环形RNA及其编码肽在胶质瘤中的功能作用和生物学机制:叙述性综述

S. Bakhti, S. Dadashi, Anahita Dah Pahlevan, Fatemeh Kafshresan
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引用次数: 1

摘要

环状RNA(circRNA)是一类复杂的非编码RNA,具有共价闭环结构,非常稳定和谨慎。恶性肿瘤的多种生物学过程,包括肿瘤发生、发展、侵袭、转移、细胞凋亡和血管形成,都会被数量增加的circRNA破坏。最近的研究表明,circRNA作为微小RNA(miRNA)海绵或蛋白质支架,与RNA结合蛋白(RBPs)和自噬调节因子相互作用,影响转录和剪接调节。许多circRNA具有组织特异性表达模式,并且高度保守。神经元中的CircRNA水平是动态调节的。越来越多的证据表明,circRNA在神经组织中高度丰富,可能是由于促进环化的特定基因的增殖,这意味着circRNA失调与包括神经胶质瘤在内的神经系统疾病有关。最广泛和致命的原发性恶性脑肿瘤是神经胶质瘤。根据报道的研究,CircRNA与神经胶质瘤有着密切的联系。本文介绍了目前关于circRNA性质的知识,并描述了circRNA的生物学和分子功能。然后,讨论了circRNAs与神经胶质瘤/胶质母细胞瘤的临床相关性及其表达水平及其在肿瘤发生中的调控机制。此外,circRNAs作为诊断生物标志物和脑癌症风险预测因子以及可能的医学治疗靶点的潜力也得到了检验。
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Functional Roles and Biological Mechanisms of Circular RNAs and Their Encoded Peptides in Glioma: A Narrative Review
Circular RNAs (circRNAs) are a complicated class of non-coding RNAs that have a covalently closed loop structure and are very stable and cautious. Multiple biological processes of malignancy, including tumorigenesis, development, invasion, metastasis, apoptosis, and vascularization, are disrupted by an increased number of circRNAs. Recent research has showed that circRNAs, functioning as microRNA (miRNA) sponges or protein scaffolds, interacting with RNA-binding proteins (RBPs), and autophagy regulators, affect the transcription and splicing regulation. Many circRNAs have tissue-specific expression patterns and are heavily conserved. CircRNA levels in neurons are dynamically modulated. Growing evidence suggests that circRNAs are highly abundant in neural tissues, perhaps owing to the proliferation of particular genes that promote circularization, implying that circRNA dysregulation is linked to nervous system disorders including glioma. The most widespread and deadly primary malignant brain tumor is glioma. CircRNA has a close connection to glioma, according to reported research. Here, the current knowledge about the properties of circRNAs is introduced and the biological and molecular functions of circRNAs are described. Then, the clinical association of circRNAs with glioma/glioblastoma and their level of expression and their regulatory mechanisms in tumorigenesis are discussed. Moreover, the potential of circRNAs as diagnostic biomarkers and predictors of brain cancer risk and possible therapeutic targets in medicine is examined.
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