首页> 外文期刊>Environmental Toxicology and Chemistry >COMPETITIVE BINDING COMPARISON OF ENDOCRINE-DISRUPTING COMPOUNDS TO RECOMBINANT ANDROGEN RECEPTOR FROM FATHEAD MINNOW, RAINBOW TROUT, AND HUMAN
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COMPETITIVE BINDING COMPARISON OF ENDOCRINE-DISRUPTING COMPOUNDS TO RECOMBINANT ANDROGEN RECEPTOR FROM FATHEAD MINNOW, RAINBOW TROUT, AND HUMAN

机译:食人鱼,虹鳟鱼和人与内分泌紊乱化合物与重组雄激素受体的竞争结合比较

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Typically, in vitro hazard assessments for the identification of endocrine-disrupting compounds (EDCs), including those outlined in the Endocrine Disruptor Screening and Testing Advisory Committee (EDSTAC) Tier 1 Screening protocols, utilize mammalian receptors. Evidence, however, exists that fish sex steroid hormone receptors differ from mammalian receptors both structurally and in their binding affinities for some steroids and environmental chemicals. Most of the binding studies to date have been conducted using cytosolic preparations from various tissues. In the present study, we compare competitive binding of a set of compounds to full-length recombinant rainbow trout androgen receptor α (rtAR), fathead minnow androgen receptor (fhAR), and human androgen receptor (hAR), each expressed in COS cells. Saturation binding and subsequent Scatchard analysis using [3H]R1881, a high-affinity synthetic androgen, revealed an equilibrium dissociation constant (Kd) of 0.11 nM for the rtAR, 1.8 nM for the fhAR, and 0.84 nM for the hAR. Compounds, including endogenous and synthetic steroids, known mammalian antiandrogens, and environmental compounds, were tested for competitive binding to each of the three receptors. Overall, agreement existed across receptors as to binding versus nonbinding for all compounds tested in this study. Minor differences, however, were found in the relative order of binding of the compounds to the individual receptors. Studies such as these will facilitate the identification of EDCs that may differentially affect specific species and aid in the development and support of future risk assessment protocols.
机译:通常,用于鉴定破坏内分泌的化合物(EDC)的体外危害评估,包括在内分泌干扰物筛选和测试咨询委员会(EDSTAC)第1层筛选方案中概述的评估,都是利用哺乳动物受体。但是,有证据表明,鱼类性类固醇激素受体在结构上以及对某些类固醇和环境化学物质的结合亲和力方面与哺乳动物受体不同。迄今为止,大多数结合研究都是使用来自各种组织的胞质制剂进行的。在本研究中,我们比较了一组化合物与全长重组虹鳟雄激素受体α(rtAR),黑头min鱼雄激素受体(fhAR)和人雄激素受体(hAR)的竞争结合,它们均在COS细胞中表达。使用高亲和力合成雄激素[3H] R1881进行饱和结合和随后的Scatchard分析,发现rtAR的平衡解离常数(Kd)为0.11 nM,fhAR的平衡解离常数(kd)为1.8 nM,hAR的平衡解离常数为0.84 nM。测试了包括内源性和合成类固醇,已知的哺乳动物抗雄激素和环境化合物在内的化合物与三种受体中每一种的竞争性结合。总体而言,在这项研究中测试的所有化合物的结合与非结合方面,受体之间存在共识。然而,在化合物与各个受体结合的相对顺序中发现了微小差异。诸如此类的研究将有助于识别可能对特定物种有不同影响的EDC,并有助于开发和支持未来的风险评估协议。

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