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体细胞核初级 piRNA 的生物发生由顺式作用 RNA 元件和反式作用 Yb 驱动。

Somatic Primary piRNA Biogenesis Driven by cis-Acting RNA Elements and trans-Acting Yb.

机构信息

Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo 113-0032, Japan.

Department of Molecular Biology, Keio University School of Medicine, Tokyo 160-8582, Japan.

出版信息

Cell Rep. 2015 Jul 21;12(3):429-40. doi: 10.1016/j.celrep.2015.06.035. Epub 2015 Jul 9.

Abstract

Primary piRNAs in Drosophila ovarian somatic cells arise from piRNA cluster transcripts and the 3' UTRs of a subset of mRNAs, including Traffic jam (Tj) mRNA. However, it is unclear how these RNAs are determined as primary piRNA sources. Here, we identify a cis-acting 100-nt fragment in the Tj 3' UTR that is sufficient for producing artificial piRNAs from unintegrated DNA. These artificial piRNAs were effective in endogenous gene transcriptional silencing. Yb, a core component of primary piRNA biogenesis center Yb bodies, directly bound the Tj-cis element. Disruption of this interaction markedly reduced piRNA production. Thus, Yb is the trans-acting partner of the Tj-cis element. Yb-CLIP revealed that Yb binding correlated with somatic piRNA production but Tj-cis element downstream sequences produced few artificial piRNAs. We thus propose that Yb determines primary piRNA sources through two modes of action: primary binding to cis elements to specify substrates and secondary binding to downstream regions to increase diversity in piRNA populations.

摘要

果蝇卵巢体细胞中的初级 piRNAs 来源于 piRNA 簇转录本和一部分 mRNA 的 3'UTR,包括 Traffic jam (Tj) mRNA。然而,这些 RNA 如何被确定为初级 piRNA 来源尚不清楚。在这里,我们在 Tj 3'UTR 中鉴定出一个顺式作用的 100nt 片段,它足以从未整合的 DNA 中产生人工 piRNAs。这些人工 piRNAs能够有效地抑制内源性基因转录。Yb 是初级 piRNA 生物发生中心 Yb 体的核心组成部分,它直接结合 Tj-cis 元件。破坏这种相互作用显著减少了 piRNA 的产生。因此,Yb 是 Tj-cis 元件的反式作用伴侣。Yb-CLIP 揭示了 Yb 结合与体细胞 piRNA 产生相关,但 Tj-cis 元件下游序列产生的人工 piRNAs 很少。因此,我们提出 Yb 通过两种作用模式来确定初级 piRNA 来源:初级结合顺式元件来指定底物,以及二级结合下游区域来增加 piRNA 群体的多样性。

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