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1.
细菌介导的RNA干扰对C.elegans中par-3基因的作用   总被引:1,自引:0,他引:1  
设计并构建了针对par-3基因的发夹RNA载体,将构建好的质粒转入大肠杆菌HT115,25℃喂食Caenorhabditis elegans(C.elegans)野生型虫体,24h后观察par-3(RNA干扰)celegans的胚胎发育情况。结果显示通过喂食形成发夹结构dsRNA的细菌可以对celegans中par-3基因进行RNA干扰,干扰率可以达到60%以上。干扰后的早期胚胎发育丧失第一次卵裂的不对称性,第二次卵裂的纺锤体方向发生改变,与par-3突变体的观察结果一致,为进一步在mex-3转基因虫体中通过RNA干扰研究基因表达打下了基础。  相似文献   

2.
H1启动子siRNA载体的构建及应用   总被引:1,自引:0,他引:1  
利用双链RNA(dsRNA)调控基因表达已经成为研究基因功能的有力工具。用人H1启动子构建了pBS/H1PS小干扰RNA(siRNA)表达载体,用于在哺乳动物细胞中产生特异性dsRNA转录产物。通过对293细胞中的PSMA7分子进行表达抑制,证明该siRNA载体能够有效产生针对靶基因的RNA干扰(RNAi)效应。  相似文献   

3.
RNA干扰技术在哺乳动物中的应用   总被引:12,自引:0,他引:12  
RNA干扰(RNAi)是生物界普遍存在的一种抵御外来基因和病毒感染的进化保守机制.RNAi是由双链RNA触发的转录后基因沉默机制,具有序列特异性,在哺乳动物细胞中,RNAi由21~23个核苷酸组成的双链RNA引发.小干扰RNA(siRNA)可以在体外合成或通过表达载体在哺乳动物细胞内合成.由于RNAi技术具有快速、简单和特异性强等特点,在基因功能研究、抗病毒治疗和抗肿瘤治疗等方面有广泛的应用前景.  相似文献   

4.
利用细菌表达dsRNA介导黄粉虫抗冻蛋白基因的RNA干扰   总被引:1,自引:0,他引:1  
RNA干扰(RNA interference,RNAi)是研究基因功能的一种重要工具。为了利用RNAi技术对黄粉虫抗冻蛋白(Antifreeze protein,AFP)基因的非抗冻功能进行验证,将黄粉虫抗冻蛋白基因Tmafp433的相应干扰片段构建至L4440干扰载体并转化大肠杆菌HT115(DE3)菌株,利用IPTG诱导表达特异的afp基因相应dsRNA,纯化后注射黄粉虫幼虫,通过实时荧光定量PCR检测afp基因在mRNA水平的变化。结果显示含有L4440-Tmafp重组质粒的HT115菌株可以表达干扰afp基因的dsRNA,命名为Tmafp-dsRNA。用Tmafp-dsRNA注射黄粉虫24 h后,Tmafps的表达受到显著抑制,相比对照下降了60.8%。本研究表明通过注射dsRNA可有效抑制黄粉虫afp基因的表达。  相似文献   

5.
小鼠胚胎干细胞中RNA干涉现象   总被引:9,自引:0,他引:9  
报道了不同品系小鼠胚胎干细胞 (ES细胞 )系MESPU13、B3和R1中存在的RNA干涉 (RNAi)现象。应用脂质体法 ,将转录绿色荧光蛋白 (GFP)基因双链RNA(dsRNA)的载体 (pdsGFP)转染GFP标记的ES细胞 ,dsRNA的瞬时表达可引起ES细胞中的RNAi效应 ,即质粒转录的GFP基因的dsRNA能够显著降低ES细胞内相应的外源GFP基因的表达 ;同时 ,用电穿孔转染法将线性化的pdsGFP puro导入ES细胞中 ,筛选后 ,在 3 0 %左右的抗性克隆中GFP表达量明显降低 ,少数细胞内的干涉效率达到RT PCR检测不到的程度。在此基础上 ,构建了可转录ES细胞特异标记基因OCT 4基因片断dsRNA的载体 ,经基因打靶和抗性筛选得到了稳定整合的ES细胞克隆 ,随机扩增了 5 1个克隆 ,并对其中的 48个阳性克隆进行了PCR半定量检测 ,结果显示 :在 11个ES细胞克隆中具有显著的RNAi效应 ,干涉效率达到RT PCR检测不到的程度。这一结果表明 ,应用RNAi在不同品系ES细胞中研究哺乳动物及人的基因功能是可行的  相似文献   

