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November 16, 2006Proceedings of the National Academy of Sciences1,515 citations

A signature pattern of stress-responsive microRNAs that can evoke cardiac hypertrophy and heart failure

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EREva van RooijHeart Failure & TransplantLSLillian B. SutherlandThe University of Texas Southwestern Medical CenterNLNing LiuGuizhou University

Key Points

  • This research aims to identify microRNAs involved in cardiac hypertrophy and heart failure, and their potential as therapeutic targets.
  • Analyzed microRNA expression in mouse cardiac tissue after transverse aortic constriction and calcineurin activation
  • Induced hypertrophy in cultured cardiomyocytes through overexpression of stress-inducible microRNAs
  • Evaluated the effects of miR-195 overexpression in transgenic mice
  • Identified over 12 microRNAs regulated during cardiac hypertrophy in mice and similar patterns in human heart samples
  • Forced overexpression of stress-microRNAs induced hypertrophy in cardiomyocytes
  • Transgenic mice with miR-195 overexpression exhibited pathological cardiac growth and heart failure.

Abstract

Diverse forms of injury and stress evoke a hypertrophic growth response in adult cardiac myocytes, which is characterized by an increase in cell size, enhanced protein synthesis, assembly of sarcomeres, and reactivation of fetal genes, often culminating in heart failure and sudden death. Given the emerging roles of microRNAs (miRNAs) in modulation of cellular phenotypes, we searched for miRNAs that were regulated during cardiac hypertrophy and heart failure. We describe >12 miRNAs that are up- or down-regulated in cardiac tissue from mice in response to transverse aortic constriction or expression of activated calcineurin, stimuli that induce pathological cardiac remodeling. Many of these miRNAs were similarly regulated in failing human hearts. Forced overexpression of stress-inducible miRNAs was sufficient to induce hypertrophy in cultured cardiomyocytes. Similarly, cardiac overexpression of miR-195, which was up-regulated during cardiac hypertrophy, resulted in pathological cardiac growth and heart failure in transgenic mice. These findings reveal an important role for specific miRNAs in the control of hypertrophic growth and chamber remodeling of the heart in response to pathological signaling and point to miRNAs as potential therapeutic targets in heart disease.

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Cite This Study

Rooij et al. (2006) studied this question.

synapsesocial.com/papers/6a086fd81e8b9db648de09d8https://doi.org/10.1073/pnas.0608791103
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