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大亚基核糖体RNA结构的演变。主要系统发育群体中不同D3结构域的多样化。

Evolution of large-subunit rRNA structure. The diversification of divergent D3 domain among major phylogenetic groups.

作者信息

Michot B, Qu L H, Bachellerie J P

机构信息

Centre de Recherches de Biochimie et de Génétique Cellulaires du Centre National de la Recherche Scientifique, Université Paul-Sabatier, Toulouse, France.

出版信息

Eur J Biochem. 1990 Mar 10;188(2):219-29. doi: 10.1111/j.1432-1033.1990.tb15393.x.

Abstract

During evolution, the potential for sequence (and length) variation of large-subunit rRNA has been mostly restricted over 12 divergent domains (termed D1-D12) interspersed along the molecule. Here, we have focused our attention onto the D3 divergent domain, through a detailed analysis of its pattern of variation in the phylogeny, both in terms of primary and secondary structures. We have systematically compared all the procaryotic and eucaryotic sequences published so far (i.e. 36 species), together with a series of 10 additional eucaryotic specimens, which were determined by direct RNA sequencing. Secondary structures supported by comparative evidence have been derived for archaebacteria, eubacteria and eucaryotes respectively, which shows that the D3 domain contains a subset of universally conserved structural features interspersed with four variable subdomains. Within the four portions where a structural diversification has taken place, elementary structures specific of large phylogenetic groups can be identified. Remarkably such diversified structures appear to be preserved despite sequence divergence, suggesting they correspond to functionally important structures. Accordingly, the mode of sequence variation of the D3 domain suggests this region of the molecule may encode elementary functions of rRNA which could have significantly diversified during the evolution of the major groups of organisms.

摘要

在进化过程中,大核糖体亚基RNA序列(及长度)的变异潜力大多局限于沿分子散布的12个不同结构域(称为D1 - D12)。在此,我们通过详细分析其在系统发育中的变异模式,包括一级结构和二级结构,将注意力集中在了D3不同结构域上。我们系统地比较了迄今已发表的所有原核生物和真核生物序列(即36个物种),以及通过直接RNA测序确定的另外10个真核生物样本。分别推导了古细菌、真细菌和真核生物由比较证据支持的二级结构,结果表明D3结构域包含一组普遍保守的结构特征,其间散布着四个可变亚结构域。在发生结构多样化的四个部分中,可以识别出大型系统发育类群特有的基本结构。值得注意的是,尽管序列存在差异,但这种多样化结构似乎得以保留,这表明它们对应于功能上重要的结构。因此,D3结构域的序列变异模式表明,分子的这一区域可能编码rRNA的基本功能,而这些功能在主要生物类群的进化过程中可能发生了显著分化。

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