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1.
环状RNA(circular RNA,circRNA)是一类广泛表达于真核细胞的环形RNA,多起源于蛋白编码基因。近年来发现circRNAs可通过如miRNA“海绵”等作用模式在基因的表达中发挥重要的调控作用,存在器官组织特异性的表达谱,并且越来越多的证据表明circRNAs可能是一种潜在的疾病标志物和治疗靶点。本文将对circRNAs近年在疾病中的研究进展进行综述,具体分为以下几个方面:(1)circRNAs的基本特征;(2)circRNAs的合成调控;(3)环状RNA介导基因表达的调控机制;(4)circRNAs在肿瘤性疾病中的作用;(5)circRNAs在感染免疫相关性疾病中的作用;(6)circRNAs在心血管疾病中的作用;(7)研究展望。  相似文献   

2.
环状RNA (circular RNAs, circRNAs)属结构稳定的非编码RNA,具有miRNA海绵、与蛋白质互作等生物学功能。近年,子宫内膜异位症(endometriosis, EMs;简称内异症)中的circRNAs逐渐得到广泛研究。诸多学者通过多种生物信息学方法预测分析出EMs中差异表达的circRNAs、miRNAs及相关信号通路,并对已知的差异表达的circRNA进行敲除或过表达来探究其在上皮-间质转化(epithelial-mesenchymal transition, EMT)、雌激素介导细胞侵袭、细胞自噬与凋亡、缺氧等生物学过程中的具体调控作用。该文以差异表达的circRNAs为起点,从ceRNA轴出发,在circRNA-miRNA-mRNA网络中对参与EMs发病的相关信号通路进行全面综述,强调了circRNAs作为子宫内膜异位症潜在治疗靶点的作用,以期为内异症临床治疗提供新思路。  相似文献   

3.
Xu L  Xu ML 《遗传》2012,34(1):41-49
植物中的小RNA参与多种生物学过程,依据其起源及前体结构的不同主要分为两类:微小RNA(miRNAs)和小干扰RNA(siRNAs),它们的长度通常为21~24个核苷酸,在生物合成途径以及作用机制等方面存在差异。病原物侵染植物后常通过诱导或抑制小RNA分子来调节抗病相关基因的表达,进而调控植物与病原物的互作反应。文章就小RNA的生物合成、作用途径及其在植物与病原物互作中的调控机制等方面进行了综述。  相似文献   

4.
植物小RNA不仅参与调控植物生长发育,而且在调节植物免疫应答方面具有重要作用。根据其起源和前体结构的不同,可以分为微小RNA(mi RNA)、小干扰RNA(si RNA)等,其在植物体内合成方式与作用机制方面存在差异。病原物侵染会引起内源性小RNA或病原物来源的小RNA表达变化,进而引发植物免疫应答反应并激活相应的RNA干扰路径。本文重点介绍了小RNA类型以及合成方式,植物对病原物的免疫应答过程中的小RNA和RNA干扰途径,以及RNA干扰技术在植物抗病虫害过程中的应用等方面,同时对在植物免疫应答中的小RNA和RNA干扰作用机制进行展望。  相似文献   

5.
环状RNA(circular RNAs,circRNAs)是一类广泛存在于各种生物细胞中具有调控基因表达功能的非编码RNA,具有结构稳定和组织特异性表达等特征.有些circRNA分子富含微小RNA结合位点,可通过充当竞争性内源RNA的角色来发挥作用,如CDR1as对miR-7的海绵作用与肺癌、乳腺癌、胶质瘤及肌萎缩性脊髓侧索硬化等疾病发生相关.c ANRIL可通过影响多梳家族参与动脉粥样硬化的发生.大量circRNA的发现及其结构和功能的阐明不仅可以使我们更加深入地了解疾病的发生机制,而且为相关疾病的预防、诊断和治疗提供了新的方向.  相似文献   

6.
外泌体是细胞分泌的30~150 nm的细胞外囊泡,在肿瘤微环境(tumor microenvironment,TME)中介导细胞间通讯.环状RNA(circular RNA,circRNAs)是一类由前体mRNA(precursor mRNA,pre-mRNA)反向剪接生成的非编码RNA(non-coding RNA,ncRNA),在外泌体中富集且表达稳定.本文主要讨论外泌体起源和circRNAs在外泌体中的分选调控机制,阐述外泌体circRNAs在肿瘤微环境各个阶段中的作用与机制,包括血管生成、EMT、耐药等.最后,本文探讨外泌体circRNAs作为肿瘤标志物和治疗靶点的临床应用前景与价值.  相似文献   

