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28 S ribosomal RNA in vertebrates. Locations of large-scale features revealed by electron microscopy in relation to other features of the sequences.

机译:脊椎动物中的28 S核糖体RNA。通过电子显微镜揭示的大规模特征的位置与序列的其他特征的关系。

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摘要

The 28 S rRNA from several vertebrate species, when examined by electron microscopy, is seen to contain regions of extensive secondary structure, as first reported for HeLa-cell 28 S rRNA by Wellauer & Dawid [(1973) Proc. Natl. Acad. Sci. U.S.A. 70, 2827-2831]. Here we correlate the locations of these regions, determined from the electron-microscopic data, with the primary structure of 28 S rRNA from human, mouse and Xenopus laevis determined by sequence analysis of rDNA. The secondary-structure features observed by electron microscopy correspond closely to phylogenetically variable G + C-rich regions that largely comprise the eukaryotic expansion segments in these three species. In most if not all cases the features can be identified with long G + C-rich helices deduced from sequence data. Correlations are given between the locations of the secondary-structure features and several 'landmark' restriction sites in 28 S rDNA. By correlating the locations of the rRNA methyl groups reported elsewhere [Maden (1988) J. Mol. Biol. 201, 289-314] with the present findings it is concluded that the rRNA secondary-structure features revealed by electron microscopy are largely or wholly unmethylated.
机译:当通过电子显微镜检查时,来自多个脊椎动物物种的28 S rRNA被认为包含广泛的二级结构区域,这是Wellauer&Dawid首次报道的HeLa细胞28 S rRNA [(1973)Proc.Natl.Acad.Sci.USA,87:3587-3877]。 Natl。学院科学美国第70号,第2827-2831页]。在这里,我们将这些区域的位置(通过电子显微镜数据确定)与通过rDNA序列分析确定的人,小鼠和非洲爪蟾的28 S rRNA的一级结构相关联。通过电子显微镜观察到的二级结构特征与这三个物种中主要包含真核生物扩展片段的系统发生变化的富含G + C的区域密切相关。在大多数情况下(即使不是全部),可以使用从序列数据推导出的富含G + C的长螺旋来识别特征。在二级结构特征的位置和28 S rDNA中的几个“标志性”限制位点之间给出了相关性。通过关联在其他地方报道的rRNA甲基的位置[Maden(1988)J. Mol。生物学201,289-314]得出的结论是,电子显微镜揭示的rRNA二级结构特征大部分或完全未甲基化。

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