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Chen H  Deng L  Jiang Y  Lu P  Yu J 《植物学报(英文版)》2011,53(12):961-970
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  总被引:4,自引:0,他引:4  
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Substitutional RNA editing plays a crucial role in the regulation of biological processes. Cleavage of target RNA that depends on the specific site of substitutional RNA editing is a useful tool for analyzing and regulating intracellular processes related to RNA editing. Hammerhead ribozymes have been utilized as small catalytic RNAs for cleaving target RNA at a specific site and may be used for RNA-editing-specific RNA cleavage. Here we reveal a design strategy for a hammerhead ribozyme that specifically recognizes adenosine to inosine (A-to-I) and cytosine to uracil (C-to-U) substitutional RNA-editing sites and cleaves target RNA. Because the hammerhead ribozyme cleaves one base upstream of the target-editing site, the base that pairs with the target-editing site was utilized for recognition. RNA-editing-specific ribozymes were designed such that the recognition base paired only with the edited base. These ribozymes showed A-to-I and C-to-U editing-specific cleavage activity against synthetic serotonin receptor 2C and apolipoprotein B mRNA fragments in vitro, respectively. Additionally, the ribozyme designed for recognizing A-to-I RNA editing at the Q/R site on filamin A (FLNA) showed editing-specific cleavage activity against physiologically edited FLNA mRNA extracted from cells. We demonstrated that our strategy is effective for cleaving target RNA in an editing-dependent manner. The data in this study provided an experimental basis for the RNA-editing-dependent degradation of specific target RNA in vivo.  相似文献   

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The Zα domain of human double‐stranded RNA adenosine deaminase (ADAR1) has been crystallized with a hexanucleotide containing alternating deoxyribose and ribose furanose sugars. Solution circular dichroism experiments show that this double‐stranded chimera (dCrG)3 initially adopts the right‐handed A‐­conformation. However, addition of stoichiometric amounts of Zα causes a rapid transition to the Z‐conformation. Raman spectroscopy of crystals of the Zα–(dCrG)3 complex confirm that the chimeric oligonucleotide is stabilized in the Z‐conformation. A complete data set has been obtained at 2.5 Å resolution. The Zα–(dCrG)3 crystals belong to the tetragonal I422 space group, with unit‐cell parameters a = b = 104.2, c = 117.6 Å. Work is under way to solve the structure by molecular replacement.  相似文献   

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RNA editing in flowering plant mitochondria alters numerous C nucleotides in a given mRNA molecule to U residues. To investigate whether neighbouring editing sites can influence each other we analyzed in vitro RNA editing of two sites spaced 30 nt apart. Deletion and competition experiments show that these two sites carry independent essential specificity determinants in the respective upstream 20-30 nucleotides. However, deletion of a an upstream sequence region promoting editing of the upstream site concomitantly decreases RNA editing of the second site 50-70 nucleotides downstream. This result suggests that supporting cis-/trans-interactions can be effective over larger distances and can affect more than one editing event.  相似文献   

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RNA编辑是重要的转录后修饰过程,目前已有多种算法用于识别RNA编辑,本文主要研究小鼠中测序深度对RNA编辑识别算法的影响,从而为RNA编辑的研究给出建议的方法. 本文使用STAR比对软件将小鼠的RNA-seq数据进行序列比对,然后使用GATK识别SNV,并用Separate Method、GIREMI、RNAEditor 3种方法识别出RNA编辑位点. 最后对3种方法识别RNA编辑位点的共同部分、识别效率、识别稳定性、识别与测序深度的关系进行分析. 结果发现3种方法识别的编辑位点数目差异大,共有位点较少,随着测序深度的增加,识别的RNA编辑位点数也在增加. 结果表明RNA编辑识别算法在小鼠中的识别性能与测序深度呈正相关.  相似文献   

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Guide RNAs are encoded in maxicircle and minicircle DNA of trypanosome mitochondria. They play a pivotal role in RNA editing, a process during which the nucleotide sequence of mitochondrial RNAs is altered by U-insertion and deletion. Guide RNAs vary in length from 35 to 78 nucleotides, which correlates with the variation in length of the three functionally important regions of which they are composed: (i) a 4–14 nucleotide anchor sequence embedded in the 5 region, which is complementary to a target sequence on the pre-edited RNA downstream of an editing domain, (ii) a middle part containing the editing information, which ranges from guiding the insertion of just one U into one site to that of the insertion of 32 Us into 10 sites, and (iii) a 5–24 nucleotide 3 terminal oligo [U] extension. Moreover, a variable uridylation site creates gRNAs containing a varying segment of editing information for the same domain. Comparison of different guide RNAs demonstrates that, besides the U-tail, they have no obvious common primary and secondary sequence motifs, each particular sequence being unique. The occurrence in vivo and the synthesis in vitro of chimeric molecules, in which a guide RNA is covalently linked through its 3 U-tail to an editing site of a pre-edited RNA, suggests that RNA editing occurs by consecutive transesterification reactions and is evidence that the guide RNAs not only provide the genetic information, but also the Us themselves.Abbreviations gRNA guide RNA  相似文献   

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以红莲(HL)型水稻细胞质雄性不育系A、保持系B及杂种一代F1为材料,首次比较研究了红莲型水稻线粒体atp6基因转录本的编辑位点及各位点的编辑频率.结果表明atp6基因的转录本有18个编辑位点,其中有15个发生在密码子的第一和第二位点上,这些位点的编辑最终会导致氨基酸种类的变化.18个编辑位点在A、B和F1中没有差异,但各位点的编辑频率在引入了核恢复基因的条件下发生了较大的变化,完全编辑的比例增加.这些结果首次证明HL型细胞质雄性不育与线粒体atp6转录本的编辑有一定相关性,编辑不充分的转录产物最终会干扰线粒体功能的正常发挥.  相似文献   

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