Abteilung Molekulare Evolution, Institut für Zelluläre und Molekulare Botanik, Universität Bonn, Kirschallee 1, 53115 Bonn, Germany.
Curr Genet. 2010 Apr;56(2):189-201. doi: 10.1007/s00294-009-0283-5. Epub 2009 Dec 30.
Transcripts in mitochondria and chloroplasts of land plants are modified through RNA editing, the exchanges of pyrimidines-a post-transcriptional process that may affect more than 1,000 sites in the mitochondrial transcriptomes of some plant species. RNA editing mainly acts as a correcting mechanism to re-create evolutionary conserved coding sequences on mRNA level and can be reasonably well predicted in new plant organelle gene sequence data. Identification and annotation of RNA editing sites is cumbersome and error-prone for larger data sets or organelle sequences subject to highly frequent RNA editing. We here present PREPACT, WWW-accessible at http://www.prepact.de , which allows prediction, analysis, annotation and graphical display of RNA editing sites for both directions of pyrimidine exchanges, using the recently proposed RNA editing nomenclature. PREPACT offers prediction of RNA editing, analysis of partial editing in cDNA pools and a BLASTX mode for simultaneous prediction of genes and RNA editing sites in novel sequences. Output options include (i) lists and annotations of RNA editing sites, (ii) sequence alignments with user-controlled color highlighting of editings, (iii) graphical displays of RNA editing in sequences and alignments. Finally, binary matrices of editing positions can be produced that may be used for downstream (e.g. phylogenetic) analyses.
真核生物线粒体和叶绿体中的转录本通过 RNA 编辑进行修饰,这是一种嘧啶交换的转录后过程,可能影响某些植物物种线粒体转录组中的 1000 多个位点。RNA 编辑主要作为一种纠错机制,在 mRNA 水平上重新创建进化保守的编码序列,并且可以在新的植物细胞器基因序列数据中进行合理的预测。对于较大的数据集或受高度频繁 RNA 编辑影响的细胞器序列,RNA 编辑位点的鉴定和注释既繁琐又容易出错。我们在此介绍 PREPACT,它可以在 http://www.prepact.de 上进行 WWW 访问,允许使用最近提出的 RNA 编辑命名法,对嘧啶交换的两个方向的 RNA 编辑位点进行预测、分析、注释和图形显示。PREPACT 提供 RNA 编辑预测、cDNA 池的部分编辑分析以及 BLASTX 模式,用于在新序列中同时预测基因和 RNA 编辑位点。输出选项包括 (i) RNA 编辑位点的列表和注释,(ii) 带有用户控制的编辑颜色突出显示的序列比对,(iii) 序列和比对中 RNA 编辑的图形显示。最后,可以生成编辑位置的二进制矩阵,可用于下游(例如系统发育)分析。