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1.
《Epigenetics》2013,8(6):664-666
Advances in sequencing and detection technology over the past two decades, highlighted by the data explosion brought about by the human genome project, have transformed what was previously assumed to be a relatively simple genetic landscape into a new picture where the so-called “dark matter” of the genome has stolen the spotlight from the not so hip protein-coding genes. The simplified central dogma of molecular biology, in which a gene encodes for a protein via a messenger RNA (mRNA), is still at the core of genetics but is now caught in a much more complex web of regulation by the genomic region previously known as “junk” DNA. Books such as Non-coding RNAs and epigenetic regulation of gene expression, published by Caister Academic Press, become essential guidelines to help us understand the current status of the very fast paced field of RNA research, which has only just started to uncover the roles of non-coding RNAs (ncRNAs) in the regulation of gene expression.  相似文献   

2.
非编码RNA与基因表达调控   总被引:1,自引:0,他引:1  
近年来,随着对基因组的深入研究,发现真核生物中存在许多形态和功能各异的非编码RNA分子,这类RNA分子并不表达蛋白质,但它们在基因转录水平、转录后水平及翻译水平起了重要的调控作用。具有调控作用的RNA分子种类非常丰富,如长链非编码RNA(long non-coding RNA,lncRNA)、miRNA、PIWI相互作用RNA(PIWI-interacting RNA,piRNA)、内源性小干扰RNA(endogenous small interfering RNA,endo-siRNA)、竞争性内源RNA(competitive endogenous RNA,ceRNA)等,它们使基因表达过程更为丰富、严谨和有序。本文综述几类典型的非编码RNA对基因表达的调节作用,以助于理解细胞中RNA分子调节网络的功能和机制。  相似文献   

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Large scale cDNA sequencing and genome tiling array studies have shown that around 50% of genomic DNA in humans is transcribed, of which 2% is translated into proteins and the remaining 98% is non-coding RNAs (ncRNAs). There is mounting evidence that these ncRNAs play critical roles in regulating DNA structure, RNA expression, protein translation and protein functions through multiple genetic mechanisms, and thus affect normal development of organisms at all levels. Today, we know very little about the regulatory mechanisms and functions of these ncRNAs, which is clearly essential knowledge for understanding the secret of life. To promote this emerging research subject of critical importance, in this paper we review (1) ncRNAs’ past and present, (2) regulatory mechanisms and their functions, (3) experimental strategies for identifying novel ncRNAs, (4) experimental strategies for investigating their functions, and (5) methodologies and examples of the application of ncRNAs.  相似文献   

5.
Genetic regulation by non-coding RNAs   总被引:4,自引:0,他引:4  
Large scale cDNA sequencing and genome tiling array studies have shown that around 50% of genomic DNA in humans is transcribed, of which 2% is translated into proteins and the remaining 98% is non-coding RNAs (ncRNAs). There is mounting evidence that these ncRNAs play critical roles in regulating DNA structure, RNA expression, protein translation and protein functions through multiple genetic mechanisms, and thus affect normal development of organisms at all levels. Today, we know very little about the regulatory mechanisms and functions of these ncRNAs, which is clearly essential knowledge for understanding the secret of life. To promote this emerging research subject of critical importance, in this paper we review (1) ncRNAs' past and present, (2) regulatory mechanisms and their functions, (3) experimental strategies for identifying novel ncRNAs, (4) experimental strategies for investigating their functions, and (5) methodologies and examples of the application of ncRNAs.  相似文献   

6.
Regulatory small RNAs (sRNAs) have crucial roles in the adaptive responses of bacteria to changes in the environment. Thus far, potential regulatory RNAs have been studied mainly in marine picocyanobacteria in genetically intractable Prochlorococcus, rendering their molecular analysis difficult. Synechococcus sp. WH7803 is a model cyanobacterium, representative of the picocyanobacteria from the mesotrophic areas of the ocean. Similar to the closely related Prochlorococcus it possesses a relatively streamlined genome and a small number of genes, but is genetically tractable. Here, a comparative genome analysis was performed for this and four additional marine Synechococcus to identify the suite of possible sRNAs and other RNA elements. Based on the prediction and on complementary microarray profiling, we have identified several known as well as 32 novel sRNAs. Some sRNAs overlap adjacent coding regions, for instance for the central photosynthetic gene psbA. Several of these novel sRNAs responded specifically to environmentally relevant stress conditions. Among them are six sRNAs changing their accumulation level under cold stress, six responding to high light and two to iron limitation. Target predictions suggested genes encoding components of the light-harvesting apparatus as targets of sRNAs originating from genomic islands and that one of the iron-regulated sRNAs might be a functional homolog of RyhB. These data suggest that marine Synechococcus mount adaptive responses to these different stresses involving regulatory sRNAs.  相似文献   

