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使用佐罗锁核酸(LNA)对RNA聚合酶III依赖性转录进行序列特异性抑制。

Sequence-specific inhibition of RNA polymerase III-dependent transcription using Zorro locked nucleic acid (LNA).

作者信息

Ge Rongbin, Svahn Mathias G, Simonson Oscar E, Mohamed Abdalla J, Lundin Karin E, Smith C I Edvard

机构信息

Clinical Research Center, Department of Laboratory Medicine, Karolinska Institutet, Karolinska University Hospital Huddinge, SE-141 86 Stockholm, Sweden.

出版信息

J Gene Med. 2008 Jan;10(1):101-9. doi: 10.1002/jgm.1124.

Abstract

BACKGROUND

RNA polymerase III (pol III)-dependent transcripts are involved in many fundamental activities in a cell, such as splicing and protein synthesis. They also regulate cell growth and influence tumor formation. During recent years vector-based systems for expression of short hairpin (sh) RNA under the control of a pol III promoter have been developed as gene-based medicines. Therefore, there is an increasing interest in means to regulate pol III-dependent transcription. Recently, we have developed a novel anti-gene molecule 'Zorro LNA (Locked Nucleic Acid)', which simultaneously hybridizes to both strands of super-coiled DNA and potently inhibits RNA polymerase II-derived transcription. We have now applied Zorro LNA in an attempt to also control U6 promoter-driven expression of shRNA.

METHODS

In this study, we constructed pshluc and pshluc2BS plasmids, in which U6 promoter-driven small hairpin RNA specific for luciferase gene (shluc) was without or with Zorro LNA binding sites, respectively. After hybridization of Zorro LNA to pshluc2BS, the LNA-bound plasmid was cotransfected with pEGFPluc into mammalian cells and into a mouse model. In cellular experiments, cotransfection of unhybridized pshluc2BS, Zorro LNA and pEGFPluc was also performed.

RESULTS

The results showed that the Zorro LNA construct efficiently inhibited pol III-dependent transcription as an anti-gene reagent in a cellular context, including in vivo in a mouse model.

CONCLUSIONS

Thus, this new form of gene silencer 'Zorro LNA' could potentially serve as a versatile regulator of pol III-dependent transcription, including various forms of shRNAs.

摘要

背景

RNA聚合酶III(pol III)依赖性转录本参与细胞中的许多基本活动,如剪接和蛋白质合成。它们还调节细胞生长并影响肿瘤形成。近年来,已开发出在pol III启动子控制下用于表达短发夹(sh)RNA的基于载体的系统作为基因药物。因此,人们对调节pol III依赖性转录的方法越来越感兴趣。最近,我们开发了一种新型的反基因分子“佐罗锁核酸(Zorro LNA)”,它能同时与超螺旋DNA的两条链杂交,并有效抑制RNA聚合酶II衍生的转录。我们现在应用佐罗LNA来尝试控制U6启动子驱动的shRNA表达。

方法

在本研究中,我们构建了pshluc和pshluc2BS质粒,其中U6启动子驱动的针对荧光素酶基因(shluc)的小发夹RNA分别没有或带有佐罗LNA结合位点。佐罗LNA与pshluc2BS杂交后,将结合了LNA的质粒与pEGFPluc共转染到哺乳动物细胞和小鼠模型中。在细胞实验中,还进行了未杂交的pshluc2BS、佐罗LNA和pEGFPluc的共转染。

结果

结果表明,佐罗LNA构建体作为一种反基因试剂在细胞环境中,包括在小鼠模型体内,能有效抑制pol III依赖性转录。

结论

因此,这种新型的基因沉默剂“佐罗LNA”可能潜在地作为pol III依赖性转录的通用调节剂,包括各种形式的shRNA。

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