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线粒体微小RNA/ Bcl-2轴影响衰老内皮细胞的线粒体功能和自噬空泡形成。

The mitomiR/Bcl-2 axis affects mitochondrial function and autophagic vacuole formation in senescent endothelial cells.

作者信息

Giuliani Angelica, Cirilli Ilenia, Prattichizzo Francesco, Mensà Emanuela, Fulgenzi Gianluca, Sabbatinelli Jacopo, Graciotti Laura, Olivieri Fabiola, Procopio Antonio Domenico, Tiano Luca, Rippo Maria Rita

机构信息

Department of Clinical and Molecular Sciences (DISCLIMO), Università Politecnica delle Marche, Ancona, Italy.

Department of Life and Environmental Sciences, Università Politecnica delle Marche, Ancona, Italy.

出版信息

Aging (Albany NY). 2018 Oct 21;10(10):2855-2873. doi: 10.18632/aging.101591.

Abstract

During senescence, cells undergo distinctive biochemical and morphological changes and become dysfunctional. MiRNAs are involved in the senescence process and specific miRNAs can localize to mitochondria (mitomiRs). We hypothesized that part of the typical alterations of senescence may depends on mitomiRs deregulation. Therefore, we thoroughly explored the phenotype of human endothelial cells undergoing replicative senescence (sHUVECs) and observed elongated/branched mitochondria, accumulation of autophagic vacuoles (AVs), increased ROS and IL-1β production and reduced expression of Bcl-2 compared to younger cells (yHUVECs). Despite these pro-apoptotic features, sHUVECs are more resistant to serum deprivation, conceivably due to development of pro-survival strategies such as upregulation of Bcl-xL and Survivin. We demonstrate that mitomiR-181a, -34a, and -146a, are overexpressed and localize to mitochondria in sHUVECs compared with yHUVECs and that they: i) down-regulate Bcl-2, ii) induce permeability transition pore opening and activation of caspase-1 and 3, iii) affect sensitivity to apoptosis and iv) promote the conversion of LC3-I to LC3-II. Overall, we document for the first time that some mitomiRs can act as mediators of the multiple but functionally linked biochemical and morphological changes that characterize aging cells and that they can promote different cellular outcomes according to the senescence status of the cell.

摘要

在衰老过程中,细胞会经历独特的生化和形态变化并变得功能失调。微小RNA(miRNA)参与衰老过程,特定的miRNA可定位于线粒体(线粒体miRNA,mitomiRs)。我们推测衰老的部分典型改变可能取决于线粒体miRNA的失调。因此,我们深入探究了经历复制性衰老的人内皮细胞(sHUVECs)的表型,发现与年轻细胞(yHUVECs)相比,其线粒体拉长/分支,自噬空泡(AVs)积累,活性氧(ROS)和白细胞介素-1β生成增加,Bcl-2表达降低。尽管具有这些促凋亡特征,但sHUVECs对血清剥夺更具抗性,推测这是由于诸如上调Bcl-xL和生存素等促生存策略的发展。我们证明,与yHUVECs相比,mitomiR-181a、-34a和-146a在sHUVECs中过表达并定位于线粒体,并且它们:i)下调Bcl-2,ii)诱导通透性转换孔开放以及半胱天冬酶-1和3的激活,iii)影响细胞对凋亡的敏感性,iv)促进LC3-I向LC3-II的转化。总体而言,我们首次证明一些线粒体miRNA可作为多种但功能相关的生化和形态变化的介质,这些变化是衰老细胞的特征,并且它们可根据细胞的衰老状态促进不同的细胞结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cfe/6224225/6c73dee5d19e/aging-10-101591-g001.jpg

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