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A meiosis-specific Spt5 homolog involved in non-coding transcription

机译:在非编码转录中涉及的大学特异性SPT5同源物

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Spt5 is a conserved and essential transcriptional regulator that binds directly to RNA polymerase and is involved in transcription elongation, polymerase pausing and various co-transcriptional processes. To investigate the role of Spt5 in non-coding transcription, we used the unicellular model Paramecium tetraurelia. In this ciliate, development is controlled by epigenetic mechanisms that use different classes of non-coding RNAs to target DNA elimination. We identified two SPT5 genes. One (STP5v) is involved in vegetative growth, while the other (SPT5m) is essential for sexual reproduction. We focused our study on SPT5m, expressed at meiosis and associated with germline nuclei during sexual processes. Upon Spt5m depletion, we observed absence of sc-nRNAs, piRNA-like 25 nt small RNAs produced at meiosis. The scnRNAs are a temporal copy of the germline genome and play a key role in programming DNA elimination. Moreover, Spt5m depletion abolishes elimination of all germline-limited sequences, including sequences whose excision was previously shown to be scnRNA-independent. This suggests that in addition to scnRNA production, Spt5 is involved in setting some as yet uncharacterized epigenetic information at meiosis. Our study establishes that Spt5m is crucial for developmental genome rearrangements and necessary for scnRNA production.
机译:SPT5是一种保守的和必需的转录调节剂,其直接与RNA聚合酶结合,并且参与转录伸长率,聚合酶暂停和各种共转录过程。探讨SPT5在非编码转录中的作用,我们使用单细胞模型参数四虫菊雷。在这种Ciliate中,通过使用不同类别的非编码RNA来控制靶向DNA消除的表观遗传机制来控制。我们确定了两个SPT5基因。一个(STP5V)涉及营养生长,而另一个(SPT5M)对于性繁殖至关重要。我们专注于我们对SPT5M的研究,在白痴中表达并在性过程中与种系核相关联。在SPT5M耗尽后,我们观察到不存在SC-NRNA,PiRNA样25 NT小RNA在减数分裂时产生。 SCNRNA是种系基因组的时间副本,在编程DNA消除中发挥关键作用。此外,SPT5M耗竭消除了消除所有种系限限序列,包括其切除先前被证明为SCNRNA的序列的序列。这表明除了SCNRNA生产之外,SPT5还参与了在减数分裂中的一些尚未表达的外观遗传信息。我们的研究确定了SPT5M对发育基因组重排以及ScnRNA生产所需的至关重要。

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