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作为果蝇转座子活性主要调控因子的离散小RNA生成位点

Discrete small RNA-generating loci as master regulators of transposon activity in Drosophila.

作者信息

Brennecke Julius, Aravin Alexei A, Stark Alexander, Dus Monica, Kellis Manolis, Sachidanandam Ravi, Hannon Gregory J

机构信息

Cold Spring Harbor Laboratory, Watson School of Biological Sciences and Howard Hughes Medical Institute, Cold Spring Harbor, NY 11724, USA.

出版信息

Cell. 2007 Mar 23;128(6):1089-103. doi: 10.1016/j.cell.2007.01.043. Epub 2007 Mar 8.

Abstract

Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-interacting RNAs (piRNAs) associated with each Drosophila Piwi protein and find that Piwi and Aubergine bind RNAs that are predominantly antisense to transposons, whereas Ago3 complexes contain predominantly sense piRNAs. As in mammals, the majority of Drosophila piRNAs are derived from discrete genomic loci. These loci comprise mainly defective transposon sequences, and some have previously been identified as master regulators of transposon activity. Our data suggest that heterochromatic piRNA loci interact with potentially active, euchromatic transposons to form an adaptive system for transposon control. Complementary relationships between sense and antisense piRNA populations suggest an amplification loop wherein each piRNA-directed cleavage event generates the 5' end of a new piRNA. Thus, sense piRNAs, formed following cleavage of transposon mRNAs may enhance production of antisense piRNAs, complementary to active elements, by directing cleavage of transcripts from master control loci.

摘要

果蝇Piwi家族蛋白与转座子控制有关。在此,我们研究了与每种果蝇Piwi蛋白相关的Piwi相互作用RNA(piRNA),发现Piwi和茄子蛋白结合的RNA主要与转座子呈反义,而Ago3复合物主要包含正义piRNA。与哺乳动物一样,大多数果蝇piRNA来自离散的基因组位点。这些位点主要由有缺陷的转座子序列组成,其中一些先前已被鉴定为转座子活性的主调控因子。我们的数据表明,异染色质piRNA位点与潜在活跃的常染色质转座子相互作用,形成一个用于转座子控制的适应性系统。正义和反义piRNA群体之间的互补关系表明存在一个扩增环,其中每个piRNA指导的切割事件都会产生一个新piRNA的5'端。因此,转座子mRNA切割后形成的正义piRNA可能通过指导主控制位点转录本的切割来增强与活性元件互补的反义piRNA的产生。

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