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1.
CircRNA(circular RNA)是一种具有特殊环形结构的ncRNA(non-coding RNA),并具有多种生物学功能.随着研究的深入,发现circRNA能够通过海绵吸附抑制miRNA(micro RNA)的表达,进而调控各系统肿瘤的发展.此外,一种circRNA也可参与调控一种或多种miRNA的表达,这一...  相似文献   

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肾母细胞瘤(Wilms瘤)是儿童时期最常见的肾脏恶性肿瘤。传统的分层诊疗方案无法实现指导精准风险分层的目标,尤其是对于那些没有高危因素的患儿。例如,具有相同临床表型并接受相同治疗的患儿可能存在明显不同的预后,这表明该疾病比以前认识的要复杂得多。这种个体异质性需要更深入的分子表型研究来确定新的标志物和靶点。环状RNA(circular RNA,circ RNA)是一类新发现的非编码RNA。大量研究报道,失调的环状RNA主要依赖mi RNA“海绵”机制调节癌细胞的多种表型,包括增殖、侵袭、迁移、周期阻滞或化疗耐药等。该分子也有希望成为癌症诊断标志物和治疗靶点。与成人癌症相比,对肾母细胞瘤中环状RNA的研究仍处于起步阶段。本文基于现有文献,系统综述了环状RNA在肾母细胞瘤中的表达模式、生物学功能和临床意义等方面的最新进展,并探讨了目前研究的局限性和今后的研究方向。  相似文献   

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Circular RNA (circRNA) is a newly described type of non‐coding RNA. Active research is greatly enriching the current understanding of the expression and role of circRNA, and a large amount of evidence has implicated circRNA in the pathogenesis of certain renal diseases, such as renal cell carcinoma, acute kidney injury, diabetic nephropathy and lupus nephritis. Studies have found evidence that circRNAs regulate programmed cell death, invasion, and metastasis and serve as biomarkers in renal diseases. Recently, circRNAs were identified in exosomes secreted by the kidneys. Nevertheless, the function of circRNA in renal diseases remains ambiguous. Given that circRNAs are regulators of gene expression, they may be involved in the pathology of multiple renal diseases. Additionally, emerging evidence is showing that circulating circRNAs may serve as novel biomarkers for renal disease. In this review, we have summarized the identification, biogenesis, degradation, and functions of circRNA and have evaluated the roles of circRNA in renal diseases.  相似文献   

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环状RNA(circular RNA, circRNA)是由真核生物中的前体mRNA反向剪接产生的环状内源性RNA分子,分布广泛、结构稳定、序列高度保守,具有细胞和组织特异性。circRNA以多种方式参与调控生物学过程以及疾病的发生发展。目前发现的功能模式包含竞争性内源性RNA作用、与蛋白质互作、翻译成蛋白质以及顺式调控亲本基因的转录等。随着circRNA的基本信息、功能分析和与人类疾病的关系等研究内容不断更新增加,急需对海量的信息进行整合分析,以及对相应细胞或组织来源的circRNA进行分类。本文从基本信息整合及分析、相关功能分析和与人类疾病的相关性等方面,对目前常用的circRNA数据库进行综述,以期为circRNA研究提供参考。  相似文献   

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Circular RNA (circRNA) is a class of RNA with the 5' and 3' ends connected covalently to form a closed loop structure and characterized by high stability, conserved sequences and tissue specificity, which is caused by special reverse splicing methods. Currently, it has become a hot spot for research. With the discovery of its powerful regulatory functions and roles, the molecular mechanisms and future value of circRNA in participating in and regulating biological and pathological processes are becoming increasingly apparent. Among them is the increasing prevalence of cardiovascular diseases (CVDs). Many studies have elucidated that circRNA plays a crucial role in the development and progression of CVDs. Therefore, circRNA shows its advantages and brilliant expectations in the field of CVDs. In this review, we describe the biogenesis, bioinformatics detection and function of circRNA and discuss the role of circRNA and its effects on CVDs, including atherosclerosis, myocardial infarction, cardiac hypertrophy and heart failure, myocardial fibrosis, cardiac senescence, pulmonary hypertension, and diabetic cardiomyopathy by different mechanisms. That shows circRNA advantages and brilliant expectations in the field of CVDs.  相似文献   