7.
喉癌是头颈部最常见的恶性肿瘤之一,喉癌患者吞咽、呼吸及发音功能均可受到严重影响,患者经受“有苦难言”的折磨,生活质量极差。因此,揭示喉癌发病的分子机制,以期提高喉癌早期诊断水平和防治效果一直是该研究领域的热点之一。近年来,随着基因测序技术、转录组学技术和生物信息学技术等分子生物学技术的应用,越来越多的与喉癌发生相关的非编码RNA先后被发现。实验证明,一些短链非编码RNA(如:上调的miR-16、miR-21、miR.106b和miR-1297,下调的let.7a、miR.1、miR.24、miR.34a/c、miR-137、miR-203和miR-206)以及长链非编码RNAf如:H19、HOTAIR和MALAT-1)均被发现参与了喉癌的发生、发展过程,它们发挥着促癌或者抑癌作用,影响细胞的增殖、浸润、转移和凋亡。这些非编码RNA将有可能为喉癌诊断和治疗分别提供新的标志物和治疗靶点。  相似文献   

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长链非编码RNA(long non-coding RNA,IncDNA)是指长度超过200个核苷酸、具有调控基因表达作用的非编码RNA。近年来研究表明,长链非编码RNA在肿瘤的发生、发展过程中发挥着促癌或抑癌作用,它们参与了细胞凋亡调控、肿瘤浸润与转移等过程;另外,它们还通过表观遗传调控的方式影响肿瘤细胞的生长。它们有希望成为新型肿瘤标志物和肿瘤治疗的靶点,在肿瘤诊断和治疗方面显示出良好的临床应用前号。  相似文献   

10.
杨峰  易凡  曹慧青  梁子才  杜权 《遗传》2014,36(5):456-468
基因组计划研究表明, 在组成人类基因组的30亿个碱基对中, 仅有1.5%的核酸序列用于蛋白质编码, 其余98.5%的基因组为非蛋白质编码序列。这些序列曾被认为是在进化过程中累积的“垃圾序列”而未予以关注, 但在随后启动的ENCODE研究计划中却发现, 75%的基因组序列能够被转录成RNA, 其中近74%的转录产物为非编码RNA(Non-coding RNA, ncRNA)。在非编码RNA中, 绝大多数转录本的长度大于200个碱基, 这些“长链非编码RNA(Long non-coding RNA, lncRNA)”能够在转录及转录后水平上调节蛋白编码基因的表达, 从而广泛地参与包括细胞分化、个体发育在内的重要生命过程, 其异常表达还与多种人类重大疾病的发生密切相关。文章综述了长链非编码RNA的发现、分类、表达、作用机制以及其在个体发育和人类疾病中的作用。  相似文献   

11.
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   

12.
An S  Song JJ 《Molecules and cells》2011,31(6):491-496
For eukaryotes, fine tuning of gene expression is necessary to coordinate complex genetic information. Recent studies have shown that noncoding RNAs (ncRNAs) play central roles in this process. For example, ncRNAs participate in multiple diverse functions such as mRNA degradation, epigenetic regulation and alternative splicing. The findings regarding this new player in gene regulation suggest that the mechanism of gene regulation is much more complicated and subtle than previously thought. In this review, new findings concerning the role of ncRNAs in gene regulation are discussed.  相似文献   

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非编码RNAs(non-coding RNAs,ncRNAs)是一类非常重要的调节子,此类调节子能够使细胞通过调节它们的生理特性而适应环境的改变。已有的研究表明ncRNAs在细菌的蔗糖代谢、细胞外膜应激反应、群体感应和细菌毒力等方面发挥了重要的调节作用,其调控模式已经成为细菌调控网络中的重要“分支”。本文综述了细菌ncRNAs近年来的研究进展,详细介绍了细菌ncRNAs的合成及调控机制,由于ncRNAs结构的独特性及调控网络的复杂性,因此ncRNAs的功能研究已经成为近几点的研究热点之一。  相似文献   

