Rapid evolutionary repair of base mispairings in stem regions of eukaryotic 5S rRNA.

Protein sequences & data analysis Pub Date : 1989-02-01
K Horimoto, J Otsuka, T Kunisawa
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Abstract

An extensive set of 216 eukaryotic 5S rRNA sequences are compared and the previous observations, that (i) invariable base positions are located primarily in loop regions and (ii) stem regions are more variable but the number of mispairings is kept small, are confirmed. On the basis of a comparison of the contemporary sequences, evolutionary processes of base substitutions in stem regions are discussed. It is found that there is no evident selective pressure to keep a particular kind of base pair in stem regions and individual bases may change freely as long as mispairings are kept few. It is also found that the secondary structure of 5S rRNA has been maintained stable by an equilibrium between base pair formation- and destruction-substitutions and that the low occurrence of mispairings in stem regions is attributable to a high value (ca. 90) of the equilibrium constant. The present analyses suggest a structure-function relationship of the eukaryotic 5S rRNA; stem regions structurally help loop regions to interact well with other ribosomal components and therefore, there is a marked selection pressure to maintain the secondary structure under the evolutionary noise of mutation.

真核5S rRNA茎区碱基错配的快速进化修复。
对216个真核5S rRNA序列进行了比较,证实了之前的观察结果:(i)不变的碱基位置主要位于环区,(ii)茎区变化更大,但错配对的数量保持较少。在比较现代序列的基础上,讨论了茎区碱基替换的进化过程。研究发现,在茎区保留某一种碱基对没有明显的选择压力,只要保持很少的错配,单个碱基对可以自由变化。研究还发现,5S rRNA的二级结构通过碱基对形成和破坏取代之间的平衡保持稳定,而茎区错配发生率低是由于平衡常数的高值(约为90)。目前的分析表明真核生物5S rRNA具有结构-功能关系;茎区在结构上有助于环区与其他核糖体组分良好地相互作用,因此,在突变的进化噪声下,存在明显的选择压力来维持二级结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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