Department of Chemistry, Binghamton University, Binghamton, New York, 13902, USA.
Chembiochem. 2024 Aug 19;25(16):e202400364. doi: 10.1002/cbic.202400364. Epub 2024 Jul 18.
Recent success of RNA therapeutics has reinvigorated interest in chemical modifications of RNA. As exemplified by the phosphorothioates, modifications of sugar-phosphate backbone have been remarkably impactful but relatively underexplored in therapeutic RNAs. The present study reports synthesis, thermal stability, and RNA interference activity of RNAs modified with thioamide linkages. Compared to the previously studied amide-modified RNA, thioamide linkages strongly destabilized a short self-complementary RNA model duplex. However, in short interfering RNAs amides and thioamides had a similar effect on duplex stability and target RNA cleavage activity and specificity. Hence, the thioamide may be added to the toolbox of chemical biologist as a useful backbone modification well tolerated by the RNA interference machinery.
最近 RNA 疗法的成功重新激发了人们对 RNA 化学修饰的兴趣。正如硫代磷酸酯所证明的那样,糖磷酸骨架的修饰虽然极具影响力,但在治疗性 RNA 中相对较少被探索。本研究报告了硫酰胺键修饰的 RNA 的合成、热稳定性和 RNA 干扰活性。与之前研究的酰胺修饰 RNA 相比,硫酰胺键强烈破坏了短的自互补 RNA 模型双链体。然而,在小干扰 RNA 中,酰胺和硫酰胺对双链体稳定性和靶 RNA 切割活性和特异性有相似的影响。因此,硫酰胺可以作为一种有用的骨架修饰加入到化学生物学家的工具包中,它可以被 RNA 干扰机制很好地耐受。