6.
为探索细菌表达目标基因dsRNA介导的RNAi技术是否在家蚕Bombyx mori可行, 本研究引入了在其他物种中广泛应用的细菌表达dsRNA的RNAi系统: HT115细菌株和L4440质粒。利用L4440载体两端含有T7启动子的特点, 设计并构建了针对家蚕核受体FTZ-F1基因的RNA干扰(RNA interference)载体, 将构建好的质粒转入大肠杆菌Escherichia coli HT115, 在IPTG诱导下成功获得目标基因对应双链RNA(dsRNA)。 结果显示: 通过对5龄第7天家蚕幼虫注射IPTG诱导后提取的FTZ F1基因对应的dsRNA 25 μg, 85%的蛹变态发育过程明显延迟, 不能实现幼虫到蛹的形态完全转变。荧光定量PCR分析显示目标基因的表达得到了特异的抑制。实验结果初步表明, 通过细菌表达目标基因dsRNA介导的RNAi策略, 以其经济、高效的特点, 具有广泛应用于家蚕基因功能研究中的潜力。  相似文献   

7.
RNA干扰技术治疗疾病   总被引:2,自引:0,他引:2  
RNA干扰(RNA interference,RNAi)现象最早发现于秀丽隐杆线虫(Caenorhabditis elegans),随后发现该现象普遍存在于真菌、植物和哺乳动物等真核生物,并行使基因调控和抵御外源基因片段侵袭的作用。目前,RNAi分子机制和RNAi在基因功能方面的研究已经取得了突破性的进展。鉴于RNAi在基因沉默中的特异性、高效性和易操作,其在药物筛选和疾病治疗等方面有着广泛的应用前景。然而,RNAi技术用于治疗疾病的安全性尚待确定,分子传递途径也有待进一步的研究。  相似文献   

8.
RNA干扰作用(RNAi)研究进展   总被引:25,自引:4,他引:21  
RNA干扰作用 (RNAi)是生物界一种古老而且进化上高度保守的现象 ,是基因转录后沉默作用 (PTGS)的重要机制之一 .RNAi主要通过dsRNA被核酸酶切割成 2 1~ 2 5nt的干扰性小RNA即siRNA ,由siRNA介导识别并靶向切割同源性靶mRNA分子而实现 .RNAi要有多种蛋白因子以及ATP参与 ,而且具有生物催化反应特征 .RNAi是新发现的一种通过dsRNA介导的特异性高效抑制基因表达途径 ,在后基因组时代的基因功能研究和药物开发中具有广阔应用前景  相似文献   

