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Mitochondria regulate proliferation in adult cardiac myocytes.
Waypa, Gregory B; Smith, Kimberly A; Mungai, Paul T; Dudley, Vincent J; Helmin, Kathryn A; Singer, Benjamin D; Peek, Clara Bien; Bass, Joseph; Nelson, Lauren; Shah, Sanjiv J; Ofman, Gaston; Wasserstrom, J Andrew; Muller, William A; Misharin, Alexander V; Budinger, G R Scott; Abdala-Valencia, Hiam; Chandel, Navdeep S; Dokic, Danijela; Bartom, Elizabeth; Zhang, Shuang; Tatekoshi, Yuki; Mahmoodzadeh, Amir; Ardehali, Hossein; Thorp, Edward B; Schumacker, Paul T.
Afiliación
  • Waypa GB; Department of Pediatrics.
  • Smith KA; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Mungai PT; Department of Pediatrics.
  • Dudley VJ; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Helmin KA; Department of Pediatrics.
  • Singer BD; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Peek CB; Department of Pediatrics.
  • Bass J; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Nelson L; Department of Medicine.
  • Shah SJ; Department of Medicine.
  • Ofman G; Department of Biochemistry and Molecular Genetics, and.
  • Wasserstrom JA; Department of Medicine.
  • Muller WA; Department of Medicine.
  • Misharin AV; Department of Medicine.
  • Budinger GRS; Department of Pediatrics.
  • Abdala-Valencia H; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Chandel NS; Department of Medicine.
  • Dokic D; Department of Pathology, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.
  • Bartom E; Department of Medicine.
  • Zhang S; Department of Medicine.
  • Tatekoshi Y; Department of Medicine.
  • Mahmoodzadeh A; Department of Medicine.
  • Ardehali H; Department of Pediatrics.
  • Thorp EB; Stanley Manne Children's Research Institute of the Ann and Robert H. Lurie Children's Hospital of Chicago.
  • Schumacker PT; Department of Biochemistry and Molecular Genetics, and.
J Clin Invest ; 134(13)2024 May 09.
Article en En | MEDLINE | ID: mdl-38722697
ABSTRACT
Newborn mammalian cardiomyocytes quickly transition from a fetal to an adult phenotype that utilizes mitochondrial oxidative phosphorylation but loses mitotic capacity. We tested whether forced reversal of adult cardiomyocytes back to a fetal glycolytic phenotype would restore proliferative capacity. We deleted Uqcrfs1 (mitochondrial Rieske iron-sulfur protein, RISP) in hearts of adult mice. As RISP protein decreased, heart mitochondrial function declined, and glucose utilization increased. Simultaneously, the hearts underwent hyperplastic remodeling during which cardiomyocyte number doubled without cellular hypertrophy. Cellular energy supply was preserved, AMPK activation was absent, and mTOR activation was evident. In ischemic hearts with RISP deletion, new cardiomyocytes migrated into the infarcted region, suggesting the potential for therapeutic cardiac regeneration. RNA sequencing revealed upregulation of genes associated with cardiac development and proliferation. Metabolomic analysis revealed a decrease in α-ketoglutarate (required for TET-mediated demethylation) and an increase in S-adenosylmethionine (required for methyltransferase activity). Analysis revealed an increase in methylated CpGs near gene transcriptional start sites. Genes that were both differentially expressed and differentially methylated were linked to upregulated cardiac developmental pathways. We conclude that decreased mitochondrial function and increased glucose utilization can restore mitotic capacity in adult cardiomyocytes, resulting in the generation of new heart cells, potentially through the modification of substrates that regulate epigenetic modification of genes required for proliferation.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Miocitos Cardíacos / Proliferación Celular / Mitocondrias Cardíacas Límite: Animals Idioma: En Revista: J Clin Invest Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Miocitos Cardíacos / Proliferación Celular / Mitocondrias Cardíacas Límite: Animals Idioma: En Revista: J Clin Invest Año: 2024 Tipo del documento: Article