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KSHV PAN RNA Associates with Demethylases UTX and JMJD3 to Activate Lytic Replication through a Physical Interaction with the Virus Genome

机译:KSHV PAN RNA与脱甲基酶UTX和JMJD3结合通过与病毒基因组的物理相互作用来激活裂解复制

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摘要

Kaposi's sarcoma-associated herpesvirus (KSHV) is the cause of Kaposi's sarcoma and body cavity lymphomas. KSHV lytic infection produces PAN RNA, a highly abundant noncoding polyadenylated transcript that is retained in the nucleus. We recently demonstrated that PAN RNA interacts with several viral and cellular factors and can disregulate the expression of genes that modulate immune response. In an effort to define the role of PAN RNA in the context of the virus genome we generated a recombinant BACmid that deleted the PAN RNA locus. Because of the apparent duplication of the PAN RNA locus in BAC36, we generated BAC36CR, a recombinant BACmid that removes the duplicated region. BAC36CR was used as a template to delete most of the PAN RNA locus to generate BAC36CRΔPAN. BAC36CRΔPAN failed to produce supernatant virus and displayed a general decrease in mRNA accumulation of representative immediate early, early and late genes. Most strikingly, K-Rta expression was decreased in lytically induced BAC36CRΔPAN-containing cell lines at early and late time points post induction. Expression of PAN RNA in trans in BAC36CRΔPAN containing cells resulted in an increase in K-Rta expression, however K-Rta over expression failed to rescue BAC36CRΔPAN, suggesting that PAN RNA plays a wider role in virus replication. To investigate the role of PAN RNA in the activation of K-Rta expression, we demonstrate that PAN RNA physically interacts with the ORF50 promoter. RNA chromatin immunoprecipitation assays show that PAN RNA interacts with demethylases JMJD3 and UTX, and the histone methyltransferase MLL2. Consistent with the interaction with demethylases, expression of PAN RNA results in a decrease of the repressive H3K27me3 mark at the ORF50 promoter. These data support a model where PAN RNA is a multifunctional regulatory transcript that controls KSHV gene expression by mediating the modification of chromatin by targeting the KSHV repressed genome.
机译:卡波西氏肉瘤相关疱疹病毒(KSHV)是卡波西氏肉瘤和体腔淋巴瘤的病因。 KSHV裂解感染产生PAN RNA,这是一种高度丰富的非编码多腺苷酸转录物,保留在细胞核中。最近,我们证明了PAN RNA与几种病毒和细胞因子相互作用,可以使调节免疫应答的基因表达失调。为了定义PAN RNA在病毒基因组中的作用,我们生成了一个重组BACmid,它删除了PAN RNA基因座。由于BAC36中PAN RNA基因座的明显重复,我们生成了BAC36CR,这是一种重组BACmid,可去除重复区域。 BAC36CR被用作删除大多数PAN RNA基因座的模板,以产生BAC36CRΔPAN。 BAC36CRΔPAN无法产生上清病毒,并且显示代表性的早期,早期和晚期基因的mRNA积累普遍下降。最显着的是,在诱导后的早期和晚期,在裂解诱导的含BAC36CRΔPAN的细胞系中K-Rta表达降低。在含有BAC36CRΔPAN的细胞中反式表达PAN RNA导致K-Rta表达增加,但是K-Rta过表达不能挽救BAC36CRΔPAN,这表明PAN RNA在病毒复制中起着更广泛的作用。为了研究PAN RNA在激活K-Rta表达中的作用,我们证明了PAN RNA在物理上与ORF50启动子相互作用。 RNA染色质免疫沉淀试验表明,PAN RNA与脱甲基酶JMJD3和UTX以及组蛋白甲基转移酶MLL2相互作用。与脱甲基酶的相互作用一致,PAN RNA的表达导致ORF50启动子处的阻抑性H3K27me3标记降低。这些数据支持一个模型,其中PAN RNA是一种多功能调节转录物,可通过靶向KSHV抑制基因组介导染色质的修饰来控制KSHV基因表达。

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