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1.
RNA干扰技术的原理与应用   总被引:6,自引:0,他引:6  
RNA干扰(RNA interference,RNAi)是由双链RNA(double-stranded RNA,dsRNA)所引起的序列特异性基因沉默,是真核生物中一种非常保守的机制,它与协同抑制(cosuppression)、转座子沉默(transposon silencing)以及发育等许多重要的生物学过程密切相关。RNA干扰依赖于小干扰RNA(Small interference RNA,siRNA)与靶序列之间严格的碱基配对,具有很强的特异性,涉及众多基因和蛋白复合物,构成了一个以小RNA为核心的真核基因表达调控系统,它可以在染色质水平、转录水平、转录后水平和翻译水平参与基因表达的调节。RNA干扰技术为人们迅速、准确的剖析基因的功能,分析基因之间错综复杂的联系和相互作用提供了极为有用的工具,同时也为人们预防和治疗癌症和病毒疾病提供了新的思路。  相似文献   

2.
RNAa(RNA activation)即RNA激活效应,是指某些小分子非编码RNA(non-coding RNA,ncRNA)在转录水平上激活基因表达的现象,这种发挥激活作用的小RNA分子又叫激活小RNA(small activating RNA,saRNA)。saRNA与干扰小RNA(small interfer-ing RNA,siRNA)同属小分子双链非编码RNA家族,既有相似的分子特征,在靶序列、作用动力学和调控方式等方面又有显著差别。虽然RNAa的作用机制尚未完全明了,但其在肿瘤治疗中的应用前景吸引了人们的关注。本文就RNAa近年的研究进展进行了简要综述。  相似文献   

3.
RNA干扰(RNA interference,RNAi)是一种非常高效的基因沉默效应,RNA依赖性RNA聚合酶(RNA—de—pendent RNA polymerase,RdRP)介导的扩增作用可能是RNAi具有高效性的一个主要原因。了解RdRP在生物体中存在的证据、RdRP及其复合体的结构、次级siRNA的产生及转移性RNAi的发生机制等问题,对深入理解RNAi的作用机制和促进RNAi的临床应用有重要意义。  相似文献   

4.
RNA干扰用于基因治疗的研究进展   总被引:3,自引:0,他引:3  
RNA干扰(RNAi)是20世纪末才被人们认识和重视的一种通过双链RNA抵御病毒入侵或抑制转座子活动的生物防御机制。随着RNA干扰分子机制研究的深入及其应用研究的发展,人们发现RNA干扰技术在基因功能研究及人类疾病的基因治疗上具有广阔的应用前景。本文在简述RNAi分子机制的基础上,综述了RNAi在抗病毒治疗及抗肿瘤治疗方面的研究和应用概况。  相似文献   

5.
RNA沉默在机体防御病毒入侵和调控基因表达中发挥着重要的作用,目前已成为一种有效的工具应用于基因功能研究和疾病治疗等领域.RNA沉默现象普遍存在于真核细胞中,然而在宿主与病毒漫长的进化过程中,病毒已经演化出一系列逃逸或抑制RNA沉默作用的方法和途径,使RNA沉默效果显著降低,另一方面,哺乳动物体细胞自身也存在调节RNA沉默功能从而使生命活动的调节更加精细完善.为了使RNA沉默发挥它的潜在效应,人们设计出一系列的策略针对抑制RNA沉默效应以达到弱化抑制的目的.全面总结抑制RNA沉默机制及其应用,从而使人们充分认识到使用RNA沉默技术时应考虑到存在的不利因素.  相似文献   

6.
曹国军  邵宁生 《生命科学》2008,20(2):183-189
RNA技术可以分为RNA基础研究相关的技术、RNA应用相关的技术和RNA的生物信息学技术。RNA基础研究相关技术包括RNA分离纯化和鉴定技术、RNA与其他生物大分子相互作用技术、RNA高级结构的研究技术和其他相关RNA技术;RNA应用相关技术则包括用于生产其他产品的RNA技术和直接用于药物开发的RNA技术;RNA的生物信息学技术则有各种数据库、非编码RNA的预测、RNA二级结构预测和各种设计软件。本文简略介绍了上述各类RNA技术的原理及其国内外研究进展,从而有助于对RNA领域有关技术方面有一较全面的了解。  相似文献   

7.
机体DNA损伤修复的机制目前已研究得比较全面,而RNA损伤修复的研究却没有引起广泛的认识.主要由于人们长期以来认为损伤的RNA会被机体特异性降解而不是修复.近年来,随着多个RNA损伤修复系统的相继发现,揭示机体对损伤RNA可能优先选择进行修复.本文从噬菌体型RNA修复系统、细菌型RNA修复系统、酵母型RNA修复系统和人类的RNA损伤修复系统四个方面对目前RNA损伤修复研究的最新进展做一综述.  相似文献   

8.
环形RNA分子是一类不具有5'末端帽子和3'末端poly(A)尾巴、并以共价键形成环形结构的非编码RNA分子。利用针对环形结构RNA分子的实验和计算方法,并结合新一代高通量测序,现已在多种细胞内发现了大量环形RNA分子的稳定存在。目前,尽管环形RNA分子的产生机制及其代谢仍然不清楚,但是已有的研究表明环形RNA分子具有调控基因表达的功能。对环形RNA分子的产生机制和功能等的进一步研究,将为人们深入理解生命活动在转录水平的复杂性调控提供重要的分子基础和研究依据。  相似文献   

