Kudo Yumiko, Yamauchi Kiyoshi, Fukazawa Hitoshi, Terao Yoshiyasu
Department of Biology, Faculty of Science, Shizuoka University, 836 Ohya, Shizuoka 422-8529, Japan.
Toxicol Sci. 2006 Jul;92(1):87-95. doi: 10.1093/toxsci/kfj204. Epub 2006 Apr 20.
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.
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。