bioRxiv · 10.1101/2025.06.17.660051
Expanded gene targeting in RNA hacking with G-tract-supply Staple oligomer
Abstract
RNA hacking (RNAh) is a gene regulation technology that employs a short oligonucleotide, termed a Staple oligomer, to induce the formation of RNA G-quadruplex structures on target mRNAs. While RNAh has the potential to target approximately 65% of human mRNAs, its applicability to the remaining genes is restricted by the sequence constraints. Herein, we present the G-tract-supply Staple oligomer (Gs-Staple oligomer), designed to expand the range of targetable mRNAs within the RNAh framework. Incorporating G-tracts into Staple oligomers alleviates the sequence constraints, enabling access to a broader range of mRNA targets. Gs-Staple oligomers effectively suppressed the translation of target proteins in mammalian cells and in vivo. Furthermore, the gene suppression could be precisely modulated by adjusting the linker length between the G-tracts. These findings have significantly expanded the versatility of RNAh, suggesting its potential for further development while highlighting its potential to be utilized as a nucleic acid-based tool for research and clinical medicine.
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Kida, T., Hasegawa, Y., Kato, M., Ohtani, M., Matsumoto, A., Taniguchi, R., Ohno, R., Sugiyama, H., Ihara, T., Hagihara, M., Sato, S.-i., Katsuda, Y.. 2025-06-20. Expanded gene targeting in RNA hacking with G-tract-supply Staple oligomer. https://doi.org/10.1101/2025.06.17.660051
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