9.
真核生物中的微小RNA及其功能研究进展   总被引:6,自引:1,他引:6  
马中良  杨怀义  田波 《遗传学报》2003,30(7):693-696
真核生物中存在两种主要的非编码RNA(non-coding RNA),在真核生物中发挥重要作用。一类为微小RNA(microRNA,miRNA),另一为小干扰RNA(siRNA)。miRNA大小为19~25nt,在体内与蛋白质形成核糖核蛋白复合体(miRNP),在真核基因的表达调控,生长发育中起重要作用。siRNA在RNA干扰(RNA地 interference,RNAi)途径中起定位特异mRNA的作用。miRNA与siRNA有联系也有区别。miRNA在真核生物中的调控机制具有保守性。  相似文献   

10.
戴钢 《生物工程学报》2003,19(4):501-501
RNA干扰 (RNAi)指双链RNA (dsRNA)通过刺激目标RNA降解而特异性抑制目标蛋白质合成的现象 ,这些目标RNA具有与双链RNA相同的序列。人们假设RNA干扰的机理为两步反应 :起始阶段和效应器阶段。在起始阶段 ,被导入非哺乳动物细胞系统 ,例如果蝇的长双链RNA(2 0 0~ 10 0 0bp) ,被RNaseⅢ家族的一个成员 (例如果蝇中的Dicer酶 )处理成 2 1~ 2 3nt的双链RNA (短干扰RNA ,siRNA)。再进一步切割生成 3′端有两个核苷酸突出的许多双链RNA。在效应器阶段 ,双链siRNA诱发RNA诱导的沉默复合体 (RISC)的形成 ,这是一个由若干蛋白…  相似文献   

11.
TransferRNA recognition was used as leit-motiv in the illustration of possible links between a hypothetical primordial RNA world and the contemporary DNA world. In an RNA world, proto-tRNA could have functioned as replication origin and as primitive telomere. Possibly, this primitive structure is preserved in a universal substrate for modern tRNA-specific enzymes. The combination of acceptor stem and T arm (plus a linker) was finally revealed as sufficient for the recognition by prokaryotic and eukaryotic RNase P, as well as other tRNA enzymes. In modern life forms, a tRNA-like element in viral RNAs still serves as replication origin, and furthermore, the recognition of similar structures as cryptic promoters is universally conserved for template-dependent RNA polymerases. Another common property of modern polymerases is their high, but clearly limited and condition-dependent substrate specificity. Very likely, also substrate recognition by primitive polymerases was not more stringent, and this lead to the ocurrence of mixed nucleic acids as intermediates in the transition from genomic RNA to contemporary genomic DNA.Abbreviations (d)NTP (deoxy)nucleoside triphosphate - nt nucleotide(s)  相似文献   

12.
Summary 3 terminal fragments of BMV RNA as short as 153 bases in length serve as efficient templates in vitro for BMV-specific RNA polymerase. Template activity of such fragments or of native BMV RNA is abolished when cDNA fragments as short as 39 bases are hybridized to their 3 termini. Hybridization of cDNa fragments to regions of BMV RNA 200 or more bases distal to the 3 end has no discernible effect on initiation and little effect on elongation. We conclude that BMV RNA polymerase initiates binding with an RNA template through a mechanism mediated by the tRNA-like 3 end of BMV RNA, requiring at least some of the last 39, but no more than the last 153 bases.  相似文献   

13.
The entire sequence of 13952 nucleotides of a plasmid-like, double-stranded RNA (dsRNA) from rice was assembled from more than 50 independent cDNA clones. The 5 non-coding region of the coding (sense) strand spans over 166 nucleotides, followed by one long open reading frame (ORF) of 13716 nucleotides that encodes a large putative polyprotein of 4572 amino acid residues, and by a 70-nucleotide 3 noncoding region. This ORF is apparently the longest reported to date in the plant kingdom. Amino acid sequence comparisons revealed that the large putative polyprotein includes an RNA helicase-like domain and an RNA-dependent RNA polymerase (replicase)-like domain. Comparisons of the amino acid sequences of these two domains and of the entire genetic organization of the rice dsRNA with those found in potyviruses and the CHV1-713 dsRNA of chestnut blight fungus suggest that the rice dsRNA is located evolutionarily between potyviruses and the CHV1-713 dsRNA. This plasmid-like dsRNA in rice seems to constitute a novel RNA replicon in plants.  相似文献   

14.
Omnipotent RNA     
Spirin AS 《FEBS letters》2002,530(1-3):4-8
The capability of polyribonucleotide chains to form unique, compactly folded structures is considered the basis for diverse non-genetic functions of RNA, including the function of recognition of various ligands and the catalytic function. Together with well-known genetic functions of RNA – coding and complementary replication – this has led to the concept of the functional omnipotence of RNA and the hypothesis that an ancient RNA world supposedly preceded the contemporary DNA–RNA–protein life. It is proposed that the Woese universal precursor in the ancient RNA world could be a cell-free community of mixed RNA colonies growing and multiplying on solid surfaces.  相似文献   

