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1.
长链非编码RNA(lncRNA)是长度大于200 bp,不编码蛋白质的内源性RNA分子.近年来的研究表明,lncRNA可以作为一种竞争性内源RNA(competing endogenous RNA,ceRNA)吸附miRNA,参与靶基因的表达调控,从而在肿瘤的发生发展中发挥重要的作用.本文从lncRNA作为ceRNA发挥生物学功能这一角度,概述了相关lncRNA在肿瘤发生发展中的作用及机制.揭秘lncRNA与miRNA在肿瘤发生中的相互作用,将为肿瘤的诊断和治疗提供新思路.  相似文献   

2.
长链非编码RNA在生物体中的调控作用   总被引:1,自引:0,他引:1  
李灵  宋旭 《遗传》2014,(3):43-48
长链非编码RNA(Long non-coding RNA,lncRNA)的发现是基因组学和分子生物学研究领域的重要进展。lncRNA在生命活动中具有重要的调节功能,其表达紊乱与多种人类疾病的发生发展密切相关。研究表明,几乎所有的调控性lncRNA通过与不同种类的生物大分子,如DNA、RNA和蛋白质发生相互作用而行使其功能。文章概述了lncRNA在表观遗传学水平、转录水平及转录后水平调控基因表达的效应机制,并探讨了lncRNA如何在肿瘤发生和宿主防御过程中行使功能。不同于小分子ncRNA通过碱基互补配对调控靶基因的表达,大多数已鉴定的lncRNA通过调节蛋白质活性或维持蛋白质复合物的完整性发挥其生物学功能。因此,鉴定lncRNA-蛋白质相互作用可能是理解lncRNA功能的首要任务。  相似文献   

3.
cAMP反应元件结合蛋白(cAMP responsive element binding protein, CREB)是亮氨酸拉链家族转录因子。新近研究发现,其在肿瘤组织中的表达显著高于癌旁,被认为是体内的原癌基因之一。非编码RNA(non-coding RNA, ncRNA)是生物体内不能翻译成蛋白质的RNA,主要包括微小RNA(microRNA, miRNA)和长链非编码RNA(long non-coding RNA, lncRNA)等,其异常表达与肿瘤的发生发展密切相关,是目前肿瘤研究的热点。研究表明,CREB与ncRNA之间存在互动效应,并且二者之间的相互作用影响肿瘤的发生发展,然而miRNA和lncRNA的作用机制却不相同。肿瘤细胞内高表达的CREB在影响下游靶基因表达时能够正调控miRNA,而对lncRNA则有促进和抑制两方面的作用。反之,肿瘤细胞中一些低表达的miRNA能促进CREB的表达;有趣的是,高表达的lncRNA能够促进CREB的表达和诱导其活性增强。在影响下游靶基因表达时miRNA仅仅发挥抑制作用,而lncRNA则分别具有促进和抑制作用。本文结合我们的系列报道和最新的研究结果,对ncRNA与CREB的互动效应及其与肿瘤的发生发展之间的关系作一综述。  相似文献   

4.
非编码RNA(non-coding RNA,ncRNA)是一类不具有蛋白质编码潜能的RNA,可分为管家ncRNA和调控性ncRNA。微RNA(microRNA,miRNA)是研究得比较清楚的一类调控性ncRNA,不仅可调控细胞分化、增殖和凋亡,还可通过调节糖酵解途径中的限速酶[如己糖激酶(hexokinase,HK)、磷酸果糖激酶(phosphofructokinase, PFK)和丙酮酸激酶(pyruvate kinase, PK)]来调控肿瘤细胞的糖代谢。长链非编码RNA(long non-coding RNA, lncRNA)是另一类近年来引起重视的调控性ncRNA,它们可通过调节癌基因c Myc、葡糖转运蛋白(glucose transporter, GLUT)、HK和缺氧诱导因子等来调控肿瘤细胞的糖代谢。深入了解miRNA和lncRNA等调控性ncRNA调控肿瘤细胞糖代谢的机制不仅可以使我们更加深入地了解肿瘤的发生机制,而且可能为肿瘤的预防、诊断和治疗提供新方向。  相似文献   

