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Oxetane modified, conformationally constrained, antisense oligodeoxyribonucleotides function efficiently as gene silencing molecules

机译:氧杂环丁烷修饰,构象受限的反义寡脱氧核糖核苷酸可有效用作基因沉默分子

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摘要

Incorporation of nucleosides with novel base-constraining oxetane (OXE) modifications [oxetane, 1-(1',3'-O-anhydro-beta-d-psicofuranosyl nucleosides)] into antisense (AS) oligodeoxyribonucleotides (ODNs) should greatly improve the gene silencing efficiency of these molecules. This is because OXE modified bases provide nuclease protection to the natural backbone ODNs, can impart T-m values similar to those predicted for RNA-RNA hybrids, and not only permit but also accelerate RNase H mediated catalytic activity. We tested this assumption in living cells by directly comparing the ability of OXE and phosphorothioate (PS) ODNs to target c-myb gene expression. The ODNs were targeted to two different sites within the c-myb mRNA. One site was chosen arbitrarily. The other was a 'rational' choice based on predicted hybridization accessibility after physical mapping with self-quenching reporter molecules (SQRM). The Myb mRNA and protein levels were equally diminished by OXE and PS ODNs, but the latter were delivered to cells with approximately six times greater efficiency, suggesting that OXE modified ODNs were more potent on a molar basis. The rationally targeted molecules demonstrated greater silencing efficiency than those directed to an arbitrarily chosen mRNA sequence. We conclude that rationally targeted, OXE modified ODNs, can function efficiently as gene silencing agents, and hypothesize that they will prove useful for therapeutic purposes.
机译:将具有新的碱基限制型氧杂环丁烷(OXE)修饰的核苷[氧杂环丁烷1-(1',3'-O-脱水β-d-psicofuranosyl核苷)]掺入反义(AS)寡脱氧核糖核苷酸(ODN)中应该会大大改善这些分子的基因沉默效率。这是因为OXE修饰的碱基为天然主链ODN提供了核酸酶保护,可以赋予与RNA-RNA杂种预测的值相似的T-m值,不仅允许而且可以加速RNase H介导的催化活性。通过直接比较OXE和硫代磷酸酯(PS)ODN靶向c-myb基因表达的能力,我们在活细胞中测试了这一假设。 ODN靶向c-myb mRNA内的两个不同位点。任意选择一个站点。另一个是基于“自激”报告分子(SQRM)进行物理定位后的预测杂交可及性的“合理”选择。通过OXE和PS ODN,Myb mRNA和蛋白质水平同样降低,但后者以大约六倍的效率传递到细胞中,这表明以摩尔为基础,OXE修饰的ODN更有效。合理靶向的分子表现出比针对任意选择的mRNA序列更高的沉默效率。我们得出的结论是,以OXE修饰的ODN进行了合理靶向,可以有效地发挥基因沉默剂的作用,并假设它们将被证明可用于治疗。

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