4.8 Article

Microprocessor Activity Controls Differential miRNA Biogenesis In Vivo

Journal

CELL REPORTS
Volume 9, Issue 2, Pages 542-554

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2014.09.007

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Funding

  1. DFG [SFB-TR84]
  2. Federal Ministry for Education and Research in Germany through the Alexander von Humboldt Foundation Sofja Kovalevskaja Award

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In miRNA biogenesis, pri-miRNA transcripts are converted into pre-miRNA hairpins. The in vivo properties of this process remain enigmatic. Here, we determine in vivo transcriptome-wide pri-miRNA processing using next-generation sequencing of chromatin-associated pri-miRNAs. We identify a distinctive Microprocessor signature in the transcriptome profile from which efficiency of the endogenous processing event can be accurately quantified. This analysis reveals differential susceptibility to Microprocessor cleavage as a key regulatory step in miRNA biogenesis. Processing is highly variable among pri-miRNAs and a better predictor of miRNA abundance than primary transcription itself. Processing is also largely stable across three cell lines, suggesting a major contribution of sequence determinants. On the basis of differential processing efficiencies, we define functionality for short sequence features adjacent to the pre-miRNA hairpin. In conclusion, we identify Microprocessor as the main hub for diversified miRNA output and suggest a role for uncoupling miRNA biogenesis from host gene expression.

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