SummaryThe mechanisms by which transcription factor haploinsufficiency alters the epigenetic and transcriptional landscape in human cells to cause disease are unknown. Here, we utilized human induced pluripotent stem cell (iPSC)-derived endothelial cells (ECs) to show that heterozygous nonsense mutations in NOTCH1 that cause aortic valve calcification disrupt the epigenetic architecture, resulting in derepression of latent pro-osteogenic and -inflammatory gene networks. Hemodynamic shear stress, which protects valves from calcification in vivo, activated anti-osteogenic and anti-inflammatory networks in NOTCH1+/+, but not NOTCH1+/−, iPSC-derived ECs. NOTCH1 haploinsufficiency altered H3K27ac at NOTCH1-bound enhancers, dysregulating downstre...
Notch is highly conserved signaling pathway that regulates the development and differentiation of ma...
NOTCH intercellular signaling mediates the communications between adjacent cells involved in multipl...
Endothelial cell morphology and gene expression are driven by shear stress. Disturbed flow causes co...
SummaryThe mechanisms by which transcription factor haploinsufficiency alters the epigenetic and tra...
The mechanisms by which transcription factor haploinsufficiency alters the epigenetic and transcript...
The mechanisms by which transcription factor haploinsufficiency alters the epigenetic and transcript...
Calcification of the aortic valve is a common disease affecting many people, and requires invasive v...
In a recent issue of Cell, Theodoris et al. (2015) used a complex systems biology approach to model ...
Valvular and vascular calcification are common causes of cardiovascular morbidity and mortality. Dev...
Background: Calcific aortic valve disease is characterized by an abnormal mineralization of the aort...
Aortic valve disease is a burgeoning public health problem associated with significant mortality. Lo...
Aortic valve calcification is the most common form of valvular heart disease, but the mechanisms of ...
Diseases caused by gene haploinsufficiency in humans commonly lack a phenotype in mice that are hete...
Diseases caused by gene haploinsufficiency in humans commonly lack a phenotype in mice that are hete...
Human complex disease is driven by a multitude of factors including individual’s genetics and enviro...
Notch is highly conserved signaling pathway that regulates the development and differentiation of ma...
NOTCH intercellular signaling mediates the communications between adjacent cells involved in multipl...
Endothelial cell morphology and gene expression are driven by shear stress. Disturbed flow causes co...
SummaryThe mechanisms by which transcription factor haploinsufficiency alters the epigenetic and tra...
The mechanisms by which transcription factor haploinsufficiency alters the epigenetic and transcript...
The mechanisms by which transcription factor haploinsufficiency alters the epigenetic and transcript...
Calcification of the aortic valve is a common disease affecting many people, and requires invasive v...
In a recent issue of Cell, Theodoris et al. (2015) used a complex systems biology approach to model ...
Valvular and vascular calcification are common causes of cardiovascular morbidity and mortality. Dev...
Background: Calcific aortic valve disease is characterized by an abnormal mineralization of the aort...
Aortic valve disease is a burgeoning public health problem associated with significant mortality. Lo...
Aortic valve calcification is the most common form of valvular heart disease, but the mechanisms of ...
Diseases caused by gene haploinsufficiency in humans commonly lack a phenotype in mice that are hete...
Diseases caused by gene haploinsufficiency in humans commonly lack a phenotype in mice that are hete...
Human complex disease is driven by a multitude of factors including individual’s genetics and enviro...
Notch is highly conserved signaling pathway that regulates the development and differentiation of ma...
NOTCH intercellular signaling mediates the communications between adjacent cells involved in multipl...
Endothelial cell morphology and gene expression are driven by shear stress. Disturbed flow causes co...