5.
非编码RNA(non-coding RNA, ncRNA),即无编码蛋白质潜力的RNA,包括短非编码RNA,例如微RNA(microRNA, miRNA),长非编码RNA(long coding RNA, lncRNA)和环状RNA(circular RNA, circRNA)等,已被证明可以在RNA水平上调节细胞中多种生理及病理过程。miRNA是约18~22个核苷酸大小的内源性非编码RNA分子,可以通过MRE与靶基因的3′非翻译区(untranslated region,UTR)中的互补序列结合,抑制蛋白质编码基因的表达,并导致mRNA转录物的更新、转换或降解。2011年,Salmena等提出,非编码RNA与具有编码蛋白质能力的RNA(mRNA)之间存在一种被称为竞争性内源RNA(competing endogenous RNA, ceRNA)的相互作用机制假说,即含有miRNA反应元件(MRE)的ncRNA通过与miRNA结合,解除miRNA对靶基因的抑制作用。这一假说对基因表达调控的传统认知进行了补充,在RNA水平上将多种ncRNA的作用补充到经典的miRNA调控mRNA翻译的过程,将其延伸为ceRNA-miRNA-mRNA的网络调控模式。近年来研究发现,ceRNA机制广泛存在于胃癌、结肠癌和膀胱癌等各类癌症中,并且在肿瘤的基因调控及肿瘤细胞的增殖、侵袭、转移、凋亡、细胞周期等生物过程中发挥作用。本文将介绍ceRNA及其网络的机制与分子基础,并且结合两类非编码RNA——lncRNA及circRNA作为ceRNA分别在人类不同癌症类型中的近期研究进展作一综述,讨论该机制在肿瘤中的角色及作用,以期拓宽对肿瘤发生发展机制的视野,为癌症治疗提供新思路。  相似文献   

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长链非编码RNA (long non-coding RNA,lncRNA)是一类转录本长度大于200 bp的非编码RNA,可作为人类基因组中一类重要的调控分子通过多种方式发挥其生物学功能.近年来的研究表明,lncRNA也可以作为一种竞争性内源性RNA (competing endogenous RNA, ceRNA) 与miRNA相互作用,参与靶基因的表达调控,并在肿瘤的发生发展中发挥重要的作用.本综述在简要介绍lncRNA功能研究现状和主要研究方法的基础上,进一步分析了lncRNA与miRNA之间的互相调控关系及其在肿瘤发生发展中的作用,以便为后续的研究提供新的思路.  相似文献   

7.
近年来,越来越多的研究表明,RNA结合蛋白(RNA binding protein,RBP)与多种类型的非编码RNAs(noncoding RNA,ncRNAs)具有互相调节的关系,且调节机制形式多样。一方面,RBP可以调节ncRNA的生物合成、稳定性和功能;另一方面,ncRNA也可以影响RBP的功能和结构。同时,RBP和ncRNA的相互作用还在其他靶基因的调节上起着重要的作用,从而参与众多的生物过程,如组织发育、代谢性疾病、神经退行性疾病、抗病毒免疫和各种癌症等。该文就RBP与常见类型的ncRNAs,包括miRNA、lncRNA、circRNA的相互作用方式和调节机制的研究进展作一综述。  相似文献   

8.
王丹凤  杨广  陈文锋 《昆虫学报》2019,62(6):769-778
非编码RNA(ncRNA)是生物体细胞内一类重要的调控分子,其介导的昼夜节律调控日益受到研究者的重视。本文主要以黑腹果蝇Drosophila melanogaster和哺乳动物的相关研究为背景,阐述了微小RNA(miRNA)和长链非编码RNA(lncRNA)对昼夜节律的调控。miRNA介导的昼夜节律调控包括:生物体内(尤其是钟神经元中)具有节律性表达的miRNA;输入系统和miRNA存在相互调控,这主要是通过光照这个授时因子起作用;miRNA可直接调控核心振荡器,还可以调控其他基因而间接影响到核心振荡器;miRNA对输出系统的调控主要集中在代谢取食节律、运动节律、睡眠节律等。昼夜节律可调控lncRNA的表达,同时lncRNA也可调控昼夜节律,且lncRNA对基因调控范围广,作用机制复杂,这些都具有广阔的研究前景。本文将有助于进一步深入研究ncRNA对昼夜节律的调控。  相似文献   

