TRBP alters human precursor microRNA processing in vitro
- Ho Young Lee1 and
- Jennifer A. Doudna1,2,3,4,5
- 1Department of Molecular and Cell Biology,
- 2Howard Hughes Medical Institute and
- 3Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, USA
- 4Physical Biosciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA
Abstract
MicroRNAs play central roles in controlling gene expression in human cells. Sequencing data show that many miRNAs are produced at different levels and as multiple isoforms that can vary in length at their 5′ or 3′ ends, but the biogenesis and functional significance of these RNAs are largely unknown. We show here that the human trans-activation response (TAR) RNA binding protein (TRBP), a known molecular partner of the miRNA processing enzyme Dicer, changes the rates of pre-miRNA cleavage in an RNA-structure-specific manner. Furthermore, TRBP can trigger the generation of iso-miRNAs (isomiRs) that are longer than the canonical sequence by one nucleotide. We show that this change in miRNA processing site can alter guide strand selection, resulting in preferential silencing of a different mRNA target. These results implicate TRBP as a key regulator of miRNA processing and targeting in humans.
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Footnotes
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↵5 Corresponding author
E-mail doudna{at}berkeley.edu
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Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.035501.112.
- Received July 12, 2012.
- Accepted August 14, 2012.
- Copyright © 2012 RNA Society
Freely available online through the RNA Open Access option.










