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A microRNA program regulates the balance between cardiomyocyte hyperplasia and hypertrophy and stimulates cardiac regeneration

Raso A.
•
Dirkx E.
•
Sampaio-Pinto V.
altro
De Windt L. J.
2021
  • journal article

Periodico
NATURE COMMUNICATIONS
Abstract
Myocardial regeneration is restricted to early postnatal life, when mammalian cardiomyocytes still retain the ability to proliferate. The molecular cues that induce cell cycle arrest of neonatal cardiomyocytes towards terminally differentiated adult heart muscle cells remain obscure. Here we report that the miR-106b~25 cluster is higher expressed in the early postnatal myocardium and decreases in expression towards adulthood, especially under conditions of overload, and orchestrates the transition of cardiomyocyte hyperplasia towards cell cycle arrest and hypertrophy by virtue of its targetome. In line, gene delivery of miR-106b~25 to the mouse heart provokes cardiomyocyte proliferation by targeting a network of negative cell cycle regulators including E2f5, Cdkn1c, Ccne1 and Wee1. Conversely, gene-targeted miR-106b~25 null mice display spontaneous hypertrophic remodeling and exaggerated remodeling to overload by derepression of the prohypertrophic transcription factors Hand2 and Mef2d. Taking advantage of the regulatory function of miR-106b~25 on cardiomyocyte hyperplasia and hypertrophy, viral gene delivery of miR-106b~25 provokes nearly complete regeneration of the adult myocardium after ischemic injury. Our data demonstrate that exploitation of conserved molecular programs can enhance the regenerative capacity of the injured heart.
DOI
10.1038/s41467-021-25211-4
WOS
WOS:000683910200042
Archivio
http://hdl.handle.net/11368/2995280
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85112077944
https://www.nature.com/articles/s41467-021-25211-4
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8355162/
Diritti
open access
license:creative commons
license:creative commons
license uri:http://creativecommons.org/licenses/by/4.0/
license uri:http://creativecommons.org/licenses/by/4.0/
FVG url
https://arts.units.it/bitstream/11368/2995280/2/s41467-021-25211-4.pdf
Soggetti
  • Animal

  • Animals, Newborn

  • Cardiomegaly

  • Cells, Cultured

  • Echocardiography

  • Gene Expression Regul...

  • Human

  • Hyperplasia

  • Mice

  • MicroRNA

  • Myocardial Infarction...

  • Myocytes, Cardiac

  • Rat

  • Regeneration

  • Reverse Transcriptase...

Web of Science© citazioni
12
Data di acquisizione
Mar 24, 2024
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