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DNA hydroxymethylation controls cardiomyocyte gene expression in development and hypertrophy.
Greco, Carolina M; Kunderfranco, Paolo; Rubino, Marcello; Larcher, Veronica; Carullo, Pierluigi; Anselmo, Achille; Kurz, Kerstin; Carell, Thomas; Angius, Andrea; Latronico, Michael V G; Papait, Roberto; Condorelli, Gianluigi.
Afiliação
  • Greco CM; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Kunderfranco P; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Rubino M; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Larcher V; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Carullo P; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Anselmo A; Institute of Genetics and Biomedical Research, National Research Council of Italy, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Kurz K; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Carell T; Center for Integrated Protein Science, Department of Chemistry, Ludwig-Maximilians-Universität München, 8137 Munich, Germany.
  • Angius A; Center for Integrated Protein Science, Department of Chemistry, Ludwig-Maximilians-Universität München, 8137 Munich, Germany.
  • Latronico MV; Institute of Genetics and Biomedical Research, National Research Council of Italy, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Papait R; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
  • Condorelli G; Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano (MI) 20089, Italy.
Nat Commun ; 7: 12418, 2016 08 04.
Article em En | MEDLINE | ID: mdl-27489048
Methylation at 5-cytosine (5-mC) is a fundamental epigenetic DNA modification associated recently with cardiac disease. In contrast, the role of 5-hydroxymethylcytosine (5-hmC)-5-mC's oxidation product-in cardiac biology and disease is unknown. Here we assess the hydroxymethylome in embryonic, neonatal, adult and hypertrophic mouse cardiomyocytes, showing that dynamic modulation of hydroxymethylated DNA is associated with specific transcriptional networks during heart development and failure. DNA hydroxymethylation marks the body of highly expressed genes as well as distal regulatory regions with enhanced activity. Moreover, pathological hypertrophy is characterized by a shift towards a neonatal 5-hmC distribution pattern. We also show that the ten-eleven translocation 2 (TET2) enzyme regulates the expression of key cardiac genes, such as Myh7, through 5-hmC deposition on the gene body and at enhancers. Thus, we provide a genome-wide analysis of 5-hmC in the cardiomyocyte and suggest a role for this epigenetic modification in heart development and disease.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Cardiomegalia / Regulação da Expressão Gênica no Desenvolvimento / Metilação de DNA / Miócitos Cardíacos / 5-Metilcitosina Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Cardiomegalia / Regulação da Expressão Gênica no Desenvolvimento / Metilação de DNA / Miócitos Cardíacos / 5-Metilcitosina Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article