Discrete Small RNA-Generating Loci as Master Regulators of Transposon Activity in Drosophila

نویسندگان

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

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.

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Further reading Allen, E., Xie, Z., Gustafson, A.M., and Carrington, J.C. (2005). microRNAdirected phasing during transacting siRNA biogenesis in plants. Cell 121, 207–221. Aravin, A.A., Naumova, N.M., Tulin, A.V., Vagin, V.V., Rozovsky, Y.M., and Gvozdev, V.A. (2001). Double-stranded RNA-mediated silencing of genomic tandem repeats and transposable elements in the D. melanogaster germline. Cur...

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عنوان ژورنال:
  • Cell

دوره 128  شماره 

صفحات  -

تاریخ انتشار 2007