9.
长非编码RNA(long non-coding RNAs, lncRNAs)是一类转录本长度大于200个核苷酸,不具有蛋白质编码功能的非编码RNA(non-coding RNA, ncRNA)。人类基因组中,ncRNA基因占比超过90%,数量远大于蛋白质编码基因。作为生物大分子,lncRNA具有特定的初级和高级结构,在基因表达调控等生物学进程中发挥着特有的功能。lncRNA数量多,结构各异,因此鉴定和表征新的lncRNA,探索其结构和功能,是当前基因研究领域的热点之一。在临床疾病机制研究中,大量结果表明,lncRNA与临床疾病发生发展,特别是肿瘤的发生发展具有密切的相关性。伴随着后基因组学时代基因鉴定和功能探索方法的不断进步,探索lncRNA在疾病发生中的功能及表达变化,深入解锁lncRNA在疾病发生中涉及的分子机制,将为疾病早期预防、诊断和预后提供有效参考。基于以上的研究大背景,本文对lncRNA的定义、基因鉴定的策略和方法,高级结构检测及其对应的生物学功能,以及lncRNA的分类进行了阐述;另一方面,基于lncRNA与肿瘤发生发展的密切关系,本文以经典抑癌基因p53为切入点,对多种p53相关的lncRNA在结直肠癌(colorectal cancer, CRC)发生发展中的作用进行了归纳小结,阐述了lncRNA在结直肠癌中的表达变化、涉及的分子互作机制和信号通路,对其作为分子标志物在临床中的应用潜力进行了评估。我们乐观地认为,作为生物分子标志物,lncRNA将为包括癌症在内的疾病治疗提供全新、精准和个性化的分子靶点。  相似文献   

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人类基因组转录本长度>200 nt(核苷酸)、不编码蛋白质的RNA分子为长链非编码RNA(long non-coding RNA,lncRNA)。lncRNA可在多个层面调节基因表达,其功能失调与包括肿瘤在内的很多人类疾病密切相关。本文概述lncRNA的种类、功能与疾病的关系,讨论基于lncRNA基因编辑、干细胞修饰及其与miRNA、蛋白质相互作用等的治疗潜能。  相似文献   

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Non‐coding RNAs (ncRNAs) have been emerging players in cell development, differentiation, proliferation and apoptosis. Based on their differences in length and structure, they are subdivided into several categories including long non‐coding RNAs (lncRNAs >200nt), stable non‐coding RNAs (60‐300nt), microRNAs (miRs or miRNAs, 18‐24nt), circular RNAs, piwi‐interacting RNAs (26‐31nt) and small interfering RNAs (about 21nt). Therein, miRNAs not only directly regulate gene expression through pairing of nucleotide bases between the miRNA sequence and a specific mRNA that leads to the translational repression or degradation of the target mRNA, but also indirectly affect the function of downstream genes through interactions with lncRNAs and circRNAs. The latest studies have highlighted their importance in physiological and pathological processes. MiR‐374 family member are located at the X‐chromosome inactivation center. In recent years, numerous researches have uncovered that miR‐374 family members play an indispensable regulatory role, such as in reproductive disorders, cell growth and differentiation, calcium handling in the kidney, various cancers and epilepsy. In this review, we mainly focus on the role of miR‐374 family members in multiple physiological and pathological processes. More specifically, we also summarize their promising potential as novel prognostic biomarkers and therapeutic targets from bench to bedside.  相似文献   

