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广泛真核生物中核糖核酸酶P和MRP RNA的鉴定与分析。

Identification and analysis of ribonuclease P and MRP RNA in a broad range of eukaryotes.

作者信息

Piccinelli Paul, Rosenblad Magnus Alm, Samuelsson Tore

机构信息

Department of Medical Biochemistry, Goteborg University Box 440, SE-405 30 Göteborg, Sweden.

出版信息

Nucleic Acids Res. 2005 Aug 8;33(14):4485-95. doi: 10.1093/nar/gki756. Print 2005.

Abstract

RNases P and MRP are ribonucleoprotein complexes involved in tRNA and rRNA processing, respectively. The RNA subunits of these two enzymes are structurally related to each other and play an essential role in the enzymatic reaction. Both of the RNAs have a highly conserved helical region, P4, which is important in the catalytic reaction. We have used a bioinformatics approach based on conserved elements to computationally analyze available genomic sequences of eukaryotic organisms and have identified a large number of novel nuclear RNase P and MRP RNA genes. For MRP RNA for instance, this investigation increases the number of known sequences by a factor of three. We present secondary structure models of many of the predicted RNAs. Although all sequences are able to fold into the consensus secondary structure of P and MRP RNAs, a striking variation in size is observed, ranging from a Nosema locustae MRP RNA of 160 nt to much larger RNAs, e.g. a Plasmodium knowlesi P RNA of 696 nt. The P and MRP RNA genes appear in tandem in some protists, further emphasizing the close evolutionary relationship of these RNAs.

摘要

核糖核酸酶P和线粒体RNA加工酶(MRP)是分别参与转运RNA(tRNA)和核糖体RNA(rRNA)加工的核糖核蛋白复合体。这两种酶的RNA亚基在结构上彼此相关,并且在酶促反应中起重要作用。这两种RNA都有一个高度保守的螺旋区域,即P4,它在催化反应中很重要。我们基于保守元件采用生物信息学方法对真核生物可用的基因组序列进行了计算分析,并鉴定出大量新的核核糖核酸酶P和线粒体RNA加工酶RNA基因。例如,对于线粒体RNA加工酶RNA,这项研究使已知序列的数量增加了两倍。我们展示了许多预测RNA的二级结构模型。尽管所有序列都能够折叠成核糖核酸酶P和线粒体RNA加工酶RNA的共有二级结构,但观察到大小存在显著差异,范围从160个核苷酸的蝗虫微孢子虫线粒体RNA加工酶RNA到大得多的RNA,例如696个核苷酸的诺氏疟原虫核糖核酸酶P RNA。核糖核酸酶P和线粒体RNA加工酶RNA基因在一些原生生物中串联出现,进一步强调了这些RNA之间密切的进化关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef3/1183490/10874d554ebd/gki756f1.jpg

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