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RNA代谢以及小RNA在调控RNA代谢多个方面的作用。

RNA Metabolism and the Role of Small RNAs in Regulating Multiple Aspects of RNA Metabolism.

作者信息

Dawar Pranav, Adhikari Indra, Mandal Swarupa Nanda, Jayee Bhumika

机构信息

Department of Biological Sciences, Texas Tech University, Lubbock, TX 79409, USA.

Department of Plant Sciences, University of California, Davis, CA 95616, USA.

出版信息

Noncoding RNA. 2024 Dec 24;11(1):1. doi: 10.3390/ncrna11010001.

Abstract

RNA metabolism is focused on RNA molecules and encompasses all the crucial processes an RNA molecule may or will undergo throughout its life cycle. It is an essential cellular process that allows all cells to function effectively. The transcriptomic landscape of a cell is shaped by the processes such as RNA biosynthesis, maturation (RNA processing, folding, and modification), intra- and inter-cellular transport, transcriptional and post-transcriptional regulation, modification, catabolic decay, and retrograde signaling, all of which are interconnected and are essential for cellular RNA homeostasis. In eukaryotes, sRNAs, typically 20-31 nucleotides in length, are a class of ncRNAs found to function as nodes in various gene regulatory networks. sRNAs are known to play significant roles in regulating RNA population at the transcriptional, post-transcriptional, and translational levels. Along with sRNAs, such as miRNAs, siRNAs, and piRNAs, new categories of ncRNAs, i.e., lncRNAs and circRNAs, also contribute to RNA metabolism regulation in eukaryotes. In plants, various genetic screens have demonstrated that sRNA biogenesis mutants, as well as RNA metabolism pathway mutants, exhibit similar growth and development defects, misregulated primary and secondary metabolism, as well as impaired stress response. In addition, sRNAs are both the "products" and the "regulators" in broad RNA metabolism networks; gene regulatory networks involving sRNAs form autoregulatory loops that affect the expression of both sRNA and the respective target. This review examines the interconnected aspects of RNA metabolism with sRNA regulatory pathways in plants. It also explores the potential conservation of these pathways across different kingdoms, particularly in plants and animals. Additionally, the review highlights how cellular RNA homeostasis directly impacts adaptive responses to environmental changes as well as different developmental aspects in plants.

摘要

RNA代谢聚焦于RNA分子,涵盖了RNA分子在其生命周期中可能或将会经历的所有关键过程。它是一个至关重要的细胞过程,使所有细胞能够有效地发挥功能。细胞的转录组格局由RNA生物合成、成熟(RNA加工、折叠和修饰)、细胞内和细胞间运输、转录和转录后调控、修饰、分解代谢衰变以及逆行信号传导等过程塑造,所有这些过程相互关联,对于细胞RNA稳态至关重要。在真核生物中,sRNA通常长度为20 - 31个核苷酸,是一类非编码RNA,被发现作为各种基因调控网络中的节点发挥作用。已知sRNA在转录、转录后和翻译水平上调节RNA群体方面发挥着重要作用。除了sRNA,如miRNA、siRNA和piRNA,新的非编码RNA类别,即lncRNA和circRNA,也有助于真核生物中的RNA代谢调控。在植物中,各种遗传筛选表明,sRNA生物合成突变体以及RNA代谢途径突变体表现出相似的生长和发育缺陷、初级和次级代谢失调以及应激反应受损。此外,sRNA在广泛的RNA代谢网络中既是“产物”又是“调节因子”;涉及sRNA的基因调控网络形成自调节环,影响sRNA和各自靶标的表达。本综述研究了植物中RNA代谢与sRNA调控途径的相互关联方面。它还探讨了这些途径在不同王国之间,特别是在植物和动物中的潜在保守性。此外,该综述强调了细胞RNA稳态如何直接影响植物对环境变化的适应性反应以及不同的发育方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a939/11755482/8078ff5cdbef/ncrna-11-00001-g001.jpg

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