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Identification and Functional Analysis of the Pre-piRNA 3 ' Trimmer in Silkworms

机译:家蚕pre-piRNA 3'切片段的鉴定和功能分析

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PIWI-interacting RNAs (piRNAs) play a crucial role in transposon silencing in animal germ cells. In piRNA biogenesis, single-stranded piRNA intermediates are loaded into PIWI-clade proteins and cleaved by Zucchini/MitoPLD, yielding precursor piRNAs (pre-piRNAs). Pre-piRNAs that are longer than the mature piRNA length are then trimmed at their 3' ends. Although recent studies implicated the Tudor domain protein Papi/Tdrkh in pre-piRNA trimming, the identity of Trimmer and its relationship with Papi/Tdrkh remain unknown. Here, we identified PNLDC1, an uncharacterized 3'-5' exonuclease, as Trimmer in silkworms. Trimmer is enriched in the mitochondrial fraction and binds to Papi/Tdrkh. Depletion of Trimmer and Papi/Tdrkh additively inhibits trimming, causing accumulation of similar to 35-40-nt pre-piRNAs that are impaired for target cleavage and prone to degradation. Our results highlight the cooperative action of Trimmer and Papi/Tdrkh in piRNA maturation.
机译:PIWI相互作用RNA(piRNA)在动物生殖细胞的转座子沉默中起着至关重要的作用。在piRNA生物发生中,将单链piRNA中间体加载到PIWI-clade蛋白中,并通过Zucchini / MitoPLD裂解,产生前体piRNA(pre-piRNA)。长度大于成熟piRNA长度的pre-piRNA然后在其3'末端修剪。尽管最近的研究表明Tudor域蛋白Papi / Tdrkh参与了pre-piRNA修剪,但是Trimmer的身份及其与Papi / Tdrkh的关系仍然未知。在这里,我们将PNLDC1(一种未表征的3'-5'核酸外切酶)鉴定为蚕中的Trimmer。微剪富含线粒体部分,并与Papi / Tdrkh结合。修剪器和Papi / Tdrkh的耗竭会抑制修整,导致类似35-40 nt的pre-piRNA积累,这些RNA损伤靶标切割并易于降解。我们的结果强调了Trimmer和Papi / Tdrkh在piRNA成熟中的协同作用。

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