7.
环状RNA(circular RNAs,circRNAs)是一类共价闭合环状非编码RNA,具有进化上保守、结构上稳定、组织特异性表达等特点。CircRNAs可作为miRNAs海绵影响其对基因的调控,还可与RNA结合蛋白(RNA binding proteins,RBPs)相互作用,也有研究表明某些circRNAs还具有被翻译成蛋白质的潜能。CircRNAs已被证实对某些疾病具有特异性、稳定性和调节功能,如癌症、糖尿病、心血管疾病、神经退行性疾病等,其可作为潜在的诊断、预后生物标志物和治疗靶点。最近,有研究发现circRNAs参与了环境化学污染物诱导的毒性效应发生及发展的过程。目前,生态毒理学研究中评价环境化学污染物和毒效应之间关系的毒性终点通常会受遗传多态性和表观遗传学影响,考虑到经环境化学污染物暴露后生物体内circRNAs差异性表达的现象,或许在生态毒理学研究中circRNAs也有作为生物标志物的可能性。基于此,对circRNAs的生物合成与降解、生物学功能、分析方法及其目前在生态毒理学研究中的应用展开综述,并对其作为分子生物标志物在环境污染物暴露早期诊断和生态风险评价中的应用进行了展望,以期为生态毒理学研究和环境风险评价提供参考。  相似文献   

8.
环状RNA(circular RNA,circRNA)是一类闭合环状的内源RNA分子,广泛存在于不同物种及多种人体细胞中,具有丰富性、稳定性和组织特异性等特点。人体细胞中的circRNA主要可分为外显子circRNA、环状内含子RNA和外显子-内含子circRNA等。与正常组织相比,circRNA在多种肿瘤组织中异常表达,并具有作为微小RNA(microRNA,miRNA)海绵调控miRNA、结合蛋白质、参与翻译等功能。虽然circRNA在肿瘤中异常表达的具体机制尚不明确,但其在食管鳞状细胞癌、胃癌、结直肠癌、肝细胞癌、神经胶质瘤等多种肿瘤发生、发展的分子通路中具有重要作用,并有望成为全新的肿瘤标志物和治疗靶点。circRNA领域的发展日新月异,本文根据最新研究报道,就circRNA的基本特征、异常表达机制、调控肿瘤的机制及其在多种肿瘤中发挥的作用作一综述。  相似文献   

9.
RNA干扰(RNA interference,RNAi)是在植物、动物、线虫、真菌以及昆虫等生物体中普遍存在的通过双链RNA(double-strand RNA,dsRNA)诱导的抑制同源基因表达的一种保守的调控机制.小分子RNA通过特异性地识别结合RNA诱导的沉默复合体(RNA-induced silencing complex,RISC)对目标mRNA的表达在转录和翻译水平进行抑制.作为RISC的重要组成成分,Argonaute蛋白(Ago)发挥了至关重要的作用.为了进一步阐明Ago蛋白在RNA干扰中对小分子RNA的作用机制,本文介绍了Ago蛋白的结构、分类及其在RNA干扰机制中的作用,并着重阐述了目前已知的植物Ago蛋白对小分子RNA的几种作用机制,以及目前研究发现的Ago蛋白的功能作用,从而更进一步证实Ago蛋白对小分子RNA的作用是一个复杂的过程.  相似文献   

10.
环状RNA(circular RNA,circRNA)是真核细胞中广泛存在的一类由3′末端和5′末端共价结合形成的环状非编码RNA(non-coding RNA,ncRNA)。越来越多的研究表明,circRNA具有种类丰富、结构稳定、序列保守以及细胞或组织特异性表达等特点。circRNA具有很多潜在的功能,例如作为天然小RNA(microRNA,miRNA)海绵体吸附并调控miRNA的活性,与转录调控元件结合或与蛋白互作调控基因的转录等。目前关于circRNA的研究多集中在动物和人体中,在植物中的研究还较少,仅在水稻(Oryza sativa)、拟南芥(Arabidopsis thaliana)、小麦(Triticum aestivum)、猕猴桃(Actinidia chinensis)、番茄(Solanum lycopersicum)和大豆(Glycine max)等中鉴定到了circRNA的存在,并且其作用机理尚不清楚。该文主要针对circRNA的分类、形成机制、分子特征、相关研究方法以及在植物中的主要研究进展进行综述,并对目前植物circRNA研究中存在的问题进行了分析总结。  相似文献   

