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使用核糖核苷类似物对RNA进行代谢标记能够评估RNA的合成和降解速率。

Metabolic labeling of RNA using ribonucleoside analogs enables the evaluation of RNA synthesis and degradation rates.

作者信息

Tani Hidenori

机构信息

Department of Health Pharmacy, Yokohama University of Pharmacy, 601 Matano, Totsuka, Yokohama, 245-0066, Japan.

出版信息

Anal Sci. 2025 Apr;41(4):345-351. doi: 10.1007/s44211-024-00704-6. Epub 2024 Dec 19.

Abstract

Long noncoding RNAs (lncRNAs) are transcripts exceeding 200 nucleotides that do not encode proteins. Despite lacking protein-coding capabilities, lncRNAs play crucial roles in cellular processes, including gene-expression modulation and structural maintenance. The study of lncRNAs has evolved significantly since 2009, with advancements in analytical methodologies providing new insights into their functions and dynamics. Key developments include BRIC-Seq, SLAM-Seq, TUC-Seq, TimeLapse-seq, and Dyrec-Seq. These methodologies have enabled researchers to investigate lncRNA behavior under various conditions, including cellular stress responses and complex biologic systems. Future challenges include developing comprehensive techniques for identifying lncRNA-interacting proteins and advancing in vivo methodologies using model organisms. As the field progresses, integrating these technologies will enhance our understanding of lncRNA biology, potentially leading to novel therapeutic strategies and deeper insights into gene-regulation mechanisms.

摘要

长链非编码RNA(lncRNAs)是长度超过200个核苷酸且不编码蛋白质的转录本。尽管lncRNAs缺乏蛋白质编码能力,但它们在细胞过程中发挥着关键作用,包括基因表达调控和结构维持。自2009年以来,lncRNAs的研究有了显著进展,分析方法的进步为其功能和动态提供了新的见解。关键进展包括BRIC-Seq、SLAM-Seq、TUC-Seq、TimeLapse-seq和Dyrec-Seq。这些方法使研究人员能够在各种条件下研究lncRNA的行为,包括细胞应激反应和复杂的生物系统。未来的挑战包括开发用于鉴定lncRNA相互作用蛋白的综合技术,以及利用模式生物推进体内方法。随着该领域的发展,整合这些技术将增强我们对lncRNA生物学的理解,可能会带来新的治疗策略,并更深入地了解基因调控机制。

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