miR-30e targets IGF2-regulated osteogenesis in bone marrow-derived mesenchymal stem cells, aortic smooth muscle cells, and ApoE−/− mice
Cardiovascular Research

Abstract
Activation of an osteogenic transcriptional program contributes to the initiation of aortic calcification in atherosclerosis. The role of microRNAs in regulating aortic calcification is understudied. We tested the hypothesis that miR-30e regulates an osteogenic program in bone marrow-derived mesenchymal stem cells (MSCs), aortic smooth muscle cells (SMCs), and ApoE−/− mice.
In aortas of wild-type mice, we found that miR-30e is highly expressed in medial SMCs. In aortas of old ApoE−/− mice, we found that miR-30e transcripts are down-regulated in an inverse relation to the osteogenic markers Runx2, Opn, and Igf2.
miR-30e represses the osteogenic program in MSCs and SMCs by targeting IGF2 and drives their differentiation into adipogenic or smooth muscle lineage, respectively. Our data suggest that down-regulation of miR-30e in aortas with age and atherosclerosis triggers vascular calcification. The miR-30e pathway plays an important regulatory role in vascular diseases.
Contributors

Wen Ding
Author

Jihe Li
Author

Jayanti Singh
Author

Razan Alif
Author

Roberto I. Vazquez-Padron
Author

Samirah A. Gomes
Author

Joshua M. Hare
Author

