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在缺乏窖蛋白-1的小鼠中存在动脉功能障碍,但全身血压维持正常。

Arterial dysfunction but maintained systemic blood pressure in cavin-1-deficient mice.

作者信息

Swärd Karl, Albinsson Sebastian, Rippe Catarina

机构信息

Department of Experimental Medical Science, Lund University, Lund, Sweden.

出版信息

PLoS One. 2014 Mar 21;9(3):e92428. doi: 10.1371/journal.pone.0092428. eCollection 2014.

Abstract

Caveolae are omega-shaped plasma membrane micro-domains that are abundant in cells of the vascular system. Formation of caveolae depends on caveolin-1 and cavin-1 and lack of either protein leads to loss of caveolae. Mice with caveolin-1 deficiency have dysfunctional blood vessels, but whether absence of cavin-1 similarly leads to vascular dysfunction is not known. Here we addressed this hypothesis using small mesenteric arteries from cavin-1-deficient mice. Cavin-1-reporter staining was intense in mesenteric arteries, brain arterioles and elsewhere in the vascular system, with positive staining of both endothelial and smooth muscle cells. Arterial expression of cavin-1, -2 and -3 was reduced in knockout (KO) arteries as was expression of caveolin-1, -2 and -3. Caveolae were absent in the endothelial and smooth muscle layers of small mesenteric arteries as determined by electron microscopy. Arginase, a negative regulator of nitric oxide production, was elevated in cavin-1 deficient arteries as was contraction in response to the α1-adrenergic agonist cirazoline. Detailed assessment of vascular dimensions revealed increased media thickness and reduced distensibility, arguing that enhanced contraction was due to increased muscle mass. Contrasting with increased α1-adrenergic contraction, myogenic tone was essentially absent and this appeared to be due in part to increased nitric oxide production. Vasomotion was less frequent in the knock-out vessels. In keeping with the opposing influences on arterial resistance of increased agonist-induced contractility and reduced myogenic tone, arterial blood pressure was unchanged in vivo. We conclude that deficiency of cavin-1 affects the function of small arteries, but that opposing influences on arterial resistance balance each other such that systemic blood pressure in unstressed mice is well maintained.

摘要

小窝是呈Ω形的质膜微区,在血管系统的细胞中大量存在。小窝的形成依赖于小窝蛋白-1和小窝装配蛋白-1,缺乏任何一种蛋白都会导致小窝缺失。小窝蛋白-1缺陷的小鼠血管功能失调,但小窝装配蛋白-1缺失是否同样会导致血管功能障碍尚不清楚。在这里,我们使用来自小窝装配蛋白-1缺陷小鼠的肠系膜小动脉对这一假设进行了研究。小窝装配蛋白-1报告基因染色在肠系膜动脉、脑微动脉和血管系统的其他部位都很强烈,内皮细胞和平滑肌细胞均呈阳性染色。敲除(KO)动脉中,小窝装配蛋白-1、-2和-3的动脉表达以及小窝蛋白-1、-2和-3的表达均降低。通过电子显微镜确定,肠系膜小动脉的内皮和平滑肌层均不存在小窝。精氨酸酶是一氧化氮产生的负调节因子,在小窝装配蛋白-1缺陷的动脉中升高,对α1-肾上腺素能激动剂西拉唑啉的收缩反应也升高。对血管尺寸的详细评估显示,中膜厚度增加,扩张性降低,这表明收缩增强是由于肌肉量增加所致。与α1-肾上腺素能收缩增加形成对比的是,肌源性张力基本不存在,这似乎部分是由于一氧化氮产生增加所致。敲除血管中的血管运动频率较低。与激动剂诱导的收缩性增加和肌源性张力降低对动脉阻力的相反影响一致,体内动脉血压未发生变化。我们得出结论,小窝装配蛋白-1缺陷会影响小动脉的功能,但对动脉阻力的相反影响相互平衡,使得未受应激的小鼠的全身血压得以良好维持。

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