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非洲爪蟾中溴化酚类和苯酚类化合物对甲状腺系统干扰活性的体外和体内分析

In vitro and in vivo analysis of the thyroid system-disrupting activities of brominated phenolic and phenol compounds in Xenopus laevis.

作者信息

Kudo Yumiko, Yamauchi Kiyoshi, Fukazawa Hitoshi, Terao Yoshiyasu

机构信息

Department of Biology, Faculty of Science, Shizuoka University, 836 Ohya, Shizuoka 422-8529, Japan.

出版信息

Toxicol Sci. 2006 Jul;92(1):87-95. doi: 10.1093/toxsci/kfj204. Epub 2006 Apr 20.

Abstract

We investigated the effects of the brominated phenolic and phenol compounds, some of which are brominated flame retardants, on the binding of (125)I-3,3',5-L-triiodothyronine ((125)I-T(3)) to purified Xenopus laevis transthyretin (xTTR) and to the ligand-binding domain of X. laevis thyroid hormone receptor beta (xTR LBD), on the induction of a T(3)-responsive reporter gene in a recombinant X. laevis cell line (XL58-TRE-Luc) and on T(3)-induced or spontaneous metamorphosis in X. laevis tadpoles. Of the brominated phenolic and phenol compounds tested, 3,3',5-tribromobisphenol A and 3,3'-dibromobisphenol A were the most potent competitors of (125)I-T(3) binding to xTTR and the xTR LBD, respectively. Structures with a bromine in either ortho positions with respect to the hydroxy group competed more efficiently with T(3) binding to xTTR and the xTR LBD. 3,3',5-Tribromobisphenol A and 3,3',5,5'-tetrabromobisphenol A, at 0.1-1.0 microM, exerted both T(3) agonist and antagonist activities in the T(3)-responsive reporter gene assay. Sera obtained from fetal bovine and bullfrog tadpoles weakened the T(3) agonist and antagonist activities of 3,3',5-tribromobisphenol A, but not the T(3) antagonist activity of o-t-butylphenol, for which xTTR has no significant affinity. The T(3) agonist and antagonist activities of 0.5 microM 3,3',5-tribromobisphenol A were confirmed in the in vivo, short-term gene expression assay in premetamorphic X. laevis tadpoles using endogenous, T(3)-responsive genes as molecular markers. Our results suggest that 3,3',5-tribromobisphenol A affects T(3) binding to xTTR and xTR and that it interferes with the intracellular T(3) signaling pathway.

摘要

我们研究了一些溴化酚类和酚类化合物(其中一些是溴化阻燃剂)对(125)I - 3,3',5 - L - 三碘甲状腺原氨酸((125)I - T3)与纯化的非洲爪蟾转甲状腺素蛋白(xTTR)以及非洲爪蟾甲状腺激素受体β的配体结合结构域(xTR LBD)结合的影响,对重组非洲爪蟾细胞系(XL58 - TRE - Luc)中T3反应性报告基因诱导的影响,以及对非洲爪蟾蝌蚪中T3诱导或自发变态的影响。在所测试的溴化酚类和酚类化合物中,3,3',5 - 三溴双酚A和3,3' - 二溴双酚A分别是(125)I - T3与xTTR和xTR LBD结合的最有效竞争者。相对于羟基,在邻位带有溴的结构与T3与xTTR和xTR LBD的结合竞争更有效。在T3反应性报告基因测定中,0.1 - 1.0微摩尔的3,3',5 - 三溴双酚A和3,3',5,5' - 四溴双酚A表现出T3激动剂和拮抗剂活性。从胎牛和牛蛙蝌蚪获得的血清减弱了3,3',5 - 三溴双酚A的T3激动剂和拮抗剂活性,但没有减弱邻叔丁基苯酚的T3拮抗剂活性,对于邻叔丁基苯酚,xTTR没有显著亲和力。在体内短期基因表达测定中,使用内源性T3反应性基因作为分子标记,在变态前的非洲爪蟾蝌蚪中证实了0.5微摩尔3,3',5 - 三溴双酚A的T3激动剂和拮抗剂活性。我们的结果表明,3,3',5 - 三溴双酚A影响T3与xTTR和xTR的结合,并干扰细胞内T3信号通路。

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