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Analysis of DNA damage and repair in Saccharomyces cerevisiae using the comet assay in the characterization of antigenotoxicity of plant extracts and phytochemicals

机译:使用彗星试验分析酿酒酵母中的DNA损伤和修复,以鉴定植物提取物和植物化学物质的抗原毒性

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摘要

In this work we used the model organism Saccharomyces cerevisiae to characterise the biological activity and the mechanism of action of phytochemicals. We have assessed DNA damage and repair using the comet assay, which displayed a dose-response relationship with different DNA-damaging agents. Subsequently, we used this system to assess the antigenotoxic properties of a leaf extract from Ginkgo biloba (GBE). Experiments involved incubation of yeast cells, or spheroplasts, with GBE before and during oxidative shock with hydrogen peroxide. Our results show that DNA damage was significantly decreased upon GBE treatment in a dose-dependent manner. In addition, DNA repair kinetics was significantly improved in cells incubated with GBE. However, in the mutant strain affected in a DNA ligase involved in the mechanisms of nucleotide excision repair and base excision repair, oxidative DNA damage repair kinetics was unchanged with GBE, suggesting that the activity of this extract involves one of these mechanisms, or both. Hydrogen peroxide-induced cell cycle arrest in G2 was abolished when cells were incubated with GBE after oxidative shock, suggesting that the improved repair kinetics allows progression of the cell cycle and/or GBE can have a direct effect on its regulation. As expected, GBE treatment improved survival of yeast cells when challenged with oxidative shock with H2O2 and intracellular oxidation was decreased upon pre-treatment with GBE as revealed by flow cytometry.
机译:在这项工作中,我们使用了酿酒酵母模型生物来表征其生物活性和植物化学物质的作用机理。我们使用彗星试验评估了DNA的损伤和修复,该试验显示了与不同DNA损伤剂的剂量反应关系。随后,我们使用该系统评估银杏叶提取物(GBE)的抗原毒性。实验涉及在用过氧化氢氧化休克之前和之中,用GBE孵育酵母细胞或原生质球。我们的结果表明,GBE处理后,DNA损伤以剂量依赖性方式显着降低。此外,在与GBE孵育的细胞中,DNA修复动力学得到显着改善。然而,在涉及核苷酸切除修复和碱基切除修复机制的DNA连接酶中受影响的突变菌株中,氧化DNA损伤修复动力学与GBE无关,这表明该提取物的活性涉及这些机制之一,或两者兼而有之。当细胞在氧化休克后与GBE一起孵育时,G2中过氧化氢诱导的细胞周期停滞被消除,这表明改善的修复动力学使细胞周期得以发展和/或GBE对其调节具有直接影响。如预期的那样,当用H2O2进行氧化性休克攻击时,GBE处理可改善酵母细胞的存活率,而用GBE预处理后,如流式细胞仪所揭示的,细胞内氧化减少。

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