Oxidative Stress-Induced miR-200c Disrupts the Regulatory Loop Among SIRT1, FOXO1, and eNOS

被引:120
|
作者
Carlomosti, Fabrizio [1 ]
D'Agostino, Marco [2 ]
Beji, Sara [1 ]
Torcinaro, Alessio [3 ,4 ]
Rizzi, Roberto [4 ]
Zaccagnini, Germana [5 ]
Maimone, Biagina [5 ]
Di Stefano, Valeria [1 ]
De Santa, Francesca [4 ,6 ]
Cordisco, Sonia [7 ]
Antonini, Annalisa [1 ]
Ciarapica, Roberta [1 ]
Dellambra, Elena [7 ]
Martelli, Fabio [5 ]
Avitabile, Daniele [8 ]
Capogrossi, Maurizio Colognesi [1 ]
Magenta, Alessandra [1 ]
机构
[1] Ist Dermopat Immacolata IRCCS, FLMM, Vasc Pathol Lab, Via Monti di Creta 104, Rome, Italy
[2] Univ Rome Sapienza, Dept Expt Med, Rome, Italy
[3] Charles Darwin Sapienza Univ, Dept Biol & Biotechnol, Rome, Italy
[4] Natl Res Council Italy, CNR, Inst Cell Biol & Neurobiol IBCN, Rome, Italy
[5] IRCCS Policlin San Donato, Mol Cardiol Lab, Milan, Italy
[6] Santa Lucia Fdn, FSL IRCCS, Rome, Italy
[7] Ist Dermopat Immacolata IRCCS, FLMM, Mol & Cell Biol Lab, Rome, Italy
[8] IRCCS, Centro Cardiol Monzino, Unita Biol Vasc & Med Rigenerat, Milan, Italy
关键词
free radicals; aging; microRNA; vascular; nitric oxide; ENDOTHELIAL NITRIC-OXIDE; VASCULAR-DISEASES; REDOX REGULATION; PEROXIREDOXIN; CELLS; HOMEOSTASIS; SYNTHASE; KERATINOCYTES; DYSFUNCTION; INHIBITION;
D O I
10.1089/ars.2016.6643
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Aims: Reactive oxygen species (ROS) play a pivotal role in different pathologic conditions, including ischemia, diabetes, and aging. We previously showed that ROS enhance miR-200c expression, causing endothelial cell (EC) apoptosis and senescence. Herein, we dissect the interaction among miR-200c and three strictly related proteins that modulate EC function and ROS production: sirtuin 1 (SIRT1), endothelial nitric oxide synthase (eNOS), and forkhead box O1 (FOXO1). Moreover, the role of miR-200c on ROS modulation was also investigated. Results: We demonstrated that miR-200c directly targets SIRT1, eNOS, and FOXO1; via this mechanism, miR-200c decreased NO and increased the acetylation of SIRT1 targets, that is, FOXO1 and p53. FOXO1 acetylation inhibited its transcriptional activity on target genes, that is, SIRT1 and the ROS scavengers, catalase and manganese superoxide dismutase. In keeping, miR-200c increased ROS production and induced p66Shc protein phosphorylation in Ser-36; this mechanism upregulated ROS and inhibited FOXO1 transcription, reinforcing this molecular circuitry. These in vitro results were validated in three in vivo models of oxidative stress, that is, human skin fibroblasts from old donors, femoral arteries from old mice, and a murine model of hindlimb ischemia. In all cases, miR-200c was higher versus control and its targets, that is, SIRT1, eNOS, and FOXO1, were downmodulated. In the mouse hindlimb ischemia model, anti-miR-200c treatment rescued these targets and improved limb perfusion. Innovation and Conclusion: miR-200c disrupts SIRT1/FOXO1/eNOS regulatory loop. This event promotes ROS production and decreases NO, contributing to endothelial dysfunction under conditions of increased oxidative stress such as aging and ischemia.
引用
收藏
页码:328 / 344
页数:17
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