Oligomeric compounds and compositions for the use in modulation of target nucleic acids
Compounds, compositions and methods are provided for modulating the levels expression, processing and function of miRNAs. The compositions comprise oligomeric compounds targeted to small non-coding RNAs and miRNAs. The oligomeric compounds possess potent miRNA inhibitory activity, and further exhibit improved therapeutic index. Further provided are methods for selectively modulating miRNA activing in a cell.
1. A single-stranded oligomeric compound comprising a contiguous sequence of 17 to 29 nucleosides linked by internucleoside linking groups, said sequence having an internal region located between two external regions, each external region independently comprises from 1 to 3 nucleosides, each external region comprises only 2′-O(CH 2 ) 2 OCH 3 modified nucleosides, and the internal region comprises only β-D-2′-deoxy-2′-fluororibofuranosyl nucleosides, wherein the compound is complementary to a nucleic acid target that is not a miRNA.
2. The oligomeric compound of claim 1 , where at least one internucleoside linkage group is a phosphorothioate internucleoside linkage group.
3. The oligomeric compound of claim 1 , wherein each internucleoside linkage group is a phosphorothioate internucleoside linkage group.
4. The oligomeric compound of claim 1 , wherein each external region consists of 2 nucleosides and the internal region consists of 19 nucleosides.
5. The oligomeric compound of claim 1 , wherein each external region consists of 2 nucleosides and the internal region consists of 18 nucleosides.
6. The oligomeric compound of claim 1 , wherein each external region consists of 2 nucleosides and the internal region consists of 17 nucleosides.
7. The oligomeric compound of claim 1 , wherein each external region comprises 2 or 3 nucleosides.
8. The oligomeric compound of claim 1 , wherein a first external region comprises 1 or 2 nucleosides and a second external region comprises 2 to 3 nucleosides.
9. The oligomeric compound of claim 1 , wherein the compound is an alternate splicer.