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Role of the TSG101 Gene in Epstein-Barr Virus Late Gene Transcription▿

机译:TSG101基因在爱泼斯坦-巴尔病毒后期基因转录中的作用▿

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摘要

Rta, an Epstein-Barr virus (EBV)-encoded immediate-early protein, governs the reactivation of the viral lytic program by transactivating a cascade of lytic gene expression. Cellular transcription factors such as Sp1, ATF2, E2F, and Akt have been demonstrated to mediate Rta transactivation of lytic genes. We report herein that Rta associates with another potent transcription factor, tumor susceptibility gene 101 (TSG101), to promote the activation of EBV late genes. Results from an EBV cDNA array reveal that depletion of TSG101 by siRNA potently inhibits the transcription of five Rta-responsive EBV late genes, BcLF1, BDLF3, BILF2, BLLF1, and BLRF2. Depletion of TSG101 impairs the Rta transactivation of these late promoters severely. Moreover, a concordant augmentation of Rta transactivating activity is observed when TSG101 is overexpressed following ectopic transfection. Mechanistically, Rta interaction with TSG101 causes the latter to accumulate principally in the nuclei, wherein the proteins colocalize and are recruited to the viral promoters. Of note, TSG101 is crucial for the efficient binding of Rta to these late promoters. As a result, cells with defective TSG101 fail to express late viral proteins, leading to a decrease in the yield of virus particles. Thus, the contribution of TSG101 to Rta-mediated late gene activation is of great importance for completion of the EBV productive lytic cycle. These observations consolidate a role for TSG101 in the replication of EBV, a DNA virus, that differs from what is observed for RNA viruses, where TSG101 aids mainly in the endosomal sorting of enveloped late viral proteins for assembly at the plasma membrane.
机译:Rta是一种爱泼斯坦-巴尔病毒(EBV)编码的即早蛋白质,通过反式激活一系列裂解基因表达来控制病毒裂解程序的重新激活。已经证明细胞转录因子,例如Sp1,ATF2,E2F和Akt可以介导裂解基因的Rta反式激活。我们在这里报告Rta与另一个有效的转录因子,肿瘤易感性基因101(TSG101),以促进EBV晚期基因的激活。 EBV cDNA阵列的结果显示,siRNA耗尽TSG101会有效抑制五个Rta反应性EBV晚期基因BcLF1,BDLF3,BILF2,BLLF1和BLRF2的转录。 TSG101的耗竭严重损害了这些晚期启动子的Rta反式激活。此外,当异位转染后TSG101过表达时,观察到Rta反式激活活性的一致增加。从机理上讲,Rta与TSG101的相互作用导致后者主要在细胞核中积聚,其中蛋白质共定位并被募集到病毒启动子中。值得注意的是,TSG101对于Rta与这些晚期启动子的有效结合至关重要。结果,具有缺陷TSG101的细胞无法表达晚期病毒蛋白,从而导致病毒颗粒产量降低。因此,TSG101对Rta介导的晚期基因激活的贡献对于完成EBV生产性裂解循环至关重要。这些观察结果巩固了TSG101在EBV(一种DNA病毒)复制中的作用,这不同于RNA病毒所观察到的,在RNA病毒中,TSG101主要帮助包裹体包裹的晚期病毒蛋白的内体分类,以在质膜上组装。

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