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Xenopus Piwi proteins interact with a broad proportion of the oocyte transcriptome

机译:爪蟾Piwi蛋白与大部分蛋白相互作用卵母细胞转录组

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摘要

Piwi proteins utilize small RNAs (piRNAs) to recognize target transcripts such as transposable elements (TE). However, extensive piRNA sequence diversity also suggests that Piwi/piRNA complexes interact with many transcripts beyond TEs. To determine Piwi target RNAs, we used ribonucleoprotein-immunoprecipitation (RIP) and cross-linking and immunoprecipitation (CLIP) to identify thousands of transcripts associated with the Piwi proteins XIWI and XILI (Piwi-protein-associated transcripts, PATs) from early stage oocytes of X. laevis and X. tropicalis. Most PATs associate with both XIWI and XILI and include transcripts of developmentally important proteins in oogenesis and embryogenesis. Only a minor fraction of PATs in both frog species displayed near perfect matches to piRNAs. Since predicting imperfect pairing between all piRNAs and target RNAs remains intractable, we instead determined that PAT read counts correlate well with the lengths and expression levels of transcripts, features that have also been observed for oocyte mRNAs associated with Drosophila Piwi proteins. We used an in vitro assay with exogenous RNA to confirm that XIWI associates with RNAs in a length- and concentration-dependent manner. In this assay, noncoding transcripts with many perfectly matched antisense piRNAs were unstable, whereas coding transcripts with matching piRNAs were stable, consistent with emerging evidence that Piwi proteins both promote the turnover of TEs and other RNAs, and may also regulate mRNA localization and translation. Our study suggests that Piwi proteins play multiple roles in germ cells and establishes a tractable vertebrate system to study the role of Piwi proteins in transcript regulation.
机译:Piwi蛋白利用小RNA(piRNA)识别目标转录物,例如转座因子(TE)。然而,广泛的piRNA序列多样性也表明Piwi / piRNA复合物与TE以外的许多转录物相互作用。为了确定Piwi靶RNA,我们使用了核糖蛋白免疫沉淀(RIP)以及交联和免疫沉淀(CLIP)来鉴定来自早期卵母细胞的与Piwi蛋白质XIWI和XILI(Piwi蛋白质相关的转录本,PAT)相关的转录本。 X. laevis和X.tropicis。大多数PAT与XIWI和XILI都相关,并且包括在卵子发生和胚胎发生中具有重要发展意义的蛋白质的转录本。两种青蛙物种中只有很小一部分的PAT表现出与piRNA的完美匹配。由于预测所有piRNA和目标RNA之间的不完美配对仍然很棘手,因此,我们改为确定PAT读取计数与转录本的长度和表达水平很好地相关,对于果蝇Piwi蛋白相关的卵母细胞mRNA,也观察到了这些特征。我们使用外源RNA进行体外测定,以确认XIWI以长度和浓度依赖性方式与RNA缔合。在此分析中,具有许多完美匹配的反义piRNA的非编码转录物是不稳定的,而具有匹配piRNA的编码转录物是稳定的,这与新兴的证据表明Piwi蛋白既促进TEs和其他RNA的周转,也可能调节mRNA的定位和翻译有关。我们的研究表明,Piwi蛋白在生殖细胞中起着多种作用,并建立了一个易于处理的脊椎动物系统来研究Piwi蛋白在转录调控中的作用。

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