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对易发生滑链的高变RNA区域二级结构进行建模:以虎甲18S rRNA可变区V4为例。

Modelling the secondary structures of slippage-prone hypervariable RNA regions: the example of the tiger beetle 18S rRNA variable region V4.

作者信息

Hancock J M, Vogler A P

机构信息

Gene and Genome Evolution Group, Medical Research Council Clinical Sciences Centre, Imperial College School of Medicine, Hammersmith Hospital, London W12 0NN, UK.

出版信息

Nucleic Acids Res. 1998 Apr 1;26(7):1689-99. doi: 10.1093/nar/26.7.1689.

Abstract

Variable regions within ribosomal RNAs frequently vary in length as a result of incorporating products of slippage. This makes constructing secondary structure models problematic because base homology is difficult or impossible to establish between species. Here, we model such a region by comparing the results of the MFOLD suboptimal folding algorithm for different species to identify conserved structures. Based on the reconstruction of base change on a phylogenetic tree of the species and comparison against null models of character change, we devise a statistical analysis to assess support of these structures from compensatory and semi-compensatory (i.e. G.C to G.U or A.U to G.U) mutations. As a model system we have used variable region V4 from cicindelid (tiger beetle) small subunit ribosomal RNAs (SSU rRNAs). This consists of a mixture of conserved and highly variable subregions and has been subject to extensive comparative analysis in the past. The model that results is similar to a previously described model of this variable region derived from a different set of species and contains a novel structure in the central, highly variable part. The method we describe may be useful in modelling other RNA regions that are subject to slippage.

摘要

核糖体RNA中的可变区域由于纳入了滑移产物,其长度常常会发生变化。这使得构建二级结构模型变得困难,因为不同物种之间难以或无法建立碱基同源性。在这里,我们通过比较不同物种的MFOLD次优折叠算法的结果来对这样一个区域进行建模,以识别保守结构。基于在物种系统发育树上碱基变化的重建以及与字符变化的零模型进行比较,我们设计了一种统计分析方法,以评估这些结构从补偿性和半补偿性(即G.C到G.U或A.U到G.U)突变中获得的支持。作为一个模型系统,我们使用了虎甲科(虎甲虫)小亚基核糖体RNA(SSU rRNAs)的可变区域V4。它由保守和高度可变的子区域混合组成,并且在过去已经进行了广泛的比较分析。得到的模型类似于之前从另一组物种中得出的该可变区域的模型,并且在中央高度可变部分包含一个新结构。我们描述的方法可能有助于对其他易发生滑移的RNA区域进行建模。

相似文献

本文引用的文献

1
Database on the structure of small ribosomal subunit RNA.小核糖体亚基RNA结构数据库。
Nucleic Acids Res. 1997 Jan 1;25(1):111-6. doi: 10.1093/nar/25.1.111.
2
The RDP (Ribosomal Database Project).核糖体数据库项目(RDP)
Nucleic Acids Res. 1997 Jan 1;25(1):109-11. doi: 10.1093/nar/25.1.109.
5
Replication slippage in the evolution of potyviruses.
J Gen Virol. 1995 Dec;76 ( Pt 12):3229-32. doi: 10.1099/0022-1317-76-12-3229.

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