15.
16.
The structural flexibility of RNA and its ability to store genetic information has led scientists to postulate that RNA could be the key molecule for the development of life on Earth, further leading to formulate the RNA world hypothesis that received a lot of success and acceptance after the discoveries of the last thirty‐five years. Despite its highly structural and functional significance, the difficulty in synthesizing the four nucleobases that form the RNA polymer from the same primordial soup, its low stability, and limited catalytic repertoire, make the RNA world hypothesis less convincing even though it remains the best explanation for the origin of life. An increasing number of scientists are becoming more supportive of a more realistic approach explaining the appearance of life. In this review, I propose an enhanced explanation for the appearance of life supported by recent discoveries and theories. Accordingly, amino acids and peptides associated with RNA (e.g., ribonucleopeptides) might have existed at the onset of RNA and might have played an important role in the continuous development of self‐sustaining biological systems. Therefore, in this review, I cover the most recent and relevant scientific investigations that propose a better understanding of the ribonucleopeptide world hypothesis and the appearance of life. Finally, I propose two hypotheses for a primitive translation machinery (PTM) that might have been formed of either a T box ribozyme or a ribopolymerase.  相似文献   

17.
Intron removal from a pre-mRNA by RNA splicing was once thought to be controlled mainly by intron splicing signals. However, viral and other eukaryotic RNA exon sequences have recently been found to regulate RNA splicing, polyadenylation, export, and nonsense-mediated RNA decay in addition to their coding function. Regulation of alternative RNA splicing by exon sequences is largely attributable to the presence of two majorcis-acting elements in the regulated exons, the exonic splicing enhancer (ESE) and the suppressor or silencer (ESS). Two types of ESEs have been verified from more than 50 genes or exons: purine-rich ESEs, which are the more common, and non-purine-rich ESEs. In contrast, the sequences of ESSs identified in approximately 20 genes or exons are highly diverse and show little similarity to each other. Through interactions with cellular splicing factors, an ESE or ESS determines whether or not a regulated splice site, usually an upstream 3 splice site, will be used for RNA splicing. However, how these elements function precisely in selecting a regulated splice site is only partially understood. The balance between positive and negative regulation of splice site selection likely depends on thecis-element's identity and changes in cellular splicing factors under physiological or pathological conditions.  相似文献   

18.
The environment necessary for the existence, amplification, and evolution of the RNA world, the difficulties of the abiogenous synthesis of RNA, and paradoxical situations with the stability of RNA, its functions, and the place of RNA in the geological history of the Earth are discussed. The chemical instability of the covalent structure of RNA in the aqueous medium is incompatible with the necessity of water for formation of its functionally active conformations (“water paradox”). The stable double-helical structure of RNA required for replication is incompatible with the stable compact conformations of single-stranded RNA molecules that are necessary for catalytic functions (conformational paradox). There was a very short time gap (or no gap at all) between the end of the massive meteorite bombardment of the Earth (3.9 Ga ago) and the appearance of the first evidence of cellular life (bacteria) in the Earth’s rocks (3.8–3.85 Ga ago or even earlier) (geological paradox). It is concluded that the RNA world could not appear, exist, or evolve into cellular forms of life on the Earth. This paper briefly discusses the possibility of an extraterrestrial origin of the RNA world and its extraterrestrial evolution with a subsequent distribution in space (mainly by comets) of the cellular form of life as more resistant to the environment as compared with free RNA.  相似文献   

19.
Ma W  Yu C  Zhang W  Hu J 《RNA (New York, N.Y.)》2007,13(11):2012-2019
Though the "RNA world" hypothesis has gained a central role in ideas concerning the origin of life, the scenario concerning its emergence remains uncertain. It has been speculated that the first scene may have been the emergence of a template-dependent RNA synthetase ribozyme, which catalyzed its own replication: thus, "RNA replicase." However, the speculation remains uncertain, primarily because of the large sequence length requirement of such a replicase and the lack of a convincing mechanism to ensure its self-favoring features. Instead, we propose a nucleotide synthetase ribozyme as an alternative candidate, especially considering recent experimental evidence suggesting the possibility of effective nonenzymatic template-directed synthesis of RNA. A computer simulation was conducted to support our proposal. The conditions for the emergence of the nucleotide synthetase ribozyme are discussed, based on dynamic analysis on a computer. We suggest the template-dependent RNA synthetase ribozyme emerged later, perhaps after the emergence of protocells.  相似文献   

20.

Using DNA and RNA heptanucleotides containing an unnatural L-nucleotides as well as the complementary strands, effects of the introduction of an L-nucleotide on the structure of DNA/DNA, RNA/RNA, and DNA/RNA duplexes were investigated by circular dichroism experiments and RNase H-mediated RNA strand cleavage reaction. The results suggested that the substitution of the central D-nucleotide with an L-nucleotide in the duplexes causes the significant structural alterations as the duplex structures change to conformations with more B-form similarities.  相似文献   

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