16.
人类基因组DNA核苷酸序列中约93%能被转录为RNA,其中仅2%的转录产物被翻译为蛋白质,余下98%属于非编码RNA(non-coding RNA,ncRNA)。ncRNA中长度超过200 nt的称为长链非编码RNA(long non-coding RNA,LncRNA),长期以来LncRNA被认为是转录过程中的副产物而不具有生物学功能。近年随着微小RNA(microRNA,miRNA)的研究进展,揭示了ncRNA在人类基因转录后调节、细胞生长、分化、增殖中起着相当重要的作用。同时也提示,相比miRNA,在细胞内转录比例更高的LncRNA具有极其复杂而重要的生物学功能,并与人类疾病密切相关。结合LncRNA的表观遗传学功能及其病理生理意义作一简述。  相似文献   

17.
赵雅  吴立刚 《生命科学》2010,(7):628-633
miRNA(microRNA)是一类广泛存在于高等真核细胞中的长度约为21个碱基的小分子非编码RNA,参与调控三分之一以上基因的表达,并与多种人类疾病存在重要关联。而siRNA(small interfering RNA)是RNA干扰(RNA interference,RNAi)中的效应分子,其结构和作用机制与miRNA存在许多类似之处。由于miRNA和siRNA具有重要的生物学功能。因此,对它们作用机制的理解具有非常重要的理论意义和应用指导价值。该综述将对它们作用机制的研究进展做一总结和回顾。  相似文献   

18.
刘雪  张涛  周笑琦  管伦  陈鹏 《生物工程学报》2020,36(9):1779-1793
信使RNA (Messenger RNA,mRNA)上的表观修饰对于转录本的稳定性和翻译活性有重要影响。在不同生物体的不同发育时期和不同组织器官中,特异转录本不同位点存在的核苷修饰影响mRNA的前体剪切、成熟mRNA的稳定性以及其翻译为蛋白质的效率。目前已知的170多种修饰核苷中在mRNA上发现的只占极少数,由于mRNA的丰度低、组织和发育特异性强等特点,研究mRNA特异位点的核苷修饰有很大的技术难度。近些年随着meRIP等技术的进步,mRNA核苷修饰功能的研究得到了长足的发展,特别是针对m6A、m5C等甲基化修饰的研究已经相当深入。文中简要回顾近年来mRNA核苷修饰领域的研究进展,对不同位点和不同类型的修饰核苷在不同物种生长发育中的调控作一总结,并对未来的研究热点和技术瓶颈展开讨论。  相似文献   

19.
Cardiovascular diseases are associated with high incidence and mortality, contribute to disability and place a heavy economic burden on countries worldwide. Stimulating endogenous cardiomyocyte proliferation and regeneration has been considering as a key to repair the injured heart caused by ischaemia. Emerging evidence has proved that non-coding RNAs participate in cardiac proliferation and regeneration. In this review, we focus on the observation and mechanism that microRNAs (or miRNAs), long non-coding RNAs (or lncRNAs) and circular RNA (or circRNAs) regulate cardiomyocyte proliferation and regeneration to repair a damaged heart. Furthermore, we highlight the potential therapeutic role of some non-coding RNAs used in stimulating CMs proliferation. Finally, perspective on the development of non-coding RNAs therapy in cardiac regeneration is presented.  相似文献   

20.
植物非编码RNA调控春化作用的表观遗传   总被引:1,自引:0,他引:1  
Zhang SF  Li XR  Sun CB  He YK 《遗传》2012,34(7):829-834
在自然界中许多高等植物需要通过冬季的低温阶段实现从营养生长到生殖生长的时期转化,这一生物学过程称作春化作用。小麦(Triticum aestivum L.)和油菜(Brassica napus L.)等作物以种子为产品器官,生产上往往通过茬口安排和栽培措施使植株尽早通过春化作用,以促进花芽形成和花器官发育,而大白菜(B rapa ssp.pekinenesis)和甘蓝(B.oleracea)等作物以叶球等营养器官作为产品器官,生产上则设法避免低温引起的春化作用,以保证产品器官的充分生长。FLOWERING LOCUS C(FLC)作为一种重要的开花抑制蛋白负调控春化作用,参与植株从营养生长向生殖生长的转化过程。文章综述了春化中FLC表达受抑制主要通过低温诱导表达FLC基因区域的非编码RNA以及VRN1、VRN2、VIN3等蛋白参与介导组蛋白甲基化,从而在表观遗传上控制春化作用的进程和产品器官的正常发育。  相似文献   

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