首页> 美国卫生研究院文献>Aging (Albany NY) >Genome-wide global identification of NRF2 binding sites in A549 non-small cell lung cancer cells by ChIP-Seq reveals NRF2 regulation of genes involved in focal adhesion pathways
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Genome-wide global identification of NRF2 binding sites in A549 non-small cell lung cancer cells by ChIP-Seq reveals NRF2 regulation of genes involved in focal adhesion pathways

机译:通过ChIP-Seq对A549非小细胞肺癌细胞中NRF2结合位点进行全基因组全局鉴定揭示了NRF2对参与粘着途径的基因的调控

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摘要

Nuclear factor erythroid-derived-2-like 2(NRF2) regulates its downstream genes through binding with antioxidant responsive elements in their promoter regions. Hyperactivation of NRF2 results in oncogenesis and drug resistance in various cancers including non-small cell lung cancer (NSCLC). However, identification of the genes and pathways regulated by NRF2 in NSCLC warrants further investigation. We investigated the global NRF2 genomic binding sites using the high-throughput ChIP-Seq technique in KEAP1 (Kelch-like ECH-associated protein 1)-mutated A549 (NSCLC) cells. We next carried out an integrated analysis of the ChIP-Seq data with transcriptomic data from A549 cells with NRF2-knockdown and RNA-Seq data from TCGA patients with altered KEAP1 to identify downstream and clinically-correlated genes respectively. Furthermore, we applied transcription factor enrichment analysis, generated a protein-protein interaction network, and used kinase enrichment analysis. Moreover, functional annotation of NRF2 binding sites using DAVID v7 identified the genes involved in focal adhesion. Putative focal adhesion genes regulated by NRF2 were validated using qRT-PCR. Further, we selected one novel conserved focal adhesion gene regulated by NRF2–LAMC1 (laminin subunit gamma 1) and validated it using a reporter assay. Overall, the identification of NRF2 target genes paves the way for identifying the molecular mechanism of NRF2 signaling in NSCLC development and therapy. Moreover, our data highlight the complexity of the pathways regulated by NRF2 in lung tumorigenesis.
机译:核因子类胡萝卜素衍生的2样2(NRF2)通过与启动子区域中的抗氧化剂响应元件结合来调节其下游基因。 NRF2的过度活化导致包括非小细胞肺癌(NSCLC)在内的多种癌症的发生和耐药性。然而,NSCLC中NRF2调控的基因和途径的鉴定值得进一步研究。我们使用高通量ChIP-Seq技术在突变的KEAP1(柯尔奇样ECH相关蛋白1)突变的A549(NSCLC)细胞中研究了全球NRF2基因组结合位点。接下来,我们对ChIP-Seq数据与来自A549细胞的转录组学数据(具有NRF2敲除)和来自TCGA患者(KEAP1改变)的RNA-Seq数据进行了综合分析,以分别鉴定下游基因和临床相关基因。此外,我们应用了转录因子富集分析,生成了蛋白质-蛋白质相互作用网络,并使用了激酶富集分析。此外,使用DAVID v7对NRF2结合位点进行功能注释可以鉴定出与粘着斑有关的基因。使用qRT-PCR验证了受NRF2调控的假定黏着斑基因。此外,我们选择了一个由NRF2-LAMC1(laminin亚基γ1)调控的新型保守的黏着斑基因,并使用报告基因分析对其进行了验证。总体而言,NRF2靶基因的鉴定为在NSCLC的发展和治疗中鉴定NRF2信号传导的分子机制铺平了道路。此外,我们的数据突显了NRF2调控的肺肿瘤发生途径的复杂性。

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