Department of Pharmaceutical Sciences, University of California, Irvine, Irvine, California, USA.
Department of Developmental and Cellular Biology, University of California, Irvine, Irvine, California, USA.
Wiley Interdiscip Rev RNA. 2021 Sep;12(5):e1650. doi: 10.1002/wrna.1650. Epub 2021 Mar 18.
Tracking the expression of RNA in a cell-specific manner is a major challenge in basic and disease research. Herein we outline the current state of employing chemical approaches for cell-specific RNA expression studies. We define the utility of metabolic labels for tracking RNA synthesis, the approaches for characterizing metabolic incorporation and enrichment of labeled RNAs, and finally outline how these approaches have been used to study biological systems by providing mechanistic insights into transcriptional dynamics. Further efforts on this front will be the continued development of novel chemical handles for RNA enrichment and profiling as well as innovative approaches to control cell-specific incorporation of chemically modified metabolic probes. These advancements in RNA metabolic labeling techniques permit sensitive detection of RNA expression dynamics within relatively small subsets of cells in living tissues and organisms that are critical to performing complex developmental and pathological processes. This article is categorized under: RNA Methods > RNA Analyses in Cells RNA Evolution and Genomics > Ribonomics RNA Structure and Dynamics > RNA Structure, Dynamics and Chemistry.
以细胞特异性方式追踪 RNA 的表达是基础和疾病研究中的主要挑战。在此,我们概述了目前采用化学方法进行细胞特异性 RNA 表达研究的情况。我们定义了代谢标记物在追踪 RNA 合成中的用途、用于描述代谢掺入和标记 RNA 富集的方法,最后概述了这些方法如何通过提供转录动态的机制见解来研究生物系统。在这方面的进一步努力将是继续开发用于 RNA 富集和分析的新型化学处理方法,以及控制化学修饰代谢探针在细胞特异性掺入的创新方法。这些 RNA 代谢标记技术的进步使得能够在活体组织和生物体中相对较小的细胞亚群中灵敏地检测 RNA 表达动力学,这对于执行复杂的发育和病理过程至关重要。本文属于:RNA 方法 > 在细胞中进行 RNA 分析 RNA 进化和基因组学 > 核糖组学 RNA 结构和动态 > RNA 结构、动态和化学。