Molecular Genetics Laboratory, Division of Bioscience and Biotechnology, Department of Environmental and Life Sciences, Toyohashi University of Technology, Aichi, Japan.
Yeast. 2011 Apr;28(4):265-78. doi: 10.1002/yea.1837. Epub 2011 Jan 16.
Yeast-based reporter assays are useful for detecting various genotoxic chemicals. We established a genotoxicity assay using recombinant strains of Saccharomyces cerevisiae, each containing a reporter plasmid with the secretory luciferase gene from Cypridina noctiluca, driven by a DNA damage-responsive promoter of the yeast RNR3 gene. This system detected the genotoxicity of methyl methanesulphonate (MMS) as sensitively as conventional yeast-based reporter assays, using the β-galactosidase gene in a concentration-dependent manner; it also detects four other genotoxic chemicals, allowing us to monitor DNA damage easily by skipping the cell extraction process for the assay. We examined Cypridina luciferase levels induced by MMS and three antitumour agents using a set of BY4741-derived deletion mutants, each defective in a DNA repair pathway or DNA damage checkpoint. Luciferase activities were particularly enhanced in mutant strains with mms2 Δ and mag1 Δ by exposure to MMS, rad59 Δ and mlh1 Δ to camptothecin and mms2 Δ and mlh1 Δ to mitomycin C, respectively, compared with their parent strains. Enhanced reporter activities were also found in some DNA repair mutants with cisplatin. These observations suggest that this Cypridina secretory luciferase reporter assay using yeast DNA repair mutants offers convenient and sensitive detection of the potential genotoxicity of numerous compounds, including antitumour drugs and studying the mechanisms of DNA damage response in yeast.
酵母报告基因检测法在检测各种遗传毒性化学物质方面非常有用。我们建立了一种使用重组酿酒酵母菌株的遗传毒性检测方法,每个菌株都含有一个报告质粒,该质粒由 Cypridina noctiluca 的分泌型荧光素酶基因驱动,由酵母 RNR3 基因的 DNA 损伤反应启动子控制。该系统使用β-半乳糖苷酶基因以浓度依赖的方式检测到甲基甲磺酸(MMS)的遗传毒性,与传统的酵母报告基因检测法一样敏感;它还可以检测到其他四种遗传毒性化学物质,使我们能够通过跳过检测的细胞提取过程轻松监测 DNA 损伤。我们使用一组源自 BY4741 的缺失突变体检查了 MMS 和三种抗肿瘤药物诱导的 Cypridina 荧光素酶水平,每个突变体在 DNA 修复途径或 DNA 损伤检查点都有缺陷。与亲本菌株相比,MMS 暴露后 mms2Δ 和 mag1Δ 的突变株中,荧光素酶活性特别增强;rad59Δ 和 mlh1Δ 对喜树碱,mms2Δ 和 mlh1Δ 对丝裂霉素 C 的活性增强。顺铂也会增强一些 DNA 修复突变体的报告基因活性。这些观察结果表明,使用酵母 DNA 修复突变体的这种 Cypridina 分泌型荧光素酶报告基因检测法提供了一种方便且灵敏的方法,可用于检测多种化合物的潜在遗传毒性,包括抗肿瘤药物,并研究酵母中 DNA 损伤反应的机制。