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首页> 外文期刊>The Journal of biological chemistry >Genomic Analysis Reveals a Novel Nuclear Factor-κB (NF-κB)-binding Site in Alu-repetitive Elements
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Genomic Analysis Reveals a Novel Nuclear Factor-κB (NF-κB)-binding Site in Alu-repetitive Elements

机译:基因组分析揭示了一种新的核因子-κB(NF-κB) - 耦合位点在Alu-Repetitive元件中

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摘要

The transcription factor NF-κB is a critical regulator of immune responses. To determine how NF-κB builds transcriptional control networks, we need to obtain a topographic map of the factor bound to the genome and correlate it with global gene expression. We used a ChIP cloning technique and identified novel NF-κB target genes in response to virus infection. We discovered that most of the NF-κB-bound genomic sites deviate from the consensus and are located away from conventional promoter regions. Remarkably, we identified a novel abundant NF-κB-binding site residing in specialized Alu-repetitive elements having the potential for long range transcription regulation, thus suggesting that in addition to its known role, NF-κB has a primate-specific function and a role in human evolution. By combining these data with global gene expression profiling of virus-infected cells, we found that most of the sites bound by NF-κB in the human genome do not correlate with changes in gene expression of the nearby genes and they do not appear to function in the context of synthetic promoters. These results demonstrate that repetitive elements interspersed in the human genome function as common target sites for transcription factors and may play an important role in expanding the repertoire of binding sites to engage new genes into regulatory networks.
机译:转录因子NF-κB是免疫应答的关键调节因子。为了确定NF-κB如何构建转录控制网络,我们需要获得与基因组结合的因子的地形图,并将其与全局基因表达相关联。我们使用芯片克隆技术,并鉴定了对病毒感染的新型NF-κB靶基因。我们发现,大多数NF-κB结合的基因组位点偏离了共识,并远离常规启动子区。值得注意的是,我们鉴定了一种居住在具有远程转录调节的潜力的专用铝重复元件中的新型丰富的NF-κB结合位点,因此表明除了其已知作用,NF-κB还具有特定于灵长类的功能和一个在人类演变中的作用。通过将这些数据与来自病毒感染的细胞的全局基因表达分析组合,我们发现,人类基因组中NF-κB的大部分位点与附近基因的基因表达的变化不相关,并且它们不会出现起作用在合成启动子的背景下。这些结果表明,在人类基因组中散布的重复元素作为转录因子的常见靶位点,并且可能在扩大结合位点的曲目中以与新基因交换到监管网络中的重要作用。

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