grégoire; Fischmeister, Rodolphe; El-Armouche, Ali 
Abstract
Objectives This study investigated whether myocardial phosphodiesterase-2 (PDE2) is altered in heart failure (HF) and determined PDE2-mediated effects on beta-adrenergic receptor (β-AR) signaling in healthy and diseased cardiomyocytes. Background Diminished cyclic adenosine monophosphate (cAMP) and augmented cyclic guanosine monophosphate (cGMP) signaling is characteristic for failing hearts. Among the PDE superfamily, PDE2 has the unique property of being able to be stimulated by cGMP, thus leading to a remarkable increase in cAMP hydrolysis mediating a negative cross talk between cGMP and cAMP signaling. However, the role of PDE2 in HF is poorly understood. Methods Immunoblotting, radioenzymatic- and fluorescence resonance energy transfer–based assays, video edge detection, epifluorescence microscopy, and L-type Ca2+ current measurements were performed in myocardial tissues and/or isolated cardiomyocytes from human and/or experimental HF, respectively. Results Myocardial PDE2 expression and activity were ∼2-fold higher in advanced human HF. Chronic β-AR stimulation via catecholamine infusions in rats enhanced PDE2 expression ∼2-fold and cAMP hydrolytic activity ∼4-fold, which correlated with blunted cardiac β-AR responsiveness. In diseased cardiomyocytes, higher PDE2 activity could be further enhanced by stimulation of cGMP synthesis via nitric oxide donors, whereas specific PDE2 inhibition partially restored β-AR responsiveness. Accordingly, PDE2 overexpression in healthy cardiomyocytes reduced the rise in cAMP levels and L-type Ca2+ current amplitude, and abolished the inotropic effect following acute β-AR stimulation, without affecting basal contractility. Importantly, PDE2-overexpressing cardiomyocytes showed marked protection from norepinephrine-induced hypertrophic responses. Conclusions PDE2 is markedly up-regulated in failing hearts and desensitizes against acute β-AR stimulation. This may constitute an important defense mechanism during cardiac stress, for example, by antagonizing excessive β-AR drive. Thus, activating myocardial PDE2 may represent a novel intracellular antiadrenergic therapeutic strategy in HF.
Issue Date
2013
Journal
Journal of the American College of Cardiology 
Project
SFB 1002: Modulatorische Einheiten bei Herzinsuffizienz 
SFB 1002 | A01: cAMP- und cGMP- Mikrodomänen bei Herzhypertrophie und Insuffizienz 
SFB 1002 | A02: Bedeutung des Phosphatase-Inhibitors-1 für die SR-spezifische Modulation der Beta- adrenozeptor-Signalkaskade 
SFB 1002 | C02: RhoGTPasen und ihre Bedeutung für die Last-abhängige Myokardfibrose 
SFB 1002 | C04: Fibroblasten-Kardiomyozyten Interaktion im gesunden und erkrankten Herzen: Mechanismen und therapeutische Interventionen bei Kardiofibroblastopathien 
Working Group
RG El-Armouche 
RG Lutz (G Protein-Coupled Receptor Mediated Signaling) 
RG L. Maier (Experimentelle Kardiologie) 
RG Nikolaev (Cardiovascular Research Center) 
RG Sossalla (Kardiovaskuläre experimentelle Elektrophysiologie und Bildgebung) 
RG Zimmermann (Engineered Human Myocardium) 
ISSN
1558-3597; 0735-1097
eISSN
1558-3597
Language
English

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