4.3 Article

A novel fine tuning scheme of miR-200c in modulating lung cell redox homeostasis

期刊

FREE RADICAL RESEARCH
卷 51, 期 6, 页码 591-603

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/10715762.2017.1339871

关键词

H2O2; HO-1; ERK5; SIRT1; SOD2; antioxidant response

资金

  1. Chang Gung University [BMRP098, CMRPD1F0461, CMRPD1C0773, CMRPD3D0161, CMRPD3D0162]
  2. Ministry of Science and Technology of Taiwan [MOST103-2320-B-182-026-MY2, MOST105-2320-B-182-031-MY2]
  3. Ministry of Education of Taiwan [EMRPD1G0181]

向作者/读者索取更多资源

Oxidative stress induces miR-200c, the predominant microRNA (miRNA) in lung tissues; however, the antioxidant role and biochemistry of such induction have not been clearly defined. Therefore, a lung adenocarcinoma cell line (A549) and a normal lung fibroblast (MRC-5) were used as models to determine the effects of miR-200c expression on lung antioxidant response. Hydrogen peroxide (H2O2) upregulated miR-200c, whose overexpression exacerbated the decrease in cell proliferation, retarded the progression of cells in the G2/M-phase, and increased oxidative stress upon H2O2 stimulation. The expression of three antioxidant proteins, superoxide dismutase (SOD)-2, haem oxygenase (HO)-1, and sirtuin (SIRT) 1, was reduced upon H2O2 stimulation in miR-200c-overexpressed A549 cells. This phenomenon of increased oxidative stress and antioxidant protein downregulation also occurs simultaneously in miR-200c overexpressed MRC-5 cells. Molecular analysis revealed that miR-200c inhibited the gene expression of HO-1 by directly targeting its 3-untranslated region. The downregulation of SOD2 and SIRT1 by miR-200c was mediated through zinc finger E-box-binding homeobox 2 (ZEB2) and extracellular signal-regulated kinase 5 (ERK5) pathways, respectively, where knockdown of ZEB2 or ERK5 decreased the expression of SOD2 or SIRT1 in A549 cells. LNA anti-miR-200c transfection in A549 cells inhibited the endogenous miR-200c expression, resulting in increased expressions of antioxidant proteins, reduced oxidative stress and recovered cell proliferation upon H2O2 stimulation. These findings indicate that miR-200c fine-tuned the antioxidant response of the lung cells to oxidative stress through several pathways, and thus this study provides novel information concerning the role of miR-200c in modulating redox homeostasis of lung.

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