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The RNase PARN-1 Trims piRNA 3 ' Ends to Promote Transcriptome Surveillance in C. elegans

机译:RNase PARN-1修剪piRNA 3'末端以促进秀丽隐杆线虫的转录组监测。

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Piwi-interacting RNAs (piRNAs) engage Piwi proteins to suppress transposons and are essential for fertility in diverse organisms. An interesting feature of piRNAs is that, while piRNA lengths are stereotypical within a species, they can differ widely between species. For example, piRNAs are mainly 29 and 30 nucleotides in humans, 24 to 30 nucleotides in D. melanogaster, and uniformly 21 nucleotides in C. elegans. However, how piRNA length is determined and whether length impacts function remains unknown. Here, we show that C. elegans deficient for PARN-1, a conserved RNase, accumulate untrimmed piRNAs with 3' extensions. Surprisingly, these longer piRNAs are stable and associate with the Piwi protein PRG-1 but fail to robustly recruit downstream silencing factors. Our findings identify PARN-1 as a key regulator of piRNA length in C. elegans and suggest that length is regulated to promote efficient transcriptome surveillance.
机译:与Piwi相互作用的RNA(piRNA)与Piwi蛋白结合以抑制转座子,并且对于多种生物的繁殖至关重要。 piRNA的一个有趣特征是,虽然piRNA的长度在一个物种内是定型的,但它们在物种之间可能有很大差异。例如,piRNA在人类中主要是29和30个核苷酸,在黑腹果蝇中是24至30个核苷酸,在秀丽隐杆线虫中是21个核苷酸。然而,如何确定piRNA长度以及长度是否影响功能尚不清楚。在这里,我们显示线虫缺乏PARN-1(一种保守的RNase),会积累具有3'延伸的未修剪的piRNA。出乎意料的是,这些更长的piRNA稳定并与Piwi蛋白PRG-1结合,但不能有效地募集下游沉默因子。我们的发现将PARN-1鉴定为秀丽隐杆线虫piRNA长度的关键调节因子,并建议调节其长度以促进有效的转录组监测。

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