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Exploration of Dimensions of Estrogen Potency: PARSING LIGAND BINDING AND COACTIVATOR BINDING AFFINITIES*

机译:探索雌激素效能的维度:配体结合和助催化剂结合亲和力*

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摘要

The estrogen receptors, ERα and ERβ, are ligand-regulated transcription factors that control gene expression programs in target tissues. The molecular events underlying estrogen action involve minimally two steps, hormone binding to the ER ligand-binding domain followed by coactivator recruitment to the ER·ligand complex; this ligand·receptor·coactivator triple complex then alters gene expression. Conceptually, the potency of an estrogen in activating a cellular response should reflect the affinities that characterize both steps involved in the assembly of the active ligand·receptor·coactivator complex. Thus, to better understand the molecular basis of estrogen potency, we developed a completely in vitro system (using radiometric and time-resolved FRET assays) to quantify independently three parameters: (a) the affinity of ligand binding to ER, (b) the affinity of coactivator binding to the ER·ligand complex, and (c) the potency of ligand recruitment of coactivator. We used this system to characterize the binding and potency of 12 estrogens with both ERα and ERβ. Some ligands showed good correlations between ligand binding affinity, coactivator binding affinity, and coactivator recruitment potency with both ERs, whereas others showed correlations with only one ER subtype or displayed discordant coactivator recruitment potencies. When ligands with low receptor binding affinity but high coactivator recruitment potencies to ERβ were evaluated in cell-based assays, elevation of cellular coactivator levels significantly and selectively improved their potency. Collectively, our results indicate that some low affinity estrogens may elicit greater cellular responses in those target cells that express higher levels of specific coactivators capable of binding to their ER complexes with high affinity.
机译:雌激素受体ERα和ERβ是配体调节的转录因子,可控制靶组织中的基因表达程序。雌激素作用的分子事件至少涉及两个步骤,激素与ER配体结合域结合,然后辅以活化剂募集到ER·配体复合体。然后,该配体·受体·共激活因子三联体改变了基因表达。从概念上讲,雌激素激活细胞应答的能力应反映亲和力,该亲和力表征了活性配体·受体·助活化剂复合物组装过程中涉及的两个步骤。因此,为了更好地了解雌激素潜能的分子基础,我们开发了一个完整的体外系统(使用辐射测定和时间分辨的FRET分析)来独立地量化三个参数:(a)配体与ER结合的亲和力,(b)辅助激活剂与ER·配体复合物的亲和力,以及(c)辅助激活剂配体募集的能力。我们使用该系统表征了12种雌激素与ERα和ERβ的结合和效力。一些配体显示与两种ERs的配体结合亲和力,共激活剂结合亲和力和共激活剂募集能力之间的良好相关性,而另一些则仅与一种ER亚型相关或表现出不一致的共激活剂募集能力。当在基于细胞的测定中评估具有低受体结合亲和力但对ERβ的辅助活化剂募集能力高的配体时,细胞辅助活化剂水平的升高显着并选择性地提高了其效力。总体而言,我们的结果表明,一些低亲和力雌激素可能会在那些靶细胞中引发更高的细胞应答,这些靶细胞表达能够以高亲和力结合其ER复合物的特异性共激活因子的水平更高。

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