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Post-Transcriptional Control of Tropoelastin in Aortic Smooth Muscle Cells Affects Aortic Dissection Onset. | LitMetric

AI Article Synopsis

  • - Aortic dissection (AD) is a severe condition that results in high death and illness rates, linked primarily to problems with the elastin-coding gene called tropoelastin (TE), but other factors may also contribute to its development.
  • - This study explored how microRNAs (specifically miR-144-3p) influence the levels of elastin by targeting TE mRNA in aortic smooth muscle cells, revealing that miR-144-3p can inhibit TE protein production.
  • - Findings indicated that AD patients had higher levels of miR-144-3p and lower levels of TE in their aortic smooth muscle cells, while treatment in a mouse model that counteracted miR-144-

Article Abstract

Aortic dissection (AD) is a catastrophic disease with high mortality and morbidity, characterized with fragmentation of elastin and loss of smooth muscle cells. Although AD has been largely attributable to polymorphisms defect in the elastin-coding gene, tropoelastin (TE), other undermined factors also appear to play roles in AD onset. Here, we investigated the effects of post-transcriptional control of TE by microRNAs (miRNAs) on elastin levels in aortic smooth muscle cells (ASMC). We found that miR-144-3p is a miRNA that targets TE mRNA in both human and mouse. Bioinformatics analyses and dual luciferase reporter assay showed that miR-144-3p inhibited protein translation of TE, through binding to the 3'-UTR of the TE mRNA. Interestingly, higher miR-144-3p levels and lower TE were detected in the ASMC obtained from AD patients, compared to those from non-AD controls. In a mouse model for human AD, infusion of adeno-associated viruses (serotype 6) carrying antisense for miR-144-3p (as-miR-144-3p) under CAG promoter significantly reduced the incidence and severity of AD, seemingly through enhancement of TE levels in ASMC. Thus, our data suggest an essential role of miR-144-3p on the pathogenesis of AD.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5881093PMC
http://dx.doi.org/10.14348/molcells.2018.2193DOI Listing

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