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核糖体 DNA(rDNA)基因簇内转录间隔区 2(ITS2)的结构特征在 Calyptratae(双翅目:Schizophora)中的研究及其对分子系统发育分析的意义。

Structural characterization of the internal transcribed spacer 2 (ITS2) of the ribosomal DNA (rDNA) cluster in Calyptratae (Diptera: Schizophora) and its implications for molecular phylogenetic analyses.

机构信息

Laboratory of Animal Genetics and Evolution, Center for Molecular Biology and Genetic Engineering (CBMEG), Campinas State University (UNICAMP), Campinas, SP, Brazil.

出版信息

J Mol Evol. 2013 Mar;76(3):158-71. doi: 10.1007/s00239-013-9548-1. Epub 2013 Feb 19.

Abstract

The internal transcribed spacer 2 (ITS2) of the eukaryotic ribosomal DNA (rDNA) cluster plays an essential role in processing of the ribosomal RNA, which is primarily accomplished by the secondary structures acquired by the molecule after transcription. Two possible structural conformation models have been proposed for the ITS2 region, the "ring model" and the "hairpin model," and the former has been widely used in many molecular phylogenetic analyses incorporating structural information available to date. To evaluate the validity of this model, in vitro transcribed ITS2 molecules from species representing the three superfamilies of the Calyptratae clade (Diptera: Schizophora), namely Cochliomyia hominivorax, Musca domestica, and Glossina morsitans, were submitted to enzymatic digestion with single- and double-stranded specific nucleases (RNases I, A, T1, and V1). The resulting fragments were analyzed by capillary electrophoresis and digestion sites were mapped in the secondary structure models which were obtained by in silico prediction with further refinement by homology comparisons. The pattern of RNA fragments generated by these RNases show a high degree of correlation to most of the predicted helix-loop regions and structural motifs. Discrepancies to the models can be explained by alternative structural conformation dynamics (in M. domestica and G. morsitans) and by higher-order factors (such as tertiary interactions) that may stabilize thermodynamically unfavored structures (in C. hominivorax).

摘要

真核核糖体 DNA(rDNA) 基因簇的内转录间隔区 2(ITS2) 在核糖体 RNA 的加工中发挥着重要作用,该 RNA 的加工主要是通过转录后分子获得的二级结构来完成的。目前已经提出了两种可能的 ITS2 区域结构构象模型,即“环模型”和“发夹模型”,前者已广泛应用于许多包含现有结构信息的分子系统发育分析中。为了评估该模型的有效性,对来自 Calyptratae 分支(双翅目:Schizophora)三个超科的代表物种(Cochliomyia hominivorax、Musca domestica 和 Glossina morsitans)的体外转录 ITS2 分子进行了单链和双链特异性核酶(RNases I、A、T1 和 V1)的酶切消化。通过毛细管电泳分析所得片段,并在通过计算机预测获得的二级结构模型中对酶切位点进行定位,进一步通过同源比较进行精修。这些核酶产生的 RNA 片段的模式与大多数预测的螺旋-环区域和结构基序高度相关。与模型的差异可以通过替代的结构构象动力学(在 M. domestica 和 G. morsitans 中)和更高阶的因素(如三级相互作用)来解释,这些因素可能稳定热力学上不利的结构(在 C. hominivorax 中)。

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