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Receptor binding characteristics of the endocrine disruptor bisphenol A for the human nuclear estrogen-related receptor gamma

机译:内分泌干​​扰物双酚A对人核雌激素相关受体γ的受体结合特性

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Bisphenol A, 2,2-bis(4-hydroxyphenyl)propane, is an estrogenic endocrine disruptor that influences various physiological functions at very low doses, even though bisphenol A itself is ineffectual as a ligand for the estrogen receptor. We recently demonstrated that bisphenol A binds strongly to human estrogen-related receptor gamma, one of 48 human nuclear receptors. Bisphenol A functions as an inverse antagonist of estrogen-related receptor gamma to sustain the high basal constitutive activity of the latter and to reverse the deactivating inverse agonist activity of 4-hydroxytamoxifen. However, the intrinsic binding mode of bisphenol A remains to be clarified. In the present study, we report the binding potentials between the phenol-hydroxyl group of bisphenol A and estrogen-related receptor gamma residues Glu275 and Arg316 in the ligand-binding domain. By inducing mutations in other amino acids, we evaluated the change in receptor binding capability of bisphenol A. Wild-type estrogen-related receptor gamma-ligand-binding domain showed a strong binding ability (K-D = 5.70 nM) for tritium-labeled [H-3]bisphenol A. Simultaneous mutation to Ala at positions 275 and 316 resulted in an absolute inability to capture bisphenol A. However, individual substitutions revealed different degrees in activity reduction, indicating the chief importance of phenol-hydroxyl <-> Arg316 hydrogen bonding and the corroborative role of phenol-hydroxyl <-> Glu275 hydrogen bonding. The data obtained with other characteristic mutations suggested that these hydrogen bonds are conducive to the recruitment of phenol compounds by estrogen-related receptor gamma. These results clearly indicate that estrogen-related receptor gamma forms an appropriate structure presumably to adopt an unidentified endogenous ligand.
机译:双酚A,2,2-双(4-羟苯基)丙烷,是一种雌激素内分泌干扰物,即使双酚A本身作为雌激素受体的配体也是无效的,但它以非常低的剂量影响各种生理功能。我们最近证明,双酚A与人类雌激素相关受体γ(48种人类核受体之一)牢固结合。双酚A充当雌激素相关受体γ的反向拮抗剂,以维持后者的高基础组成活性并逆转4-羟基他莫昔芬的失活反向激动剂活性。但是,双酚A的固有结合方式尚待阐明。在本研究中,我们报告了双酚A的酚羟基与配体结合域中与雌激素相关的受体伽玛残基Glu275和Arg316之间的结合潜力。通过诱导其他氨基酸的突变,我们评估了双酚A受体结合能力的变化。野生型雌激素相关受体γ-配体结合结构域对showed标记的[H]具有很强的结合能力(KD = 5.70 nM)。 -3]双酚A。在275和316位同时突变为Ala导致绝对无法捕获双酚A。但是,单个取代显示出不同程度的活性降低,表明酚-羟基<-> Arg316氢键的主要重要性和酚-羟基Glu275氢键的确证作用。从其他特征性突变获得的数据表明,这些氢键有助于雌激素相关受体γ募集酚类化合物。这些结果清楚地表明,与雌激素相关的受体γ形成了适当的结构,大概是采用了未确定的内源性配体。

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