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发夹环结构寡脱氧核苷酸介导的基因表达下调:小干扰RNA和反义核酸的替代方法

Reduction of gene expression by a hairpin-loop structured oligodeoxynucleotide: alternative to siRNA and antisense.

作者信息

Kwok Terry, Heinrich Jochen, Jung-Shiu Jiunshan, Meier Michelle G, Mathur Srikanth, Moelling Karin

机构信息

Institute of Medical Virology, University of Zurich, Gloriastrasse 30, CH 8006 Zurich, Switzerland.

出版信息

Biochim Biophys Acta. 2009 Oct;1790(10):1170-8. doi: 10.1016/j.bbagen.2009.05.017. Epub 2009 Jun 6.

Abstract

BACKGROUND

We previously described the inhibition of HIV-1 replication by a 54-mer hairpin-loop structured oligodeoxynucleotide (ODN) A, which binds the polypurine tract (PPT) on HIV-1 RNA. ODN A was shown to lead to reduced viral RNA in virions or early during infection.

METHODS AND RESULTS

Here we demonstrated that ODN A was able to cause hydrolysis of viral RNA not only by retroviral RT-associated RNase H but also cellular RNase H1 and RNase H2 in vitro. Furthermore, ODN A reduced gene expression in a dose-dependent manner in a cell-based reporter assay where a PPT sequence was inserted in the 5' untranslated region of the reporter gene. The efficacy of ODN A was higher than that of its siRNA and antisense counterparts. By knocking down cellular RNases H, we showed that RNase H1 contributed to the gene silencing by ODN A but the possibility of a partial contribution of RNase H-independent mechanisms could not be ruled out.

GENERAL SIGNIFICANCE

Our findings highlight the potential application of hairpin-loop structured ODNs for reduction of gene expression in mammalian cells and underscore the possibility of using ODN A to trigger the hydrolysis of HIV RNA in infected cells by cellular RNases H.

摘要

背景

我们之前描述了一种54聚体发夹环结构的寡脱氧核苷酸(ODN)A对HIV-1复制的抑制作用,该ODN与HIV-1 RNA上的多聚嘌呤序列(PPT)结合。ODN A被证明可导致病毒粒子中或感染早期病毒RNA减少。

方法与结果

在此我们证明,ODN A不仅能在体外通过逆转录病毒RT相关的核糖核酸酶H,还能通过细胞核糖核酸酶H1和核糖核酸酶H2引起病毒RNA的水解。此外,在基于细胞的报告基因检测中,当在报告基因的5'非翻译区插入PPT序列时,ODN A以剂量依赖的方式降低基因表达。ODN A的功效高于其对应的小干扰RNA(siRNA)和反义寡核苷酸。通过敲低细胞核糖核酸酶H,我们表明核糖核酸酶H1对ODN A介导的基因沉默有作用,但不能排除核糖核酸酶H非依赖机制有部分作用的可能性。

普遍意义

我们的研究结果突出了发夹环结构的ODN在降低哺乳动物细胞基因表达方面的潜在应用,并强调了使用ODN A通过细胞核糖核酸酶H触发受感染细胞中HIV RNA水解的可能性。

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