首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Measurement of 78-dihydro-8-oxo-2′-deoxyguanosine metabolism in MCF-7 cells at low concentrations using accelerator mass spectrometry
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From the Cover: Measurement of 78-dihydro-8-oxo-2′-deoxyguanosine metabolism in MCF-7 cells at low concentrations using accelerator mass spectrometry

机译:从封面开始:使用加速器质谱法在低浓度下测量MCF-7细胞中的78-二氢-8-氧代2-脱氧鸟苷代谢

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摘要

Growing evidence suggests that oxidative damage to cells generates mutagenic 7,8-dihydro-8-oxo-2′-deoxyguanosine (8-oxodG), which may initiate diseases related to aging and carcinogenesis. Kinetic measurement of 8-oxodG metabolism and repair in cells has been hampered by poor assay sensitivity and by difficulty characterizing the flux of oxidized nucleotides through the relevant metabolic pathways. We report here the development of a sensitive and quantitative approach to characterizing the kinetics and metabolic sources of 8-oxodG in MCF-7 human breast cancer cells by accelerator mass spectrometry. We observed that [14C]8-oxodG at medium concentrations of up to 2 pmol/ml was taken up by MCF-7 cells, phosphorylated to mono-, di-, and triphosphate derivatives, and incorporated into DNA. Oxidative stress caused by exposure of the cells to 17β-estradiol resulted in a reduction in the rate of [14C]8-oxodG incorporation into DNA and an increase in the ratio of 8-oxodG monophosphate (8-oxodGMP) to 8-oxodG triphosphate (8-oxodGTP) in the nucleotide pool. 17β-Estradiol-induced oxidative stress up-regulated the nucleotide pool cleansing enzyme MTH1 and possibly other Nudix-related pyrophosphohydrolases. These data support the conclusion that 8-oxodGTP is formed in the nucleotide pool by both 8-oxodG metabolism and endogenous reactive oxygen species. The metabolism of 8-oxodG to 8-oxodGTP, followed by incorporation into DNA is a mechanism by which the cellular presence of this oxidized nucleoside can lead to mutations.
机译:越来越多的证据表明,对细胞的氧化损伤会产生诱变的7,8-二氢-8-oxo-2'-脱氧鸟苷(8-oxodG),这可能引发与衰老和癌变有关的疾病。较差的测定灵敏度和难以表征通过相关代谢途径的氧化核苷酸通量,阻碍了细胞中8-oxodG代谢和修复的动力学测量。我们在这里报告了通过加速器质谱法表征MCF-7人乳腺癌细胞中8-oxodG动力学和代谢来源的灵敏和定量方法的发展。我们观察到MCF-7细胞吸收了浓度高达2 pmol / ml的[ 14 C] 8-oxodG,并被磷酸化为单磷酸,二磷酸和三磷酸衍生物,并掺入脱氧核糖核酸。细胞暴露于17β-雌二醇引起的氧化应激导致[ 14 C] 8-oxodG掺入DNA的速率降低,以及8-oxodG单磷酸酯的比例增加(8 -oxodGMP)转换为核苷酸库中的8-oxodG三磷酸(8-oxodGTP)。 17β-雌二醇诱导的氧化应激上调了核苷酸池清洁酶MTH1以及其他与Nudix相关的焦磷酸水解酶的水平。这些数据支持了8-oxodG代谢和内源性活性氧都在核苷酸库中形成8-oxodGTP的结论。从8-oxodG代谢为8-oxodGTP,然后掺入DNA是一种机制,通过该机制该氧化核苷的细胞存在可导致突变。

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