11.
环状RNA(circRNA)广泛存在于各种生物细胞中,具有结构稳定、丰度高和组织特异性表达等特征。最近的研究表明,一些circRNA作为竞争性内源NRNA(ceRNA)来发挥基因表达调控的作用。circRNA利用其microRNA(miRNA)应答元件结合miRNA,以阻断miRNA对其靶标表达的抑制作用,从而调控其他相关RNA的表达水平。circRNA在基因表达调控中重要作用的发现不仅丰富了人们对ceRNAiN控网络的认识,而且提示circRNA在药物开发和疾病诊治中具有良好的应用前景。  相似文献   

12.
《遗传学报》2022,49(12):1081-1092
Circular RNAs (circRNAs) are covalently closed single-stranded RNA molecules, which are widespread in eukaryotic cells. As regulatory molecules, circRNAs have various functions, such as regulating gene expression, binding miRNAs or proteins, and being translated into proteins, which are important for cell proliferation and cell differentiation, individual growth and development, as well as many other biological processes. However, compared with that in animal models, studies of circRNAs in plants lags behind and, particularly, the regulatory mechanisms of biogenesis and molecular functions of plant circRNAs remain elusive. Recent studies have shown that circRNAs are wide spread in plants with tissue- or development-specific expression patterns and are responsive to a variety of environmental stresses. In this review, we summarize these advances, focusing on the regulatory mechanisms of biogenesis, molecular and biological functions of circRNAs, and the methods for investigating circRNAs. We also discuss the challenges and the prospects of plant circRNA studies.  相似文献   

13.
Circular RNAs (circRNAs) are a class of novel, widespread, covalently closed RNAs that have played an essential role in animal gene regulation. To systematically explore circRNAs in the blood fluke Schistosoma japonicum, we performed RNA sequencing and bioinformatics analysis, and found that hundreds of circRNAs showed gender-associated expression. Among these identified circRNAs, more than 77.54% and 74.73% were putatively derived from the exon region of the genome and some circRNAs showed gender-associated expressions. The functional prediction of circRNAs (circ_003826 and circ_004690) showed potential binding sites and possibly acted as the sponge to regulate microRNAs (miRNAs) sja-miR-1, sja-miR-133 and sja-miR-3504. Altogether, these findings demonstrated that S. japonicum also contains circRNAs, which may have potential regulatory roles during schistosome development.  相似文献   

14.
15.
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   

16.
Circular RNAs (circRNAs) are a distinctive family of ncRNAs, and they function as key regulators in the initiation, development and progression of various diseases. However, the regulatory roles of circRNAs in the tumorigenesis of cervical cancer (CC) have not been fully understood. In this study, we identified a set of circRNAs in CC and paired normal tissues, using RNA sequencing data, and found that the cancer and normal tissues could be told apart by those differentially expressed (DE) circRNAs, indicating that circRNA expression profiles in CC were significantly different from those in the normal tissues. Meanwhile, the upregulated genes in CC were enriched in inflammation-related pathways, and the correlation analysis between the DE circRNAs and genes revealed that the abundance of DE circRNAs was positively related to the expression of their host genes. However, the expression of TGFBR2 and KDM4C were found to exhibit a negative correlation with their corresponding circRNAs. Furthermore, we also predicted the interactions between circRNAs and proteins, and constructed a competing endogenous RNA (ceRNA) network. Specifically, hsa_circ_0001495 was predicted to interact with ESRP2, and acted as a sponge by competing for miRNAs with TBL1XR1. Functionally, hsa_circ_0001495 was predicted to regulate epithelial cell proliferation and NOTCH signaling via ESRP2 and TBL1XR1, respectively. We also evaluated the prognostic values of downstream target genes of selected circRNAs, using clinical records of CC patients. In summary, the present study provided some regulatory circRNAs involved in CC tumorigenesis based on bioinformatics approaches, which brought strong evidences for researchers to further explore their biological and clinical values.  相似文献   

17.
环状RNA (circular RNA,circRNA)是一类闭合环状结构的RNA分子,广泛分布于各种组织中,它比线性RNA更稳定。circRNA分为外显子circRNA、外显子-内含子circRNA和内含子circRNA等3类。circRNA的主要功能为充当微RNA海绵、与RNA结合蛋白结合、翻译成蛋白质和调节转录等。近年来,大量研究表明,circRNA的异常表达在胃癌发生发展过程中起着至关重要的作用。circPTPN22、hsa_circ_0001772、circCYFIP2、hsa_circ_0017639和circPIP5K1A等的上调以及hsa_circ_002059、hsa_circ_0000190和circMTO1等的下调与胃癌的增殖和转移密切相关;而hsa_circ_0001313等影响胃癌细胞的顺铂耐药性。组织、血浆及外泌体中circPTPN22、hsa_circ_102958、hsa_circ_0141633、hsa_circ_0065149和hsa_circ_0026344等是胃癌新型诊断标志物;而hsa_circ_0005529、circ-RanGAP1、cir...  相似文献   

