内含子衍生的环状rna趋于稳定。

IF 6.4 2区 生物学 Q1 CELL BIOLOGY
Dan Liao, Binglian Zheng
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引用次数: 0

摘要

在pre-mRNA剪接过程中,内含子被剪接体移除,两侧的外显子被连接形成成熟的mRNA,随后被翻译成蛋白质。传统上,内含子rna被认为是“垃圾”,被认为是为了核苷酸转换而被降解的。值得注意的是,在去分支后,一些线性化的分支rna可以进一步加工成snorna、mirna和其他长链非编码rna。然而,最近的研究表明,许多内含子衍生的larirna可以在各种真核生物中逃脱降解并保持稳定,这表明它们可能在细胞过程中发挥重要作用。此外,这些自然保留的环状rna在体内经常以圆形形式被观察到,这表明它们的线性尾部非常容易降解。这突出了分支rna作为环状rna的重要来源。此外,许多幼虫衍生的环状rna在细胞质中被检测到,这意味着活跃的核输出和细胞质过程中的潜在作用。在这篇综述中,我们概述了内含子衍生的喉rna的生命周期,重点是它们的生物发生、降解和保留。我们还讨论了使它们抵抗降解的机制和稳定的分枝rna的生物学功能,揭示了这些看似“无稽之谈”但不可避免地产生的非编码内含子rna。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intron-Derived Lariat RNAs Go Stable.

During pre-mRNA splicing, introns are removed by the spliceosome, and the flanking exons are ligated to form mature mRNA, which is subsequently translated into protein. Traditionally, intronic RNAs have been regarded as "junk", presumed to be degraded for nucleotide turnover. Notably, after debranching, some linearized lariat RNAs can be further processed into snoRNAs, miRNAs, and other long non-coding RNAs. However, recent studies have shown that many intron-derived lariat RNAs can escape degradation and remain stable across various eukaryotic organisms, indicating they may play significant roles in cellular processes. Moreover, these naturally retained lariat RNAs are frequently observed in circular forms in vivo, suggesting that their linear tails are highly susceptible to degradation. This highlights lariat RNAs as an important source of circular RNAs. Furthermore, many lariat-derived circRNAs have been detected in the cytoplasm, implying active nuclear export and potential roles in cytoplasmic processes. In this review, we provide an overview of the life cycle of intron-derived lariat RNAs, focusing on their biogenesis, degradation, and retention. We also discuss the mechanisms that enable their resistance to degradation and the biological functions of stable lariat RNAs, shedding light on these seemingly "nonsense" yet inevitably produced non-coding intronic RNAs.

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来源期刊
CiteScore
14.80
自引率
4.10%
发文量
67
审稿时长
6-12 weeks
期刊介绍: WIREs RNA aims to provide comprehensive, up-to-date, and coherent coverage of this interesting and growing field, providing a framework for both RNA experts and interdisciplinary researchers to not only gain perspective in areas of RNA biology, but to generate new insights and applications as well. Major topics to be covered are: RNA Structure and Dynamics; RNA Evolution and Genomics; RNA-Based Catalysis; RNA Interactions with Proteins and Other Molecules; Translation; RNA Processing; RNA Export/Localization; RNA Turnover and Surveillance; Regulatory RNAs/RNAi/Riboswitches; RNA in Disease and Development; and RNA Methods.
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