SummaryDrosophila 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 bet...
Almost all eukaryotes have transposable elements (TEs) against which they have developed defense mec...
The PIWI-interacting RNA (piRNA) pathway controls transposon expression in animal germ cells, thereb...
SummaryBackgroundBecause of the mutagenic consequences of mobile genetic elements, elaborate defense...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
SummaryDrosophila Piwi-family proteins have been implicated in transposon control. Here, we examine ...
PIWI-interacting RNAs (piRNAs) provide defence against transposable element (TE) expansion in the ge...
SummaryGermline-specific Piwi-interacting RNAs (piRNAs) protect animal genomes against transposons a...
In animal cells, small RNA molecules, called piRNAs, defend the genome against selfish DNA elements ...
A large fraction of eukaryotic genomes consists of mobile, repetitive elements called transposons. S...
PIWI proteins and their guiding Piwi-interacting small RNAs (piRNAs) are crucial for fertility and t...
<div><p>In the <i>Drosophila</i> germline, transposable elements (TEs) are silenced by PIWI-interact...
PIWI proteins and their guiding Piwi-interacting small RNAs (piRNAs) are crucial for fertility and t...
SummaryEukaryotic genomes are colonized by transposons whose uncontrolled activity causes genomic in...
Almost all eukaryotes have transposable elements (TEs) against which they have developed defense mec...
The PIWI-interacting RNA (piRNA) pathway controls transposon expression in animal germ cells, thereb...
SummaryBackgroundBecause of the mutagenic consequences of mobile genetic elements, elaborate defense...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
Drosophila Piwi-family proteins have been implicated in transposon control. Here, we examine piwi-in...
SummaryDrosophila Piwi-family proteins have been implicated in transposon control. Here, we examine ...
PIWI-interacting RNAs (piRNAs) provide defence against transposable element (TE) expansion in the ge...
SummaryGermline-specific Piwi-interacting RNAs (piRNAs) protect animal genomes against transposons a...
In animal cells, small RNA molecules, called piRNAs, defend the genome against selfish DNA elements ...
A large fraction of eukaryotic genomes consists of mobile, repetitive elements called transposons. S...
PIWI proteins and their guiding Piwi-interacting small RNAs (piRNAs) are crucial for fertility and t...
<div><p>In the <i>Drosophila</i> germline, transposable elements (TEs) are silenced by PIWI-interact...
PIWI proteins and their guiding Piwi-interacting small RNAs (piRNAs) are crucial for fertility and t...
SummaryEukaryotic genomes are colonized by transposons whose uncontrolled activity causes genomic in...
Almost all eukaryotes have transposable elements (TEs) against which they have developed defense mec...
The PIWI-interacting RNA (piRNA) pathway controls transposon expression in animal germ cells, thereb...
SummaryBackgroundBecause of the mutagenic consequences of mobile genetic elements, elaborate defense...