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Numerous Conserved and Divergent MicroRNAs Expressed by Herpes Simplex Viruses 1 and 2

机译:单纯疱疹病毒1和2表达的许多保守和不同的microRNA。

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摘要

Certain viruses use microRNAs (miRNAs) to regulate the expression of their own genes, host genes, or both. Previous studies have identified a limited number of miRNAs expressed by herpes simplex viruses 1 and 2 (HSV-1 and -2), some of which are conserved between these two viruses. To more comprehensively analyze the miRNAs expressed by HSV-1 or HSV-2 during productive and latent infection, we applied a massively parallel sequencing approach. We were able to identify 16 and 17 miRNAs expressed by HSV-1 and HSV-2, respectively, including all previously known species, and a number of previously unidentified virus-encoded miRNAs. The genomic positions of most miRNAs encoded by these two viruses are within or proximal to the latency-associated transcript region. Nine miRNAs are conserved in position and/or sequence, particularly in the seed region, between these two viruses. Interestingly, we did not detect an HSV-2 miRNA homolog of HSV-1 miR-H1, which is highly expressed during productive infection, but we did detect abundant expression of miR-H6, whose seed region is conserved with HSV-1 miR-H1 and might represent a functional analog. We also identified a highly conserved miRNA family arising from the viral origins of replication. In addition, we detected several pairs of complementary miRNAs and we found miRNA-offset RNAs (moRs) arising from the precursors of HSV-1 and HSV-2 miR-H6 and HSV-2 miR-H4. Our results reveal elements of miRNA conservation and divergence that should aid in identifying miRNA functions.
机译:某些病毒使用microRNA(miRNA)调节自身基因,宿主基因或两者的表达。先前的研究已经确定了由单纯疱疹病毒1和2(HSV-1和-2)表达的数量有限的miRNA,其中一些在这两种病毒之间是保守的。为了更全面地分析生产性和潜伏性感染期间HSV-1或HSV-2表达的miRNA,我们采用了大规模平行测序方法。我们能够鉴定出HSV-1和HSV-2分别表达的16和17个miRNA,包括所有先前已知的物种,以及许多先前未鉴定的病毒编码的miRNA。这两种病毒编码的大多数miRNA的基因组位置在潜伏期相关的转录本区域内或附近。九种miRNA在这两种病毒之间的位置和/或序列,特别是种子区域中,是保守的。有趣的是,我们没有检测到在生产性感染期间高表达的HSV-1 miR-H1的HSV-2 miRNA同源物,但我们确实检测到miR-H6的大量表达,其种子区域与HSV-1 miR-保守。 H1,可能代表一个功能类似物。我们还确定了病毒复制起点引起的高度保守的miRNA家族。此外,我们检测了几对互补的miRNA,并且发现了源自HSV-1和HSV-2 miR-H6和HSV-2 miR-H4的前体的miRNA抵消RNA(moR)。我们的结果揭示了miRNA保守和发散的要素,应有助于鉴定miRNA的功能。

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