MicroRNA-mediated regulation of nonsense-mediated mRNA decay factors: Insights into microRNA prediction tools and profiling techniques

IF 2.6 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochimica et Biophysica Acta-Gene Regulatory Mechanisms Pub Date : 2024-03-02 DOI:10.1016/j.bbagrm.2024.195022
Priyanka Yadav, Raja Tamilselvan, Harita Mani, Kusum Kumari Singh
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Abstract

Nonsense-mediated mRNA decay (NMD) stands out as a prominent RNA surveillance mechanism within eukaryotes, meticulously overseeing both RNA abundance and integrity by eliminating aberrant transcripts. These defective transcripts are discerned through the concerted efforts of translating ribosomes, eukaryotic release factors (eRFs), and trans-acting NMD factors, with Up-Frameshift 3 (UPF3) serving as a noteworthy component. Remarkably, in humans, UPF3 exists in two paralogous forms, UPF3A (UPF3) and UPF3B (UPF3X). Beyond its role in quality control, UPF3 wields significant influence over critical cellular processes, including neural development, synaptic plasticity, and axon guidance. However, the precise regulatory mechanisms governing UPF3 remain elusive.

MicroRNAs (miRNAs) emerge as pivotal post-transcriptional gene regulators, exerting substantial impact on diverse pathological and physiological pathways. This comprehensive review encapsulates our current understanding of the intricate regulatory nexus between NMD and miRNAs, with particular emphasis on the essential role played by UPF3B in neurodevelopment. Additionally, we bring out the significance of the 3’-untranslated region (3’-UTR) as the molecular bridge connecting NMD and miRNA-mediated gene regulation. Furthermore, we provide an in-depth exploration of diverse computational tools tailored for the prediction of potential miRNA targets. To complement these computational approaches, we delineate experimental techniques designed to validate predicted miRNA-mRNA interactions, empowering readers with the knowledge necessary to select the most appropriate methodology for their specific research objectives.

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MicroRNA 介导的无意义 mRNA 衰减因子调控:对 microRNA 预测工具和剖析技术的见解。
有义介导的 mRNA 衰变(NMD)是真核生物中一种突出的 RNA 监控机制,它通过消除异常转录本,精心监控 RNA 的丰度和完整性。这些有缺陷的转录本是通过翻译核糖体、真核生物释放因子(eRFs)和反式作用 NMD 因子的协同努力识别出来的,其中上移帧 3(UPF3)是一个值得注意的组成部分。值得注意的是,在人类中,UPF3 存在两种对等形式,即 UPF3A(UPF3)和 UPF3B(UPF3X)。除了在质量控制中的作用外,UPF3 还对神经发育、突触可塑性和轴突导向等关键细胞过程具有重要影响。然而,UPF3 的精确调控机制仍然难以捉摸。微小RNA(miRNA)是转录后基因调控的关键,对多种病理和生理途径产生重大影响。本综述概述了我们目前对 NMD 与 miRNA 之间错综复杂的调控关系的理解,尤其强调了 UPF3B 在神经发育过程中发挥的重要作用。此外,我们还指出了 3'- 非翻译区(3'-UTR)作为连接 NMD 和 miRNA 介导的基因调控的分子桥梁的重要性。此外,我们还深入探讨了为预测潜在 miRNA 靶点而量身定制的各种计算工具。作为对这些计算方法的补充,我们介绍了旨在验证预测的 miRNA-mRNA 相互作用的实验技术,使读者能够掌握必要的知识,为其特定的研究目标选择最合适的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
9.20
自引率
2.10%
发文量
63
审稿时长
44 days
期刊介绍: BBA Gene Regulatory Mechanisms includes reports that describe novel insights into mechanisms of transcriptional, post-transcriptional and translational gene regulation. Special emphasis is placed on papers that identify epigenetic mechanisms of gene regulation, including chromatin, modification, and remodeling. This section also encompasses mechanistic studies of regulatory proteins and protein complexes; regulatory or mechanistic aspects of RNA processing; regulation of expression by small RNAs; genomic analysis of gene expression patterns; and modeling of gene regulatory pathways. Papers describing gene promoters, enhancers, silencers or other regulatory DNA regions must incorporate significant functions studies.
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