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首页> 外文期刊>Nucleic acids research >The 3′-terminal region of bacterial 23S ribosomal RNA: structure and homology with the 3′-terminal region of eukaryotic 28S rRNA and with chloroplast 4.5S rRNA
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The 3′-terminal region of bacterial 23S ribosomal RNA: structure and homology with the 3′-terminal region of eukaryotic 28S rRNA and with chloroplast 4.5S rRNA

机译:细菌23S核糖体RNA的3'末端区域:与真核28S rRNA的3'末端区域和叶绿体4.5S rRNA的结构和同源性

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The sequence of the 110 nucleotide fragment located at the 3′-end of E.coli, P.vulgaris and A.punctata 23S rRNAs has been determined. The homology between the E.Coli and P.vulgaris fragments is 90%, whereas that between the E.coli and A.punctata fragments is only 60%. The three rRNA fragments have sequences compatible with a secondary structure consisting of two hairpins. Using chemical and enzymatic methods recently developed for the study of the secondary structure of RNA, we demonstrated that one of these hairpins and part of the other are actually present in the three 3′-terminal fragments in solution. This supports the existence of these two hairpins in the intact molecule. Indeed, results obtained upon limited digestion of intact 23S RNA with T1 RNase were in good agreement with the existence of these two hairpins. We observed that the primary structures of the 3′-terminal regions of yeast 26S rRNA and X.laevis, 28S rRNA are both compatible with a secondary structure similar to that found at the 3′-end of bacterial 23S rRNAs. Furthermore, both tobacco and wheat chloroplast 4.5S rRNAs can also be folded in a similar way as the 3′-terminal region of bacterial 23S rRNA, the 3′-end of chloroplast 4.5S rRNAs being complementary to the 5′-end of chloroplast 23S rRNA. This strongly reinforces the hypothesis that chloroplast 4.5S rRNA originates from the 3′-end of bacterial 23S rRNA and suggests that this rRNA may be base-paired with the 5′-end of chloroplast 23S rRNA. Invariant oligonucleotides are present at identical positions in the homologous secondary structures of E.coli 23S, yeast 26S , X.laevis 28S and wheat and tobacco 4.5S rRNAs. Surprisingly, the sequences of these oligonucleotides are not all conserved in the 3′-terminal regions of A.punctata or even P.vulgaris 23S rRNAs. Results obtained upon mild methylation of E.coli 50S subunits with dimethylsulfate strongly suggest that these invariant oligonucleotides are involved in RNA tertiary structure or in RNA-protein interactions.
机译:已经确定了位于大肠埃希氏菌,寻常型毕赤酵母和拟南芥23S rRNA 3'末端的110个核苷酸片段的序列。大肠埃希氏菌和寻常假单胞菌片段之间的同源性是90%,而大肠埃希氏菌和punctata片段之间的同源性只有60%。这三个rRNA片段具有与由两个发夹组成的二级结构兼容的序列。使用最近开发的用于研究RNA二级结构的化学和酶促方法,我们证明了这些发夹中的一个以及其他的一部分实际上存在于溶液的三个3'-末端片段中。这支持了完整分子中这两个发夹的存在。确实,用T 1 RNase有限地消化完整的23S RNA所获得的结果与这两个发夹的存在非常吻合。我们观察到,酵母26S rRNA和X.laevis,28S rRNA的3'-末端区域的一级结构均与类似于细菌23S rRNA的3'-末端的二级结构兼容。此外,烟草和小麦的叶绿体4.5S rRNA都可以以与细菌23S rRNA的3'末端区域相似的方式折叠,叶绿体4.5S rRNA的3'末端与叶绿体的5'末端互补23S rRNA。这有力地证明了叶绿体4.5S rRNA起源于细菌23S rRNA的3'端的假说,并表明该rRNA可能与叶绿体23S rRNA的5'端碱基配对。不变的寡核苷酸存在于大肠杆菌23S,酵母26S,X.laevis 28S和小麦和烟草4.5S rRNA的同源二级结构中的相同位置。出人意料的是,这些寡核苷酸的序列并非全部在punctata的3'-末端区域中保守,甚至在寻常的P.vulgaris 23S rRNA中也不保守。大肠杆菌50S亚基用硫酸二甲酯轻度甲基化后获得的结果强烈表明,这些不变的寡核苷酸与RNA三级结构或RNA-蛋白质相互作用有关。

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