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Erschienen in: Basic Research in Cardiology 1/2016

01.01.2016 | Original Contribution

DNA methylation in an engineered heart tissue model of cardiac hypertrophy: common signatures and effects of DNA methylation inhibitors

verfasst von: Justus Stenzig, Marc N. Hirt, Alexandra Löser, Lena M. Bartholdt, Jan-Tobias Hensel, Tessa R. Werner, Mona Riemenschneider, Daniela Indenbirken, Thomas Guenther, Christian Müller, Norbert Hübner, Monika Stoll, Thomas Eschenhagen

Erschienen in: Basic Research in Cardiology | Ausgabe 1/2016

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Abstract

DNA methylation affects transcriptional regulation and constitutes a drug target in cancer biology. In cardiac hypertrophy, DNA methylation may control the fetal gene program. We therefore investigated DNA methylation signatures and their dynamics in an in vitro model of cardiac hypertrophy based on engineered heart tissue (EHT). We exposed EHTs from neonatal rat cardiomyocytes to a 12-fold increased afterload (AE) or to phenylephrine (PE 20 µM) and compared DNA methylation signatures to control EHT by pull-down assay and DNA methylation microarray. A 7-day intervention sufficed to induce contractile dysfunction and significantly decrease promoter methylation of hypertrophy-associated upregulated genes such as Nppa (encoding ANP) and Acta1 (α-skeletal actin) in both intervention groups. To evaluate whether pathological consequences of AE are affected by inhibiting de novo DNA methylation we applied AE in the absence and presence of DNA methyltransferase (DNMT) inhibitors: 5-aza-2′-deoxycytidine (aza, 100 µM, nucleosidic inhibitor), RG108 (60 µM, non-nucleosidic) or methylene disalicylic acid (MDSA, 25 µM, non-nucleosidic). Aza had no effect on EHT function, but RG108 and MDSA partially prevented the detrimental consequences of AE on force, contraction and relaxation velocity. RG108 reduced AE-induced Atp2a2 (SERCA2a) promoter methylation. The results provide evidence for dynamic DNA methylation in cardiac hypertrophy and warrant further investigation of the potential of DNA methylation in the treatment of cardiac hypertrophy.
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Metadaten
Titel
DNA methylation in an engineered heart tissue model of cardiac hypertrophy: common signatures and effects of DNA methylation inhibitors
verfasst von
Justus Stenzig
Marc N. Hirt
Alexandra Löser
Lena M. Bartholdt
Jan-Tobias Hensel
Tessa R. Werner
Mona Riemenschneider
Daniela Indenbirken
Thomas Guenther
Christian Müller
Norbert Hübner
Monika Stoll
Thomas Eschenhagen
Publikationsdatum
01.01.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Basic Research in Cardiology / Ausgabe 1/2016
Print ISSN: 0300-8428
Elektronische ISSN: 1435-1803
DOI
https://doi.org/10.1007/s00395-015-0528-z

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