Department of Biological Sciences, University at Albany, Albany, New York, USA.
The RNA Institute, University at Albany, Albany, New York, USA.
Wiley Interdiscip Rev RNA. 2021 Nov;12(6):e1663. doi: 10.1002/wrna.1663. Epub 2021 May 13.
RNA modifications and their corresponding epitranscriptomic writer and eraser enzymes regulate gene expression. Altered RNA modification levels, dysregulated writers, and sequence changes that disrupt epitranscriptomic marks have been linked to mitochondrial and neurological diseases, cancer, and multifactorial disorders. The detection of epitranscriptomics marks is challenging, but different next generation sequencing (NGS)-based and mass spectrometry-based approaches have been used to identify and quantitate the levels of individual and groups of RNA modifications. NGS and mass spectrometry-based approaches have been coupled with chemical, antibody or enzymatic methodologies to identify modifications in most RNA species, mapped sequence contexts and demonstrated the dynamics of specific RNA modifications, as well as the collective epitranscriptome. While epitranscriptomic analysis is currently limited to basic research applications, specific approaches for the detection of individual RNA modifications and the epitranscriptome have potential biomarker applications in detecting human conditions and diseases. This article is categorized under: RNA Structure and Dynamics > Influence of RNA Structure in Biological Systems RNA Processing > tRNA Processing RNA in Disease and Development > RNA in Disease.
RNA 修饰及其对应的表观转录组writer 和 eraser 酶调节基因表达。改变的 RNA 修饰水平、失调的 writer 以及破坏表观转录组标记的序列变化与线粒体和神经疾病、癌症和多因素疾病有关。表观转录组标记的检测具有挑战性,但已经使用了不同的基于下一代测序 (NGS) 和基于质谱的方法来鉴定和定量单个和多个 RNA 修饰的水平。NGS 和基于质谱的方法已经与化学、抗体或酶方法学相结合,以鉴定大多数 RNA 种类中的修饰、映射序列上下文并证明特定 RNA 修饰的动态以及整体表观转录组。虽然表观转录组分析目前仅限于基础研究应用,但检测个别 RNA 修饰和表观转录组的特定方法在检测人类疾病和病症方面具有潜在的生物标志物应用。本文归类于:RNA 结构和动态>RNA 结构对生物系统的影响 RNA 加工>tRNA 加工 RNA 在疾病和发育中的作用>RNA 在疾病中的作用。