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RNA干扰蛋白和vasa基因座参与黑腹果蝇雌性生殖系中逆转座子的沉默。

The RNA interference proteins and vasa locus are involved in the silencing of retrotransposons in the female germline of Drosophila melanogaster.

作者信息

Vagin Vasily V, Klenov Mikhail S, Kalmykova Alla I, Stolyarenko Anastasia D, Kotelnikov Roman N, Gvozdev Vladimir A

机构信息

Department of Animal Molecular Genetics, Institute of Molecular Genetics, Moscow, Russia.

出版信息

RNA Biol. 2004 May;1(1):54-8. Epub 2004 May 21.

Abstract

RNA interference (RNAi) is considered as a defense against expansion of transposable elements. The proteins related to RNA helicase and Argonaute families are involved in RNAi process in different organisms. It was shown that Argonaute AUBERGINE and putative RNA helicase SPINDLE-E proteins were essential for RNAi in Drosophila. Here, we describe the role of aubergine (aub) and spindle-E (spn-E) genes in the control of LTR retrotransposon copia and nonLTR telomeric Het-A and I retrotransposons in ovaries. spn-E mutation causes a drastically increased lacZ expression driven by copia LTR. For the first time we show the involvement of AUBERGINE protein and VASA RNA helicase, essential for oocyte patterning, in the retrotransposon silencing. spn-E, vasa and aub mutations cause similar accumulation of both I element and Het-A transcripts in the developing oocyte. VASA and AUBERGINE proteins are known as components of perinuclear ribonucleoprotein particles in germ cells, and spn-E mutation disturbs protein content of the particles. We suggest participation of these proteins in the same silencing pathway.

摘要

RNA干扰(RNAi)被认为是一种抵御转座元件扩张的防御机制。与RNA解旋酶和AGO蛋白家族相关的蛋白质参与了不同生物体的RNAi过程。研究表明,AGO蛋白AUBERGINE和假定的RNA解旋酶SPINDLE-E蛋白对于果蝇中的RNAi至关重要。在此,我们描述了茄子(aub)和纺锤体-E(spn-E)基因在卵巢中对LTR反转录转座子copia以及非LTR端粒Het-A和I反转录转座子的控制作用。spn-E突变导致由copia LTR驱动的lacZ表达急剧增加。我们首次证明了对卵母细胞模式形成至关重要的AUBERGINE蛋白和VASA RNA解旋酶参与反转录转座子沉默。spn-E、vasa和aub突变导致发育中的卵母细胞中I元件和Het-A转录本出现类似的积累。VASA和AUBERGINE蛋白是生殖细胞中核周核糖核蛋白颗粒的组成成分,并且spn-E突变会干扰这些颗粒的蛋白质含量。我们认为这些蛋白质参与了相同的沉默途径。

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