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The exonuclease Nibbler regulates age‐associated traits and modulates piRNA length in Drosophila

机译:核酸外切酶Nibbler调节果蝇的年龄相关性状并调节piRNA长度

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SummaryNibbler (Nbr) is a 3′-to-5′ exonuclease that trims the 3′end of microRNAs (miRNAs) to generate different length patterns of miRNAs in Drosophila. Despite its effect on miRNAs, we lack knowledge of its biological significance and whether Nbr affects other classes of small RNAs such as piRNAs and endo-siRNAs. Here, we characterized the in vivo function of nbr by defining the Nbr protein expression pattern and loss-of-function effects. Nbr protein is enriched in the ovary and head. Analysis of nbr null animals reveals adult-stage defects that progress with age, including held-up wings, decreased locomotion, and brain vacuoles, indicative of accelerated age-associated processes upon nbr loss. Importantly, these effects depend on catalytic residues in the Nbr exonuclease domain, indicating that the catalytic activity is responsible for these effects. Given the impact of nbr on miRNAs, we also analyzed the effect of nbr on piRNA and endo-siRNA lengths by deep-sequence analysis of libraries from ovaries. As with miRNAs, nbr mutation led to longer length piRNAs – an effect that was dependent on the catalytic residues of the exonuclease domain. These analyses indicate a role of nbr on age-associated processes and to modulate length of multiple classes of small RNAs including miRNAs and piRNAs in Drosophila.
机译:总结Nibbler(Nbr)是一种3'至5'核酸外切酶,可修剪果蝇中microRNA(miRNA)的3'末端以产生不同长度的miRNA。尽管它对miRNA具有影响,但我们尚不了解其生物学意义以及Nbr是否会影响piRNA和endo-siRNA等其他小RNA类型。在这里,我们通过定义Nbr蛋白表达模式和功能丧失效应来表征nbr的体内功能。 Nbr蛋白富集于卵巢和头部。对nbr无效动物的分析显示,成年阶段的缺陷会随着年龄的增长而发展,包括翅膀不稳,运动减少和脑空泡,这表明nbr丢失会加速与年龄相关的过程。重要的是,这些作用取决于Nbr外切核酸酶结构域中的催化残基,表明催化活性是这些作用的原因。考虑到nbr对miRNA的影响,我们还通过对卵巢文库进行深度序列分析来分析nbr对piRNA和endo-siRNA长度的影响。与miRNA一样,nbr突变导致piRNA的长度更长-这种作用取决于核酸外切酶结构域的催化残基。这些分析表明nbr在与年龄相关的过程中的作用,并调节果蝇中包括miRNA和piRNA在内的多类小RNA的长度。

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