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      Piwi Is Required during Drosophila Embryogenesis to License Dual-Strand piRNA Clusters for Transposon Repression in Adult Ovaries.

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          Abstract

          Most piRNAs in the Drosophila female germline are transcribed from heterochromatic regions called dual-strand piRNA clusters. Histone 3 lysine 9 trimethylation (H3K9me3) is required for licensing piRNA production by these clusters. However, it is unclear when and how they acquire this permissive heterochromatic state. Here, we show that transient Piwi depletion in Drosophila embryos results in H3K9me3 decrease at piRNA clusters in ovaries. This is accompanied by impaired biogenesis of ovarian piRNAs, accumulation of transposable element transcripts, and female sterility. Conversely, Piwi depletion at later developmental stages does not disturb piRNA cluster licensing. These results indicate that the identity of piRNA clusters is epigenetically acquired in a Piwi-dependent manner during embryonic development, which is reminiscent of the widespread genome reprogramming occurring during early mammalian zygotic development.

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          Author and article information

          Journal
          Mol. Cell
          Molecular cell
          Elsevier BV
          1097-4164
          1097-2765
          May 04 2017
          : 66
          : 3
          Affiliations
          [1 ] Institut de Génétique Humaine, UMR9002 CNRS-Université de Montpellier, 34396 Montpellier, France.
          [2 ] Institut de Génétique Humaine, UMR9002 CNRS-Université de Montpellier, 34396 Montpellier, France. Electronic address: severine.chambeyron@igh.cnrs.fr.
          Article
          S1097-2765(17)30207-1
          10.1016/j.molcel.2017.03.017
          28457744
          d87d0f5a-0a8c-40d5-865c-4e3d43551f04
          History

          Drosophila embryo,H3K9me3,Piwi,epigenetics,heterochromatin,piRNA,reprogramming,transposable elements

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