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A Viral microRNA Cluster Strongly Potentiates the Transforming Properties of a Human Herpesvirus

机译:病毒的microRNA群集强烈增强人类疱疹病毒的转化特性。

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摘要

Epstein-Barr virus (EBV), an oncogenic human herpesvirus, induces cell proliferation after infection of resting B lymphocytes, its reservoir in vivo. The viral latent proteins are necessary for permanent B cell growth, but it is unknown whether they are sufficient. EBV was recently found to encode microRNAs (miRNAs) that are expressed in infected B cells and in some EBV-associated lymphomas. EBV miRNAs are grouped into two clusters located either adjacent to the BHRF1 gene or in introns contained within the viral BART transcripts. To understand the role of the BHRF1 miRNA cluster, we have constructed a virus mutant that lacks all its three members (Δ123) and a revertant virus. Here we show that the B cell transforming capacity of the Δ123 EBV mutant is reduced by more than 20-fold, relative to wild type or revertant viruses. B cells exposed to the knock-out virus displayed slower growth, and exhibited a two-fold reduction in the percentage of cells entering the cell cycle S phase. Furthermore, they displayed higher latent gene expression levels and latent protein production than their wild type counterparts. Therefore, the BHRF1 miRNAs accelerate B cell expansion at lower latent gene expression levels. Thus, this miRNA cluster simultaneously enhances expansion of the virus reservoir and reduces the viral antigenic load, two features that have the potential to facilitate persistence of the virus in the infected host. Thus, the EBV BHRF1 miRNAs may represent new therapeutic targets for the treatment of some EBV-associated lymphomas.
机译:爱泼斯坦-巴尔病毒(EBV)是一种致癌性人类疱疹病毒,在感染静止的B淋巴细胞(其体内储库)后诱导细胞增殖。病毒潜伏蛋白是永久性B细胞生长所必需的,但尚不清楚它们是否足够。最近发现,EBV编码在感染的B细胞和一些与EBV相关的淋巴瘤中表达的microRNA(miRNA)。 EBV miRNA被分为两个簇,两个簇位于BHRF1基因附近或病毒BART转录本内含的内含子中。为了了解BHRF1 miRNA簇的作用,我们构建了一个缺少所有三个成员(Δ123)和回复病毒的病毒突变体。在这里,我们显示,相对于野生型或回复病毒,Δ123EBV突变体的B细胞转化能力降低了20倍以上。暴露于敲除病毒的B细胞显示出较慢的生长,并且进入细胞周期S期的细胞百分比降低了两倍。此外,它们显示出比野生型对应物更高的潜在基因表达水平和潜在蛋白产生。因此,BHRF1 miRNA在较低的潜在基因表达水平上加速B细胞扩增。因此,该miRNA簇同时增强了病毒库的扩增并降低了病毒的抗原负荷,这两个特征有可能促进病毒在感染宿主中的持久性。因此,EBV BHRF1 miRNA可能代表了一些与EBV相关的淋巴瘤的治疗新靶标。

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