核糖核酸
翻译(生物学)
基因
连接器
核酸
低聚物
生物
信使核糖核酸
序列(生物学)
细胞生物学
计算生物学
基因靶向
RNA剪接
黑客
小RNA
基因表达
基因表达调控
核酸结构
RNA结合蛋白
遗传学
分子生物学
化学
人细胞
生物信息学
细胞培养
真核翻译
作者
Tomoki Kida,Yua Hasegawa,Miko Kato,Mahiro Ohtani,Ayu Matsumoto,Ririka Taniguchi,Rinka Ohno,Hiroshi Sugiyama,Toshihiro Ihara,Masaki Hagihara,Shin‐ichi Sato,Yousuke Katsuda
标识
DOI:10.1002/anie.202521666
摘要
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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