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Two distinct transcriptional controls triggered by nuclear Piwi-piRISCs in the Drosophila piRNA pathway

机译:在果蝇PiRNA途径中核piwi-piRiscs引发的两个不同的转录对照

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摘要

Transposons occupy a large proportion of eukaryotic genomes. Spontaneous movement of transposons within the genome leads to genomic mutations that are often life threatening. To avoid such outcomes, host species have acquired an elaborate molecular pathway during evolution, in which PIWI proteins and PIWI-interacting RNAs (piRNAs) collaboratively control transposons to maintain germline genome integrity. Studies of PIWI-piRNA-based transposon silencing have uncovered the molecular mechanisms underlying piRNA biogenesis and the silencing mode-of-action in the pathway. Interestingly, the bilateral events require transcriptional controls triggered by nuclear PIWI-piRNA complexes in positive and negative manners, respectively. This review summarizes the mechanisms of PIWI-piRNA-mediated transcriptional controls in Drosophila ovaries.
机译:转座子占据了大量的真核基因组。 在基因组内转座子的自发运动导致往往危及生命的基因组突变。 为了避免这种结果,宿主物种在进化期间获得了精细分子途径,其中piwi蛋白和Piwi - 相互作用的RNA(PiRNA)协作控制转座,以保持种系基因组完整性。 基于PIWI-PiRNA的转座子沉默的研究发现了PiRNA生物发生的分子机制和途径中的沉默作用模式。 有趣的是,双侧事件需要分别以阳性和负面方式触发的核piwi-piRna复合物引发的转录对照。 本综述总结了PIWI-PiRNA介导的转录对照在果蝇卵巢中的转录对照的机制。

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