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July 3, 2007Circulation889 citationsOpen Access

MicroRNAs in the Human Heart

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TTThomas ThumPGPaolo GaluppoCWChristian Wolf

Key Result

Reactivation of a fetal microRNA program in failing human hearts substantially contributes to alterations of gene expression and induces cellular hypertrophy.

Key Points

  • This research aims to understand how microRNAs contribute to gene expression changes in chronic heart failure.
  • Analyzed cardiac transcriptome in human heart tissue samples.
  • Utilized microRNA arrays to compare expression patterns in failing and fetal hearts.
  • Performed bioinformatic analysis to investigate correlations between microRNA and messenger RNA expression.
  • MicroRNA expression alterations in failing hearts closely resemble those in fetal tissue.
  • Messenger RNAs upregulated in heart failure had binding sites for downregulated microRNAs (and vice versa).
  • Transfecting cardiomyocytes with fetal microRNAs induced hypertrophy and gene expression changes similar to failing hearts.

Structured PICO

P
Population
Fetal and failing human heart tissue, and cardiomyocytes
I
Intervention
Transfection of cardiomyocytes with a set of fetal microRNAs
O
Outcome
Alterations of microRNA expression, cellular hypertrophy, and changes in gene expressionsurrogate

Reactivation of a fetal microRNA program contributes to the transcriptional changes and cellular hypertrophy observed in the failing human heart.

Abstract

BACKGROUND: Chronic heart failure is characterized by left ventricular remodeling and reactivation of a fetal gene program; the underlying mechanisms are only partly understood. Here we provide evidence that cardiac microRNAs, recently discovered key regulators of gene expression, contribute to the transcriptional changes observed in heart failure. METHODS AND RESULTS: Cardiac transcriptome analyses revealed striking similarities between fetal and failing human heart tissue. Using microRNA arrays, we discovered profound alterations of microRNA expression in failing hearts. These changes closely mimicked the microRNA expression pattern observed in fetal cardiac tissue. Bioinformatic analysis demonstrated a striking concordance between regulated messenger RNA expression in heart failure and the presence of microRNA binding sites in the respective 3' untranslated regions. Messenger RNAs upregulated in the failing heart contained preferentially binding sites for downregulated microRNAs and vice versa. Mechanistically, transfection of cardiomyocytes with a set of fetal microRNAs induced cellular hypertrophy as well as changes in gene expression comparable to the failing heart. CONCLUSIONS: Our data support a novel mode of regulation for the transcriptional changes in cardiac failure. Reactivation of a fetal microRNA program substantially contributes to alterations of gene expression in the failing human heart.

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Cite This Study

Thum et al. (2007) studied Chronic heart failure. Reactivation of a fetal microRNA program in failing human hearts substantially contributes to alterations of gene expression and induces cellular hypertrophy.

synapsesocial.com/papers/6a086fd81e8b9db648de09d6https://doi.org/10.1161/circulationaha.107.687947
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