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重塑RNA世界的循环:变废为宝。

Circles reshaping the RNA world: from waste to treasure.

作者信息

Liu Jing, Liu Tian, Wang Xiaman, He Aili

机构信息

Department of Clinical Hematology, Second Affiliated Hospital, Xi'an Jiaotong University Health Care Center, 157 West 5 Street, Xi'an, 710004, Shaanxi, People's Republic of China.

出版信息

Mol Cancer. 2017 Mar 9;16(1):58. doi: 10.1186/s12943-017-0630-y.

Abstract

A new type of RNAs was identified from genes traditionally thought to express messenger or linear ncRNA (noncoding RNA) only. They were subsequently named as circRNAs (circular RNAs) due to the covalently closed structure. Accumulating studies were performed to explore the expression profile of circRNAs in different cell types and diseases, the outcomes totally changed our view of ncRNAs, which was thought to be junk by-products in the process of gene transcription, and enriched our poor understanding of its underlying functions. The expression profile of circRNAs is tissue-specific and alters across various stages of cell differentiation. The biological function of circRNAs is multi-faceted, involving five main features (sponge effect, post-transcriptional regulation, rolling circle translation, circRNA-derived pseudogenes and splicing interference) and varying differently from the locations, binding sites and acting modes of circRNAs. The regulating role of circRNAs is not isolated but through an enormous complicated network involving mRNAs, miRNAs and proteins. Although most of the potential functions still remain unclear, circRNAs have been proved to be ubiquitous and critical in regulating cellular processes and diseases, especially in cancers, from the laboratory to the clinic. Herein, we review circRNAs' classification, biogenesis and metabolism, their well-studied and anticipated functions, the current understanding of the potential implications of circRNAs in tumorigenesis and cancer targeted therapy.

摘要

一种新型RNA是从传统上认为仅表达信使RNA或线性非编码RNA(ncRNA)的基因中鉴定出来的。由于其共价闭合结构,它们随后被命名为环状RNA(circRNA)。人们开展了越来越多的研究来探索circRNA在不同细胞类型和疾病中的表达谱,这些结果彻底改变了我们对ncRNA的看法,ncRNA原本被认为是基因转录过程中的无用副产物,同时也丰富了我们对其潜在功能的匮乏认知。circRNA的表达谱具有组织特异性,且在细胞分化的各个阶段都会发生变化。circRNA的生物学功能是多方面的,涉及五个主要特性(海绵效应、转录后调控、滚环翻译、circRNA衍生的假基因和剪接干扰),并且因circRNA的位置、结合位点和作用方式不同而有所差异。circRNA的调控作用并非孤立存在,而是通过一个涉及mRNA、miRNA和蛋白质的庞大复杂网络来实现的。尽管大多数潜在功能仍不清楚,但从实验室到临床,circRNA已被证明在调节细胞过程和疾病,尤其是癌症方面普遍存在且至关重要。在此,我们综述了circRNA的分类、生物发生和代谢、其已被充分研究和预期的功能,以及目前对circRNA在肿瘤发生和癌症靶向治疗中潜在影响的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74ef/5345220/73e673272f9f/12943_2017_630_Fig1_HTML.jpg

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