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The endogenous siRNA pathway is involved in heterochromatin formation in Drosophila

机译:内源性siRNA途径参与果蝇异染色质的形成

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摘要

A new class of small RNAs (endo-siRNAs) produced from endogenous double-stranded RNA (dsRNA) precursors was recently shown to mediate transposable element (TE) silencing in the Drosophila soma. These endo-siRNAs might play a role in heterochromatin formation, as has been shown in S. pombe for siRNAs derived from repetitive sequences in chromosome pericentromeres. To address this possibility, we used the viral suppressors of RNA silencing B2 and P19. These proteins normally counteract the RNAi host defense by blocking the biogenesis or activity of virus-derived siRNAs. We hypothesized that both proteins would similarly block endo-siRNA processing or function, thereby revealing the contribution of endo-siRNA to heterochromatin formation. Accordingly, P19 as well as a nuclear form of P19 expressed in Drosophila somatic cells were found to sequester TE-derived siRNAs whereas B2 predominantly bound their longer precursors. Strikingly, B2 or the nuclear form of P19, but not P19, suppressed silencing of heterochromatin gene markers in adult flies, and altered histone H3-K9 methylation as well as chromosomal distribution of histone methyl transferase Su(var)3-9 and Heterochromatin Protein 1 in larvae. Similar effects were observed in dcr2, r2d2, and ago2 mutants. Our findings provide evidence that a nuclear pool of TE-derived endo-siRNAs is involved in heterochromatin formation in somatic tissues in Drosophila.
机译:从内源性双链RNA(dsRNA)前体产生的一类新的小RNA(内切siRNA)最近显示出介导果蝇体中转座因子(TE)沉默。这些内在的siRNA可能在异染色质形成中起作用,正如在粟酒裂殖酵母中从染色体着丝粒中的重复序列衍生的siRNA所示。为了解决这种可能性,我们使用了RNA沉默B2和P19的病毒抑制剂。这些蛋白质通常通过阻断病毒衍生的siRNA的生物发生或活性来抵消RNAi宿主的防御作用。我们假设这两种蛋白将类似地阻断内切siRNA的加工或功能,从而揭示内切siRNA对异染色质形成的贡献。因此,发现在果蝇体细胞中表达的P19以及P19的核形式螯合TE衍生的siRNA,而B2主要结合其较长的前体。令人惊讶的是,B2或P19而非P19的核形式抑制了成年果蝇中异染色质基因标记的沉默,并改变了组蛋白H3-K9甲基化以及组蛋白甲基转移酶Su(var)3-9和异染色质蛋白的染色体分布1个幼虫。在dcr2,r2d2和ago2突变体中观察到了类似的效果。我们的发现提供了证据,证明果蝇体细胞组织中异源染色质的形成与TE来源的内源RNA siRNA的核库有关。

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