首页> 外文期刊>Journal of cellular biochemistry. >Establishment of a transgenic yeast screening system for estrogenicity and identification of the anti-estrogenic activity of malachite green.
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Establishment of a transgenic yeast screening system for estrogenicity and identification of the anti-estrogenic activity of malachite green.

机译:建立用于雌激素的转基因酵母筛选系统并鉴定孔雀石绿的抗雌激素活性。

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摘要

Endocrine disruptors refer to chemical compounds in the environment which interfere with the endocrine systems of organisms. Among them, environmental estrogens pose serious problems to aquatic organisms, in particular fish. It is therefore important and necessary to have a fast and low-cost system to screen the large number of different chemical compounds in the aquatic environment for their potential endocrine disrupting actions. In this study, a screening platform was developed to detect xenoestrogens in the aquatic environment using the fission yeast Schizosaccharomyces pombe, and applied for compound screening. The aim was to demonstrate any significant potential differences between the fish screening system and the human screening system. To this end, a yeast expression vector harboring a fish estrogen receptor alpha and a reporter vector containing the estrogen responsive element fused with the Escherichia coli LacZ gene were constructed. After transformation with these two vectors, the transformed yeast clones were confirmed by Western blotting and selected on the basis of the beta-galactosidase activity. In this transgenic yeast system, the natural estrogen (estradiol) and other known xenoestrogens such as diethylstilbestrol, bisphenol A, genistein and dichloro-diphenyl-trichloroethane exhibited dose-dependent activities. Using this system, more than 40 putative endocrine disruptors including phytoestrogens, pesticides, herbicides, industrial dyes and other industrial chemicals were screened. Ten of them were demonstrated to exhibit estrogenic actions. Industrial dyes such as malachite green (MG) that disrupt thyroid hormone synthesis are extensively used and are widely distributed in the aquatic environment. Using this system, MG did not show any estrogenic action, but was demonstrated to exhibit anti-estrogenic activity.
机译:内分泌干​​扰物是指环境中干扰生物体内分泌系统的化合物。其中,环境雌激素对水生生物特别是鱼类构成严重问题。因此,重要的和必要的是有一个快速而低成本的系统来筛查水生环境中的大量不同化合物的潜在内分泌干扰作用。在这项研究中,使用裂变酵母粟酒裂殖酵母(Schizosaccharomyces pombe)开发了一种筛选平台,以检测水生环境中的异雌激素,并将其用于化合物筛选。目的是证明鱼筛查系统和人类筛查系统之间的任何重大潜在差异。为此,构建了具有鱼雌激素受体α的酵母表达载体和包含与大肠杆菌LacZ基因融合的雌激素响应性元件的报告载体。用这两种载体转化后,通过Western印迹确认转化的酵母克隆,并根据β-半乳糖苷酶活性进行选择。在这种转基因酵母系统中,天然雌激素(雌二醇)和其他已知的异雌激素,如己烯雌酚,双酚A,染料木黄酮和二氯二苯基三氯乙烷均表现出剂量依赖性。使用该系统,筛选了40多种推定的内分泌干扰物,包括植物雌激素,农药,除草剂,工业染料和其他工业化学品。其中十个被证明具有雌激素作用。破坏甲状腺激素合成的工业染料,如孔雀石绿(MG)被广泛使用,并广泛分布在水生环境中。使用该系统,MG没有显示任何雌激素作用,但是被证明具有抗雌激素活性。

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