12.
miRNAs are key regulatory small non-coding RNAs involved in critical steps of melanoma tumorigenesis; however, the relationship between sequence specific variations at the 5′ or 3′ termini (isomiR) of a miRNA and cancer phenotype remains unclear. Deep-sequencing and qRT-PCR showed reduced expression of miR-144/451a cluster and most abundant isomiR (miR451a.1) in dysplastic nevi, in-situ and invasive melanomas compared to common nevi and normal skin (n = 101). miRNA in situ hybridization reproducibly confirmed lost miR-451a.1 in melanoma compared to nevus cells or adjacent keratinocytes. Significantly higher expression of miR-451a.1 was associated with amelanotic phenotype in melanomas (n = 47). In contrast, miR-451a was associated with melanotic phenotype, absent pagetoid scatter of intraepidermal melanocytes, superficial spreading histological subtype and tumor inflammation. Sequencing miRNAs from cultured melanocytes with cytoplasmic melanin gradient (light, medium to dark) showed absent miR-451a while revealing other melanin-associated miRNAs, e.g. miR-30b, miR-100 and miR-590 in darkly and let-7a, let-7i and let-7f in lightly to moderately pigmented cultured melanocytes. Ectopic expression of miR-144/451a in melanoma cell lines resulted in markedly higher levels of mature miR-451a.1 than miR451a or miR-144; and significantly retarded cell migration and inhibited invasion in a glucose-sensitive manner. Surprisingly, these effects were not mediated by calcium binding protein 39 (CAB39), a proven miR451a gene target. miR-144/miR-451a cluster is a novel miRNA locus with tumor suppressive activity in melanoma.  相似文献   

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MicroRNAs (miRNAs) and long non-coding RNAs (lncRNAs) are two relevant classes of non-coding RNAs (ncRNAs) that play a pivotal role in a number of molecular processes through different epigenetic regulatory mechanisms of gene expression. As a matter of fact, the altered expression of these types of RNAs leads to the development and progression of a varied range of multifactorial human diseases. Several recent reports elucidated that miRNA and lncRNAs have been implicated in pancreatic cancer (PC). For instance, dysregulation of such ncRNAs has been found to be associated with chemoresistance, apoptosis, autophagy, cell differentiation, tumor suppression, tumor growth, cancer cell proliferation, migration, and invasion in PC. Moreover, several aberrantly expressed miRNAs and lncRNAs have the potential to be used as biomarkers for accurate PC diagnosis. Additionally, miRNAs and lncRNAs are considered as promising clinical targets for PC. Therefore, in this review, we discuss recent experimental evidence regarding the clinical implications of miRNAs and lncRNAs in the pathophysiology of PC, their future potential, as well as the challenges that have arisen in this field of study in order to drive forward the design of ncRNA-based diagnostics and therapeutics for PC.  相似文献   

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Neurodegenerative diseases (NDs) are a diversity of neurological disorders characterized by the progressive degeneration of the structure and function of the central nervous system (CNS). The most common NDs are Alzheimer's disease (AD), Parkinson's disease (PD), and Huntington's disease (HD). Recently, many studies have investigated associations between common NDs with noncoding RNAs (ncRNAs) molecules. ncRNAs are regulatory molecules in the normal functioning of the CNS. Two of the most important ncRNAs are microRNAs (miRNAs) and long noncoding RNAs (lncRNAs). These types of ncRNAs are involved in different biological processes including brain development, maturation, differentiation, neuronal cell specification, neurogenesis, and neurotransmission. Increasing data has demonstrated that miRNAs and lncRNAs have strong correlations with the development of NDs, particularly gene expression. Besides, ncRNAs can be introduced as new biomarkers for diagnosis and prognosis of NDs. Hence, in this review, we summarized the involvement of various miRNAs and lncRNAs in most common NDs followed by a correlation of ncRNAs dysregulation with the AD, PD, and HD.  相似文献   

17.
The dysregulation of nuclear receptors (NRs) underlies the pathogenesis of a variety of liver disorders. Non-coding RNAs (ncRNAs) are defined as RNA molecules transcribed from DNA but not translated into proteins. MicroRNAs (miRNAs) and long non-coding RNAs (lncRNAs) are two types of ncRNAs that have been extensively studied for regulating gene expression during diverse cellular processes. NRs as therapeutic targets in liver disease have been exemplified by the successful application of their pharmacological ligands in clinics. MiRNA-based reagents or drugs are emerging as flagship products in clinical trials. Advancing our understanding of the crosstalk between NRs and ncRNAs is critical to the development of diagnostic and therapeutic strategies. This review summarizes recent findings on the reciprocal regulation between NRs and ncRNAs (mainly on miRNAs and lncRNAs) and their implication in liver pathophysiology, which might be informative to the translational medicine of targeting NRs and ncRNAs in liver disease.  相似文献   

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