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Delineation of a unique protein-protein interaction site on the surface of the estrogen receptor

机译:描绘雌激素受体表面上独特的蛋白质-蛋白质相互作用位点

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摘要

Recent studies have identified a series of estrogen receptor (ER)-interacting peptides that recognize sites that are distinct from the classic coregulator recruitment (AF2) region. Here, we report the structural and functional characterization of an ERα-specific pep-tide that binds to the liganded receptor in an AF2-independent manner. The 2-A crystal structure of the ER/peptide complex reveals a binding site that is centered on a shallow depression on the β-hairpin face of the ligand-binding domain. The peptide binds in an unusual extended conformation and makes multiple contacts with the ligand-binding domain. The location and architecture of the binding site provides an insight into the peptide's ER subtype specificity and ligand interaction preferences. In vivo, an engineered coactivator containing the peptide motif is able to strongly enhance the transcriptional activity of liganded ERα, particularly in the presence of 4-hydroxytamoxifen. Furthermore, disruption of this binding surface alters ER's response to the coregulator TIF2. Together, these results indicate that this previously unknown interaction site represents a bona fide control surface involved in regulating receptor activity.
机译:最近的研究已经鉴定出了一系列与雌激素受体(ER)相互作用的肽,这些肽可以识别不同于经典共调节子募集(AF2)区域的位点。在这里,我们报告了以独立于AF2的方式与配体受体结合的ERα特异性肽的结构和功能表征。 ER /肽复合物的2-A晶体结构揭示了一个结合位点,该结合位点以配体结合域的β-发夹表面上的浅凹陷为中心。该肽以不寻常的延伸构象结合,并与配体结合域发生多次接触。结合位点的位置和结构提供了对肽的ER亚型特异性和配体相互作用偏好的了解。在体内,特别是在存在4-羟基他莫昔芬的情况下,含有肽基序的工程化共激活剂能够强烈增强配体ERα的转录活性。此外,该结合表面的破坏改变了ER对共调节剂TIF2的响应。总之,这些结果表明该先前未知的相互作用位点代表参与调节受体活性的真正的控制表面。

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