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Effect of chemical modifications on modulation of gene expression by duplex antigene RNAs that are complementary to non-coding transcripts at gene promoters

机译:化学修饰对与基因启动子上非编码转录本互补的双链体反义RNA调控基因表达的影响

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Antigene RNAs (agRNAs) are small RNA duplexes that target non-coding transcripts rather than mRNA and specifically suppress or activate gene expression in a sequence-dependent manner. For many applications in vivo, it is likely that agRNAs will require chemical modification. We have synthesized agRNAs that contain different classes of chemical modification and have tested their ability to modulate expression of the human progesterone receptor gene. We find that both silencing and activating agRNAs can retain activity after modification. Both guide and passenger strands can be modified and functional agRNAs can contain 2′F-RNA, 2′OMe-RNA, and locked nucleic acid substitutions, or combinations of multiple modifications. The mechanism of agRNA activity appears to be maintained after chemical modification: both native and modified agRNAs modulate recruitment of RNA polymerase II, have the same effect on promoter-derived antisense transcripts, and must be double-stranded. These data demonstrate that agRNA activity is compatible with a wide range of chemical modifications and may facilitate in vivo applications.
机译:抗原RNA(agRNA)是小的RNA双链体,其靶向非编码转录本而非mRNA,并以序列依赖性方式特异性抑制或激活基因表达。对于体内的许多应用,agRNA可能需要化学修饰。我们已经合成了包含不同类别化学修饰的agRNA,并测试了它们调节人类孕激素受体基因表达的能力。我们发现沉默和激活agRNAs可以保留修改后的活性。引导链和过客链均可被修饰,功能性agRNA可包含2'F-RNA,2'OMe-RNA和锁定的核酸取代,或多种修饰的组合。经过化学修饰后,agRNA活性的机制似乎得以维持:天然和修饰的agRNA均能调节RNA聚合酶II的募集,对源自启动子的反义转录物具有相同的作用,因此必须是双链的。这些数据表明,agRNA活性与多种化学修饰兼容,并且可以促进体内应用。

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