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分子层面解析细胞机制中的调控 RNA。

Molecular insights into regulatory RNAs in the cellular machinery.

机构信息

Department of Pharmacy, College of Pharmacy, Hanyang University, Ansan, Gyeonggi-do, 15588, Republic of Korea.

Department of Computer Science, University of Nevada, Las Vegas, NV, 89154, USA.

出版信息

Exp Mol Med. 2024 Jun;56(6):1235-1249. doi: 10.1038/s12276-024-01239-6. Epub 2024 Jun 14.

Abstract

It is apparent that various functional units within the cellular machinery are derived from RNAs. The evolution of sequencing techniques has resulted in significant insights into approaches for transcriptome studies. Organisms utilize RNA to govern cellular systems, and a heterogeneous class of RNAs is involved in regulatory functions. In particular, regulatory RNAs are increasingly recognized to participate in intricately functioning machinery across almost all levels of biological systems. These systems include those mediating chromatin arrangement, transcription, suborganelle stabilization, and posttranscriptional modifications. Any class of RNA exhibiting regulatory activity can be termed a class of regulatory RNA and is typically represented by noncoding RNAs, which constitute a substantial portion of the genome. These RNAs function based on the principle of structural changes through cis and/or trans regulation to facilitate mutual RNA‒RNA, RNA‒DNA, and RNA‒protein interactions. It has not been clearly elucidated whether regulatory RNAs identified through deep sequencing actually function in the anticipated mechanisms. This review addresses the dominant properties of regulatory RNAs at various layers of the cellular machinery and covers regulatory activities, structural dynamics, modifications, associated molecules, and further challenges related to therapeutics and deep learning.

摘要

显然,细胞机制中的各种功能单元都源自 RNA。测序技术的发展使得人们对转录组研究方法有了更深入的了解。生物利用 RNA 来控制细胞系统,而一类异构的 RNA 参与调节功能。特别是,越来越多的调节 RNA 被认为参与了几乎所有生物系统层次的错综复杂的功能机制。这些系统包括调节染色质排列、转录、亚细胞器稳定和转录后修饰的系统。任何表现出调节活性的 RNA 类别都可以被称为调节 RNA 类别,通常由非编码 RNA 代表,它们构成了基因组的很大一部分。这些 RNA 基于通过顺式和/或反式调节来促进相互 RNA-RNA、RNA-DNA 和 RNA-蛋白质相互作用的结构变化的原则发挥作用。目前还不清楚通过深度测序鉴定的调节 RNA 是否实际上在预期的机制中发挥作用。这篇综述讨论了细胞机制各个层次的调节 RNA 的主要特性,涵盖了调节活性、结构动态、修饰、相关分子以及与治疗和深度学习相关的进一步挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e7d/11263585/ee41027c3929/12276_2024_1239_Fig1_HTML.jpg

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