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攻克长链非编码RNA的结构

Tackling structures of long noncoding RNAs.

作者信息

Novikova Irina V, Hennelly Scott P, Sanbonmatsu Karissa Y

机构信息

Los Alamos National Laboratory, Los Alamos, NM 87545, USA.

出版信息

Int J Mol Sci. 2013 Dec 4;14(12):23672-84. doi: 10.3390/ijms141223672.

Abstract

RNAs are important catalytic machines and regulators at every level of gene expression. A new class of RNAs has emerged called long non-coding RNAs, providing new insights into evolution, development and disease. Long non-coding RNAs (lncRNAs) predominantly found in higher eukaryotes, have been implicated in the regulation of transcription factors, chromatin-remodeling, hormone receptors and many other processes. The structural versatility of RNA allows it to perform various functions, ranging from precise protein recognition to catalysis and metabolite sensing. While major housekeeping RNA molecules have long been the focus of structural studies, lncRNAs remain the least characterized class, both structurally and functionally. Here, we review common methodologies used to tackle RNA structure, emphasizing their potential application to lncRNAs. When considering the complexity of lncRNAs and lack of knowledge of their structure, chemical probing appears to be an indispensable tool, with few restrictions in terms of size, quantity and heterogeneity of the RNA molecule. Probing is not constrained to in vitro analysis and can be adapted to high-throughput sequencing platforms. Significant efforts have been applied to develop new in vivo chemical probing reagents, new library construction protocols for sequencing platforms and improved RNA prediction software based on the experimental evidence.

摘要

RNA是基因表达各个层面上重要的催化机器和调节因子。一类名为长链非编码RNA的新型RNA出现了,为进化、发育和疾病研究提供了新的见解。长链非编码RNA(lncRNA)主要存在于高等真核生物中,与转录因子、染色质重塑、激素受体及许多其他过程的调控有关。RNA的结构多样性使其能够执行各种功能,从精确的蛋白质识别到催化和代谢物传感。虽然主要的管家RNA分子长期以来一直是结构研究的重点,但lncRNA在结构和功能方面仍是特征最少的一类。在此,我们综述了用于研究RNA结构的常用方法,强调了它们在lncRNA研究中的潜在应用。考虑到lncRNA的复杂性及其结构方面的未知,化学探测似乎是一种不可或缺的工具,对RNA分子的大小、数量和异质性几乎没有限制。探测并不局限于体外分析,还可应用于高通量测序平台。人们已付出巨大努力来开发新的体内化学探测试剂、用于测序平台的新文库构建方案以及基于实验证据改进的RNA预测软件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21ac/3876070/9d98a1db764f/ijms-14-23672f1.jpg

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