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Regulation of Interferon-Stimulated Gene BST2 by a lncRNA Transcribed from a Shared Bidirectional Promoter

机译:从共享的双向启动子转录的lncRNA对干扰素刺激的基因BST2的调节。

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摘要

Recent genome-wide studies have revealed the presence of thousands of long non-protein-coding RNAs (lncRNAs), some of which may play critical roles in the cell. We have previously shown that a large number of lncRNAs show differential expression in response to interferon (IFN)α stimulation in primary human cells. Here, we show that a subset of IFN-induced lncRNAs are positioned in proximity of protein-coding IFN-stimulated genes (ISGs). The majority of gene pairs originated from bidirectional promoters and showed positively correlated expression. We focused our analysis on a pair consisting of the known protein-coding ISG, BST2, and an un-studied putative lncRNA originating from the promoter region of BST2 in a divergent orientation. We showed that this transcript was a multi-exonic, polyadenylated long RNA that lacked protein-coding capacity. BST2 and the lncRNA were both induced in response to IFNα in diverse cell types. The induction of both genes was mediated through the JAK–STAT pathway, suggesting that IFN-stimulated response elements within the shared promoter activated the transcription of both genes. RNAi-mediated knock-down of the lncRNA resulted in down-regulation of BST2, and we could show that this down-regulation occurred at the level of transcription. Forced overexpression of this lncRNA, which we named BST2 IFN-Stimulated Positive Regulator (BISPR), resulted in up-regulation of BST2, indicating that the regulation of expression of BST2 by BISPR is mediated through interactions involving BISPR RNA itself, rather than the impact of its transcription from an adjacent locus. Importantly, upon IFN stimulation, transcriptional activation of BISPR preceded the induction of BST2, suggesting that expression of BISPR facilitated the initiation of transcription in its paired protein-coding gene. The lncRNA-mediated transcriptional regulation described in this study may help govern the expression of additional protein-coding RNAs involved in IFN response and other cellular processes.
机译:最近的全基因组研究表明,存在数千种长的非蛋白质编码RNA(lncRNA),其中一些可能在细胞中起关键作用。先前我们已经表明,大量的lncRNA在原代人细胞中响应干扰素(IFN)α刺激而显示出差异表达。在这里,我们显示了IFN诱导的lncRNA的子集位于蛋白质编码IFN刺激的基因(ISG)的附近。大多数基因对起源于双向启动子,并显示出正相关的表达。我们将分析的重点放在由已知的蛋白质编码ISG,BST2和未研究的推定的lncRNA组成的对上,该lncRNA来自BST2的启动子区域,且方向不同。我们表明,该转录本是缺乏蛋白质编码能力的多外显子,聚腺苷酸长RNA。在多种细胞类型中,BST2和lncRNA均响应IFNα而被诱导。这两个基因的诱导是通过JAK–STAT途径介导的,表明在共享启动子中IFN刺激的应答元件激活了这两个基因的转录。 RNAi介导的lncRNA的敲低导致BST2的下调,我们可以证明这种下调发生在转录水平。强迫过量表达该lncRNA(我们将其称为BST2 IFN刺激的阳性调节剂(BISPR))导致BST2上调,这表明BISPR对BST2表达的调节是通过涉及BISPR RNA本身的相互作用而不是其影响来介导的从邻近基因座转录重要的是,在干扰素刺激下,BISPR的转录激活先于BST2的诱导,这表明BISPR的表达促进了其配对蛋白编码基因中转录的起始。本研究中描述的lncRNA介导的转录调控可能有助于控制与IFN反应和其他细胞过程有关的其他蛋白质编码RNA的表达。

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