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线粒体融合蛋白OPA1在高血压中的保护作用。

Protective role of the mitochondrial fusion protein OPA1 in hypertension.

作者信息

Robert Pauline, Nguyen Phuc Minh Chau, Richard Alexis, Grenier Céline, Chevrollier Arnaud, Munier Mathilde, Grimaud Linda, Proux Coralyne, Champin Tristan, Lelièvre Eric, Sarzi Emmanuelle, Vessières Emilie, Henni Samir, Prunier Delphine, Reynier Pascal, Lenaers Guys, Fassot Céline, Henrion Daniel, Loufrani Laurent

机构信息

MITOVASC Institute and CARFI Facility, University of Angers, Angers, France.

UMR CNRS 6015, Angers, France.

出版信息

FASEB J. 2021 Jul;35(7):e21678. doi: 10.1096/fj.202000238RRR.

Abstract

Hypertension is associated with excessive reactive oxygen species (ROS) production in vascular cells. Mitochondria undergo fusion and fission, a process playing a role in mitochondrial function. OPA1 is essential for mitochondrial fusion. Loss of OPA1 is associated with ROS production and cell dysfunction. We hypothesized that mitochondria fusion could reduce oxidative stress that defect in fusion would exacerbate hypertension. Using (a) Opa1 haploinsufficiency in isolated resistance arteries from Opa1 mice, (b) primary vascular cells from Opa1 mice, and (c) RNA interference experiments with siRNA against Opa1 in vascular cells, we investigated the role of mitochondria fusion in hypertension. In hypertension, Opa1 haploinsufficiency induced altered mitochondrial cristae structure both in vascular smooth muscle and endothelial cells but did not modify protein level of long and short forms of OPA1. In addition, we demonstrated an increase of mitochondrial ROS production, associated with a decrease of superoxide dismutase 1 protein expression. We also observed an increase of apoptosis in vascular cells and a decreased VSMCs proliferation. Blood pressure, vascular contractility, as well as endothelium-dependent and -independent relaxation were similar in Opa1 , WT, L-NAME-treated Opa1 and WT mice. Nevertheless, chronic NO-synthase inhibition with L-NAME induced a greater hypertension in Opa1 than in WT mice without compensatory arterial wall hypertrophy. This was associated with a stronger reduction in endothelium-dependent relaxation due to excessive ROS production. Our results highlight the protective role of mitochondria fusion in the vasculature during hypertension by limiting mitochondria ROS production.

摘要

高血压与血管细胞中活性氧(ROS)的过量产生有关。线粒体进行融合和裂变,这一过程对线粒体功能发挥作用。OPA1对线粒体融合至关重要。OPA1的缺失与ROS产生及细胞功能障碍有关。我们推测线粒体融合可减轻氧化应激,而融合缺陷会加剧高血压。利用(a)来自Opa1小鼠的离体阻力动脉中的Opa1单倍体不足,(b)来自Opa1小鼠的原代血管细胞,以及(c)在血管细胞中用针对Opa1的小干扰RNA(siRNA)进行的RNA干扰实验,我们研究了线粒体融合在高血压中的作用。在高血压中,Opa1单倍体不足在血管平滑肌和内皮细胞中均诱导了线粒体嵴结构的改变,但未改变长、短形式OPA1的蛋白水平。此外,我们证明了线粒体ROS产生增加,这与超氧化物歧化酶1蛋白表达的降低有关。我们还观察到血管细胞凋亡增加,血管平滑肌细胞增殖减少。Opa1小鼠、野生型(WT)小鼠、用L- NAME处理的Opa1小鼠和WT小鼠的血压、血管收缩性以及内皮依赖性和非依赖性舒张功能相似。然而,用L- NAME长期抑制一氧化氮合酶在Opa1小鼠中比在WT小鼠中诱导出更大的高血压,且没有代偿性动脉壁肥厚。这与由于过量ROS产生导致的内皮依赖性舒张功能更强的降低有关。我们的结果强调了线粒体融合在高血压期间通过限制线粒体ROS产生对脉管系统的保护作用。

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