9.
RNA干扰及其应用的研究进展   总被引:1,自引:1,他引:1  
  相似文献   

10.
短发夹 RNA 介导 RNA 干扰的时间 和剂量效应研究   总被引:9,自引:0,他引:9       下载免费PDF全文
用 RNA 干扰 (RNA interference , RNAi) 技术抑制哺乳动物细胞中外源报告基因的表达,以探讨该过程中 RNAi 作用的剂量和时间效应 . 应用 Lipofectamine 2000 将外源报告基因的表达载体与编码短发夹 RNA (short hairpin RNA , shRNA) 的质粒共转染 HEK293H 细胞,观察 shRNA 载体对报告基因的抑制效应 . 转染后, shRNAs 的瞬时表达可特异地抑制细胞内报告基因的表达 . 在共转染后 12 , 24 , 48 , 60 , 72 , 96 h 时检测 EGFP (enhanced green fluorescent protein , EGFP) 基因 mRNA 及蛋白质表达水平,结果显示, EGFP mRNA 及蛋白质表达在 12 h 时略有降低, 24~48 h 时表达逐渐降低, 48~72 h 时降低最明显,其后 EGFP 表达水平逐渐恢复 . 提示该过程中 RNAi 效应呈现由弱到强、又由强到弱的逐渐消逝趋势 . 共转染一系列剂量比例的 EGFP 干扰载体与靶载体的结果表明,在一定剂量范围内, RNA 干扰载体所介导的抑制效应与干扰载体剂量大小有关,当其剂量进一步加大足以抑制外源基因表达时,抑制效应则维持在一“平台期” . 此外,通过 RNAi 抑制 HeLa 细胞、 HEK293 细胞中荧光素酶基因的表达, 荧光素酶活性变化也表现出上述类似的效应 . 这些结果表明,在体外哺乳动物细胞中,基于表达载体的 RNAi 作用呈现剂量和时间依赖性效应 . 这为基于载体表达的 RNAi 技术应用研究提供了一定的理论参考及依据 .  相似文献   

11.
12.
How life emerged on this planet is one of the most important and fundamental questions of science. Although nearly all details concerning our origins have been lost in the depths of time, there is compelling evidence to suggest that the earliest life might have exploited the catalytic and self-recognition properties of RNA to survive. If an RNA based replicating system could be constructed in the laboratory, it would be much easier to understand the challenges associated with the very earliest steps in evolution and provide important insight into the establishment of the complex metabolic systems that now dominate this planet. Recent progress into the selection and characterization of ribozymes that promote nucleotide synthesis and RNA polymerization are discussed and outstanding problems in the field of RNA-mediated RNA replication are summarized.Cell division is a fundamental biological process in which genetic information is duplicated and shared between daughter cells. In extant cellular life, DNA serves as the repository of genetic information, but its replication is complicated by the daunting size and complex structural organization of modern genomes. For this reason, multiple enzymes are required to ensure faithful genomic replication in all higher life forms. Notably, simpler replicating systems such as viruses, have smaller genomes and tend to use correspondingly more error-prone replicative machinery (Kunkel and Bebenek 2000; Gago, Elena et al. 2009). Presumably, if the initial organisms on this planet also had small genomes, then the earliest genomic replication could have been a relatively simple and error-prone process compared with the complex replicative strategies of modern life.  相似文献   

13.
14.
The ability of short RNAs (21-27 nucleotides) to silence genes containing homologous nucleotide sequences is related to RNA silencing. The pathways of short RNAs (siRNA and microRNA) biogenesis from their precursors, double stranded and hairpin RNAs respectively, are briefly reviewed. The functioning of specific RNA binding domains found for the first time in the proteins operating in RNA interference (RNAi) is considered. The interactions of these domains with the earlier well known RNA binding modules in RNAi proteins are described.  相似文献   

15.

The primordial RNA world is a hypothetical era prior to the appearance of protein and DNA, when RNA molecules were the sole building blocks for early forms of life on Earth. A critical concern with the RNA-world hypothesis is the instability of the cytosine nucleobase compared to the other three bases (adenine, guanine, and uracil). The author proposes that cytosine residues could have stably existed in the primordial world in the RNA i-motif, a four-stranded quadruplex structure formed by base-pairing of protonated and unprotonated cytosine residues under acidic conditions. The i-motif structure not only increases the lifetime of cytosine residues by slowing their deamination rate, but could also allow RNA polymers to bind to certain ligands (e.g., anions) to perform critical functions. Future studies focused on determining the rate of cytosine deamination in RNA i-motifs over a range of pH, temperature, and pressure conditions, and on interrogating the interactions between ligands and RNA i-motifs, could uncover new evidence of the origin of life on Earth.

