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基于草甘膦的除草剂成分对雌激素受体α激活作用的评估。

Evaluation of estrogen receptor alpha activation by glyphosate-based herbicide constituents.

作者信息

Mesnage Robin, Phedonos Alexia, Biserni Martina, Arno Matthew, Balu Sucharitha, Corton J Christopher, Ugarte Ricardo, Antoniou Michael N

机构信息

Gene Expression and Therapy Group, King's College London, Faculty of Life Sciences & Medicine, Department of Medical and Molecular Genetics, 8th Floor, Tower Wing, Guy's Hospital, Great Maze Pond, London SE1 9RT, United Kingdom.

Genomics Centre, King's College London, Waterloo Campus, 150 Stamford Street, London SE1 9NH, United Kingdom.

出版信息

Food Chem Toxicol. 2017 Oct;108(Pt A):30-42. doi: 10.1016/j.fct.2017.07.025. Epub 2017 Jul 12.

Abstract

The safety, including the endocrine disruptive capability, of glyphosate-based herbicides (GBHs) is a matter of intense debate. We evaluated the estrogenic potential of glyphosate, commercial GBHs and polyethoxylated tallowamine adjuvants present as co-formulants in GBHs. Glyphosate (≥10,000 μg/L or 59 μM) promoted proliferation of estrogen-dependent MCF-7 human breast cancer cells. Glyphosate also increased the expression of an estrogen response element-luciferase reporter gene (ERE-luc) in T47D-KBluc cells, which was blocked by the estrogen antagonist ICI 182,780. Commercial GBH formulations or their adjuvants alone did not exhibit estrogenic effects in either assay. Transcriptomics analysis of MCF-7 cells treated with glyphosate revealed changes in gene expression reflective of hormone-induced cell proliferation but did not overlap with an ERα gene expression biomarker. Calculation of glyphosate binding energy to ERα predicts a weak and unstable interaction (-4.10 kcal mol) compared to estradiol (-25.79 kcal mol), which suggests that activation of this receptor by glyphosate is via a ligand-independent mechanism. Induction of ERE-luc expression by the PKA signalling activator IBMX shows that ERE-luc is responsive to ligand-independent activation, suggesting a possible mechanism of glyphosate-mediated activation. Our study reveals that glyphosate, but not other components present in GBHs, can activate ERα in vitro, albeit at relatively high concentrations.

摘要

草甘膦基除草剂(GBHs)的安全性,包括其内分泌干扰能力,是一个激烈争论的话题。我们评估了草甘膦、市售GBHs以及作为GBHs共配方成分的聚乙氧基化牛脂胺佐剂的雌激素潜力。草甘膦(≥10,000μg/L或59μM)促进了雌激素依赖性MCF-7人乳腺癌细胞的增殖。草甘膦还增加了T47D-KBluc细胞中雌激素反应元件 - 荧光素酶报告基因(ERE-luc)的表达,这被雌激素拮抗剂ICI 182,780所阻断。单独的市售GBH制剂或其佐剂在任何一种检测中均未表现出雌激素效应。对用草甘膦处理的MCF-7细胞进行转录组学分析,揭示了反映激素诱导细胞增殖的基因表达变化,但与ERα基因表达生物标志物没有重叠。与雌二醇(-25.79 kcal mol)相比,计算得出草甘膦与ERα的结合能预测其相互作用较弱且不稳定(-4.10 kcal mol),这表明草甘膦对该受体的激活是通过非配体依赖性机制。PKA信号激活剂IBMX对ERE-luc表达的诱导表明ERE-luc对非配体依赖性激活有反应,提示了草甘膦介导激活的一种可能机制。我们的研究表明,草甘膦而非GBHs中的其他成分可在体外激活ERα,尽管浓度相对较高。

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