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环状RNA(circular RNA,circRNA)是一种具有新型环状结构的RNA分子,广泛存在于多种生物体中,具有结构稳定、进化保守、高度丰富和组织特异性等特征。同时,它可通过充当微小RNA(microRNA,miRNA)分子海绵、调控基因转录、结合蛋白质和参与蛋白质翻译等方式发挥生物学功能。且随着高通量测序技术和生物信息学的迅速发展,越来越多的circRNA被发现与肿瘤的发生有关。N6-甲基腺嘌呤(N6-methyladenosine,m6A)修饰是真核生物最常见的一种RNA修饰,它是由m6A甲基转移酶、去甲基化酶和m6A识别蛋白质共同参与的动态可逆的调节过程,广泛参与RNA的核输出、剪接、稳定性、翻译和降解等过程的调控。m6A修饰在多种人类疾病中发挥关键作用,例如癌症和心血管疾病等。近年来,在一些circRNA中也发现了m6A修饰,并报道了其在宫颈癌、结直肠癌、肝细胞癌、非小细胞肺癌和胃低分化腺癌等多种恶性肿瘤发生发展中的作用。本文总结了RNA m6A修饰机制、m6A修饰对circRNA的调控作用,以及circRNA的m6A修饰在肿瘤中的作用,也讨论了m6A修饰的circRNA的潜在临床应用价值,以期为肿瘤的早期诊断、临床治疗和预后判断提供新的思路与途径。  相似文献   

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Synthetic messenger RNA (mRNA) has been focused on as an emerging application for mRNA-based therapies and vaccinations. Recently, synthetic circular RNAs (circRNAs) have shown promise as a new class of synthetic mRNA that enables superior stability and persistent gene expression in cells. However, translational control of circRNA remained challenging. Here, we develop ‘circRNA switches’ capable of controlling protein expression from circRNA by sensing intracellular RNA or proteins. We designed microRNA (miRNA) and protein-responsive circRNA switches by inserting miRNA-binding or protein-binding sequences into untranslated regions (UTRs), or Coxsackievirus B3 Internal Ribosome Entry Site (CVB3 IRES), respectively. Engineered circRNAs efficiently expressed reporter proteins without inducing severe cell cytotoxicity and immunogenicity, and responded to target miRNAs or proteins, controlling translation levels from circRNA in a cell type-specific manner. Moreover, we constructed circRNA-based gene circuits that selectively activated translation by detecting endogenous miRNA, by connecting miRNA and protein-responsive circRNAs. The designed circRNA circuits performed better than the linear mRNA-based circuits in terms of persistent expression levels. Synthetic circRNA devices provide new insights into RNA engineering and have a potential for RNA synthetic biology and therapies.  相似文献   

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环状RNA(circular RNA, circRNA)是一种共价闭合环状结构的内源性非编码RNA分子,不具有5′端帽子和3′端poly(A)尾巴结构,具有广泛性、保守性、组织特异性以及稳定性等特性;根据序列来源的不同可分为3种类型:外显子circRNA、内含子circRNA、外显子-内含子circRNA;随着生物信息学的快速发展和高通量测序技术的不断革新,目前已经在真核细胞中发现大量内源性circRNA,主要分布于细胞质中,其独特的序列结构,使它具有microRNA海绵、调节选择性剪接或转录、与RNA结合蛋白结合、滚动翻译和衍生假基因等功能;它参与癌症、糖尿病、神经系统疾病和动脉粥样硬化等疾病发生、发展过程。众多研究显示circRNA会成为新型的疾病临床诊断标志物或人类疾病治疗的潜在靶点,该评述较为详细地从circRNA的形成、特性、生物学功能、研究方法、研究数据库以及和疾病的关系等方面来阐述circRNA的最新研究进展,方便研究人员进行circRNA研究。  相似文献   

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环状RNA(circular RNA,circRNA)是近年来RNA领域最新的研究热点.它是一类由特殊的选择性剪切产生且在真核细胞中广泛表达的环形内源性RNA分子.研究发现,circRNA富含microRNA(miRNA)结合位点,可以发挥竞争性内源RNA作用,作为miRNA"海绵"来解除对其靶基因的抑制效应.近年来,circRNA作为一种新型调控分子调控miRNA功能的发挥,受到众多研究者的青睐.本文综述circRNA的产生机制,及其调控miRNA的最新研究进展与研究方法等.  相似文献   

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环状RNA(circular RNA,circRNA)作为非编码RNA家族的重要成员,是一类共价闭环结构的单链RNA,没有多聚腺苷酸尾和5'-与-3'末端,显示出高度稳定性、丰富性和物种保守性等特点.近年来研究发现,circRNA与肿瘤化疗耐药、恶性进展等在内的多种生物学进程密切相关,发挥着极其重要的作用.外泌体是由机...  相似文献   

