Unknown,Transcriptomics,Genomics,Proteomics

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Argonaute-bound small RNAs from promoter-proximal RNA Polymerase II


ABSTRACT: Argonaute (Ago) proteins mediate post-transcriptional gene repression by binding guide microRNAs (miRNAs) to regulate targeted RNAs. To confidently assess Agobound small RNAs, we adapted a mouse embryonic stem cell system to express a single inducible epitope-tagged Ago protein. Here, we report the small RNA profile of Agodeficient cells and determine Ago-dependent stability is a common feature of mammalian miRNAs. Considering both in vivo Ago-dependence for stability and Ago2 binding as defined by immunopurification, we have identified a novel class of non-canonical miRNAs derived from protein-coding gene promoters, which we name transcriptional start site miRNAs (TSS-miRNAs). A subset of promoter-proximal RNA polymerase II complexes produce hairpin RNAs that are processed in a DGCR8/Drosha-independent, but Dicer-dependent manner. TSS-miRNA activity is detectable endogenously, upon transfection of a mimic or by mRNA overexpression. Finally, we present evidence of differential expression and conservation in humans, suggesting important roles in gene regulation. Examination of Ago immunoprecipitations and mESC without Ago proteins

ORGANISM(S): Mus musculus

SUBMITTER: Jesse Zamudio 

PROVIDER: E-GEOD-50595 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Argonaute-bound small RNAs from promoter-proximal RNA polymerase II.

Zamudio Jesse R JR   Kelly Timothy J TJ   Sharp Phillip A PA  

Cell 20140201 5


Argonaute (Ago) proteins mediate posttranscriptional gene repression by binding guide miRNAs to regulate targeted RNAs. To confidently assess Ago-bound small RNAs, we adapted a mouse embryonic stem cell system to express a single epitope-tagged Ago protein family member in an inducible manner. Here, we report the small RNA profile of Ago-deficient cells and show that Ago-dependent stability is a common feature of mammalian miRNAs. Using this criteria and immunopurification, we identified an Ago-  ...[more]

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