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Inhibitory Role of Notch1 in Calcific Aortic Valve Disease

机译:Notch1在钙化性主动脉瓣疾病中的抑制作用

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摘要

Aortic valve calcification is the most common form of valvular heart disease, but the mechanisms of calcific aortic valve disease (CAVD) are unknown. NOTCH1 mutations are associated with aortic valve malformations and adult-onset calcification in families with inherited disease. The Notch signaling pathway is critical for multiple cell differentiation processes, but its role in the development of CAVD is not well understood. The aim of this study was to investigate the molecular changes that occur with inhibition of Notch signaling in the aortic valve. Notch signaling pathway members are expressed in adult aortic valve cusps, and examination of diseased human aortic valves revealed decreased expression of NOTCH1 in areas of calcium deposition. To identify downstream mediators of Notch1, we examined gene expression changes that occur with chemical inhibition of Notch signaling in rat aortic valve interstitial cells (AVICs). We found significant downregulation of Sox9 along with several cartilage-specific genes that were direct targets of the transcription factor, Sox9. Loss of Sox9 expression has been published to be associated with aortic valve calcification. Utilizing an in vitro porcine aortic valve calcification model system, inhibition of Notch activity resulted in accelerated calcification while stimulation of Notch signaling attenuated the calcific process. Finally, the addition of Sox9 was able to prevent the calcification of porcine AVICs that occurs with Notch inhibition. In conclusion, loss of Notch signaling contributes to aortic valve calcification via a Sox9-dependent mechanism.
机译:主动脉瓣钙化是瓣膜性心脏病的最常见形式,但钙化主动脉瓣疾病(CAVD)的机制尚不清楚。在患有遗传病的家庭中,NOTCH1突变与主动脉瓣畸形和成人钙化有关。 Notch信号通路对于多种细胞分化过程至关重要,但是其在CAVD发生中的作用尚不十分清楚。这项研究的目的是调查主动脉瓣Notch信号的抑制发生的分子变化。 Notch信号通路成员在成人主动脉瓣尖中表达,对患病的人主动脉瓣的检查显示钙沉积区域中NOTCH1的表达降低。为了鉴定Notch1的下游介体,我们检查了在大鼠主动脉瓣间质细胞(AVICs)中Notch信号化学抑制产生的基因表达变化。我们发现Sox9明显下调,以及几个软骨特异性基因,这些基因是转录因子Sox9的直接靶标。已经公开了Sox9表达的丧失与主动脉瓣钙化有关。利用体外猪主动脉瓣钙化模型系统,Notch活性的抑制导致钙化加速,而Notch信号的刺激则减弱了钙化过程。最后,添加Sox9能够防止因Notch抑制而引起的猪AVIC钙化。总之,Notch信号的丢失通过Sox9依赖性机制促进主动脉瓣钙化。

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