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炎症中的 STATs、IRFs 和 NFκB 调控网络。

Regulatory Networks Involving STATs, IRFs, and NFκB in Inflammation.

机构信息

Max F. Perutz Laboratories, Department of Microbiology, Immunobiology and Genetics, University of Vienna, Vienna, Austria.

出版信息

Front Immunol. 2018 Nov 13;9:2542. doi: 10.3389/fimmu.2018.02542. eCollection 2018.

Abstract

Cells engaging in inflammation undergo drastic changes of their transcriptomes. In order to tailor these alterations in gene expression to the requirements of the inflammatory process, tight and coordinate regulation of gene expression by environmental cues, microbial or danger-associated molecules or cytokines, are mandatory. The transcriptional response is set off by signal-regulated transcription factors (SRTFs) at the receiving end of pathways originating at pattern recognition- and cytokine receptors. These interact with a genome that has been set for an appropriate response by prior activity of pioneer or lineage determining transcription factors (LDTFs). The same types of transcription factors are also critical determinants of the changes in chromatin landscapes and transcriptomes that specify potential consequences of inflammation: tissue repair, training, and tolerance. Here we focus on the role of three families of SRTFs in inflammation and its sequels: signal transducers and activators of transcription (STATs), interferon regulatory factors (IRFs), and nuclear factor κB (NFκB). We describe recent findings about their interactions and about their networking with LDTFs. Our aim is to provide a snapshot of a highly dynamic research area.

摘要

参与炎症反应的细胞会经历转录组的剧烈变化。为了使基因表达的这些改变适应炎症过程的要求,需要通过环境线索、微生物或危险相关分子或细胞因子对基因表达进行紧密协调的调节。转录反应是由信号调节转录因子(SRTFs)引发的,这些转录因子位于模式识别和细胞因子受体起始的途径的接收端。这些转录因子与基因组相互作用,基因组通过先前的先驱或谱系决定转录因子(LDTFs)的活性而被设定为适当的反应。相同类型的转录因子也是决定染色质景观和转录组变化的关键决定因素,这些变化决定了炎症的潜在后果:组织修复、训练和耐受。在这里,我们重点介绍三种 SRTF 家族在炎症及其后果中的作用:信号转导子和转录激活子(STATs)、干扰素调节因子(IRFs)和核因子 κB(NFκB)。我们描述了关于它们相互作用及其与 LDTFs 网络的最新发现。我们的目的是提供一个高度动态的研究领域的快照。

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