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比较序列分析作为评估5S和5.8S核糖体RNA的结构、功能及进化的一种方法。

Comparative sequence analysis as an approach to evaluating structure, function, and evolution of 5S and 5.8S ribosomal RNAs.

作者信息

MacKay R M, Spencer D F, Schnare M N, Doolittle W F, Gray M W

出版信息

Can J Biochem. 1982 Apr;60(4):480-9. doi: 10.1139/o82-057.

DOI:10.1139/o82-057
PMID:7104825
Abstract

Nucleotide sequences of nine eukaryotic and nine eubacterial 5S rRNAs have been selected for their diversity and subjected to analysis of primary and potential secondary structure. This analysis has allowed the quantitative confirmation of several previously made observations concerning 5S rRNA structure: (i) these two 5S rRNAs are derived from a common ancestor and probably perform essentially the same function in protein synthesis; (ii) one domain of 5S rRNA has undergone considerable divergence of structure (and presumably function) since the separation of the eukaryotic and eubacterial lineages; and (iii) single-stranded regions are more highly conserved than double-stranded regions. In addition, this analysis leads us to propose that (i) some of the highly conserved nucleotide residues in single-stranded regions interact in a specific manner with protein components of the translational apparatus, and (ii) repetitive folding and unfolding of helical regions occurs in two regions of eukaryotic 5S rRNA and one region of eubacterial 5S rRNA. In the context of these observations and propositions we also consider the potential secondary structure of plant mitochondrial 5S rRNA. Nucleotide sequences of 5.85 rRNAs have yielded less information about secondary structure and possible functional interactions. However, we have identified highly conserved and variable regions within this molecule and we show (in contrast to the situation with 5S rRNA) that these do not correlate well with proposed single-stranded and helical regions in a current model of 5.8S secondary structure.

摘要

已根据其多样性选择了9种真核生物和9种真细菌的5S核糖体RNA的核苷酸序列,并对其一级结构和潜在的二级结构进行了分析。该分析定量证实了先前关于5S核糖体RNA结构的几个观察结果:(i)这两种5S核糖体RNA源自共同祖先,可能在蛋白质合成中发挥基本相同的功能;(ii)自真核生物和真细菌谱系分离以来,5S核糖体RNA的一个结构域在结构(可能还有功能)上发生了相当大的分化;(iii)单链区域比双链区域更具保守性。此外,该分析使我们提出:(i)单链区域中一些高度保守的核苷酸残基以特定方式与翻译装置的蛋白质成分相互作用;(ii)真核生物5S核糖体RNA的两个区域和真细菌5S核糖体RNA的一个区域中发生螺旋区域的重复折叠和展开。在这些观察结果和命题的背景下,我们还考虑了植物线粒体5S核糖体RNA的潜在二级结构。5.8S核糖体RNA的核苷酸序列提供的关于二级结构和可能的功能相互作用的信息较少。然而,我们已经确定了该分子内的高度保守和可变区域,并且我们表明(与5S核糖体RNA的情况相反),这些区域与当前5.8S二级结构模型中提出的单链和螺旋区域相关性不佳。

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Can J Biochem. 1982 Apr;60(4):480-9. doi: 10.1139/o82-057.
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引用本文的文献

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Two thraustochytrid 5S ribosomal RNAs.两种破囊壶菌5S核糖体核糖核酸。
Nucleic Acids Res. 1982 Dec 20;10(24):8307-10. doi: 10.1093/nar/10.24.8307.
2
Nucleotide sequences of three poriferan 5 S ribosomal RNAs.三种海绵动物5S核糖体RNA的核苷酸序列。
Nucleic Acids Res. 1982 Sep 11;10(17):5297-302. doi: 10.1093/nar/10.17.5297.
3
Quantitation of base substitutions in eukaryotic 5S rRNA: selection for the maintenance of RNA secondary structure.真核生物5S核糖体RNA中碱基替换的定量分析:对RNA二级结构维持的选择
J Mol Evol. 1984;20(3-4):351-61. doi: 10.1007/BF02104741.
4
Effect of 2'-O-methylation on the structure of mammalian 5.8S rRNAs and the 5.8S-28S rRNA junction.2'-O-甲基化对哺乳动物5.8S rRNA结构及5.8S-28S rRNA连接区的影响。
Nucleic Acids Res. 1983 Sep 10;11(17):5989-6001. doi: 10.1093/nar/11.17.5989.
5
Secondary structure of the Dictyostelium discoideum small subunit ribosomal RNA.盘基网柄菌小亚基核糖体RNA的二级结构
Nucleic Acids Res. 1983 Nov 25;11(22):8037-49. doi: 10.1093/nar/11.22.8037.
6
Compilation of 5S rRNA and 5S rRNA gene sequences.5S核糖体RNA及5S核糖体RNA基因序列的汇编
Nucleic Acids Res. 1988;16 Suppl(Suppl):r1-70. doi: 10.1093/nar/16.suppl.r1.
7
Nonuniformity of nucleotide substitution rates in molecular evolution: computer simulation and analysis of 5S ribosomal RNA sequences.分子进化中核苷酸替代率的不均匀性:5S核糖体RNA序列的计算机模拟与分析
J Mol Evol. 1987;26(3):226-51. doi: 10.1007/BF02099855.
8
Collection of published 5S, 5.8S and 4.5S ribosomal RNA sequences.已发表的5S、5.8S和4.5S核糖体RNA序列的收集。
Nucleic Acids Res. 1986;14 Suppl(Suppl):r1-59. doi: 10.1093/nar/14.suppl.r1.