4.8 Article

The microRNA-342-5p Fosters Inflammatory Macrophage Activation Through an Akt1-and microRNA-155-Dependent Pathway During Atherosclerosis

期刊

CIRCULATION
卷 127, 期 15, 页码 1609-+

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1161/CIRCULATIONAHA.112.000736

关键词

atherosclerosis; macrophages; microRNAs

资金

  1. Deutsche Forschungsgemeinschaft [Scho1056/3-1, FOR809]
  2. DZHK (German Centre for Cardiovascular Research)
  3. BMBF (German Ministry of Education and Research)
  4. Interdisciplinary Center for Clinical Research in the Faculty of Medicine at the RWTH Aachen University

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Background-Atherosclerosis is a chronic inflammatory vascular disease driven by the subendothelial accumulation of macrophages. The mechanism regulating the inflammatory response in macrophages during atherogenesis remains unclear. Because microRNAs (miRNAs) play a crucial role in cellular signaling by posttranscriptional regulation of gene expression, we studied the miRNA expression profiles during the progression of atherosclerosis. Methods and Results-Using an miRNA real-time polymerase chain reaction array, we found that macrophage-derived miR-342-5p and miR-155 are selectively upregulated in early atherosclerotic lesions in Apoe(-/-) mice. miR-342-5p directly targets Akt1 through its 3'-untranslated region. Akt1 suppression by miR-342-5p induces proinflammatory mediators such as Nos2 and II6 in macrophages via the upregulation of miR-155. The local application of an miR-342-5p antagomir inhibits the development of atherosclerosis in partially ligated carotid arteries. In atherosclerotic lesions, the miR-342-5p antagomir upregulated Akt1 expression and suppressed the expression of miR-155 and Nos2. This reduced Nos2 expression was associated with a diminished generation of nitrotyrosine in the plaques. Furthermore, systemic treatment with an inhibitor of miR-342-5p reduced the progression of atherosclerosis in the aorta of Apoe(-/-) mice. Conclusions-Macrophage-derived miR-342-5p promotes atherosclerosis and enhances the inflammatory stimulation of macrophages by suppressing the Akt1-mediated inhibition of miR-155 expression. Therefore, targeting miR-342-5p may offer a promising strategy to treat atherosclerotic vascular disease. (Circulation. 2013; 127: 1609-1619.)

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