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解读RNA修饰:“表观转录组学”的前景与技术瓶颈

Understanding RNA modifications: the promises and technological bottlenecks of the 'epitranscriptome'.

作者信息

Schaefer Matthias, Kapoor Utkarsh, Jantsch Michael F

机构信息

Center for Anatomy and Cell Biology, Medical University Vienna, Schwarzspanierstrasse 17-I, 1090 Vienna, Austria

Center for Anatomy and Cell Biology, Medical University Vienna, Schwarzspanierstrasse 17-I, 1090 Vienna, Austria.

出版信息

Open Biol. 2017 May;7(5). doi: 10.1098/rsob.170077.

Abstract

The discovery of mechanisms that alter genetic information via RNA editing or introducing covalent RNA modifications points towards a complexity in gene expression that challenges long-standing concepts. Understanding the biology of RNA modifications represents one of the next frontiers in molecular biology. To this date, over 130 different RNA modifications have been identified, and improved mass spectrometry approaches are still adding to this list. However, only recently has it been possible to map selected RNA modifications at single-nucleotide resolution, which has created a number of exciting hypotheses about the biological function of RNA modifications, culminating in the proposition of the 'epitranscriptome'. Here, we review some of the technological advances in this rapidly developing field, identify the conceptual challenges and discuss approaches that are needed to rigorously test the biological function of specific RNA modifications.

摘要

通过RNA编辑或引入共价RNA修饰来改变遗传信息的机制的发现,揭示了基因表达中的一种复杂性,这对长期以来的概念提出了挑战。理解RNA修饰的生物学特性是分子生物学的下一个前沿领域之一。迄今为止,已鉴定出130多种不同的RNA修饰,并且改进的质谱方法仍在不断增加这一清单。然而,直到最近才能够以单核苷酸分辨率对选定的RNA修饰进行定位,这催生了许多关于RNA修饰生物学功能的令人兴奋的假说,最终提出了“表观转录组”的概念。在这里,我们回顾了这个快速发展领域中的一些技术进步,确定了概念上的挑战,并讨论了严格测试特定RNA修饰生物学功能所需的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c49/5451548/e62c79a47c6b/rsob-7-170077-g1.jpg

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