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Selectively Constrained RNA Editing Regulation Crosstalks with piRNA Biogenesis in Primates

机译:灵长类动物中选择性约束的RNA编辑调控与piRNA生物发生的串扰

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摘要

Although millions of RNA editing events have been reported to modify hereditary information across the primate transcriptome, evidence for their functional significance remains largely elusive, particularly for the vast majority of editing sites in noncoding regions. Here, we report a new mechanism for the functionality of RNA editing-across talk with PIWI-interacting RNA (piRNA) biogenesis. Exploiting rhesus macaque as an emerging model organism closely related to human, in combination with extensive genome and transcriptome sequencing in seven tissues of the same animal, we deciphered accurate RNA editome across both long transcripts and the piRNA species. Superimposing and comparing these two distinct RNA editome profiles revealed 4,170 editing-bearing piRNA variants, or epiRNAs, that primarily derived from edited long transcripts. These epiRNAs represent distinct entities that evidence an intersection between RNA editing regulations and piRNA biogenesis. Population genetics analyses in a macaque population of 31 independent animals further demonstrated that the epiRNA-associated RNA editing is maintained by purifying selection, lending support to the functional significance of this crosstalk in rhesus macaque. Correspondingly, these findings are consistent in human, supporting the conservation of this mechanism during the primate evolution. Overall, our study reports the earliest lines of evidence for a crosstalk between selectively constrained RNA editing regulation and piRNA biogenesis, and further illustrates that such an interaction may contribute substantially to the diversification of the piRNA repertoire in primates.
机译:尽管已经报道了数以百万计的RNA编辑事件可以改变灵长类动物转录组的遗传信息,但其功能意义的证据在很大程度上仍然难以捉摸,特别是对于非编码区域的绝大多数编辑位点。在这里,我们报道了一种RNA编辑功能的新机制 - 与PIWI相互作用RNA(piRNA)生物发生。利用恒河猴作为一种与人类密切相关的新兴模式生物,结合同一动物七个组织中的广泛基因组和转录组测序,我们破译了长转录本和 piRNA 物种的准确 RNA 编辑组。叠加和比较这两种不同的 RNA 编辑组图谱揭示了 4,170 个带有编辑的 piRNA 变体或 epiRNA,它们主要来自编辑的长转录本。这些 epiRNA 代表了不同的实体,证明了 RNA 编辑调控和 piRNA 生物发生之间的交集。对 31 只独立动物的猕猴种群的群体遗传学分析进一步表明,epiRNA 相关的 RNA 编辑是通过纯化选择来维持的,这为恒河猴中这种串扰的功能意义提供了支持。相应地,这些发现在人类中是一致的,支持了灵长类动物进化过程中这种机制的保守性。总体而言,我们的研究报告了选择性约束的RNA编辑调控与piRNA生物发生之间串扰的最早证据,并进一步说明这种相互作用可能对灵长类动物中piRNA库的多样化做出了重大贡献。

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