首页> 美国卫生研究院文献>other >The Hypoxia-Inducible Transcription Factor ZNF395 Is Controlled by IĸB Kinase-Signaling and Activates Genes Involved in the Innate Immune Response and Cancer
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The Hypoxia-Inducible Transcription Factor ZNF395 Is Controlled by IĸB Kinase-Signaling and Activates Genes Involved in the Innate Immune Response and Cancer

机译:缺氧诱导转录因子ZNF395受IĸB激酶信号的控制并激活涉及先天免疫反应和癌症的基因。

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摘要

Activation of the hypoxia inducible transcription factor HIF and the NF-ĸB pathway promotes inflammation-mediated tumor progression. The cellular transcription factor ZNF395 has repeatedly been found overexpressed in various human cancers, particularly in response to hypoxia, implying a functional relevance. To understand the biological activity of ZNF395, we identified target genes of ZNF395 through a genome-wide expression screen. Induced ZNF395 expression led to the upregulation of genes known to play a role in cancer as well as a subset of interferon (IFN)-stimulated genes (ISG) involved in antiviral responses such as IFIT1/ISG56, IFI44 and IFI16. In cells that lack ZNF395, the IFN-α-mediated stimulation of these factors was impaired, demonstrating that ZNF395 is required for the full induction of these antiviral genes. Transient transfections revealed that ZNF395-mediated activation of the IFIT1/ISG56 promoter depends on the two IFN-stimulated response elements within the promoter and on the DNA-binding domain of ZNF395, a so-called C-clamp. We also show that IĸBα kinase (IKK)-signaling is necessary to allow ZNF395 to activate transcription and simultaneously enhances its proteolytic degradation. Thus, ZNF395 becomes activated at the level of protein modification by IKK. Moreover, we confirm that the expression of ZNF395 is induced by hypoxia. Our results characterize ZNF395 as a novel factor that contributes to the maximal stimulation of a subset of ISGs. This transcriptional activity depends on IKK signaling further supporting a role of ZNF395 in the innate immune response. Given these results it is possible that under hypoxic conditions, elevated levels of ZNF395 may support inflammation and cancer progression by activating the target genes involved in the innate immune response and cancer.
机译:缺氧诱导转录因子HIF和NF-κB途径的激活促进炎症介导的肿瘤进展。反复发现细胞转录因子ZNF395在各种人类癌症中过表达,特别是在对缺氧的反应中,这意味着功能相关。为了了解ZNF395的生物学活性,我们通过全基因组表达筛选鉴定了ZNF395的靶基因。诱导的ZNF395表达导致已知在癌症中起作用的基因以及干扰素(IFN)刺激的基因(ISG)子集的上调,这些子集与IFIT1 / ISG56,IFI44和IFI16等抗病毒应答有关。在缺乏ZNF395的细胞中,IFN-α介导的这些因子的刺激作用减弱,表明ZNF395是完全诱导这些抗病毒基因所必需的。瞬时转染表明,ZNF395介导的IFIT1 / ISG56启动子的激活取决于启动子内的两个IFN刺激的响应元件以及ZNF395的DNA结合域,即所谓的C型钳位。我们还显示,IĸBα激酶(IKK)信号对使ZNF395激活转录并同时增强其蛋白水解降解是必要的。因此,ZNF395在被IKK修饰的蛋白质水平上被激活。此外,我们证实了ZNF395的表达是由缺氧诱导的。我们的结果将ZNF395表征为有助于最大程度刺激ISG子集的新型因子。这种转录活性取决于IKK信号传导,进一步支持ZNF395在先天免疫应答中的作用。鉴于这些结果,在低氧条件下,升高的ZNF395水平可能会通过激活与先天免疫应答和癌症有关的靶基因来支持炎症和癌症进展。

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