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Genotoxicity of Chemical Compounds Identification and Assessment by Yeast Cells Transformed With GFP Reporter Constructs Regulated by the PLM2 or DIN7 Promoter

机译:通过PLM2或DIN7启动子调控的GFP报告基因构建体转化的酵母细胞对化合物的遗传毒性进行鉴定和评估

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Yeast cells transformed with high-copy number plasmids comprising a green fluorescent protein (GFP)-encoding gene optimized for yeast under the control of the new DIN7 or PLM2 and the established RNR2 and RAD54 promoters were used to assess the genotoxic potential of chemical compounds. The activity of potential DNA-damaging agents was investigated by genotoxicity assays and by OxoPlate assay in the presence of various test compounds. The fluorescence signal generated by GFP in response to DNA damage was related to the different concentrations of analytes and the analyte-dependent GFP synthesis. The use of distinct DNA damage-inducible promoters presents alternative genotoxicity testing strategies by selective induction of promoters in response to DNA damage. The new DIN7 and PLM2 systems show higher sensitivity than the RNR2 and RAD54 systems in detecting 4-nitroquinoline-N-oxide and actinomycin D. Both DIN7 and PLM2 systems are able to detect camptothecin while RNR2 and RAD54 systems are not. Automated laboratory systems with assay performance on 384-well microplates provide for cost-effective high-throughput screening of DNA-damaging agents, reducing compound consumption to about 53% as compared with existing eukaryotic genotoxicity bioassays.
机译:在新的DIN7或PLM2以及已建立的RNR2和RAD54启动子的控制下,用高拷贝数质粒转化的酵母细胞进行了优化,该质粒包含针对酵母优化的绿色荧光蛋白(GFP)编码基因,用于评估化合物的遗传毒性。在多种测试化合物的存在下,通过基因毒性试验和OxoPlate试验研究了潜在的DNA破坏剂的活性。 GFP响应DNA损伤而产生的荧光信号与不同浓度的分析物和依赖于分析物的GFP合成有关。通过响应DNA损伤选择性诱导启动子,使用独特的DNA损伤诱导型启动子提供了替代的遗传毒性测试策略。新的DIN7和PLM2系统在检测4-硝基喹啉-N-氧化物和放线菌素D方面显示出比RNR2和RAD54系统更高的灵敏度。DIN7和PLM2系统都能够检测喜树碱,而RNR2和RAD54系统则不能。在384孔微孔板上具有检测性能的自动化实验室系统可提供经济高效的高通量筛选DNA破坏剂的方法,与现有的真核生物遗传毒性生物检测方法相比,可将化合物消耗降低至约53%。

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