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多氯羟基联苯的雌激素受体结合活性:构象受限的结构探针。

Estrogen receptor-binding activity of polychlorinated hydroxybiphenyls: conformationally restricted structural probes.

作者信息

Korach K S, Sarver P, Chae K, McLachlan J A, McKinney J D

机构信息

Laboratory of Reproductive and Developmental Toxicology, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709.

出版信息

Mol Pharmacol. 1988 Jan;33(1):120-6.

PMID:3122017
Abstract

A series of polychlorinated hydroxybiphenyls (PCBs) has been tested for their binding activity to soluble uterine estrogen receptor protein. Competitive binding analysis was performed on 0-40% ammonium sulfate-enriched uterine cytosol receptor preparations which improved the binding activity for the PCB compounds by a factor of 10-40, by decreasing the nonspecific binding. The binding activities have been correlated to molecular properties supported by molecular modeling studies which emphasize the importance of conformational restriction. The estrogen receptor bound 4-hydroxy-2',4',6'-trichlorobiphenyl (4H2',4',6'TCB) with the greatest affinity, with the concentration of unlabeled inhibitor yielding half-maximal specific binding relative to estradiol (C50) being approximately 42 compared to estradiol, C50 approximately 1.0. PCB compounds that demonstrated appreciable receptor-binding activity were also active in vivo in stimulating uterine weight increases, whereas weak binders were inactive. The 4H2',4',6'TCB compound represents a high degree of conformational restriction around the interring bond due to the presence of two ortho-chlorine atoms. The other PCBs in this series, which show lower receptor-binding activity, vary in position of chlorine substituents and can assume multiple low energy conformations as a result of less hindrance to rotation around the interring bond.

摘要

一系列多氯羟基联苯(PCBs)已被测试其与可溶性子宫雌激素受体蛋白的结合活性。对0-40%硫酸铵富集的子宫胞质溶胶受体制剂进行了竞争性结合分析,通过降低非特异性结合,使PCBs化合物的结合活性提高了10-40倍。结合活性已与分子建模研究所支持的分子特性相关,这些研究强调了构象限制的重要性。雌激素受体与4-羟基-2',4',6'-三氯联苯(4H2',4',6'TCB)的亲和力最大,与雌二醇相比,未标记抑制剂产生相对于雌二醇的半数最大特异性结合的浓度(C50)约为42,而雌二醇的C50约为1.0。表现出明显受体结合活性的PCBs化合物在体内也能刺激子宫重量增加,而弱结合剂则无活性。由于存在两个邻位氯原子,4H2',4',6'TCB化合物在环间键周围表现出高度的构象限制。该系列中的其他PCBs显示出较低的受体结合活性,氯取代基的位置不同,并且由于环间键旋转的阻碍较小,可以呈现多种低能量构象。

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