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October 28, 2016Circulation231 citations

Altered DNA Methylation of Long Noncoding RNA H19 in Calcific Aortic Valve Disease Promotes Mineralization by Silencing NOTCH1

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FHFayez HadjiMBMarie‐Chloé BoulangerSGSimon‐Pierre Guay

Key Result

Increased expression of lncRNA H19, driven by promoter hypomethylation, promotes an osteogenic program in calcific aortic valve disease by silencing NOTCH1.

Structured PICO

P
Population
Human aortic valves and valve interstitial cells (VICs) in the context of calcific aortic valve disease
E
Exposure
Knockdown and overexpression of lncRNA H19
C
Comparator
Control conditions
O
Outcome
Mineralization of the aortic valve and expression of NOTCH1 pathway genes (RUNX2, BMP2)surrogate

Hypomethylation-driven upregulation of lncRNA H19 promotes aortic valve mineralization by silencing NOTCH1, highlighting a potential epigenetic mechanism in calcific aortic valve disease.

Abstract

BACKGROUND: Calcific aortic valve disease is characterized by an abnormal mineralization of the aortic valve. Osteogenic activity in the aortic valve is under the control of NOTCH1, which regulates the expression of key pro-osteogenic genes such as RUNX2 and BMP2. Long noncoding RNAs (lncRNAs) may reprogram cells by altering the gene expression pattern. METHODS: Multidimensional genomic profiling was performed in human aortic valves to document the expression of lncRNAs and the DNA methylation pattern in calcific aortic valve disease. In-depth functional assays were carried out to document the impact of lncRNA on the mineralization of the aortic valve. RESULTS: We documented that lncRNA H19 (H19) was increased in calcific aortic valve disease. Hypomethylation of the promoter region was observed in mineralized aortic valves and was inversely associated with H19 expression. Knockdown and overexpression experiments showed that H19 induces a strong osteogenic phenotype by altering the NOTCH1 pathway. Gene promoter analyses showed that H19 silenced NOTCH1 by preventing the recruitment of p53 to its promoter. A knockdown of H19 in valve interstitial cells (VICs) increased the expression of NOTCH1 and decreased the level of RUNX2 and BMP2, 2 downstream targets repressed by NOTCH1. In rescue experiments, the transfection of a vector encoding for the active Notch intracellular domain prevented H19-induced mineralization of valve interstitial cells. CONCLUSIONS: These findings indicate that a dysregulation of DNA methylation in the promoter of H19 during calcific aortic valve disease is associated with a higher expression of this lncRNA, which promotes an osteogenic program by interfering with the expression of NOTCH1.

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Cite This Study

Hadji et al. (2016) studied Calcific aortic valve disease. lncRNA H19 was evaluated on Osteogenic phenotype and mineralization. Increased expression of lncRNA H19, driven by promoter hypomethylation, promotes an osteogenic program in calcific aortic valve disease by silencing NOTCH1.

synapsesocial.com/papers/6a5ac571375350ccdbf699f7https://doi.org/10.1161/circulationaha.116.023116
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Notch1 Mutation Leads to Valvular Calcification Through Enhanced Myofibroblast Mechanotransduction2015 · 56 citations
  2. 2Refining Molecular Pathways Leading to Calcific Aortic Valve Stenosis by Studying Gene Expression Profile of Normal and Calcified Stenotic Human Aortic Valves2009 · 156 citations
  3. 3Ectopic expression of the H19 gene in mice causes prenatal lethality.1991 · 177 citations
  4. 4Genomic imprinting and parent-of-origin effects on complex traits2013 · 285 citations
  5. 5Notch1 is a p53 target gene involved in human keratinocyte tumor suppression through negative regulation of ROCK1/2 and MRCKα kinases2007 · 308 citations