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α2 亚型钠钾泵对于细胞间通讯、激动剂诱导的收缩以及大鼠肠系膜动脉中的 EDHF 样反应非常重要。

The α2 isoform of the Na,K-pump is important for intercellular communication, agonist-induced contraction, and EDHF-like response in rat mesenteric arteries.

机构信息

Department of Biomedicine, Aarhus University, Denmark.

出版信息

Am J Physiol Heart Circ Physiol. 2012 Jul;303(1):H36-46. doi: 10.1152/ajpheart.00673.2011. Epub 2012 May 4.

Abstract

The specific role of different isoforms of the Na,K-pump in the vascular wall is still under debate. We have previously suggested that the α(2) isoform of the Na,K-pump (α(2)), Na(+), Ca(2+)-exchange (NCX), and connexin43 form a regulatory microdomain in smooth muscle cells (SMCs), which controls intercellular communication and contractile properties of the vascular wall. We have tested this hypothesis by downregulating α(2) in cultured SMCs and in small arteries with siRNA in vivo. Intercellular communication was assessed by using membrane capacitance measurements. Arteries transfected in vivo were tested for isometric and isobaric force development in vitro; Ca(2+) was measured simultaneously. Cultured rat SMCs were well-coupled electrically, but 10 μM ouabain uncoupled them. Downregulation of α(2) reduced electrical coupling between SMCs and made them insensitive to ouabain. Downregulation of α(2) in small arteries was accompanied with significant reduction in NCX expression. Acetylcholine-induced relaxation was not different between the groups, but the endothelium-dependent hyperpolarizing factor-like component of the response was significantly diminished in α(2)-downregulated arteries. Micromolar ouabain reduced in a concentration-dependent manner the amplitude of norepinephrine (NE)-induced vasomotion. Sixty percent of the α(2)-downregulated arteries did not have vasomotion, and vasomotion in the remaining 40% was ouabain insensitive. Although ouabain increased the sensitivity to NE in the control arteries, it had no effect on α(2)-downregulated arteries. In the presence of a low NE concentration the α(2)-downregulated arteries had higher Ca(2+) and tone. However, the NE EC50 was reduced under isometric conditions, and maximal contraction was reduced under isometric and isobaric conditions. The latter was caused by a reduced Ca(2+)-sensitivity. The α(2)-downregulated arteries also had reduced contraction to vasopressin, whereas the contractile response to high K(+) was not affected. Our results demonstrate the importance of α(2) for intercellular coupling in the vascular wall and its involvement in the regulation of vascular tone.

摘要

不同同工型的钠钾泵在血管壁中的具体作用仍存在争议。我们之前曾提出,钠钾泵的α(2)同工型(α(2))、钠钙交换(NCX)和连接蛋白 43 在平滑肌细胞(SMCs)中形成一个调节微区,控制着血管壁的细胞间通讯和收缩特性。我们通过在体内用 siRNA 下调培养的 SMCs 和小动脉中的α(2)来验证这一假说。通过膜电容测量评估细胞间通讯。在体内转染的动脉进行等长和等压力发展的体外测试;同时测量Ca(2+)。培养的大鼠 SMC 电耦联良好,但 10 μM 哇巴因使其去耦联。α(2)的下调降低了 SMC 之间的电耦联,并使其对哇巴因不敏感。小动脉中α(2)的下调伴随着 NCX 表达的显著减少。乙酰胆碱诱导的松弛在各组之间没有差异,但反应中内皮依赖性超极化因子样成分显著减少。微摩尔哇巴因浓度依赖性地降低去甲肾上腺素(NE)诱导的血管运动的幅度。60%的α(2)下调动脉没有血管运动,而剩余 40%的血管运动对哇巴因不敏感。虽然哇巴因增加了对照动脉对 NE 的敏感性,但对α(2)下调的动脉没有影响。在低 NE 浓度下,α(2)下调的动脉具有更高的Ca(2+)和张力。然而,在等长条件下,α(2)下调动脉的 NE EC50 降低,最大收缩在等长和等压条件下降低。后者是由钙敏感性降低引起的。α(2)下调的动脉对血管加压素的收缩反应也降低,而对高 K(+)的收缩反应不受影响。我们的结果表明,α(2)对血管壁中细胞间耦联的重要性及其在血管张力调节中的作用。

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