首页> 外文期刊>Chembiochem: A European journal of chemical biology >Direct Synthesis of Partially Modified 2 '-O-Pivaloyloxymethyl RNAs by a Base-Labile Protecting Group Strategy and their Potential for Prodrug-Based Gene-Silencing Applications
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Direct Synthesis of Partially Modified 2 '-O-Pivaloyloxymethyl RNAs by a Base-Labile Protecting Group Strategy and their Potential for Prodrug-Based Gene-Silencing Applications

机译:通过碱基不稳定的保护基策略直接合成部分修饰的2'-O-新戊酰氧基甲基RNA,及其在基于前药的基因沉默中的应用潜力

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摘要

An original and straightforward synthesis of partially modified 2'-O-pivaloyloxymethyl-substituted (PivOM-substituted) oligoribonucleotides has been achieved. The aim of this 2'-enzymolabile modification was to enhance nuclease stability of RNA and transmembrane transport. To make these modified RNAs easily available we developed a base-labile protecting group strategy with standard protections for nucleobases (acyl) and phosphates (cyanoethyl), a Q-linker and two different acetalester protection groups for 2'-OH: propionyloxymethyl (PrOM) and PivOM. Interestingly, orthogonal deprotection conditions based on anhydrous butylamine in THF were found to remove propionyloxymethyl groups selectively, while preserving PivOM groups. Duplex stability, circular dichroism studies and nuclease resistance, as well as the ability to inhibit gene expression of modified 2'-O-PivOM RNA, were evaluated.
机译:已经实现了部分修饰的2'-O-新戊酰氧基甲基取代的(PivOM取代的)寡核糖核苷酸的原始且直接的合成。该2'-酶不稳定修饰的目的是增强RNA的核酸酶稳定性和跨膜转运。为了使这些修饰的RNA易于获得,我们开发了一种对碱基不稳定的保护基策略,其中包括对核碱基(酰基)和磷酸盐(氰基乙基)的标准保护,一个Q连接子和两个不同的2'-OH乙缩醛保护基:丙酰氧基甲基(PrOM)和PivOM。有趣的是,发现基于THF中无水丁胺的正交脱保护条件可以选择性地除去丙酰氧基甲基,同时保留PivOM基团。评价了双链体稳定性,圆二色性和核酸酶抗性,以及抑制修饰的2'-O-PivOM RNA基因表达的能力。

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