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[利用双荧光报告系统/miRNA 示踪剂在斑马鱼体内检测 microRNAs 的动态表达]

[Detection of dynamic expression of microRNAs in vivo using a dual-fluorescence reporter system/miRNA Tracer in zebrafish].

作者信息

Yang Hong-Bo, Liang Wei, Liu Xin-Xing, Zhu Zuo-Yan, Lin Shuo, Zhang Bo

机构信息

Key Laboratory of Cell Proliferation and Differentiation of Ministry of Education, College of Life Sciences, Peking University, Beijing 100871, China.

出版信息

Yi Chuan. 2012 Sep;34(9):1181-92.

Abstract

microRNAs (miRNAs) are short noncoding RNAs that have been found in a wide variety of organisms and many have been shown to play essential roles by regulating the stability and translation of target messenger RNAs (mRNAs) in animals and plants. Temporal and spatial expression is critical for the regulatory function of miRNAs. To analyze the dynamic expression of particular miRNA in vivo, we constructed a dual-fluorescence reporter system based on Tol2 transposon, in which two reporter genes, enhanced green fluorescent protein (eGFP) and monomeric red fluorescent protein 1 (mRFP1), were driven by the heat shock promoter (hsp) from zebrafish hsp70 gene in an opposite orientation. To sense the existence of a particular miRNA, the complementary DNA sequence of the corresponding miRNA was inserted into the 3'-UTR region of one of the two reporter genes. By injecting the corresponding plasmid DNA into zebrafish embryos, we were able to monitor the abundance and dynamics of miRNA miR-206 in live embryos. To further evaluate this method, we made a collection of transgenic zebrafish with stable integration of dual-fluorescence reporter plasmids targeting different miRNAs, including miR-206 and miR-219. Our results showed that this dual-fluorescence reporter system, which is also called miRNA Tracer, could faithfully monitor the appearance and disappearance of target miRNAs in defined cell lineages during zebrafish development in these fish lines. Our dual-fluorescence reporter/Tracer system provides an important tool for further in-depth studies on miRNAs in zebrafish.

摘要

微小RNA(miRNA)是一类短链非编码RNA,已在多种生物体中被发现,并且许多miRNA已被证明通过调节动植物中靶信使RNA(mRNA)的稳定性和翻译发挥重要作用。时空表达对于miRNA的调节功能至关重要。为了分析特定miRNA在体内的动态表达,我们构建了一种基于Tol2转座子的双荧光报告系统,其中两个报告基因,增强型绿色荧光蛋白(eGFP)和单体红色荧光蛋白1(mRFP1),由斑马鱼hsp70基因的热休克启动子(hsp)以相反方向驱动。为了检测特定miRNA的存在,将相应miRNA的互补DNA序列插入两个报告基因之一的3'-UTR区域。通过将相应的质粒DNA注射到斑马鱼胚胎中,我们能够监测活胚胎中miRNA miR-206的丰度和动态变化。为了进一步评估该方法,我们制备了一系列稳定整合了靶向不同miRNA(包括miR-206和miR-219)的双荧光报告质粒的转基因斑马鱼。我们的结果表明,这种也称为miRNA Tracer的双荧光报告系统能够在这些鱼系的斑马鱼发育过程中忠实地监测特定细胞谱系中靶miRNA的出现和消失。我们的双荧光报告/Tracer系统为进一步深入研究斑马鱼中的miRNA提供了重要工具。

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