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An Optimized microRNA Backbone for Effective Single-Copy RNAi

Cell Reports · 2013 · Vol. 5(6) · pp. 1704–1713
Christof FellmannThomas HoffmannVaishali SridharBarbara HopfgartnerMatthias MuharMareike RothDan Yu LaiInês Amorim Monteiro BarbosaJung Shick KwonYuanzhe GuanNishi SinhaJohannes Zuber

Abstract

Short hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establishing experimentally versatile RNAi tools and minimizing toxicities, synthetic shRNAs can be embedded into endogenous microRNA contexts. However, due to our incomplete understanding of microRNA biogenesis, such "shRNAmirs" often fail to trigger potent knockdown, especially when expressed from a single genomic copy. Following recent advances in design of synthetic shRNAmir stems, here we take a systematic approach to optimize the experimental miR-30 backbone. Among several favorable features, we identify a conserved element 3' of the basal stem as critically required for optimal shRNAmir processing and implement it in an optimized backbone termed "miR-E", which strongly increases mature shRNA levels and knockdown efficacy. Existing miR-30 reagents can be easily converted to miR-E, and its combination with up-to-date design rules establishes a validated and accessible platform for generating effective single-copy shRNA libraries that will facilitate the functional annotation of the genome.

MicroRNA in disease regulationRNA Interference and Gene DeliveryAdvanced biosensing and bioanalysis techniquesRNA interferencemicroRNAComputational biologyBiologyCell biologyGeneticsGeneRNA

MeSH terms

HumansMicroRNAsCell Line, TumorGene Knockdown TechniquesNucleotide Motifs
Citations
747
FWCI
9.32
field-weighted impact
References
38
Percentile
99%
vs. same field & year
Citations per year
References
MicroRNAs
Cell · 2004 · 34,668 citations
Origins and Mechanisms of miRNAs and siRNAs
Cell · 2009 · 4,993 citations
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