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微小RNA(miRNA)掩蔽反义寡核苷酸技术的原理

The principles of MiRNA-masking antisense oligonucleotides technology.

作者信息

Wang Zhiguo

机构信息

Department of Medicine, Montreal Heart Institute, University of Montreal, Montreal, QC, Canada.

出版信息

Methods Mol Biol. 2011;676:43-9. doi: 10.1007/978-1-60761-863-8_3.

Abstract

MiRNA-masking antisense oligonucleotides technology (miR-mask) is an anti-microRNA antisense oligodeoxyribonucleotide (AMO) approach of a different sort. A standard miR-mask is single-stranded 2'-O-methyl-modified oligoribonucleotide (or other chemically modified) that is a 22-nt antisense to a protein-coding mRNA as a target for an endogenous miRNA of interest. Instead of binding to the target miRNA like an AMO, an miR-mask does not directly interact with its target miRNA but binds to the binding site of that miRNA in the 3' UTR of the target mRNA by fully complementary mechanism. In this way, the miR-mask covers up the access of its target miRNA to the binding site so as to derepress its target gene (mRNA) via blocking the action of its target miRNA. The anti-miRNA action of an miR-mask is gene-specific because it is designed to be fully complementary to the target mRNA sequence of an miRNA. The anti-miRNA action of an miR-mask is miRNA-specific as well because it is designed to target the binding site of that particular miRNA. The miR-mask approach is a valuable supplement to the AMO technique; while AMO is indispensable for studying the overall function of an miRNA, the miR-mask might be more appropriate for studying the specific outcome of regulation of the target gene by the miRNA. This technology was first established by my research group in 2007 (Xiao et al., J Cell Physiol 212:285-292; Wang et al., J Mol Med 86:772-783, 2008) and a similar approach with the same concept was subsequently reported by Schier's laboratory (Choi et al., Science 318:271-274, 2007).

摘要

微小RNA掩盖反义寡核苷酸技术(miR-mask)是一种不同类型的抗微小RNA反义寡脱氧核糖核苷酸(AMO)方法。标准的miR-mask是单链2'-O-甲基修饰的寡核糖核苷酸(或其他化学修饰),它是针对感兴趣的内源性微小RNA的蛋白质编码mRNA的22个核苷酸的反义序列。与AMO不同,miR-mask不像AMO那样与目标微小RNA结合,而是通过完全互补机制与目标mRNA的3'非翻译区中该微小RNA的结合位点结合。通过这种方式,miR-mask掩盖了其目标微小RNA对结合位点的访问,从而通过阻断其目标微小RNA的作用来解除对其目标基因(mRNA)的抑制。miR-mask的抗微小RNA作用是基因特异性的,因为它被设计为与微小RNA的目标mRNA序列完全互补。miR-mask的抗微小RNA作用也是微小RNA特异性的,因为它被设计为靶向该特定微小RNA的结合位点。miR-mask方法是AMO技术的有价值补充;虽然AMO对于研究微小RNA的整体功能是不可或缺的,但miR-mask可能更适合研究微小RNA对目标基因调控的特定结果。该技术于2007年由我的研究小组首次建立(Xiao等人,《细胞生理学杂志》212:285-292;Wang等人,《分子医学杂志》86:772-783,2008年),随后Schier实验室报道了具有相同概念的类似方法(Choi等人,《科学》318:271-274,2007年)。

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