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Updated: Jan 14, 2026

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
Published on: September 20, 2018
Exploring Chemically Modified Short Activating RNAs to Increase Stability against Nucleases and Enhance Gene
Jean-Paul Desaulniers1, Matthew L Hammill1, Ifrodet Giorgees1
1Faculty of Science, Ontario Tech University, 2000 Simcoe Street North, Oshawa, Ontario L1G 0C5, Canada.
Abstract:
Short activating RNAs (saRNAs) are short duplex RNAs that activate genes in the nucleus of the cell. This induces gene activation, or RNA activation (RNAa), which upregulates gene expression. This activation is in direct contrast to short interfering RNAs (siRNAs), which downregulate gene expression through the activation of Argonaute 2 within the RNA-induced silencing complex (RISC). siRNA chemical modifications such as 2'-O-Me, 2'-F, locked nucleic acids (LNA), unlocked nucleic acids (UNA), and backbone modifications such as phosphorothioate (PS) have been well documented and studied. In this study, a library of chemically modified saRNAs was synthesized and evaluated for their ability to activate gene expression. We have identified that a thermally destabilizing abasic carbon-based linker within the central region of the sense strand, in conjunction with an affinity-enhancing nucleoside, LNA, on the antisense strand, offers optimal duplex melting temperature, nuclease stability, and enhanced gene activation.
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