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Negative regulation of the interferon response by an interferon-induced long non-coding RNA

机译:干扰素诱导的长非编码RNA干扰素应答的负调控

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Long non-coding RNAs (lncRNAs) play critical roles in diverse cellular processes; however, their involvement in many critical aspects of the immune response including the interferon (IFN) response remains poorly understood. To address this gap, we compared the global gene expression pattern of primary human hepatocytes before and at three time points after treatment with IFN-alpha. Among similar to 200 IFN-induced lncRNAs, one transcript showed similar to 100-fold induction. This RNA, which we named lncRNA-CMPK2, was a spliced, polyadenylated nuclear transcript that was induced by IFN in diverse cell types from human and mouse. Similar to protein-coding IFN-stimulated genes (ISGs), its induction was dependent on JAK-STAT signaling. Intriguingly, knockdown of lncRNA-CMPK2 resulted in a marked reduction in HCV replication in IFN-stimulated hepatocytes, suggesting that it could affect the antiviral role of IFN. We could show that lncRNA-CMPK2 knockdown resulted in upregulation of several protein-coding antiviral ISGs. The observed upregulation was caused by an increase in both basal and IFN-stimulated transcription, consistent with loss of transcriptional inhibition in knockdown cells. These results indicate that the IFN response involves a lncRNA-mediated negative regulatory mechanism. lncRNA-CMPK2 was strongly upregulated in a subset of HCV-infected human livers, suggesting a role in modulation of the IFN response in vivo.
机译:长的非编码RNA(lncRNA)在多种细胞过程中起着至关重要的作用。然而,他们对免疫应答包括干扰素(IFN)应答在内的许多关键方面的参与仍知之甚少。为了解决这一差距,我们比较了用IFN-α治疗之前和之后三个时间点的人类原代肝细胞的整体基因表达模式。在类似于200个IFN诱导的lncRNA中,一个转录本显示类似于100倍的诱导。我们将此RNA命名为lncRNA-CMPK2,是一种剪接的,多腺苷酸化的核转录本,在人类和小鼠的多种细胞类型中被IFN诱导。类似于蛋白编码的IFN刺激基因(ISG),其诱导依赖于JAK-STAT信号传导。有趣的是,敲低lncRNA-CMPK2会导致IFN刺激的肝细胞中HCV复制的明显减少,这表明它可能会影响IFN的抗病毒作用。我们可以证明,lncRNA-CMPK2的敲低导致几种蛋白编码抗病毒ISG的上调。观察到的上调是由基础和IFN刺激的转录增加引起的,这与敲低细胞中转录抑制的丧失相一致。这些结果表明,IFN应答涉及lncRNA介导的负调控机制。 lncRNA-CMPK2在被HCV感染的人肝脏的一个子集中强烈上调,表明在体内调节IFN反应中发挥了作用。

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