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Journal ArticleDOI

An RNA-directed nuclease mediates post-transcriptional gene silencing in Drosophila cells

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TLDR
It is shown that ‘loss-of-function’ phenotypes can be created in cultured Drosophila cells by transfection with specific double-stranded RNAs, which coincides with a marked reduction in the level of cognate cellular messenger RNAs.
Abstract
In a diverse group of organisms that includes Caenorhabditis elegans, Drosophila, planaria, hydra, trypanosomes, fungi and plants, the introduction of double-stranded RNAs inhibits gene expression in a sequence-specific manner. These responses, called RNA interference or post-transcriptional gene silencing, may provide anti-viral defence, modulate transposition or regulate gene expression. We have taken a biochemical approach towards elucidating the mechanisms underlying this genetic phenomenon. Here we show that 'loss-of-function' phenotypes can be created in cultured Drosophila cells by transfection with specific double-stranded RNAs. This coincides with a marked reduction in the level of cognate cellular messenger RNAs. Extracts of transfected cells contain a nuclease activity that specifically degrades exogenous transcripts homologous to transfected double-stranded RNA. This enzyme contains an essential RNA component. After partial purification, the sequence-specific nuclease co-fractionates with a discrete, approximately 25-nucleotide RNA species which may confer specificity to the enzyme through homology to the substrate mRNAs.

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Citations
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Role for a bidentate ribonuclease in the initiation step of RNA interference

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Identification of novel genes coding for small expressed RNAs.

TL;DR: It is shown that many 21- and 22-nt expressed RNAs, termed microRNAs, exist in invertebrates and vertebrates and that some of these novel RNAs are highly conserved, which suggests that sequence-specific, posttranscriptional regulatory mechanisms mediated by smallRNAs are more general than previously appreciated.
References
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Journal ArticleDOI

A species of small antisense RNA in posttranscriptional gene silencing in plants.

TL;DR: The 25-nucleotide antisense RNA detected in transgene-induced PTGS is likely synthesized from an RNA template and may represent the specificity determinant of PTGS.
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The rde-1 Gene, RNA Interference, and Transposon Silencing in C. elegans

TL;DR: It is shown that rde-1 is a member of the piwi/sting/argonaute/zwille/eIF2C gene family conserved from plants to vertebrates and the possibility that one natural function of RNAi is transposon silencing is discussed.
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Cell lines derived from late embryonic stages of Drosophila melanogaster

TL;DR: The development of three cell lines initiated from the late embryonic stages of Drosophila melanogaster and evidence is presented that at least one line is derived from imaginal disc cells.
Journal ArticleDOI

Virus resistance and gene silencing in plants can be induced by simultaneous expression of sense and antisense RNA

TL;DR: It is shown that transforming plants with virus or reporter gene constructs that produce RNAs capable of duplex formation confer virus immunity or gene silencing on the plants.
Journal ArticleDOI

Use of dsRNA-Mediated Genetic Interference to Demonstrate that frizzled and frizzled 2 Act in the Wingless Pathway

TL;DR: Investigation of the potential of double-stranded RNA to interfere with the function of genes in Drosophila demonstrated that dsRNA interference can be used to analyze many aspects of gene function.
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