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Dynamic DNA methylation orchestrates cardiomyocyte development, maturation and disease

Ralf Gilsbach, Sebastian Preißl, Björn Grüning, Tilman Schnick, Lukas Burger, Vladimı́r Beneš, Andreas Würch, Ulrike Bönisch, Stefan Günther, Rolf Backofen, Bernd K. Fleischmann, Dirk Schübeler, Lutz Hein

Nature Communications · 2014 · ▲ 335 citations

Abstract

The heart is a highly specialized organ with essential function for the organism throughout life. The significance of DNA methylation in shaping the phenotype of the heart remains only partially known. Here we generate and analyse DNA methylomes from highly purified cardiomyocytes of neonatal, adult healthy and adult failing hearts. We identify large genomic regions that are differentially methylated during cardiomyocyte development and maturation. Demethylation of cardiomyocyte gene bodies correlates strongly with increased gene expression. Silencing of demethylated genes is characterized by the polycomb mark H3K27me3 or by DNA methylation. De novo methylation by DNA methyltransferases 3A/B causes repression of fetal cardiac genes, including essential components of the cardiac sarcomere. Failing cardiomyocytes partially resemble neonatal methylation patterns. This study establishes DNA methylation as a highly dynamic process during postnatal growth of cardiomyocytes and their adaptation to pathological stress in a process tightly linked to gene regulation and activity.

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OpenAlex
DOI
10.1038/ncomms6288
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2026-06-09 MST

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APA
Gilsbach, R., Preißl, S., Grüning, B., Schnick, T., Burger, L., Beneš, V., Würch, A., Bönisch, U., Günther, S., Backofen, R., Fleischmann, B.K., Schübeler, D., &amp; Hein, L. (2014). Dynamic DNA methylation orchestrates cardiomyocyte development, maturation and disease. <em>Nature Communications</em>. https://doi.org/10.1038/ncomms6288
Vancouver
Gilsbach R, Preißl S, Grüning B, Schnick T, Burger L, Beneš V, et al. Dynamic DNA methylation orchestrates cardiomyocyte development, maturation and disease. Nature Communications. 2014. doi:10.1038/ncomms6288.
BibTeX
@article{ralf2014Dynami, title = {Dynamic DNA methylation orchestrates cardiomyocyte development, maturation and disease}, author = {Ralf Gilsbach and Sebastian Preißl and Björn Grüning and Tilman Schnick and Lukas Burger and Vladimı́r Beneš and Andreas Würch and Ulrike Bönisch and Stefan Günther and Rolf Backofen and Bernd K. Fleischmann and Dirk Schübeler and Lutz Hein}, journal = {Nature Communications}, year = {2014}, doi = {10.1038/ncomms6288}, }

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