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Distinct RNA-dependent RNA polymerases are required for RNAi triggered by double-stranded RNA versus truncated transgenes in Paramecium tetraurelia

机译:双链RNA与四脲草履虫截短的转基因触发的RNAi需要不同的RNA依赖性RNA聚合酶

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摘要

In many eukaryotes, RNA-dependent RNA polymerases (RdRPs) play key roles in the RNAi pathway. They have been implicated in the recognition and processing of aberrant transcripts triggering the process, and in amplification of the silencing response. We have tested the functions of RdRP genes from the ciliate Paramecium tetraurelia in experimentally induced and endogenous mechanisms of gene silencing. In this organism, RNAi can be triggered either by high-copy, truncated transgenes or by directly feeding cells with double-stranded RNA (dsRNA). Surprisingly, dsRNA-induced silencing depends on the putatively functional RDR1 and RDR2 genes, which are required for the accumulation of both primary siRNAs and a distinct class of small RNAs suggestive of secondary siRNAs. In contrast, a third gene with a highly divergent catalytic domain, RDR3, is required for siRNA accumulation when RNAi is triggered by truncated transgenes. Our data further implicate RDR3 in the accumulation of previously described endogenous siRNAs and in the regulation of the surface antigen gene family. While only one of these genes is normally expressed in any clonal cell line, the knockdown of RDR3 leads to co-expression of multiple antigens. These results provide evidence for a functional specialization of Paramecium RdRP genes in distinct RNAi pathways operating during vegetative growth.
机译:在许多真核生物中,RNA依赖性RNA聚合酶(RdRP)在RNAi途径中起关键作用。它们与触发该过程的异常转录物的识别和处理以及沉默反应的扩增有关。我们已经测试了来自纤毛四毛草履虫的RdRP基因在基因沉默的实验诱导和内源性机制中的功能。在这种生物中,RNAi可以通过高拷贝,截短的转基因或直接用双链RNA(dsRNA)喂养细胞来触发。出乎意料的是,dsRNA诱导的沉默取决于假定功能的RDR1和RDR2基因,这是初级siRNA和暗示次级siRNA的不同类别的小RNA积累所必需的。相反,当RNAi被截短的转基因触发时,siRNA积累需要具有高度分化的催化域的第三个基因RDR3。我们的数据进一步暗示了RDR3参与了先前描述的内源性siRNA的积累和表面抗原基因家族的调控。尽管这些基因中只有一个在任何克隆细胞系中正常表达,但敲除RDR3却导致多种抗原的共表达。这些结果提供了草履虫RdRP基因在营养生长过程中起作用的不同RNAi途径中功能性专业化的证据。

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