合理设计
化学改性
RNA干扰
感应(电子)
化学
模块化设计
小干扰RNA
核糖核酸
组合化学
计算生物学
DNA
计算机科学
熔化温度
纳米技术
对偶(语法数字)
双股
化学生物学
化学稳定性
寡核苷酸
诱饵
干扰(通信)
结构-活动关系
模块化(生物学)
生物系统
化工产品
核酸
作者
Rohith Pavan Parvathaneni,Nithiyanandan Krishnan,Nikolai Hempel,Oommen P. Oommen,Oommen P. Varghese
出处
期刊:JACS Au
[American Chemical Society]
日期:2026-02-09
卷期号:6 (2): 795-800
被引量:1
标识
DOI:10.1021/jacsau.5c01765
摘要
High Resolution Image Download MS PowerPoint Slide Off-target effects represent one of the major bottlenecks for RNA interference (RNAi) technology. To address this issue, we present a novel strategy by combining seed-region chemical modification with an extended 3′-overhang on the sense strand (SS) to mitigate SS-mediated and miRNA-like nontargeted interactions. To modify the seed-region, we developed a novel 2′-diol modification that was selectively installed at different positions within the seed-region of siRNA. For this purpose, we synthesized universal 2′-diacetate phosphoramidites that yielded a free 2′-diol functionality after standard deprotection of oligonucleotides. The 2′-diol moieties with single (positions 3–7) and dual (6 + 7) insertions in the seed-region decreased the melting temperature ( T m ) by ca. −1 to −4.0 °C, imposing thermodynamic asymmetry. To improve the end-asymmetry of siRNA, we developed a structurally unsymmetrical siRNA (US-siRNA) design (five-nucleotides at the 3′-overhang region of SS), which together with seed-region modifications significantly increased the relative RISC loading of antisense strand (AS) with respect to their canonical sense variants. Overall, our rational design of chemical modifications of the seed-region with a 2′-diol moiety, in concert with the US-siRNA design, furnishes a simple, modular strategy to minimize off-target effects while maintaining the on-target RNAi activity.
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