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微小核糖核酸

The MicroRNA.

作者信息

Ying Shao-Yao, Chang Donald C, Lin Shi-Lung

机构信息

Department of Cell and Neurobiology, University of Southern California, Los Angeles, CA, USA.

出版信息

Methods Mol Biol. 2013;936:1-19. doi: 10.1007/978-1-62703-083-0_1.

Abstract

MicroRNAs (miRNAs), widely distributed, small regulatory RNA genes, target both messenger RNA (mRNA) degradation and suppression of protein translation based on sequence complementarity between the miRNA and its targeted mRNA. Different names have been used to describe various types of miRNA. During evolution, RNA retroviruses or transgenes invaded the eukaryotic genome and inserted itself in the noncoding regions of DNA, conceivably acting as transposon-like jumping genes, providing defense from viral invasion and fine-tuning of gene expression as a secondary level of gene modulation in eukaryotes. When a transposon is inserted in the intron, it becomes an intronic miRNA, taking advantage of the protein synthesis machinery, i.e., mRNA transcription and splicing, as a means for processing and maturation. Recently, miRNAs have been found to play an important, but not life-threatening, role in embryonic development. They might play a pivotal role in diverse biological systems in various organisms, facilitating a quick response and accurate plotting of body physiology and structures. Based on these unique properties, manufactured intronic miRNAs have been developed for in vitro evaluation of gene function, in vivo gene therapy, and generation of transgenic animal models. The biogenesis and identification of miRNAs, potential applications, and future directions for research are presented in this chapter, hopefully providing a guideline for further miRNA and gene function studies.

摘要

微小RNA(miRNA)是广泛分布的小型调控RNA基因,基于miRNA与其靶向信使核糖核酸(mRNA)之间的序列互补性,靶向信使核糖核酸(mRNA)降解和抑制蛋白质翻译。人们使用了不同的名称来描述各种类型的miRNA。在进化过程中,RNA逆转录病毒或转基因侵入真核基因组并插入DNA的非编码区域,可以想象它们充当类似转座子的跳跃基因,在真核生物中提供对病毒入侵的防御以及作为基因调控的二级水平对基因表达进行微调。当一个转座子插入内含子时,它就变成了一个内含子miRNA,利用蛋白质合成机制,即mRNA转录和剪接,作为加工和成熟的手段。最近,人们发现miRNA在胚胎发育中发挥着重要但不危及生命的作用。它们可能在各种生物体的不同生物系统中发挥关键作用,促进对身体生理和结构的快速反应和精确规划。基于这些独特特性,已开发出人工合成的内含子miRNA用于基因功能的体外评估、体内基因治疗以及转基因动物模型的构建。本章介绍了miRNA的生物发生、鉴定、潜在应用及未来研究方向,希望能为进一步的miRNA和基因功能研究提供指导。

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