Schroeder Linda, Herwartz Christine, Jordanovski Darko, Steger Gertrud
Institute of Virology, University of Cologne, Fürst-Pückler-Strasse 56, 50935 Cologne, Germany.
Mediators Inflamm. 2017;2017:1248201. doi: 10.1155/2017/1248201. Epub 2017 Feb 21.
Activation of the interferon (IFN) pathway in response to infection with pathogens results in the induction of IFN-stimulated genes (ISGs) including proinflammatory cytokines, which mount the proper antiviral immune response. However, aberrant expression of these genes is pathogenic to the host. In addition to IFN-induced transcription factors non-IFN-regulated factors contribute to the transcriptional control of ISGs. Here, we show by genome wide expression analysis, siRNA-mediated suppression and Doxycycline-induced overexpression that the cellular transcription factor ZNF395 activates a subset of ISGs including the chemokines CXCL10 and CXCL11 in keratinocytes. We found that ZNF395 acts independently of IFN but enhances the IFN-induced expression of CXCL10 and CXCL11. Luciferase reporter assays revealed a requirement of intact NFB-binding sites for ZNF395 to stimulate the CXCL10 promoter. The transcriptional activation of CXCL10 and CXCL11 by ZNF395 was abolished after inhibition of IKK by BMS-345541, which increased the stability of ZNF395. ZNF395 encodes at least two motifs that mediate the enhanced degradation of ZNF395 in response to IKK activation. Thus, IKK is required for ZNF395-mediated activation of transcription and enhances its turn-over to keep the activity of ZNF395 low. Our results support a previously unrecognized role of ZNF395 in the innate immune response and inflammation.
病原体感染引发的干扰素(IFN)通路激活会诱导包括促炎细胞因子在内的干扰素刺激基因(ISGs)的产生,从而引发适当的抗病毒免疫反应。然而,这些基因的异常表达对宿主具有致病性。除了IFN诱导的转录因子外,非IFN调节因子也参与ISGs的转录调控。在此,我们通过全基因组表达分析、siRNA介导的抑制和强力霉素诱导的过表达表明,细胞转录因子ZNF395可激活角质形成细胞中包括趋化因子CXCL10和CXCL11在内的一部分ISGs。我们发现ZNF395独立于IFN发挥作用,但可增强IFN诱导的CXCL10和CXCL11的表达。荧光素酶报告基因检测显示,ZNF395刺激CXCL10启动子需要完整的NFκB结合位点。用BMS-345541抑制IKK后,ZNF395对CXCL10和CXCL11的转录激活作用被消除,而这增加了ZNF395的稳定性。ZNF395编码至少两个基序,介导ZNF395在IKK激活时的增强降解。因此,IKK是ZNF395介导的转录激活所必需的,并增强其周转以保持ZNF395的低活性。我们的结果支持了ZNF395在先天免疫反应和炎症中以前未被认识的作用。