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Transcriptional Remodeling of Ion Channel Subunits by Flow Adaptation in Human Coronary Artery Endothelial Cells

机译:在人类冠状动脉内皮细胞中通过流量适应的离子通道亚基的转录重塑。

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摘要

Endothelial cells (ECs) are constantly exposed to blood flow-induced shear forces in the vessels and this is a major determinant of endothelial function. Ion channels have a major role in endothelial function and in the control of vascular tone. We hypothesized that shear force is a general regulator of ion channel expression, which will have profound effects on endothelial function. We examined this hypothesis using large-scale quantitative real-time RT-PCR. Human coronary artery ECs were exposed to two levels of flow-induced shear stress for 24 h, while control cells were grown under static conditions. The expression of ion channel subunits was compared between control and flow-adapted cells. We used primers against 55 ion channel and exchanger subunits and were able to detect 54 subunits. Five dyn/cm2 of shear induced downregulation of 1 (NCX1) and upregulation of 18 subunits, including KCa2.2, KCa2.3, CX37, Kv1.5 and HCN2. Fifteen dyn/cm2 of shear stress induced the expression of 30 ion channel subunits, including KCa2.3, KCa2.2, CX37, Kir2.3 and KCa3.1. Our data demonstrate that substantial remodeling of endothelial ion channel subunit expression occurs with flow adaptation and suggest that altered ion channel expression may significantly contribute to vascular pathology associated with flow-induced alterations.
机译:内皮细胞(ECs)不断暴露于血管中血流引起的剪切力,这是内皮功能的主要决定因素。离子通道在内皮功能和控制血管紧张中起主要作用。我们假设剪切力是离子通道表达的一般调节剂,它将对内皮功能产生深远影响。我们使用大规模定量实时RT-PCR检验了这一假设。将人类冠状动脉EC暴露于两种水平的流动诱导剪切应力下24小时,而对照细胞则在静态条件下生长。比较了对照细胞和流适应细胞之间离子通道亚基的表达。我们使用了针对55个离子通道和交换子亚基的引物,能够检测到54个亚基。 5 dyn / cm 2 剪切诱导下调1(NCX1)和上调18个亚基,包括KCa2.2,KCa2.3,CX37,Kv1.5和HCN2。 15 dyn / cm 2 剪切应力诱导了30个离子通道亚基的表达,包括KCa2.3,KCa2.2,CX37,Kir2.3和KCa3.1。我们的数据表明,内皮离子通道亚单位表达的实质性重构发生在血流适应过程中,并表明改变的离子通道表达可能会显着促进与血流引起的改变相关的血管病理。

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