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Coupled RNA processing and transcription of intergenic primary microRNAs.

Academic Article
Publication Date:
2009
abstract:
The first step in microRNA (miRNA) biogenesis occurs in the nucleus and is mediated by the Microprocessor complex containing the RNase III-like enzyme Drosha and its cofactor DGCR8. Here we show that the 5'-->3' exonuclease Xrn2 associates with independently transcribed miRNAs and, in combination with Drosha processing, attenuates transcription in downstream regions. We suggest that, after Drosha cleavage, a torpedo-like mechanism acts on nascent long precursor miRNAs, whereby Xrn2 exonuclease degrades the RNA polymerase II-associated transcripts inducing its release from the template. While involved in primary transcript termination, this attenuation effect does not restrict clustered miRNA expression, which, in the majority of cases, is separated by short spacers. We also show that transcripts originating from a miRNA promoter are retained on the chromatin template and are more efficiently processed than those produced from mRNA or snRNA Pol II-dependent promoters. These data imply that coupling between transcription and processing promotes efficient expression of independently transcribed miRNAs.
Iris type:
01.01 Articolo in rivista
Keywords:
Cell Line; Exoribonucleases; Exoribonucleases: genetics; Exoribonucleases: metabolism; Genetic; Genetic: physiology; HeLa Cells; Humans; Messenger; Messenger: genetics; Messenger: metabolism; MicroRNAs; MicroRNAs: genetics; MicroRNAs: metabolism; Post-Transcriptional; Promoter Regions; Proteins; Proteins: genetics; Proteins: metabolism; RNA; RNA Polymerase II; RNA Polymerase II: genetics; RNA Polymerase II: metabolism; RNA Processing; Ribonuclease III; Ribonuclease III: genetics; Ribonuclease III: metabolism; Small Nuclear; Small Nuclear: genetics; Small Nuclear: metabolism; Tumor
List of contributors:
Bozzoni, Irene; Pagano, Francesca; Marchioni, Marcella
Authors of the University:
MARCHIONI MARCELLA
PAGANO FRANCESCA
Handle:
https://iris.cnr.it/handle/20.500.14243/415219
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