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环状RNA作为一种对基因表达进行精细调节的重要非编码RNA,不仅增加了非编码RNA介导的基因调控网络的复杂度,也加深了疾病发病机制研究的深度。虽然近年来环状RNA的功能研究有了长足的进步,确定了其作为ceRNA能够特异性吸附miRNA,解除相应miRNA对下游靶mRNA的抑制作用,此类研究也表明核外环状RNA介导的凋亡活化,增殖抑制和细胞与细胞间的交流在疾病发生发展过程中是至关重要的,但我们对环状RNA的了解还只是冰山一角,特别是病理状态下其作用的具体机制仍然需要我们不断探索。在此,本综述的主要目的是回顾目前关于环状RNA在心血管疾病、中枢神经系统疾病和癌症等慢性病领域的研究,探讨以上慢性病发病过程中环状RNA所起的作用以及展望未来环状RNA在疾病发病机制领域的研究。  相似文献   

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环状RNA(circular RNA, circRNA)是存在于真核细胞中的一种非线性RNA,具有稳定性、特异性以及进化保守性等特征,通过发挥microRNA的海绵作用,对其靶基因进行调控。与线性RNA相比,环状RNA自身的闭合环状结构使其更具优越性。小脑变性相关蛋白1反义转录物 (cerebellar degeneration-related protein 1 antisense,CDR1as)作为一种竞争性内源RNA(competing endogenous RNA,ceRNA)间接调控miR-7靶标,通过多种途径影响多种疾病的发生和发展。本文就CDR1as的发现、来源及特征、功能以及与不同疾病的相关性作一概述。  相似文献   

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Shao  Yingying  Li  Fangshun  Liu  Hanlin 《Biochemical genetics》2022,60(2):640-655
Biochemical Genetics - Earlier studies have shown that circular RNA (circRNA) expression is closely related to the malignant progression of cancer, but the role of circ-DONSON in gastric cancer...  相似文献   

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Circular RNA (circRNA) is a highly abundant type of single-stranded non-coding RNA. Novel research has discovered many roles of circRNA in colorectal cancer (CRC) including proliferation, metastasis and apoptosis. Furthermore, circRNAs also play a role in the development of drug resistance and have unique associations with tumour size, staging and overall survival in CRC that lend circRNAs the potential to serve as diagnostic and prognostic biomarkers. Among cancers worldwide, CRC ranks second in mortality and third in incidence. In order to have a better understanding of the influence of circRNA on CRC development and progression, this review summarizes the role of specific circRNAs in CRC and evaluates their potential value as therapeutic targets and biomarkers for CRC. We aim to provide insight in the development of therapy and clinical decision-making.  相似文献   

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Wang  Xia  Lv  Jian  He  Bin  Zhou  Deqi 《Biochemical genetics》2022,60(4):1313-1332
Biochemical Genetics - Non-small cell lung carcinoma (NSCLC) is an aggressive malignant tumor. Growing evidences have revealed that circular RNA (circRNA) is involved in NSCLC progression. This...  相似文献   

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Circular RNA (circRNA) is a looped noncoding RNA with a stable structure and tissue-specific expression and widely reported to regulate cancer initiation and progression. However, the circRNA expression patterns and their roles in osteosarcoma initiation and progression are still poorly understood. In this study, we characterized the landscape of circRNAs in osteosarcoma (OS) cell lines, and calculated the epithelial-mesenchymal transition (EMT) scores for OS cell lines. The differential expression analysis revealed that the EMT-related genes were significantly upregulated in the OS cell lines with higher metastatic potentials, and some inflammation-related pathways and pathways involved in cell-cell communications were enriched by these upregulated genes. Furthermore, we constructed a circRNA-based competing endogenous RNA (ceRNA) network, which consisted of 5 circRNAs, 17 miRNAs, and 73 mRNAs. Particularly, hsa_circ_0085360, which had the highest correlation with TRPS1, were characterized by some cancer-related pathways, and TRPS1 and its target gene FGFR3 were closely associated with both event-free survival and overall survival of OS, indicating that hsa_circ_0085360 might have the potential to predict the OS prognosis. In summary, we profiled the circRNA expression patterns in OS, predicted their functionality, and explored the underlying mechanism and prognostic values, which might provide some evidences for OS-related circRNA researches.  相似文献   

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