Study / S1RKYGWCZ2015-07-28

Dissecting the target specificity of RNase H recruiting oligonucleotides using massively parallel reporter analysis of short RNA motifs

Jakob Lewin Rukov, Peter H. Hagedorn, Isabel Bro Høy, Yanping Feng, Morten Lindow et al.

About this study

Processing and post-transcriptional regulation of RNA often depend on binding of regulatory molecules to short motifs in RNA. The effects of such interactions are difficult to study, because most regulatory molecules recognize partially degenerate RNA motifs, embedded in a sequence context specific for each RNA. Here, we describe Library Sequencing (LibSeq), an accurate massively parallel reporter method for completely characterizing the regulatory potential of thousands of short RNA sequences in a specific context. By sequencing cDNA derived from a plasmid library expressing identical reporter genes except for a degenerate 7mer subsequence in the 3′UTR, the regulatory effects of each 7mer can be determined. We show that LibSeq identifies regulatory motifs used by RNA-binding proteins and microRNAs. We furthermore apply the method to cells transfected with RNase H recruiting oligonucleotides to obtain quantitative information for >15000 potential target sequences in parallel. These comprehensive datasets provide insights into the specificity requirements of RNase H and allow a specificity measure to be calculated for each tested oligonucleotide. Moreover, we show that inclusion of chemical modifications in the central part of an RNase H recruiting oligonucleotide can increase its sequence-specificity.

Full author list & citation

Jakob Lewin Rukov, Peter H. Hagedorn, Isabel Bro Høy, Yanping Feng, Morten Lindow, Jeppe Vinther. Dissecting the target specificity of RNase H recruiting oligonucleotides using massively parallel reporter analysis of short RNA motifs. 2015-07-28. https://doi.org/10.1093/nar/gkv759

Experiments 1

E1Y1EWR3M

LibSeq 7-mer reporter screen of RNase H oligonucleotide specificity in HeLa cells

A synthetic 7-mer library embedded in a fixed HAND2-derived 3′ UTR context was transfected into HeLa cells to measure endogenous post-transcriptional regulation and RNase H-recruiting oligonucleotide effects. The single processed table joins plasmid and untreated transfection counts with five parallel LNA-gapmer cotransfection conditions and sequence-level binding annotations.

3' UTR / RNA Stability MPRA (MPRAu)Human
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Raw source data 8 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 8 files (ZIP)europepmc_supplementaryFiles.zipREADME.txtsupplementary_figures_and_methods.pdfsupplementary_table_1_counts.xlsxsupplementary_table_2_binding_scores.xlsxsupplementary_table_3_oligo_A_targets.xlsxsupplementary_table_4_oligo_B_targets.xlsxsupplementary_table_5_B_vs_B4DNA_targets.xlsx

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