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首页> 外文期刊>Nucleic acids research >The Effects of Sequence Variation on Genome-wide NRF2 Binding—New Target Genes and Regulatory SNPs
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The Effects of Sequence Variation on Genome-wide NRF2 Binding—New Target Genes and Regulatory SNPs

机译:序列变异对全基因组NRF2结合的影响—新的靶基因和调节性SNP。

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Transcription factor binding specificity is crucial for proper target gene regulation. Motif discovery algorithms identify the main features of the binding patterns, but the accuracy on the lower affinity sites is often poor. Nuclear factor E2-related factor 2 (NRF2) is a ubiquitous redox-activated transcription factor having a key protective role against endogenous and exogenous oxidant and electrophile stress. Herein, we decipher the effects of sequence variation on the DNA binding sequence of NRF2, in order to identify both genome-wide binding sites for NRF2 and disease-associated regulatory SNPs (rSNPs) with drastic effects on NRF2 binding. Interactions between NRF2 and DNA were studied using molecular modelling, and NRF2 chromatin immunoprecipitation-sequence datasets together with protein binding microarray measurements were utilized to study binding sequence variation in detail. The binding model thus generated was used to identify genome-wide binding sites for NRF2, and genomic binding sites with rSNPs that have strong effects on NRF2 binding and reside on active regulatory elements in human cells. As a proof of concept, miR-126–3p and -5p were identified as NRF2 target microRNAs, and a rSNP (rs113067944) residing on NRF2 target gene (Ferritin, light polypeptide, FTL) promoter was experimentally verified to decrease NRF2 binding and result in decreased transcriptional activity.
机译:转录因子结合特异性对于适当的靶基因调节至关重要。主题发现算法可识别结合模式的主要特征,但较低亲和力位点的准确性通常很差。核因子E2相关因子2(NRF2)是一种普遍存在的氧化还原激活的转录因子,对内源性和外源性氧化剂和亲电试剂具有关键的保护作用。在本文中,我们破译了序列变异对NRF2的DNA结合序列的影响,以便确定NRF2的全基因组结合位点和对NRF2结合具有剧烈影响的疾病相关调节性SNP(rSNPs)。使用分子模型研究了NRF2和DNA之间的相互作用,并利用NRF2染色质免疫沉淀序列数据集以及蛋白质结合微阵列测量来详细研究结合序列变异。如此产生的结合模型用于鉴定NRF2的全基因组结合位点,以及具有rSNP的基因组结合位点,该位点对NRF2结合具有强烈影响并位于人细胞的活性调节元件上。作为概念验证,将miR-126–3p和-5p鉴定为NRF2靶标microRNA,并通过实验验证了驻留在NRF2靶标基因(铁蛋白,轻型多肽,FTL)启动子上的rSNP(rs113067944)可减少NRF2的结合并得到结果降低转录活性。

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