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Estrogen-Like Activity of Perfluoroalkyl Acids In Vivo and Interaction with Human and Rainbow Trout Estrogen Receptors In Vitro

机译:全氟烷基酸的体内类似于雌激素的活性以及与人和虹鳟鱼雌激素受体的相互作用

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摘要

The objectives of this study were to determine the structural characteristics of perfluoroalkyl acids (PFAAs) that confer estrogen-like activity in vivo using juvenile rainbow trout (Oncorhynchus mykiss) as an animal model and to determine whether these chemicals interact directly with the estrogen receptor (ER) using in vitro and in silico species comparison approaches. Perfluorooctanoic (PFOA), perfluorononanoic (PFNA), perfluorodecanoic (PFDA), and perfluoroundecanoic (PFUnDA) acids were all potent inducers of the estrogen-responsive biomarker protein vitellogenin (Vtg) in vivo, although at fairly high dietary exposures. A structure-activity relationship for PFAAs was observed, where eight to ten fluorinated carbons and a carboxylic acid end group were optimal for maximal Vtg induction. These in vivo findings were corroborated by in vitro mechanistic assays for trout and human ER. All PFAAs tested weakly bound to trout liver ER with half maximal inhibitory concentration (IC50) values of 15.2-289μM. Additionally, PFOA, PFNA, PFDA, PFUnDA, and perlfuorooctane sulfonate (PFOS) significantly enhanced human ERα-dependent transcriptional activation at concentrations ranging from 10-1000nM. Finally, we employed an in silico computational model based upon the crystal structure for the human ERα ligand-binding domain complexed with E2 to structurally investigate binding of these putative ligands to human, mouse, and trout ERα. PFOA, PFNA, PFDA, and PFOS all efficiently docked with ERα from different species and formed a hydrogen bond at residue Arg394/398/407 (human/mouse/trout) in a manner similar to the environmental estrogens bisphenol A and nonylphenol. Overall, these data support the contention that several PFAAs are weak environmental xenoestrogens of potential concern
机译:这项研究的目的是确定使用幼稚虹鳟鱼(Oncorhynchus mykiss)作为动物模型的全氟烷基酸(PFAA)的结构特征,从而在体内赋予类似雌激素的活性,并确定这些化学物质是否直接与雌激素受体相互作用( ER)使用体外和计算机模拟物种比较方法。全氟辛酸(PFOA),全氟壬酸(PFNA),全氟癸酸(PFDA)和全氟十一烷酸(PFUnDA)都是体内雌激素反应性生物标记蛋白卵黄蛋白原(Vtg)的有效诱导剂,尽管饮食中摄入量相当高。观察到PFAA的结构-活性关系,其中八到十个氟化碳和一个羧酸端基对于最大的Vtg诱导是最佳的。这些体内发现被鳟鱼和人ER的体外机制分析所证实。所有测试的PFAAs均与鳟鱼肝脏ER弱结合,最大抑制浓度(IC50)值的一半为15.2-289μM。此外,PFOA,PFNA,PFDA,PFUnDA和全氟辛烷磺酸盐(PFOS)在10-1000nM的浓度范围内可显着增强人类ERα依赖性转录激活。最后,我们基于与E2结合的人ERα配体结合域的晶体结构,采用了计算机模拟模型,以结构研究这些推定的配体与人,小鼠和鳟鱼ERα的结合。 PFOA,PFNA,PFDA和PFOS都与不同物种的ERα有效对接,并以类似于环境雌激素双酚A和壬基酚的方式在残基Arg394 / 398/407(人/小鼠/鳟鱼)上形成氢键。总体而言,这些数据支持以下观点:几种PFAA是潜在关注的弱环境异雌激素

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