Laboratoire Biologie du Développement, UMR7622, CNRS-Université Pierre et Marie Curie, Paris, France.
PLoS One. 2010 Jun 14;5(6):e11032. doi: 10.1371/journal.pone.0011032.
The study of P transposable element repression in Drosophila melanogaster led to the discovery of the Trans-Silencing Effect (TSE), a homology-dependent repression mechanism by which a P-transgene inserted in subtelomeric heterochromatin (Telomeric Associated Sequences, "TAS") has the capacity to repress in trans, in the female germline, a homologous P-lacZ transgene located in euchromatin. Phenotypic and genetic analysis have shown that TSE exhibits variegation in ovaries, displays a maternal effect as well as epigenetic transmission through meiosis and involves heterochromatin (including HP1) and RNA silencing.
Here, we show that mutations in squash and zucchini, which are involved in the piwi-interacting RNA (piRNA) silencing pathway, strongly affect TSE. In addition, we carried out a molecular analysis of TSE and show that silencing is correlated to the accumulation of lacZ small RNAs in ovaries. Finally, we show that the production of these small RNAs is sensitive to mutations affecting squash and zucchini, as well as to the dose of HP1.
Thus, our results indicate that the TSE represents a bona fide piRNA-based repression. In addition, the sensitivity of TSE to HP1 dose suggests that in Drosophila, as previously shown in Schizosaccharomyces pombe, a RNA silencing pathway can depend on heterochromatin components.
对黑腹果蝇中转座子 P 元件抑制的研究导致了 Trans-Silencing Effect(TSE)的发现,这是一种同源依赖性抑制机制,其中插入端粒异染色质(Telomeric Associated Sequences,“TAS”)中的 P-转座子有能力在雌性生殖系中反式抑制同源的 P-lacZ 转座子,该转座子位于常染色质中。表型和遗传分析表明,TSE 在卵巢中表现出斑驳现象,表现出母体效应以及通过减数分裂的表观遗传传递,并涉及异染色质(包括 HP1)和 RNA 沉默。
在这里,我们表明,参与 piwi 相互作用 RNA(piRNA)沉默途径的 squash 和 zucchini 突变强烈影响 TSE。此外,我们对 TSE 进行了分子分析,结果表明沉默与卵巢中 lacZ 小 RNA 的积累相关。最后,我们表明这些小 RNA 的产生对影响 squash 和 zucchini 的突变以及 HP1 的剂量敏感。
因此,我们的结果表明,TSE 代表了一种真正基于 piRNA 的抑制作用。此外,TSE 对 HP1 剂量的敏感性表明,在果蝇中,与先前在酿酒酵母中所示的情况一样,RNA 沉默途径可能依赖于异染色质成分。