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Transcriptional activation by the thyroid hormone receptor through ligand-dependent receptor recruitment and chromatin remodelling

机译:甲状腺激素受体通过配体依赖性受体募集和染色质重塑实现转录激活

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摘要

A bimodal switch model is widely used to describe transcriptional regulation by the thyroid hormone receptor (TR). In this model, the unliganded TR forms stable, chromatin-bound complexes with transcriptional co-repressors to repress transcription. Binding of hormone dissociates co-repressors and facilitates recruitment of co-activators to activate transcription. Here we show that in addition to hormone-independent TR occupancy, ChIP-seq against endogenous TR in mouse liver tissue demonstrates considerable hormone-induced TR recruitment to chromatin associated with chromatin remodelling and activated gene transcription. Genome-wide footprinting analysis using DNase-seq provides little evidence for TR footprints both in the absence and presence of hormone, suggesting that unliganded TR engagement with repressive complexes on chromatin is, similar to activating receptor complexes, a highly dynamic process. This dynamic and ligand-dependent interaction with chromatin is likely shared by all steroid hormone receptors regardless of their capacity to repress transcription in the absence of ligand.
机译:双峰转换模型被广泛用于描述甲状腺激素受体(TR)的转录调控。在该模型中,未配体的TR与转录共阻遏物形成稳定的,与染色质结合的复合物,从而抑制转录。激素的结合解离了共抑制因子,并促进了共激活因子的募集以激活转录。在这里,我们显示,除了激素依赖性TR占据以外,针对小鼠肝脏组织中内源性TR的ChIP-seq还显示出相当大的激素诱导的TR募集到染色质重塑和激活的基因转录相关的染色质。使用DNase-seq进行的全基因组足迹分析在缺乏激素和存在激素的情况下均未提供TR足迹的证据,这表明与染色质上的抑制性复合物的未配体TR参与与激活受体复合物相似,是一个高度动态的过程。与类固醇的这种动态的,依赖配体的相互作用很可能被所有类固醇激素受体所共有,无论它们在不存在配体的情况下抑制转录的能力如何。

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