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首页> 外文期刊>Molecular and Cellular Biology >Isolation and sequence of four small nuclear U RNA genes of Trypanosoma brucei subsp. brucei: identification of the U2, U4, and U6 RNA analogs.
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Isolation and sequence of four small nuclear U RNA genes of Trypanosoma brucei subsp. brucei: identification of the U2, U4, and U6 RNA analogs.

机译:布鲁氏锥虫亚种的四个小核U RNA基因的分离和序列。 brucei:鉴定U2,U4和U6 RNA类似物。

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Trypanosomes use trans splicing to place a common 39-nucleotide spliced-leader sequence on the 5' ends of all of their mRNAs. To identify likely participants in this reaction, we used antiserum directed against the characteristic U RNA 2,2,7-trimethylguanosine (TMG) cap to immunoprecipitate six candidate U RNAs from total trypanosome RNA. Genomic Southern analysis using oligonucleotide probes constructed from partial RNA sequence indicated that the four largest RNAs (A through D) are encoded by single-copy genes that are not closely linked to one another. We have cloned and sequenced these genes, mapped the 5' ends of the encoded RNAs, and identified three of the RNAs as the trypanosome U2, U4, and U6 analogs by virtue of their sequences and structural homologies with the corresponding metazoan U RNAs. The fourth RNA, RNA B (144 nucleotides), was not sufficiently similar to known U RNAs to allow us to propose an identify. Surprisingly, none of these U RNAs contained the consensus Sm antigen-binding site, a feature totally conserved among several classes of U RNAs, including U2 and U4. Similarly, the sequence of the U2 RNA region shown to be involved in pre-mRNA branchpoint recognition in yeast, and exactly conserved in metazoan U2 RNAs, was totally divergent in trypanosomes. Like all other U6 RNAs, trypanosome U6 did not contain a TMG cap and was immunoprecipitated from deproteinized RNA by anti-TMG antibody because of its association with the TMG-capped U4 RNA. These two RNAs contained extensive regions of sequence complementarity which phylogenetically support the secondary-structure model proposed by D. A. Brow and C. Guthrie (Nature [London] 334:213-218, 1988) for the organization of the analogous yeast U4-U6 complex.
机译:锥虫使用反式剪接将共同的39个核苷酸的剪接前导序列置于其所有mRNA的5'末端。为了确定该反应的可能参与者,我们使用了针对特征性U RNA 2,2,7-三甲基鸟苷(TMG)帽的抗血清,从总锥虫RNA中免疫沉淀出了六个候选U RNA。使用从部分RNA序列构建的寡核苷酸探针进行的基因组Southern分析表明,四个最大的RNA(A到D)由彼此不紧密相连的单拷贝基因编码。我们已经克隆并测序了这些基因,定位了编码的RNA的5'末端,并通过与相应的后生动物U RNA的序列和结构同源性将其中三个RNA鉴定为锥虫U2,U4和U6类似物。第四个RNA RNA B(144个核苷酸)与已知的U RNAs不够相似,无法让我们提出一个鉴定。出乎意料的是,这些U RNA均不包含共有的Sm抗原结合位点,这一特征在包括U2和U4在内的几类U RNA中完全保守。同样,在酵母中,U2 RNA区域的序列显示出参与前mRNA分支点识别,并且在后生动物U2 RNA中完全保守,在锥虫中完全不同。像所有其他U6 RNA一样,锥虫U6不包含TMG帽,并且由于与TMG封端的U4 RNA缔合而被抗TMG抗体从脱蛋白的RNA中免疫沉淀。这两个RNA包含序列互补性的广泛区域,其在系统发育上支持D.A.Brow和C.Guthrie(自然[伦敦] 334:213-218,1988)提出的用于组织类似酵母U4-U6复合物的二级结构模型。

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