Triphlorethol-A from Ecklonia cava Up-Regulates the Oxidant Sensitive 8-Oxoguanine DNA Glycosylase 1

被引:10
|
作者
Kim, Ki Cheon [1 ]
Lee, In Kyung [2 ]
Kang, Kyoung Ah [1 ]
Piao, Mei Jing [1 ]
Ryu, Min Ju [3 ]
Kim, Jeong Mi [4 ]
Lee, Nam Ho [4 ]
Hyun, Jin Won [1 ]
机构
[1] Jeju Natl Univ, Sch Med, Cheju 690756, South Korea
[2] Korea Hydro & Nucl Power Co LTD, Radiat Hlth Res Inst, Radiat Effect Res Team, Seoul 135881, South Korea
[3] Duksung Womens Univ, Seoul 132714, South Korea
[4] Jeju Natl Univ, Coll Nat Sci, Dept Chem, Cheju 690756, South Korea
来源
MARINE DRUGS | 2014年 / 12卷 / 11期
关键词
antioxidant response elements; 8-oxoguanine; Nrf2; OGG1; Triphlorethol-A; BASE-EXCISION-REPAIR; OXIDATIVE STRESS; MITOCHONDRIAL-DNA; DAMAGE; 8-HYDROXYDEOXYGUANOSINE; BIOMARKER; EXPRESSION; 8-OHDG; GENE; 8-HYDROXY-2'-DEOXYGUANOSINE;
D O I
10.3390/md12115357
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
This study investigated the protective mechanisms of triphlorethol-A, isolated from Ecklonia cava, against oxidative stress-induced DNA base damage, especially 8-oxoguanine (8-oxoG), in Chinese hamster lung fibroblast V79-4 cells. 8-Oxoguanine DNA glycosylase-1 (OGG1) plays an important role in the removal of 8-oxoG during the cellular response to DNA base damage. Triphlorethol-A significantly decreased the levels of 8-oxoG induced by H2O2, and this correlated with increases in OGG1 mRNA and OGG1 protein levels. Furthermore, siOGG1-transfected cell attenuated the protective effect of triphlorethol-A against H2O2 treatment. Nuclear factor erythroid 2-related factor 2 (Nrf2) is a transcription factor for OGG1, and Nrf2 combines with small Maf proteins in the nucleus to bind to antioxidant response elements (ARE) in the upstream promoter region of the OGG1 gene. Triphlorethol-A restored the expression of nuclear Nrf2, small Maf protein, and the Nrf2-Maf complex, all of which were reduced by oxidative stress. Furthermore, triphlorethol-A increased Nrf2 binding to ARE sequences and the resulting OGG1 promoter activity, both of which were also reduced by oxidative stress. The levels of the phosphorylated forms of Akt kinase, downstream of phosphatidylinositol 3-kinase (PI3K), and Erk, which are regulators of OGG1, were sharply decreased by oxidative stress, but these decreases were prevented by triphlorethol-A. Specific PI3K, Akt, and Erk inhibitors abolished the cytoprotective effects of triphlorethol-A, suggesting that OGG1 induction by triphlorethol-A involves the PI3K/Akt and Erk pathways. Taken together, these data indicate that by activating the DNA repair system, triphlorethol-A exerts protective effects against DNA base damage induced by oxidative stress.
引用
收藏
页码:5357 / 5371
页数:15
相关论文
共 50 条
  • [21] 8-Oxoguanine DNA glycosylase 1: Beyond repair of the oxidatively modified base lesions
    Ba, Xueqing
    Boldogh, Istvan
    REDOX BIOLOGY, 2018, 14 : 669 - 678
  • [22] Small Molecule Inhibitors of 8-Oxoguanine DNA Glycosylase-1 (OGG1)
    Donley, Nathan
    Jaruga, Pawel
    Coskun, Erdem
    Dizdaroglu, Miral
    McCullough, Amanda K.
    Lloyd, R. Stephen
    ACS CHEMICAL BIOLOGY, 2015, 10 (10) : 2334 - 2343
  • [23] Induction of 8-oxoguanine DNA glycosylase 1 gene expression by HIV-1 Tat
    Okamoto, Takashi
    Imai, Kenichi
    Kasai, Hiroshi
    RETROVIROLOGY, 2005, 2 (Suppl 1)
  • [24] Induction of 8-oxoguanine DNA Glycosylase 1 Gene Expression by HIV-1 Tat
    Takashi Okamoto
    Kenichi Imai
    Hiroshi Kasai
    Retrovirology, 2
  • [25] Development of a CRISPR-Cas-Based Biosensor for Rapid and Sensitive Detection of 8-Oxoguanine DNA Glycosylase
    Zhang, Qian
    Zhao, Shuangnan
    Tian, Xiaorui
    Qiu, Jian-Ge
    Zhang, Chun-yang
    ANALYTICAL CHEMISTRY, 2022, 94 (04) : 2119 - 2125
  • [26] Effects of the stimuli-dependent enrichment of 8-oxoguanine DNA glycosylase1 on chromatinized DNA
    Hao, Wenjing
    Qi, Tianyang
    Pan, Lang
    Wang, Ruoxi
    Zhu, Bing
    Aguilera-Aguirre, Leopoldo
    Radak, Zsolt
    Hazra, Tapas K.
    Vlahopoulos, Spiros A.
    Bacsi, Attila
    Brasier, Allan R.
    Ba, Xueqing
    Boldogh, Istvan
    REDOX BIOLOGY, 2018, 18 : 43 - 53
  • [27] 8-Oxoguanine DNA glycosylase1-driven DNA repair A paradoxical role in lung aging
    German, Peter
    Saenz, David
    Szaniszlo, Peter
    Aguilera-Aguirre, Leopoldo
    Pan, Lang
    Hegde, Muralidhar L.
    Bacsi, Attila
    Hajas, Gyorgy
    Radak, Zsolt
    Ba, Xueqing
    Mitra, Sankar
    Papaconstantinou, John
    Boldogh, Istvan
    MECHANISMS OF AGEING AND DEVELOPMENT, 2017, 161 : 51 - 65
  • [28] Structural Features of the Interaction between Human 8-Oxoguanine DNA Glycosylase hOGG1 and DNA
    Koval, V. V.
    Knorre, D. G.
    Fedorova, O. S.
    ACTA NATURAE, 2014, 6 (03): : 52 - 65
  • [29] Potential Role for 8-Oxoguanine DNA Glycosylase1 in Regulating Inflammatory Responses.
    Aguilera-Aguirre, L.
    Lang, P.
    Hazra, T. K.
    Brasier, A. R.
    Sur, S.
    Ba, X.
    Boldogh, I
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2016, 57 : S55 - S55
  • [30] Mechanism of recognition and repair of damaged DNA by human 8-oxoguanine DNA glycosylase hOGG1
    Kuznetsov, N. A.
    Koval, V. V.
    Fedorova, O. S.
    BIOCHEMISTRY-MOSCOW, 2011, 76 (01) : 118 - 130