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Biogenesis pathways of piRNAs loaded onto AGO3 in the Drosophila testis.

机译:果蝇睾丸中加载到AGO3上的piRNA的生物发生途径。

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PIWI-interacting RNAs (piRNAs) silence transposable elements in animal germ cells. In Drosophila ovaries, piRNAs are produced by two distinct pathways: the ping-pong ping-pong-independent pathway termed the primary pathway that mainly operates in somatic cells. AGO3, one of three PIWI proteins in flies, is involved in the ping-pong cycle in ovaries. We characterized AGO3-associated piRNAs in fly testes and found that like in ovaries, AGO3 functions in the ping-pong cycle with Aubergine (Aub) for piRNA production from transposon transcripts. In contrast, most AGO3-associated piRNAs corresponding to Suppressor of Stellate [Su(Ste)] genes are antisense-oriented and bound to Aub. In addition, the vast majority of AGO3-bound piRNAs derived from the AT-chX locus on chromosome X are antisense-oriented and are also found among Aub-associated piRNAs. The presence of very few sense Su(Ste) and AT-chX piRNAs suggests that biogenesis of both Su(Ste) and AT-chX piRNAs by a ping-pong mechanism only is highly unlikely. Nevertheless, the mutual interdependence of AGO3 and Aub for the accumulation of these piRNAs shows that their production relies on both AGO3 and Aub. Analysis of piRNA pathway mutants revealed that although the requirements for piRNA factors for Su(Ste)- and AT-chX-piRNA levels mostly overlap and resemble those for the ping-pong mechanism in the ovaries, Armitage (armi) is not required for the accumulation of AT-chX-1 piRNA. These findings suggest that the impacts of armi mutants on the operation of the piRNA pathway are variable in germ cells of fly testes.
机译:PIWI相互作用RNA(piRNA)使动物生殖细胞中的转座因子沉默。在果蝇卵巢中,piRNA是通过两种不同的途径产生的:乒乓独立途径称为乒乓球,主要在体细胞中起作用。 AGO3是果蝇中的三个PIWI蛋白之一,参与卵巢的乒乓循环。我们在苍蝇睾丸中鉴定了与AGO3相关的piRNA,并发现与卵巢一样,AGO3在乒乓循环中与茄子(Aub)一起用于从转座子转录物中产生piRNA。相反,对应于星状[Su(Ste)]基因抑制子的大多数与AGO3相关的piRNA是反义的,并与Aub结合。此外,绝大多数来自X染色体AT-chX基因座的AGO3结合piRNA都是反义导向的,并且也存在于Aub相关的piRNA中。 Su(Ste)和AT-chX piRNA的存在极少,这表明Su(Ste)和AT-chX piRNA两者通过乒乓机制的生物发生极不可能。然而,AGO3和Aub对这些piRNA的积累的相互依赖性表明,它们的生产都依赖于AGO3和Aub。对piRNA途径突变体的分析表明,尽管Su(Ste)-和AT-chX-piRNA水平对piRNA因子的要求大部分重叠并且类似于卵巢中乒乓机制的要求,但对Ar不需要Armitage(armi)。 AT-chX-1 piRNA的积累。这些发现表明,在苍蝇睾丸的生殖细胞中,armi突变体对piRNA途径的影响是可变的。

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