Yoo Jimeen, Hajjar Roger J, Jeong Dongtak
Cardiovascular Research Center, Icahn School of Medicine at Mount Sinai, 1 Gustave L. Levy Place, Box 1030, New York, NY, 10029-6574, USA.
Methods Mol Biol. 2017;1521:41-53. doi: 10.1007/978-1-4939-6588-5_3.
Over the last decade a previously unappreciated mechanism of gene regulation has been uncovered that is mediated by a large class of small noncoding RNAs known as microRNAs (miRNAs), and this mechanism is utilized by organisms ranging from plants to humans. MiRNAs are important downregulators of gene expression and are seen to be dysregulated in disease development. Thus inhibition of aberrantly upregulated miRNAs as a therapeutic approach has become a promising field.Many models of miRNA inhibitors currently exist, with decoy models being the most successful in current research. A promising inhibition model is the tough decoy (TuD) RNAs inhibitor, which uses antisense sequences to bind to target miRNAs, preventing them from binding to their endogenous targets. Since the TuD inhibitors have the ability to be successfully used in vitro and in vivo studies, this is a covetable inhibition method. In this chapter, we introduce how to design and generate miRNA tough decoy inhibitors with an adeno-associated viral construct. TuD inhibitors will have two miRNA binding sites. The TuD will include stem sequences, a miRNA binding site, and linkers. In vitro validation experiments to confirm the effectiveness of the TuD to inhibit miRNA are described. We also propose some practical approaches for making a TuD for miRNA of interest. We hope this chapter facilitates readers to create a simpler method to generate TuD that can be used for miRNA loss of function studies.
在过去十年中,人们发现了一种以前未被重视的基因调控机制,该机制由一大类称为微小RNA(miRNA)的小非编码RNA介导,从植物到人类等各种生物体都利用这种机制。miRNA是基因表达的重要下调因子,在疾病发展过程中会出现失调。因此,抑制异常上调的miRNA作为一种治疗方法已成为一个有前景的领域。目前存在许多miRNA抑制剂模型,其中诱饵模型在当前研究中最为成功。一种有前景的抑制模型是强硬诱饵(TuD)RNA抑制剂,它使用反义序列与靶miRNA结合,阻止它们与内源性靶标结合。由于TuD抑制剂能够成功用于体外和体内研究,这是一种值得期待的抑制方法。在本章中,我们介绍如何用腺相关病毒构建体设计和生成miRNA强硬诱饵抑制剂。TuD抑制剂将有两个miRNA结合位点。TuD将包括茎序列、一个miRNA结合位点和接头。描述了用于确认TuD抑制miRNA有效性的体外验证实验。我们还提出了一些为感兴趣的miRNA制备TuD的实用方法。我们希望本章能帮助读者创建一种更简单的方法来生成可用于miRNA功能丧失研究的TuD。