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piRNAs from Pig Testis Provide Evidence for a Conserved Role of the Piwi Pathway in Post-Transcriptional Gene Regulation in Mammals

机译:来自猪睾丸的piRNA提供证据证明Piwi途径在哺乳动物转录后基因调控中的保守作用。

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摘要

Piwi-interacting (pi-) RNAs guide germline-expressed Piwi proteins in order to suppress the activity of transposable elements (TEs). But notably, the majority of pachytene piRNAs in mammalian testes is not related to TEs. This raises the question of whether the Piwi/piRNA pathway exerts functions beyond TE silencing. Although gene-derived piRNAs were described many times, a possible gene-regulatory function was doubted due to the absence of antisense piRNAs. Here we sequenced and analyzed piRNAs expressed in the adult testis of the pig, as this taxon possesses the full set of mammalian Piwi paralogs while their spermatozoa are marked by an extreme fitness due to selective breeding. We provide an exhaustive characterization of porcine piRNAs and genomic piRNA clusters. Moreover, we reveal that both sense and antisense piRNAs derive from protein-coding genes, while exhibiting features that clearly show that they originate from the Piwi/piRNA-mediated post-transcriptional silencing pathway, commonly referred to as ping-pong cycle. We further show that the majority of identified piRNA clusters in the porcine genome spans exonic sequences of protein-coding genes or pseudogenes, which reveals a mechanism by which primary antisense piRNAs directed against mRNA can be generated. Our data provide evidence that spliced mRNAs, derived from such loci, are not only targeted by piRNAs but are also subject to ping-pong cycle processing. Finally, we demonstrate that homologous genes are targeted and processed by piRNAs in pig, mouse and human. Altogether, this strongly suggests a conserved role for the mammalian Piwi/piRNA pathway in post-transcriptional regulation of protein-coding genes, which did not receive much attention so far.
机译:Piwi相互作用(pi-)RNA指导种系表达的Piwi蛋白,以抑制转座因子(TEs)的活性。但值得注意的是,哺乳动物睾丸中的大多数粗线piRNA与TE无关。这提出了Piwi / piRNA途径是否发挥超出TE沉默的功能的问题。尽管已多次描述了基因衍生的piRNA,但由于缺少反义piRNA,人们怀疑其可能的基因调控功能。在这里,我们对猪成年睾丸中表达的piRNA进行了测序和分析,因为该分类单元拥有全套的哺乳动物Piwi旁系同源物,而它们的精子由于选择性繁殖而具有极高的适应性。我们提供了猪piRNA和基因组piRNA簇的详尽描述。此外,我们揭示了有义和反义piRNA均来自蛋白质编码基因,同时展现的特征清楚地表明它们源自Piwi / piRNA介导的转录后沉默途径,通常称为乒乓循环。我们进一步表明,在猪基因组中大多数已确定的piRNA簇跨越了蛋白质编码基因或假基因的外显子序列,这揭示了可以产生针对mRNA的主要反义piRNA的机制。我们的数据提供了证据,证明源自此类基因座的剪接mRNA不仅被piRNA靶向,而且还受到乒乓循环处理。最后,我们证明了猪,小鼠和人类中的piRNA靶向并加工了同源基因。总之,这强烈暗示了哺乳动物Piwi / piRNA途径在蛋白质编码基因的转录后调控中的保守作用,到目前为止,这一点并未引起太多关注。

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