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Direct Determination of Estrogenic and Antiestrogenic Activities Using an Enhanced Plant Two-Hybrid System

机译:使用增强的植物两杂化系统直接测定雌激素和抗雌激素活性

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This paper reports a simple, low-cost, and extremely sensitive reporter-gene assay system for comprehensive analysis of estrogenic activity using transgenic Arabidopsis thaliana: the EPTH system. It had the capability to detect 17 beta-estradiol at a concentration of 10 pM. The system was rendered 5 times more sensitive than a previous system [Tojo, T.;Tsuda, K.Wada, T.; Yamazaki, K. Ecotoxicol. Environ. Saf. 2006, 64, 106-114) (1)] by increasing the copy number of the transactivation domain fused to a nuclear receptor co-activator. The system can efficiently detect other estrogenic and antiestrogenic substances. Estrogenic activities were determined in treated sewage samples from four distinct sewage farms using the system. Results showed that the system can detect estrogenic activity directly and more efficiently than a yeast two-hybrid system without any manipulation for extraction and condensation of hydrophobic compounds and aseptic treatment. Furthermore, the system also is useful as a powerful tool for discovery of a new category of natural estrogenic substances that are undetectable by previous plant and yeast systems.
机译:本文报道了一种简单,低成本且极其敏感的报告基因检测系统,该系统可利用转基因拟南芥(EPTH)系统对雌激素活性进行全面分析。它具有检测浓度为10 pM的17种β-雌二醇的能力。该系统的敏感度是以前系统的5倍[Tojo,T.; Tsuda,K.Wada,T .; Yamazaki,K。Ecotoxicol。环境。 Saf。 [2006,64,106-114)(1)]中增加与核受体共激活因子融合的反式激活域的拷贝数。该系统可以有效地检测其他雌激素和抗雌激素物质。使用该系统测定了四个不同污水处理场的处理过的污水样品中的雌激素活性。结果表明,该系统比酵母双杂交系统更直接,更有效地检测雌激素活性,而无需进行疏水化合物的提取和缩合以及无菌处理的任何操作。此外,该系统还可用作发现以前植物和酵母系统无法检测到的新型天然雌激素物质的有力工具。

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