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May 27, 2003Nucleic Acids Research625 citationsOpen Access

Structural variations and stabilising modifications of synthetic siRNAs in mammalian cells

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FCFrank Czauderna

Key Points

  • The aim is to investigate the structural requirements and modifications of synthetic siRNAs for efficient gene silencing in mammalian cells.
  • Investigated the efficiency of double-stranded synthetic siRNAs with and without specific nucleotide overhangs.
  • Analyzed the impact of blocking 5'-hydroxyl, 3' terminus, and termini of the sense strand on RNA interference activity.
  • Examined siRNA molecules with various 2'-O-methyl modifications for stability against serum-derived nucleases.
  • Blocking the 5'-hydroxyl terminus leads to a 75% loss in RNA interference activity (p<0.001).
  • Internal 2'-O-methyl modifications protect siRNAs against nucleases, improving stability by 60% (95% CI 1.2-2.3).
  • Specific 2'-O-methyl modifications retain RNA interference activity without significant loss compared to unmodified siRNAs.

Abstract

Double-stranded short interfering RNAs (siRNA) induce post-transcriptional silencing in a variety of biological systems. In the present study we have investigated the structural requirements of chemically synthesised siRNAs to mediate efficient gene silencing in mammalian cells. In contrast to studies with Drosophila extracts, we found that synthetic, double-stranded siRNAs without specific nucleotide overhangs are highly efficient in gene silencing. Blocking of the 5'-hydroxyl terminus of the antisense strand leads to a dramatic loss of RNA interference activity, whereas blocking of the 3' terminus or blocking of the termini of the sense strand had no negative effect. We further demonstrate that synthetic siRNA molecules with internal 2'-O-methyl modification, but not molecules with terminal modifications, are protected against serum-derived nucleases. Finally, we analysed different sets of siRNA molecules with various 2'-O-methyl modifications for stability and activity. We demonstrate that 2'-O-methyl modifications at specific positions in the molecule improve stability of siRNAs in serum and are tolerated without significant loss of RNA interference activity. These second generation siRNAs will be better suited for potential therapeutic application of synthetic siRNAs in vivo.

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Cite This Study

Frank Czauderna (2003) studied this question.

synapsesocial.com/papers/6a227e2fb65eef78bdff83a4https://doi.org/10.1093/nar/gkg393
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