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Use of Saccharomyces cerevisiae BLYES Expressing Bacterial Bioluminescence for Rapid Sensitive Detection of Estrogenic Compounds

机译:表达细菌生物发光的酿酒酵母BLYES用于快速灵敏地检测雌激素化合物的用途

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摘要

An estrogen-inducible bacterial lux-based bioluminescent reporter was developed in Saccharomyces cerevisiae for applications in chemical sensing and environmental assessment of estrogen disruptor activity. The strain, designated S. cerevisiae BLYES, was constructed by inserting tandem estrogen response elements between divergent yeast promoters GPD and ADH1 on pUTK401 (formerly pUA12B7) that constitutively express luxA and luxB to create pUTK407. Cotransformation of this plasmid with a second plasmid (pUTK404) containing the genes required for aldehyde synthesis (luxCDE) and FMN reduction (frp) yielded a bioluminescent bioreporter responsive to estrogen-disrupting compounds. For validation purposes, results with strain BLYES were compared to the colorimetric-based estrogenic assay that uses the yeast lacZ reporter strain (YES). Strains BLYES and YES were exposed to 17β-estradiol over the concentration range of 1.2 × 10−8 through 5.6 × 10−12 M. Calculated 50% effective concentration values from the colorimetric and bioluminescence assays (n = 7) were similar at (4.4 ± 1.1) × 10−10 and (2.4 ± 1.0) × 10−10 M, respectively. The lower and upper limits of detection for each assay were also similar and were approximately 4.5 × 10−11 to 2.8 × 10−9 M. Bioluminescence was observed in as little as 1 h and reached its maximum in 6 h. In comparison, the YES assay required a minimum of 3 days for results. Strain BLYES fills the niche for rapid, high-throughput screening of estrogenic compounds and has the ability to be used for remote, near-real-time monitoring of estrogen-disrupting chemicals in the environment.
机译:在酿酒酵母中开发了一种基于雌激素的细菌基于勒克斯的生物发光报告基因,用于化学传感和雌激素干扰物活性的环境评估。通过将串联雌激素反应元件插入组成性表达luxA和luxB的pUTK401(以前称为pUA12B7)上的不同酵母启动子GPD和ADH1之间,构建了命名为S. cerevisiae BLYES的菌株。该质粒与包含醛合成(luxCDE)和FMN还原(frp)所需的基因的第二质粒(pUTK404)共转化,产生了对破坏雌激素化合物有反应的生物发光生物报告物。为了进行验证,将BLYES菌株的结果与使用酵母lacZ报告基因菌株(YES)的基于比色的雌激素测定法进行了比较。菌株BLYES和YES在1.2×10 -8 到5.6×10 −12 M的浓度范围内暴露于17β-雌二醇。计算得到的有效浓度值为50%。比色法和生物发光法(n = 7)在(4.4±1.1)×10 −10 和(2.4±1.0)×10 −10 M时分别相似。每种测定的检测下限和上限也相似,大约为4.5×10 −11 至2.8×10 −9 M。观察到的生物发光少至1小时,并在6小时内达到最大值。相比之下,YES分析至少需要3天才能得出结果。 BLYES菌株填补了快速,高通量筛选雌激素化合物的利基市场,并具有用于环境中破坏雌激素化学物质的远程,近实时监测的能力。

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