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PMID: 25871831 已发表 · ppublish 英语

NOTCH1 regulates matrix gla protein and calcification gene networks in human valve endothelium.

White Mark P, Theodoris Christina V, Liu Lei, Collins William J, Blue Kathleen W, Lee Joon Ho, Meng Xianzhong, Robbins Robert C, Ivey Kathryn N, Srivastava Deepak

摘要

Valvular and vascular calcification are common causes of cardiovascular morbidity and mortality. Developing effective treatments requires understanding the molecular underpinnings of these processes. Shear stress is thought to play a role in inhibiting calcification. Furthermore, NOTCH1 regulates vascular and valvular endothelium, and human mutations in NOTCH1 can cause calcific aortic valve disease. Here, we determined the genome-wide impact of altering shear stress and NOTCH signaling on human aortic valve endothelium. mRNA-sequencing of primary human aortic valve endothelial cells (HAVECs) with or without knockdown of NOTCH1, in the presence or absence of shear stress, revealed NOTCH1-dependency of the atherosclerosis-related gene connexin 40 (GJA5), and numerous repressors of endochondral ossification. Among these, matrix gla protein (MGP) is highly expressed in aortic valve and vasculature, and inhibits soft tissue calcification by sequestering bone morphogenetic proteins (BMPs). Altering NOTCH1 levels affected MGP mRNA and protein in HAVECs. Furthermore, shear stress activated NOTCH signaling and MGP in a NOTCH1-dependent manner. NOTCH1 positively regulated endothelial MGP in vivo through specific binding motifs upstream of MGP. Our studies suggest that shear stress activates NOTCH1 in primary human aortic valve endothelial cells leading to downregulation of osteoblast-like gene networks that play a role in tissue calcification.

关键词
Matrix gla protein NOTCH signaling NOTCH1 Valve calcification Valve endothelium
文献信息
期刊
Journal of molecular and cellular cardiology
期刊简称
J Mol Cell Cardiol
发表日期
2016-04-07
收录日期
2015-06-15
更新日期
2016-10-19
语言
英语
国家/地区
England
NLM ID
0262322
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