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Structure of a Biologically Active Estrogen Receptor-Coactivator Complex on DNA

机译:DNA上具有生物活性的雌激素受体-共激活复合物的结构

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Estrogen receptor (ER/ESR1) is a transcription factor critical for development, reproduction, metabolism, and cancer. ER function hinges on its ability to recruit primary and secondary coactivators, yet structural information on the full-length receptor-coactivator complex to complement preexisting and sometimes controversial biochemical information is lacking. Here, we use cryoelectron microscopy (cryo-EM) to determine the quaternary structure of an active complex of DNA-bound ER alpha, steroid receptor coactivator 3 (SRC-3/NCOA3), and a secondary coactivator (p300/EP300). Our structural model suggests the following assembly mechanism for the complex: each of the two ligand-bound ER alpha monomers independently recruits one SRC-3 protein via the transactivation domain of ER alpha; the two SRC-3s in turn bind to different regions of one p300 protein through multiple contacts. We also present structural evidence for the location of activation function 1 (AF-1) in a full-length nuclear receptor, which supports a role for AF-1 in SRC-3 recruitment.
机译:雌激素受体(ER / ESR1)是对发育,繁殖,代谢和癌症至关重要的转录因子。内质网功能取决于其募集初级和次级共激活因子的能力,但缺乏与全长受体-共激活因子复合物互补的结构信息以补充先前存在的,有时还存在争议的生化信息。在这里,我们使用低温电子显微镜(cryo-EM)来确定DNA结合的ERα,类固醇受体共激活因子3(SRC-3 / NCOA3)和次级共激活因子(p300 / EP300)的活性复合物的四级结构。我们的结构模型对复合物提出了以下组装机制:两个配体结合的ERα单体中的每一个均通过ERα的反式激活域独立募集一个SRC-3蛋白。两个SRC-3通过多个接触依次与一种p300蛋白的不同区域结合。我们还提供了在全长核受体中激活功能1(AF-1)的位置的结构证据,该功能支持AF-1在SRC-3募集中的作用。

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