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配体-雌激素受体相互作用的稳定性取决于雌激素反应元件侧翼序列和细胞因子。

Stability of the ligand-estrogen receptor interaction depends on estrogen response element flanking sequences and cellular factors.

作者信息

Anolik J H, Klinge C M, Brolly C L, Bambara R A, Hilf R

机构信息

Department of Biochemistry and the Cancer Center, The University of Rochester School of Medicine and Dentistry, NY 14642, USA.

出版信息

J Steroid Biochem Mol Biol. 1996 Dec;59(5-6):413-29. doi: 10.1016/s0960-0760(96)00129-x.

Abstract

To determine whether accessory proteins mediate the ligand- and DNA sequence-dependent specificity of estrogen receptor (ER) interaction with DNA, the binding of partly purified vs highly purified bovine ER to various estrogen response elements (EREs) was measured in the presence of different ER ligands. Partly purified estradiol-liganded ER (E2-ER) binds cooperatively to stereoaligned tandem EREs flanked by naturally occurring AT-rich sequences, with a stoichiometry of one E2-ER dimer per ERE. In contrast, highly purified E2-ER binds with a 10-fold lower affinity and non-cooperatively to EREs flanked by the AT-rich region. Moreover, the binding stoichiometry of highly purified E2-ER was 0.5 E2-ER dimer, or one monomer per ERE, independent of the ERE flanking sequence. Interestingly, the binding of ER liganded with the antiestrogen 4-hydroxytamoxifen (4-OHT-ER) was non-cooperative with an apparent stoichiometry of 0.5 4-OHT-ER dimer per ERE, regardless of ER purity or ERE flanking sequence. We recently showed that when 4-OHT-ER binds DNA, one molecule of 4-OHT dissociates from the dimeric 4-OHT-ER-ERE complex, accounting for the reduced apparent binding stoichiometry. In contrast, ER covalently bound by tamoxifen aziridine (TAz) gave an ERE binding stoichiometry of one TAz-ER dimer per ERE, and TAz-ER binds cooperatively to multiple AT-rich EREs, regardless of the purity of the receptor. We have obtained evidence that purification of ER removes an accessory protein(s) that interacts with ER in a sequence- and/or DNA conformational-dependent manner, resulting in stabilization of E2, but not 4-OHT, in the ligand binding domain when the receptor binds to DNA. We postulate that retention of ligand by ER maintains the receptor in a conformation necessary to achieve high-affinity, cooperative ERE binding.

摘要

为了确定辅助蛋白是否介导雌激素受体(ER)与DNA相互作用的配体和DNA序列依赖性特异性,在不同的ER配体存在下,测量了部分纯化的与高度纯化的牛ER与各种雌激素反应元件(ERE)的结合。部分纯化的雌二醇配体化ER(E2-ER)与两侧为天然富含AT序列的立体排列串联ERE协同结合,化学计量比为每个ERE一个E2-ER二聚体。相比之下,高度纯化的E2-ER与富含AT区域两侧的ERE结合亲和力低10倍且不具有协同性。此外,高度纯化的E2-ER的结合化学计量比为0.5个E2-ER二聚体,即每个ERE一个单体,与ERE侧翼序列无关。有趣的是,与抗雌激素4-羟基他莫昔芬(4-OHT-ER)结合的ER的结合不具有协同性,每个ERE的表观化学计量比为0.5个4-OHT-ER二聚体,与ER纯度或ERE侧翼序列无关。我们最近表明,当4-OHT-ER与DNA结合时,一个4-OHT分子从二聚体4-OHT-ER-ERE复合物中解离,这解释了表观结合化学计量比降低的原因。相比之下,由他莫昔芬氮丙啶(TAz)共价结合的ER给出的ERE结合化学计量比为每个ERE一个TAz-ER二聚体,并且TAz-ER与多个富含AT的ERE协同结合,与受体的纯度无关。我们已经获得证据表明,ER的纯化去除了一种以序列和/或DNA构象依赖性方式与ER相互作用的辅助蛋白,当受体与DNA结合时,导致配体结合域中E2而非4-OHT的稳定。我们推测ER对配体的保留使受体保持在实现高亲和力、协同性ERE结合所必需的构象中。

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