Dysregulation of microRNAs after myocardial infarction reveals a role of miR-29 in cardiac fibrosis

纤维化 小RNA 心肌梗塞 生物 心力衰竭 调节器 心脏纤维化 肌肉肥大 基因表达调控 内科学 医学 癌症研究 内分泌学 基因 遗传学
作者
Eva van Rooij,Lillian B. Sutherland,Jeffrey E. Thatcher,J. Michael DiMaio,R. Haris Naseem,William S. Marshall,Joseph A. Hill,Eric N. Olson
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:105 (35): 13027-13032 被引量:1762
标识
DOI:10.1073/pnas.0805038105
摘要

Acute myocardial infarction (MI) due to coronary artery occlusion is accompanied by a pathological remodeling response that includes hypertrophic cardiac growth and fibrosis, which impair cardiac contractility. Previously, we showed that cardiac hypertrophy and heart failure are accompanied by characteristic changes in the expression of a collection of specific microRNAs (miRNAs), which act as negative regulators of gene expression. Here, we show that MI in mice and humans also results in the dysregulation of specific miRNAs, which are similar to but distinct from those involved in hypertrophy and heart failure. Among the MI-regulated miRNAs are members of the miR-29 family, which are down-regulated in the region of the heart adjacent to the infarct. The miR-29 family targets a cadre of mRNAs that encode proteins involved in fibrosis, including multiple collagens, fibrillins, and elastin. Thus, down-regulation of miR-29 would be predicted to derepress the expression of these mRNAs and enhance the fibrotic response. Indeed, down-regulation of miR-29 with anti-miRs in vitro and in vivo induces the expression of collagens, whereas over-expression of miR-29 in fibroblasts reduces collagen expression. We conclude that miR-29 acts as a regulator of cardiac fibrosis and represents a potential therapeutic target for tissue fibrosis in general.

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