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Alteration of Large-Scale Chromatin Structure by Estrogen Receptor

机译:雌激素受体改变大型染色质结构

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The estrogen receptor (ER), a member of the nuclear hormone receptor superfamily important in human physiology and disease, recruits coactivators which modify local chromatin structure. Here we describe effects of ER on large-scale chromatin structure as visualized in live cells. We targeted ER to gene-amplified chromosome arms containing large numbers of lac operator sites either directly, through a lac repressor-ER fusion protein (lac rep-ER), or indirectly, by fusing lac repressor with the ER interaction domain of the coactivator steroid receptor coactivator 1. Significant decondensation of large-scale chromatin structure, comparable to that produced by the ~150-fold-stronger viral protein 16 (VP16) transcriptional activator, was produced by ER in the absence of estradiol using both approaches. Addition of estradiol induced a partial reversal of this unfolding by green fluorescent protein-lac rep-ER but not by wild-type ER recruited by a lac repressor-SRC570-780 fusion protein. The chromatin decondensation activity did not require transcriptional activation by ER nor did it require ligand-induced coactivator interactions, and unfolding did not correlate with histone hyperacetylation. Ligand-induced coactivator interactions with helix 12 of ER were necessary for the partial refolding of chromatin in response to estradiol using the lac rep-ER tethering system. This work demonstrates that when tethered or recruited to DNA, ER possesses a novel large-scale chromatin unfolding activity.
机译:雌激素受体(ER)是对人类生理学和疾病重要的核激素受体超家族的成员,它募集修饰局部染色质结构的共激活剂。在这里,我们描述了在活细胞中可视化的ER对大规模染色质结构的影响。我们通过 lac 阻遏物-ER融合蛋白( lac )直接将ER靶向包含大量 lac 操纵子位点的基因扩增染色体臂rep-ER),或通过将 lac 阻遏物与共激活类固醇受体共激活剂1的ER相互作用域融合而间接实现。大规模染色质结构的显着缩合,与〜150-使用这两种方法,在雌二醇不存在的情况下,ER可以产生更强的病毒蛋白16(VP16)转录激活因子。添加雌二醇可诱导绿色荧光蛋白- lac rep-ER部分逆转这种展开,但不会被 lac 阻遏物-SRC570-780融合招募的野生型ER逆转蛋白。染色质的缩聚活性既不需要通过ER进行转录激活,也不需要配体诱导的共激活剂相互作用,并且展开与组蛋白的超乙酰化无关。使用 lac rep-ER束缚系统,配体诱导的与ER螺旋12的共激活因子相互作用对于染色质响应雌二醇的部分重折叠是必要的。这项工作表明,当拴系或募集到DNA时,ER具有新颖的大规模染色质展开活性。

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