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Histone-derived piRNA biogenesis depends on the ping-pong partners Piwi5 and Ago3 in Aedes aegypti

机译:组蛋白衍生的piRNA生物发生取决于埃及伊蚊的乒乓伴侣Piwi5和Ago3

摘要

The piRNA pathway is of key importance in controlling transposable elements in most animal species. In the vector mosquito Aedes aegypti, the presence of eight PIWI proteins and the accumulation of viral piRNAs upon arbovirus infection suggest additional functions of the piRNA pathway beyond genome defense. To better understand the regulatory potential of this pathway, we analyzed in detail host-derived piRNAs in A. aegypti Aag2 cells. We show that a large repertoire of protein-coding genes and non-retroviral integrated RNA virus elements are processed into genic piRNAs by different combinations of PIWI proteins. Among these, we identify a class of genes that produces piRNAs from coding sequences in an Ago3- and Piwi5-dependent fashion. We demonstrate that the replication-dependent histone gene family is a genic source of ping-pong dependent piRNAs and that histone-derived piRNAs are dynamically expressed throughout the cell cycle, suggesting a role for the piRNA pathway in the regulation of histone gene expression. Moreover, our results establish the Aag2 cell line as an accessible experimental model to study gene-derived piRNAs.
机译:piRNA途径对于控制大多数动物物种中的转座因子至关重要。在媒介蚊埃及伊蚊中,存在八种PIWI蛋白以及在虫媒病毒感染后病毒piRNA的积累表明piRNA途径的其他功能超出了基因组防御能力。为了更好地了解该途径的调控潜力,我们在埃及伊蚊Aag2细胞中详细分析了宿主来源的piRNA。我们显示蛋白质编码基因和非逆转录病毒整合RNA病毒元素的大量曲目被PIWI蛋白的不同组合加工成基因piRNA。其中,我们确定了一类从Ago3和Piwi5依赖性方式的编码序列产生piRNA的基因。我们证明复制依赖的组蛋白基因家族是乒乓依赖的piRNA的基因来源,并且组蛋白衍生的piRNA在整个细胞周期中动态表达,提示piRNA途径在组蛋白基因表达的调节中发挥作用。此外,我们的研究结果将Aag2细胞系确立为研究基因衍生piRNA的可访问实验模型。

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