DNA methylation of a PLPP3 MIR transposon-based enhancer promotes an osteogenic programme in calcific aortic valve disease
Cardiovascular Research

Abstract
Calcific aortic valve disease (CAVD) is characterized by the osteogenic transition of valve interstitial cells (VICs). In CAVD, lysophosphatidic acid (LysoPA), a lipid mediator with potent osteogenic activity, is produced in the aortic valve (AV) and is degraded by membrane-associated phospholipid phosphatases (PLPPs). We thus hypothesized that a dysregulation of PLPPs could participate to the osteogenic reprograming of VICs during CAVD.
The expression of PLPPs was examined in human control and mineralized AVs and comprehensive analyses were performed to document the gene regulation and impact of PLPPs on the osteogenic transition of VICs. We found that
DNA methylation of a MIR-based enhancer downregulates the expression of PLPP3 and promotes the mineralization of the AV.
Contributors

Ghada Mkannez
Author

Valérie Gagné-Ouellet
Author

Mohamed Jalloul Nsaibia
Author

Marie-Chloé Boulanger
Author

Mickael Rosa
Author

Deborah Argaud
Author

Fayez Hadji
Author

Nathalie Gaudreault
Author

Gabrielle Rhéaume
Author

Luigi Bouchard
Author

Yohan Bossé
Author

Patrick Mathieu
Author
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