首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Complementary sequences 1700 nucleotides apart form a ribonuclease III cleavage site in Escherichia coli ribosomal precursor RNA.
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Complementary sequences 1700 nucleotides apart form a ribonuclease III cleavage site in Escherichia coli ribosomal precursor RNA.

机译:互补序列相距1700个核苷酸在大肠杆菌核糖体前体RNA中形成核糖核酸酶III切割位点。

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摘要

The nucleotide sequence of Escherichia coli DNA at both ends of the gene for 16S rRNA has been determined for two rRNA operons, rrnD and rrnX. The 400 nucleotides we have examined exhibit only one base change between rrnD and rrnX. Within the 160 nucleotides that precede mature 16S rRNA sequences are cleavage sites for several E. coli endonucleases, including RNase III. A 240-nucleotide segment encompassing the 16S 3' end contains another RNase III site and the point of presumed RNase P scission at the 5' end of tRNA1Ile, the first tRNA appearing in the 16-23S spacer region of rrnD and rrnX. Most importantly, the DNA sequences predict that regions flanking the 16S gene in the rRNA primary transcript extensively base pair to form a double-helical structure whose hairpin loop includes the entire mature 16S molecule; within this structure is a 26-base-pair stem containing the two sequences at which RNase III action generates the 5' and 3' ends of a previously characterized precursor to 16S rRNA. Although our proposed secondary structure for this RNase III site is superficially dissimilar to previously described cleavage sites in the T7 early mRNA precursor, certain common features may constitute signals for RNase III recognition. The suggestion that distant portions of an RNA molecule can form a secondary structure within which specific endonucleolytic cleavages occur may have mechanistic implications for the joining of noncontiguous portions of gene sequences evident in several eukaryotic mRNAs.
机译:已针对两个rRNA操纵子rrnD和rrnX确定了16S rRNA基因两端的大肠杆菌DNA核苷酸序列。我们检查的400个核苷酸在rrnD和rrnX之间仅表现出一个碱基变化。在成熟的16S rRNA序列之前的160个核苷酸中,有几个大肠杆菌内切酶(包括RNase III)的切割位点。包含16S 3'端的240个核苷酸段包含另一个RNase III位点和tRNA1le 5'端的假定RNase P分裂点,第一个tRNA出现在rrnD和rrnX的16-23S间隔区中。最重要的是,DNA序列预测rRNA初级转录本中16S基因侧翼的区域广泛碱基对形成双螺旋结构,其发夹环包括整个成熟的16S分子。在该结构中的是一个26个碱基对的茎,其中包含两个序列,RNase III作用在该两个序列上产生先前表征的16S rRNA前体的5'和3'末端。尽管我们为该RNase III位点提议的二级结构与T7早期mRNA前体中先前描述的切割位点在表面上不相似,但某些共同特征可能构成了RNase III识别的信号。 RNA分子的远端部分可以形成二级结构的暗示可能在其中发生特定的内切核酸裂解,这可能对几个真核mRNA中明显的基因序列非连续部分的连接具有机械学意义。

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