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E-GEOD-68699 GSE68699, SRP058145 RNA-seq of coding RNA, RNA-seq of non c… Mus musculus

A biogenesis step upstream of Microprocessor controls miR-17~92 expression

·Released May 11, 2015 ·Updated May 22, 2015
4
Samples
4
Assays
Description

The precise control of miR-17~92 microRNA (miRNA) is essential for normal development and overexpression of certain miRNAs from this cluster is oncogenic. Here we find the relative expression of the six miRNAs processed from the primary (pri-miR-17~92) transcript is dynamically regulated during embryonic stem cell differentiation. We identify a new miRNA biogenesis intermediate, termed ‘progenitor-miRNA’ (pro-miRNA), that is an efficient substrate for Microprocessor. An autoinhibitory 5’ RNA fragment is cleaved to generate pro-miRNA and selectively license Microprocessor-mediated production of pre-miR-17, -18a, -19a, 20a, and -19b. Using genetic, biochemical, and structural methods we define two complementary cis-regulatory repression domains required for the formation of this inhibitory RNA conformation. We find the endonuclease CPSF3 (CPSF73), and the Spliceosome-associated ISY1 are required for pro-miRNA biogenesis and expression of all miRNAs within the cluster except miR-92. Thus, developmentally regulated generation of pro-miRNA explains the posttranscriptional control of miR-17~92 expression in development. Illumina RNAseq in WT, dgcr8-/- and dicer-/- mESCs and small RNA seq in WT mESCs

Sample Attributes
cell type
dgcr8-/- mESCs, dicer-/- mESCs, WT mESCs
organism
Mus musculus
strain
V6.5
Experiment Info
Accession
E-GEOD-68699
GEO ID
GSE68699, SRP058145
Type
RNA-seq of coding RNA, RNA-seq of non coding RNA
Organism
Mus musculus
Released
May 11, 2015
Updated
May 22, 2015
Submitter
Richard Gregory、 Peng Du
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