Faculty of Biology, M.V. Lomonosov Moscow State University, Moscow 119991, Russia.
Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow 127051, Russia.
Nucleic Acids Res. 2018 Jan 25;46(2):765-781. doi: 10.1093/nar/gkx1202.
RNA editing by targeted insertion and deletion of uridine is crucial to generate translatable mRNAs from the cryptogenes of the mitochondrial genome of kinetoplastids. This type of editing consists of a stepwise cascade of reactions generally proceeding from 3' to 5' on a transcript, resulting in a population of partially edited as well as pre-edited and completely edited molecules for each mitochondrial cryptogene of these protozoans. Often, the number of uridines inserted and deleted exceed the number of nucleotides that are genome-encoded. Thus, analysis of kinetoplastid mitochondrial transcriptomes has proven frustratingly complex. Here we present our analysis of Leptomonas pyrrhocoris mitochondrial cDNA deep sequencing reads using T-Aligner, our new tool which allows comprehensive characterization of RNA editing, not relying on targeted transcript amplification and on prior knowledge of final edited products. T-Aligner implements a pipeline of read mapping, visualization of all editing states and their coverage, and assembly of canonical and alternative translatable mRNAs. We also assess T-Aligner functionality on a more challenging deep sequencing read input from Trypanosoma cruzi. The analysis reveals that transcripts of cryptogenes of both species undergo very complex editing that includes the formation of alternative open reading frames and whole categories of truncated editing products.
RNA 编辑通过靶向插入和删除尿嘧啶对于从动基体基因组的隐蔽基因中转录产生可翻译的 mRNA 至关重要。这种类型的编辑由一系列反应组成,通常在转录本上从 3' 到 5' 进行,导致每个原生动物的线粒体隐蔽基因都存在部分编辑、预编辑和完全编辑的分子群体。通常,插入和删除的尿嘧啶数量超过基因组编码的核苷酸数量。因此,分析锥虫线粒体转录组证明是非常复杂的。在这里,我们使用 T-Aligner 对 Leptomonas pyrrhocoris 线粒体 cDNA 深度测序reads 进行了分析,T-Aligner 是我们的新工具,它可以全面描述 RNA 编辑,而不依赖于靶向转录本扩增和最终编辑产物的先验知识。T-Aligner 实现了一个读取映射、所有编辑状态及其覆盖范围的可视化以及规范和替代可翻译 mRNA 的组装的流水线。我们还评估了 T-Aligner 在来自 Trypanosoma cruzi 的更具挑战性的深度测序 read 输入上的功能。分析表明,两种物种的隐蔽基因的转录本经历了非常复杂的编辑,包括形成替代开放阅读框和整个截断编辑产物类别。