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Circular RNAs: Biogenesis, Function and Role in Human Diseases

机译:环形RNA:人类疾病的生物发生,功能和作用

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Circular RNAs (circRNAs) are currently classed as non-coding RNA (ncRNA) that, unlike linear RNAs, form covalently closed continuous loops and act as gene regulators in mammals. They were originally thought to represent errors in splicing and considered to be of low abundance, however, there is now an increased appreciation of their important function in gene regulation. circRNAs are differentially generated by backsplicing of exons or from lariat introns. Unlike linear RNA, the 3′ and 5′ ends normally present in an RNA molecule have been joined together by covalent bonds leading to circularisation. Interestingly, they have been found to be abundant, evolutionally conserved and relatively stable in the cytoplasm. These features confer numerous potential functions to circRNAs, such as acting as miRNA sponges, or binding to RNA-associated proteins to form RNA-protein complexes that regulate gene transcription. It has been proposed that circRNA regulate gene expression at the transcriptional or post-transcriptional level by interacting with miRNAs and that circRNAs may have a role in regulating miRNA function in cancer initiation and progression. circRNAs appear to be more often downregulated in tumour tissue compared to normal tissue and this may be due to (i) errors in the back-splice machinery in malignant tissues, (ii) degradation of circRNAs by deregulated miRNAs in tumour tissue or (iii) increasing cell proliferation leading to a reduction of circRNAs. circRNAs have been identified in exosomes and more recently, chromosomal translocations in cancer have been shown to generate aberrant fusion-circRNAs associated with resistance to drug treatments. In addition, though originally thought to be non-coding, there is now increasing evidence to suggest that select circRNAs can be translated into functional proteins. Although much remains to be elucidated about circRNA biology and mechanisms of gene regulation, these ncRNAs are quickly emerging as potential disease biomarkers and therapeutic targets in cancer.
机译:环状RNA(circRNA)目前被归类为非编码RNA(ncRNA),与线性RNA不同,环状RNA形成共价闭合的连续环并在哺乳动物中充当基因调节剂。最初认为它们代表剪接错误,并且被认为含量低,但是现在人们越来越认识到它们在基因调控中的重要作用。 circRNA由外显子的反向剪接或套索内含子差异产生。与线性RNA不同,通常存在于RNA分子中的3'和5'末端已通过共价键连接在一起,从而导致环化。有趣的是,已发现它们在细胞质中丰富,进化保守且相对稳定。这些特征赋予circRNA多种潜在功能,例如充当miRNA海绵,或与RNA相关蛋白结合形成调节基因转录的RNA蛋白复合物。已经提出,circRNA通过与miRNA相互作用而在转录或转录后水平上调节基因表达,并且circRNA可能在癌症的发生和发展中调节miRNA的功能。与正常组织相比,circRNA在肿瘤组织中似乎更经常被下调,这可能是由于(i)恶性组织的反向剪接机制存在错误,(ii)肿瘤组织中miRNA失调导致circRNA降解或(iii)增加细胞增殖导致circRNA减少。 circRNA已在外泌体中鉴定,最近,癌症中的染色体易位已显示出与药物治疗耐药性相关的异常融合circRNA。另外,尽管最初被认为是非编码的,但是现在有越来越多的证据表明选择的circRNA可以翻译成功能蛋白。尽管关于circRNA生物学和基因调控机制还有许多待阐明,但这些ncRNA迅速成为潜在的疾病生物标记物和癌症的治疗靶标。

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