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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Insights Into the Role of CircRNAs: Biogenesis, Characterization, Functional, and Clinical Impact in Human Malignancies
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Insights Into the Role of CircRNAs: Biogenesis, Characterization, Functional, and Clinical Impact in Human Malignancies

机译:洞察Circrnas的作用:生物发生,表征,功能性和临床影响人类恶性肿瘤

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摘要

Circular RNAs (circRNAs) are an evolutionarily conserved novel class of non-coding endogenous RNAs (ncRNAs) found in the eukaryotic transcriptome, originally believed to be aberrant RNA splicing by-products with decreased functionality. However, recent advances in high-throughput genomic technology have allowed circRNAs to be characterized in detail and revealed their role in controlling various biological and molecular processes, the most essential being gene regulation. Because of the structural stability, high expression, availability of miRNA binding sites and tissue-specific expression, circRNAs have become hot topic research in RNA biology. Compared to the linear RNA, circRNAs are produced differentially by backsplicing exons or lariat introns from a pre-mRNA forming a covalently closed loop structure missing 3′ poly-(A) tail or 5′ cap, rendering them immune to exonuclease-mediated degradation. Emerging research has identified multifaceted roles of circRNAs as miRNA and RNA Binding Protein (RBP) sponges and transcription, translation, and splicing event regulators. CircRNAs have been involved in many human illnesses, including cancer and neurodegenerative disorders such as Alzheimer's and Parkinson's disease, due to their aberrant expression in different pathological conditions. The functional versatility exhibited by circRNAs enables them to serve as potential diagnostic or predictive biomarkers for various diseases. This review discusses the properties, characterization, profiling, and the diverse molecular mechanisms of circRNAs and their use as potential therapeutic targets in different human pathologies.
机译:圆形RNA(CircRNA)是在真核转录组中发现的一种进化的非编码内源RNA(NCRNA),最初认为是具有降低的副产物的异常RNA剪接副产物。然而,高通量基因组技术的最近进步使CircrNA能够详细描述并揭示了它们在控制各种生物和分子过程中的作用,最重要的基因调节。由于结构稳定性,高表达,MiRNA结合位点和组织特异性表达的可用性,Circrnas已成为RNA生物学的热门话题研究。与线性RNA相比,通过将外显子或Lariat内含子从形成共价闭合的环结构缺失3'聚(a)尾部或5'帽,使其差异地产生差异,使它们免于外切核酸酶介导的降解。新兴研究已鉴定CircRNA作为miRNA和RNA结合蛋白(RBP)海绵和转录,翻译和剪接事件调节剂的多方面作用。由于不同病理条件下的异常表达,Circrnas涉及许多人类疾病,包括癌症和神经变性疾病,如阿尔茨海默氏症和帕金森病。 Circrnas展示的功能多功能性使其能够作为各种疾病的潜在诊断或预测生物标志物。本综述讨论了CircRNA的性质,表征,分析和各种分子机制及其作为不同人类病理中的潜在治疗目标的用途。

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