检测RNA修饰、动力学和结构的化学解码策略

IF 4.2 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Xiao Shu , Wenping Li
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引用次数: 0

摘要

RNA修饰与动力学和结构一起构成了关键的调控层,通过调节基因表达共同影响各种生物过程。化学解码策略的最新进展使特定RNA位点转化为可检测的测序信号,如突变、终止和缺失。这些策略已经成为在单核苷酸分辨率下精确绘制、量化和解释RNA修饰、动态转变和结构构象的有力方法。在这篇综述中,我们总结了核苷酸靶向化学反应的最新进展,这些化学反应有助于检测RNA修饰,监测RNA动力学,并通过基于测序的解码方法表征RNA结构。这些反应通过切换或阻断核糖核苷酸碱基的氢键或破坏局部核糖核苷酸结构来实现位点特异性解码。我们进一步强调了这些创新的化学工具如何通过测序和成像促进复杂RNA景观的全面解码,为阐明RNA相关的生物学功能提供了强有力的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical decoding strategies for detecting RNA modifications, dynamics and structures
RNA modifications, along with dynamics and structures, constitute critical regulatory layers that collectively influence diverse biological processes by regulating gene expression. Recent advances in chemical decoding strategies have enabled the transformation of specific RNA sites into detectable sequencing signals, such as mutations, terminations and deletions. These strategies have emerged as powerful approaches to precisely map, quantify, and interpret RNA modifications, dynamic transitions, and structural conformations at single-nucleotide resolution. In this review, we summarize recent progress in nucleotide-targeted chemical reactions that facilitate the detection of RNA modifications, monitoring of RNA dynamics, and characterization of RNA structures through sequencing-based decoding approaches. These reactions achieve site-specific decoding by switching or blocking hydrogen bonds of ribonucleotide bases, or disrupting local ribonucleotide structures. We further highlight how these innovative chemical tools facilitate comprehensive decoding of complex RNA landscapes through sequencing and imaging, offering powerful strategies for elucidating RNA-related biological functions.
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来源期刊
Chemical Communications
Chemical Communications 化学-化学综合
CiteScore
8.60
自引率
4.10%
发文量
2705
审稿时长
1.4 months
期刊介绍: ChemComm (Chemical Communications) is renowned as the fastest publisher of articles providing information on new avenues of research, drawn from all the world''s major areas of chemical research.
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