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Direct evidence revealing structural elements essential for the high binding ability of bisphenol A to human estrogen-related receptor-gamma.

机译:直接证据揭示了双酚A与人雌激素相关受体-γ的高结合能力必不可少的结构元素。

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BACKGROUND: Various lines of evidence have shown that bisphenol A [BPA; HO-C6H4-C(CH3)2-C6H4-OH] acts as an endocrine disruptor when present in very low doses. We have recently demonstrated that BPA binds strongly to human estrogen-related receptor-gamma (ERR-gamma ) in a binding assay using [3H]4-hydroxytamoxifen ([3H]4-OHT). We also demonstrated that BPA inhibits the deactivation activity of 4-OHT. OBJECTIVES: In the present study, we intended to obtain direct evidence that BPA interacts with ERR-gamma as a strong binder, and also to clarify the structural requirements of BPA for its binding to ERR-gamma. METHODS: We examined [3H]BPA in the saturation binding assay using the ligand binding domain of ERR-gamma and analyzed the result using Scatchard plot analysis. A number of BPA derivatives were tested in the competitive binding assay using [3H]BPA as a tracer and in the luciferase reporter gene assay. RESULTS: [3H]BPA showed a KD of 5.50 nM at a Bmax of 14.4 nmol/mg. When we examined BPA derivativesto evaluate the structural essentials required for the binding of BPA to ERR-gamma , we found that only one of the two phenol-hydroxyl groups was essential for the full binding. The maximal activity was attained when one of the methyl groups was removed. All of the potent BPA derivatives retained a high constitutive basal activity of ERR-gamma in the luciferase reporter gene assay and exhibited a distinct inhibitory activity against 4-OHT. CONCLUSION: These results indicate that the phenol derivatives are potent candidates for the endocrine disruptor that binds to ERR-gamma.
机译:背景:各种证据表明双酚A [BPA;当以非常低的剂量存在时,HO-C6H4-C(CH3)2-C6H4-OH]充当内分泌干扰物。我们最近证明,在使用[3H] 4-羟基他莫昔芬([3H] 4-OHT)的结合测定中,BPA与人雌激素相关受体-γ(ERR-γ)牢固结合。我们还证明了BPA抑制4-OHT的失活活性。目的:在本研究中,我们旨在获得直接的证据,证明BPA与ERR-γ作为强结合剂相互作用,并且阐明BPA与ERR-γ结合的结构要求。方法:我们使用ERR-γ的配体结合域在饱和结合测定中检查了[3H] BPA,并使用Scatchard图分析分析了结果。使用[3H] BPA作为示踪剂,在竞争结合试验中和荧光素酶报道基因试验中测试了许多BPA衍生物。结果:[3H] BPA的KD为5.50 nM,Bmax为14.4 nmol / mg。当我们检查BPA衍生物以评估BPA与ERR-γ结合所需的结构要点时,我们发现两个酚羟基中只有一个对完全结合至关重要。当甲基之一被除去时,获得最大的活性。在荧光素酶报告基因测定中,所有有效的BPA衍生物均保留了ERR-γ的高组成型基础活性,并表现出对4-OHT的独特抑制活性。结论:这些结果表明酚衍生物是与ERR-γ结合的内分泌干扰物的有效候选者。

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