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Global mapping of binding sites for Nrf2 identifies novel targets in cell survival response through ChIP-Seq profiling and network analysis

机译:Nrf2结合位点的全球定位通过ChIP-Seq分析和网络分析确定了细胞存活应答中的新靶标

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摘要

The Nrf2 (nuclear factor E2 p45-related factor 2) transcription factor responds to diverse oxidative and electrophilic environmental stresses by circumventing repression by Keap1, translocating to the nucleus, and activating cytoprotective genes. Nrf2 responses provide protection against chemical carcinogenesis, chronic inflammation, neurodegeneration, emphysema, asthma and sepsis in murine models. Nrf2 regulates the expression of a plethora of genes that detoxify oxidants and electrophiles and repair or remove damaged macromolecules, such as through proteasomal processing. However, many direct targets of Nrf2 remain undefined. Here, mouse embryonic fibroblasts (MEF) with either constitutive nuclear accumulation (Keap1−/−) or depletion (Nrf2−/−) of Nrf2 were utilized to perform chromatin-immunoprecipitation with parallel sequencing (ChIP-Seq) and global transcription profiling. This unique Nrf2 ChIP-Seq dataset is highly enriched for Nrf2-binding motifs. Integrating ChIP-Seq and microarray analyses, we identified 645 basal and 654 inducible direct targets of Nrf2, with 244 genes at the intersection. Modulated pathways in stress response and cell proliferation distinguish the inducible and basal programs. Results were confirmed in an in vivo stress model of cigarette smoke-exposed mice. This study reveals global circuitry of the Nrf2 stress response emphasizing Nrf2 as a central node in cell survival response.
机译:Nrf2(核因子E2 p45相关因子2)转录因子通过绕过Keap1的阻遏作用,转移到细胞核并激活细胞保护性基因来响应多种氧化和亲电子环境胁迫。 Nrf2反应可在鼠类模型中预防化学致癌作用,慢性炎症,神经退行性疾病,肺气肿,哮喘和败血症。 Nrf2调节许多基因的表达,这些基因可以使氧化剂和亲电试剂解毒,并通过蛋白酶体加工来修复或去除受损的大分子。但是,Nrf2的许多直接目标仍然不确定。在此,利用具有Nrf2组成型核积累(Keap1 -/-)或耗竭(Nrf2 -// )的小鼠胚胎成纤维细胞(MEF)进行染色质免疫沉淀。并行测序(ChIP-Seq)和全局转录谱分析。这个独特的Nrf2 ChIP-Seq数据集富含Nrf2结合基序。整合ChIP-Seq和微阵列分析,我们确定了Nrf2的645个基础靶标和654个可诱导的直接靶标,在交点处具有244个基因。应激反应和细胞增殖中的调节途径区分了诱导型和基础型程序。在暴露于香烟烟雾的小鼠的体内应激模型中证实了结果。这项研究揭示了Nrf2应激反应的全局电路,强调了Nrf2作为细胞存活反应的中心节点。

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