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外源性8-氧代脱氧鸟苷不用于核苷酸合成,而是通过易出错的DNA合成增加DNA中8-氧代鸟嘌呤的积累。

Exogenous 8-oxo-dG is not utilized for nucleotide synthesis but enhances the accumulation of 8-oxo-Gua in DNA through error-prone DNA synthesis.

作者信息

Kim Ja-Eun, Hyun Jin-Won, Hayakawa Hiroshi, Choi Seongwon, Choi Jinhee, Chung Myung-Hee

机构信息

Department of Pharmacology, Seoul National University College of Medicine, 28 Yongon-dong, Chongno-gu, Seoul 110-799, Republic of Korea.

出版信息

Mutat Res. 2006 Apr 11;596(1-2):128-36. doi: 10.1016/j.mrfmmm.2005.12.004. Epub 2006 Feb 10.

Abstract

7,8-Dihydro-8-oxoguanine (8-oxo-Gua) and its nucleoside in cytosol are derived from the repair of oxidative DNA and the cleanup of oxidatively damaged DNA precursors, respectively. While the harmful effects of 8-oxo-Gua present in DNA have been studied extensively, few have reported its effects on cytosolic function. Our previous study showed that the addition of 8-oxo-dG to culture media caused an accumulation of 8-oxo-Gua in nuclear DNA in several leukemic cells including KG-1, which lack 8-oxoguanine glycosylase 1 (OGG1) activity due to mutational loss. However, the mechanism underlying 8-oxo-Gua level increases in DNA has not been addressed. In this study, we elucidated the metabolic fate of 8-oxo-Gua-containing nucleotide and the effect of exogenous 8-oxo-dG on DNA synthesis in KG-1 cells. We found that 8-oxo-dGMP was rapidly dephosphorylated to 8-oxo-dG rather than phosphorylated to 8-oxo-dGDP, thus indicating that 8-oxo-Gua-containing molecule is not used as a substrate for DNA synthesis in KG-1 cells. In fact, radiolabeled 8-oxo-dG was incubated but radioactivity was not detected in nuclear DNA of KG-1 cells, showing that 8-oxo-dG is not directly incorporated into DNA. Interestingly, the activity of DNA polymerase beta, which synthesize DNA with low fidelity increased in KG-1 cells treated with 8-oxo-dG, whereas the expression of DNA polymerase alpha decreased. In addition, the accumulation of 8-oxo-Gua in KG-1 DNA was completely inhibited by a specific inhibitor of DNA polymerase beta. Thus, our findings address that the insertion of 8-oxo-dG into KG-1 DNA is not due to the direct incorporation of exogenous 8-oxo-dG, but rather to the inaccurate incorporation of endogenous 8-oxo-dGTP by DNA polymerase beta. It further suggests that 8-oxo-dG in the cytosol may function as an active molecule itself and perturb the well-defined DNA synthesis.

摘要

胞质溶胶中的7,8 - 二氢 - 8 - 氧代鸟嘌呤(8 - oxo - Gua)及其核苷分别来源于氧化性DNA的修复和氧化性损伤DNA前体的清除。虽然DNA中存在的8 - oxo - Gua的有害影响已得到广泛研究,但很少有报道其对胞质溶胶功能的影响。我们之前的研究表明,向培养基中添加8 - oxo - dG会导致包括KG - 1在内的几种白血病细胞核DNA中8 - oxo - Gua的积累,由于突变缺失,这些细胞缺乏8 - 氧代鸟嘌呤糖基化酶1(OGG1)活性。然而,DNA中8 - oxo - Gua水平升高的潜在机制尚未得到阐明。在本研究中,我们阐明了含8 - oxo - Gua核苷酸的代谢命运以及外源性8 - oxo - dG对KG - 1细胞DNA合成的影响。我们发现8 - oxo - dGMP迅速去磷酸化为8 - oxo - dG,而不是磷酸化为8 - oxo - dGDP,因此表明含8 - oxo - Gua的分子在KG - 1细胞中不作为DNA合成的底物。事实上,对放射性标记的8 - oxo - dG进行孵育,但在KG - 1细胞的核DNA中未检测到放射性,表明8 - oxo - dG未直接掺入DNA。有趣的是,在用8 - oxo - dG处理的KG - 1细胞中,以低保真度合成DNA的DNA聚合酶β的活性增加,而DNA聚合酶α的表达下降。此外,DNA聚合酶β的特异性抑制剂完全抑制了KG - 1 DNA中8 - oxo - Gua的积累。因此,我们的研究结果表明,8 - oxo - dG插入KG - 1 DNA不是由于外源性8 - oxo - dG的直接掺入,而是由于DNA聚合酶β对内源性8 - oxo - dGTP的错误掺入。这进一步表明,胞质溶胶中的8 - oxo - dG本身可能作为一种活性分子发挥作用,并扰乱明确的DNA合成。

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