18.
Most circular RNAs (circRNAs) belong to a novel class of noncoding RNAs that are produced by back-splicing reactions, and they regulate physiological and pathophysiological processes in human disease. Although circRNA expression has been shown to be altered in the ischemic cerebral tissue in animal studies, the expression profile of circRNA in the patients with acute ischemic stroke (AIS) has not been investigated to date. In this investigation, high-throughput sequencing was carried out to compare the circRNA expression of peripheral blood mononuclear cells (PBMCs) from five patients with AIS and five healthy subjects. A total of 521 circRNAs were expressed differentially between the patients with AIS and healthy controls (p < .05, fold difference ≥2) including 373 upregulated circRNAs and 148 downregulated circRNAs in patients with AIS compared to controls. Thirteen candidate circRNAs were verified by quantitative real-time polymerase chain reaction (qRT-PCR). Bioinformatics analyses showed that these differentially expressed circRNAs were highly conserved, as well as eight circRNAs that were confirmed by qRT-PCR containing binding sites to multiple microRNAs. Kyoto Encyclopedia of Genes and Genomes pathway enrichment and gene ontology analyses indicated that the aberrantly expressed circRNAs participated in many pathophysiological processes of AIS, especially regarding inflammation and immunity. In conclusion, patients with AIS differentially express certain circRNAs in PBMCs, which may be diagnostic biomarkers or potential therapeutic targets.  相似文献   

19.
Increasing studies show that circular RNAs (circRNAs) play vital roles in tumour progression. But, how circRNAs function in ovarian cancer is mostly unclear. Here, we detected the expression of circEPSTI1 in ovarian cancer and explored the function of circEPSTI1 in ovarian cancer via a series of experiments. Then, we performed luciferase assay and RNA immunoprecipitation (RIP) assay to explore the competing endogenous RNA (ceRNA) function of circEPSTI1 in ovarian cancer. qRT‐PCR verified that circEPSTI1 was overexpressed in ovarian cancer. Inhibition of circEPSTI1 suppressed ovarian cancer cell proliferation, invasion but promoted cell apoptosis. Luciferase assays and RIP assay showed that circEPSTI1 and EPSTI1 (epithelial stromal interaction 1) could directly bind to miR‐942. And circEPSTI1 could regulate EPSTI1 expression via sponging miR‐942. In summary, circEPSTI1 regulated EPSTI1 expression and ovarian cancer progression by sponging miR‐942. circEPSTI1 could be used as a biomarker and therapeutic target in ovarian cancer.  相似文献   

20.

Background

Circular RNA (circRNA) is one type of noncoding RNA that forms a covalently closed continuous loop. Similar to long noncoding RNA (lncRNA), circRNA can act as microRNA (miRNA) ‘sponges’ to regulate gene expression, and its abnormal expression is related to diseases such as atherosclerosis, nervous system disorders and cancer. So far, there have been no systematic studies on circRNA abundance and expression profiles in human adult and fetal tissues.

Results

We explored circRNA expression profiles using RNA-seq data for six adult and fetal normal tissues (colon, heart, kidney, liver, lung, and stomach) and four gland normal tissues (adrenal gland, mammary gland, pancreas, and thyroid gland). A total of 8120, 25,933 and 14,433 circRNAs were detected by at least two supporting junction reads in adult, fetal and gland tissues, respectively. Among them, 3092, 14,241 and 6879 circRNAs were novel when compared to the published results. In each adult tissue type, we found at least 1000 circRNAs, among which 36.97–50.04% were tissue-specific. We reported 33 circRNAs that were ubiquitously expressed in all the adult tissues we examined. To further explore the potential “housekeeping” function of these circRNAs, we constructed a circRNA-miRNA-mRNA regulatory network containing 17 circRNAs, 22 miRNAs and 90 mRNAs. Furthermore, we found that both the abundance and the relative expression level of circRNAs were higher in fetal tissue than adult tissue. The number of circRNAs in gland tissues, especially in mammary gland (9665 circRNA candidates), was higher than that of other adult tissues (1160–3777).

Conclusions

We systematically investigated circRNA expression in a variety of human adult and fetal tissues. Our observation of different expression level of circRNAs in adult and fetal tissues suggested that circRNAs might play their role in a tissue-specific and development-specific fashion. Analysis of circRNA-miRNA-mRNA network provided potential targets of circRNAs. High expression level of circRNAs in mammary gland might be attributed to the rich innervation.
  相似文献   

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