首页> 美国卫生研究院文献>PLoS Genetics >Genome-Wide Mapping Targets of the Metazoan Chromatin Remodeling Factor NURF Reveals Nucleosome Remodeling at Enhancers Core Promoters and Gene Insulators
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Genome-Wide Mapping Targets of the Metazoan Chromatin Remodeling Factor NURF Reveals Nucleosome Remodeling at Enhancers Core Promoters and Gene Insulators

机译:后生动物染色质重塑因子NURF的全基因组定位目标揭示了增强子核心启动子和基因绝缘子的核小体重塑。

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摘要

NURF is a conserved higher eukaryotic ISWI-containing chromatin remodeling complex that catalyzes ATP-dependent nucleosome sliding. By sliding nucleosomes, NURF is able to alter chromatin dynamics to control transcription and genome organization. Previous biochemical and genetic analysis of the specificity-subunit of Drosophila NURF (Nurf301/Enhancer of Bithorax (E(bx)) has defined NURF as a critical regulator of homeotic, heat-shock and steroid-responsive gene transcription. It has been speculated that NURF controls pathway specific transcription by co-operating with sequence-specific transcription factors to remodel chromatin at dedicated enhancers. However, conclusive in vivo demonstration of this is lacking and precise regulatory elements targeted by NURF are poorly defined. To address this, we have generated a comprehensive map of in vivo NURF activity, using MNase-sequencing to determine at base pair resolution NURF target nucleosomes, and ChIP-sequencing to define sites of NURF recruitment. Our data show that, besides anticipated roles at enhancers, NURF interacts physically and functionally with the TRF2/DREF basal transcription factor to organize nucleosomes downstream of active promoters. Moreover, we detect NURF remodeling and recruitment at distal insulator sites, where NURF functionally interacts with and co-localizes with DREF and insulator proteins including CP190 to establish nucleosome-depleted domains. This insulator function of NURF is most apparent at subclasses of insulators that mark the boundaries of chromatin domains, where multiple insulator proteins co-associate. By visualizing the complete repertoire of in vivo NURF chromatin targets, our data provide new insights into how chromatin remodeling can control genome organization and regulatory interactions.
机译:NURF是一种保守的,含有较高ISIS真核生物的染色质重塑复合物,可催化ATP依赖性核小体滑动。通过滑动核小体,NURF能够改变染色质动力学来控制转录和基因组组织。先前对果蝇NURF(Nurf301 / Bithorax增强剂(E(bx)))特异性亚基的生化和遗传分析已将NURF定义为顺势,热休克和类固醇反应性基因转录的关键调节因子。 NURF通过与序列特异性转录因子协同作用以在专用增强子上重塑染色质来控制途径特异性转录,但是,尚缺乏确凿的体内证明,而且NURF靶向的精确调控元件也不清楚。一份完整的体内NURF活性图,使用MNase测序确定碱基对分辨率下的NURF靶核小体,并使用ChIP测序确定NURF募集的位点。用TRF2 / DREF基础转录因子来组织活性启动子下游的核小体。在远端绝缘子位点进行消除和募集,其中NURF在功能上与DREF和绝缘子蛋白(包括CP190)相互作用并共同定位,以建立核小体耗尽的结构域。 NURF的这种绝缘子功能在标记染色质域边界的多个绝缘子子类中最为明显,在该子类中多个绝缘子蛋白共同缔合。通过可视化体内NURF染色质靶标的完整库,我们的数据为染色质重塑如何控制基因组组织和调控相互作用提供了新见解。

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