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

  1. Author:
    Giuliani, Angelica
    Cirilli, Ilenia
    Prattichizzo, Francesco
    Mensa, Emanuela
    Fulgenzi, Gianluca
    Sabbatinelli, Jacopo
    Graciotti, Laura
    Olivieri, Fabiola
    Procopio, Antonio Domenico
    Tiano, Luca
    Rippo, Maria Rita
  2. Author Address

    Univ Politecn Marche, Dept Clin & Mol Sci DISCLIMO, Ancona, Italy.Univ Politecn Marche, Dept Life & Environm Sci, Ancona, Italy.IRCCS MultiMed, Milan, Italy.NCI, Neural Dev Sect, Mouse Canc Genet Program, CCR, Frederick, MD 21702 USA.INRCA IRCCS Natl Inst, Ctr Clin Pathol & Innovat Therapy, Ancona, Italy.
    1. Year: 2018
    2. Date: OCT
    3. Epub Date: 2018 10 21
  1. Journal: Aging
  2. IMPACT JOURNALS LLC,
    1. 10
    2. 10
    3. Pages: 2855-2873
  3. Type of Article: Article
  4. ISSN: 1945-4589
  1. 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-1 beta 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.

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External Sources

  1. DOI: 10.18632/aging.101591
  2. PMID: 30348904
  3. WOS: 000451851600031

Library Notes

  1. Fiscal Year: FY2018-2019
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