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首页> 外文期刊>Nature Communications >The chromatin remodeling enzyme Chd4 regulates genome architecture in the mouse brain
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The chromatin remodeling enzyme Chd4 regulates genome architecture in the mouse brain

机译:染色质重塑酶CHD4调节小鼠脑中的基因组结构

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The development and function of the brain require tight control of gene expression. Genome architecture is thought to play a critical regulatory role in gene expression, but the mechanisms governing genome architecture in the brain in vivo remain poorly understood. Here, we report that conditional knockout of the chromatin remodeling enzyme Chd4 in granule neurons of the mouse cerebellum increases accessibility of gene regulatory sites genome-wide in vivo. Conditional knockout of Chd4 promotes recruitment of the architectural protein complex?cohesin preferentially to gene enhancers in granule neurons in vivo. Importantly, in vivo profiling of genome architecture reveals that conditional knockout of Chd4 strengthens interactions among developmentally repressed contact domains as well as genomic loops in a manner that tightly correlates with increased accessibility, enhancer activity, and cohesin occupancy at these sites. Collectively, our findings define a role for chromatin remodeling in the control of genome architecture organization in the mammalian brain.
机译:大脑的发展和功能需要严格控制基因表达。基因组结构被认为在基因表达中发挥着关键的调节作用,但是在体内大脑中的基因组结构的机制仍然明白。在这里,我们认为染色质重塑酶CHD4的条件敲除小鼠小脑颗粒神经元中的基因调控位的可达性在体内基因组。 CHD4的条件敲除促进建筑蛋白质复合物的招募?休尼蛋白优先对体内颗粒神经元的基因增强剂。重要的是,在基因组结构的体内分析中表明,CHD4的条件敲除强化了作用抑制接触域以及基因组环的相互作用,以与这些位点上的增加的可接近性,增强剂活动和幼耳占用紧密相关。集体,我们的研究结果定义了染色质地在哺乳动物脑中基因组建筑组织控制中的作用。

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