  相似文献   

16.
In Euglena gracilis, the cytoplasmic large subunit (LSU) rRNA is composed of 14 discrete small RNA species that must somehow interact in the functional ribosome. We have isolated native complexes of Euglena rRNA and show here that the largest of these complexes contains eight of the 14 LSU rRNA species. Several of these small rRNA species are able to associate in vitro to reform an isolated domain of LSU rRNA structure.  相似文献   

17.
The manifestation of RNA interference (RNAi)-based therapeutics lies in safe and successful delivery of small interfering RNAs (siRNAs), the molecular entity that triggers and guides sequence-specific degradation of target mRNAs. Optimizing the chemistry and structure of siRNAs to achieve maximum efficacy is an important parameter in the development of siRNA therapeutics. The RNAi protein machinery can tolerate a variety of non-canonical modifications made to siRNAs, each of which imparts advantageous properties. Here, we review these modifications to siRNAs in pre-clinical and clinical studies.  相似文献   

18.
Viral RNA is a common activator of antiviral responses. In this review, we dissect the mechanism of viral RNA recognition by the small interfering RNA pathway in Drosophila melanogaster. This antiviral response in fruit flies can help understand general principles of nucleic acid recognition.  相似文献   

19.
Giardia lamblia, a parasitic protozoan, can contain a double-stranded RNA (dsRNA) virus, GLV (1). We have identified an RNA polymerase activity present specifically in cultures of GLV infected cells. This RNA polymerase activity is present in crude whole cell lysates as well as in lysates from GLV particles purified from the culture medium. The RNA polymerase has many characteristics common to other RNA polymerases (e.g. it requires divalent cations and all four ribonucleoside triphosphates), yet it is not inhibited by RNA polymerase inhibitors such as alpha-amanitin or rifampicin. The RNA polymerase activity synthesizes RNAs corresponding to one strand of the GLV genome, although under the present experimental conditions, the RNA products of the reaction are not full length viral RNAs. The in vitro products of the RNA polymerase reaction co-sediment through sucrose gradients with viral particles; and purified GLV viral particles have RNA polymerase activity. The RNA polymerase activities within and outside of infected cells closely parallel the amount of virus present during the course of viral infection. The similarities between the RNA polymerase of GLV and the polymerase associated with the dsRNA virus system of yeast are discussed.  相似文献   

20.
The specific binding in vitro of the Qβ RNA polymerase to Qβ RNA has been detected by the formation of an enzyme-Qβ RNA complex that did not exchange bound RNA molecules and was not dissociated by 0.8 m NaCl. Formation of this nondissociating complex required GTP and two host protein factors, but not ATP, CTP, UTP, or Mg2+ ions. GDP, GMP, dGTP, ITP, and β,γ-methylene GTP did not replace GTP in the reaction. Complex formation at 0 °C was not observed, and the rates of the reaction at 30 °C and 25 °C were 41% and 23%, respectively, of the rate at 37 °C. The reaction occurred with intact Qβ RNA and with polycytidylic acid template but not with bacterial or other bacteriophage RNA. With limiting amounts of enzyme, the amount of Qβ RNA bound in the nondissociating complex was the same as the amount of [γ-32P]GTP incorporated into nascent RNA chains, indicating a close relationship between complex formation and the initiation of RNA synthesis. The two reactions appear to be separate, however, because in the absence of Mg2+ ions, when complex formation occurred readily, no RNA synthesis could be detected either by incorporation of labeled substrate into acid-insoluble material or by formation of short RNA chains still attached to the enzyme. In the presence of factor protein and GTP, a maximum of one active enzyme molecule was bound per molecule of Qβ RNA template, as determined by a liquid polymer phase-separation procedure. These results suggest that formation of the nondissociating complex measures recognition by the Qβ RNA polymerase of a single Qβ RNA site utilized for the initiation of synthesis.  相似文献   

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