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微小RNA生物合成、作用机制及循环概述

Overview of MicroRNA Biogenesis, Mechanisms of Actions, and Circulation.

作者信息

O'Brien Jacob, Hayder Heyam, Zayed Yara, Peng Chun

机构信息

Department of Biology, York University, Toronto, ON, Canada.

出版信息

Front Endocrinol (Lausanne). 2018 Aug 3;9:402. doi: 10.3389/fendo.2018.00402. eCollection 2018.

Abstract

MicroRNAs (miRNAs) are a class of non-coding RNAs that play important roles in regulating gene expression. The majority of miRNAs are transcribed from DNA sequences into primary miRNAs and processed into precursor miRNAs, and finally mature miRNAs. In most cases, miRNAs interact with the 3' untranslated region (3' UTR) of target mRNAs to induce mRNA degradation and translational repression. However, interaction of miRNAs with other regions, including the 5' UTR, coding sequence, and gene promoters, have also been reported. Under certain conditions, miRNAs can also activate translation or regulate transcription. The interaction of miRNAs with their target genes is dynamic and dependent on many factors, such as subcellular location of miRNAs, the abundancy of miRNAs and target mRNAs, and the affinity of miRNA-mRNA interactions. miRNAs can be secreted into extracellular fluids and transported to target cells via vesicles, such as exosomes, or by binding to proteins, including Argonautes. Extracellular miRNAs function as chemical messengers to mediate cell-cell communication. In this review, we provide an update on canonical and non-canonical miRNA biogenesis pathways and various mechanisms underlying miRNA-mediated gene regulations. We also summarize the current knowledge of the dynamics of miRNA action and of the secretion, transfer, and uptake of extracellular miRNAs.

摘要

微小RNA(miRNA)是一类在调节基因表达中起重要作用的非编码RNA。大多数miRNA从DNA序列转录为初级miRNA,然后加工成前体miRNA,最终成为成熟的miRNA。在大多数情况下,miRNA与靶mRNA的3'非翻译区(3'UTR)相互作用,诱导mRNA降解和翻译抑制。然而,也有报道称miRNA与其他区域相互作用,包括5'UTR、编码序列和基因启动子。在某些条件下,miRNA也可以激活翻译或调节转录。miRNA与其靶基因的相互作用是动态的,并且取决于许多因素,例如miRNA的亚细胞定位、miRNA和靶mRNA的丰度以及miRNA-mRNA相互作用的亲和力。miRNA可以分泌到细胞外液中,并通过囊泡(如外泌体)或与包括AGO蛋白在内的蛋白质结合转运到靶细胞。细胞外miRNA作为化学信使介导细胞间通讯。在这篇综述中,我们提供了关于经典和非经典miRNA生物合成途径以及miRNA介导的基因调控的各种机制的最新信息。我们还总结了目前关于miRNA作用动力学以及细胞外miRNA的分泌、转移和摄取的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa39/6085463/9371eba54dae/fendo-09-00402-g0001.jpg

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