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Systematically fragmented genes in a multipartite mitochondrial genome

机译:多部分线粒体基因组中的系统片段化基因

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Arguably, the most bizarre mitochondrial DNA (mtDNA) is that of the euglenozoan eukaryote Diplonema papillatum. The genome consists of numerous small circular chromosomes none of which appears to encode a complete gene. For instance, the cox1 coding sequence is spread out over nine different chromosomes in non-overlapping pieces (modules), which are transcribed separately and joined to a contiguous mRNA by trans-splicing. Here, we examine how many genes are encoded by Diplonema mtDNA and whether all are fragmented and their transcripts trans-spliced. Module identification is challenging due to the sequence divergence of Diplonema mitochondrial genes. By employing most sensitive protein profile search algorithms and comparing genomic with cDNA sequence, we recognize a total of 11 typical mitochondrial genes. The 10 protein-coding genes are systematically chopped up into three to 12 modules of 60-350 bp length. The corresponding mRNAs are all trans-spliced. Identification of ribosomal RNAs is most difficult. So far, we only detect the 3'-module of the large subunit ribosomal RNA (rRNA); it does not trans-splice with other pieces. The small subunit rRNA gene remains elusive. Our results open new intriguing questions about the biochemistry and evolution of mitochondrial trans-splicing in Diplonema.
机译:可以说,最奇怪的线粒体DNA(mtDNA)是真核动物真核生物Diplonema papillatum的线粒体DNA。基因组由许多小的圆形染色体组成,它们似乎都没有编码完整的基因。例如,cox1编码序列分布在非重叠片段(模块)中的九个不同染色体上,这些片段分别转录并通过转拼连接到连续的mRNA。在这里,我们检查了Diplonema mtDNA编码了多少个基因,以及所有基因是否都被片段化以及它们的转录本被剪接。由于Diplonema线粒体基因的序列差异,模块识别具有挑战性。通过使用最敏感的蛋白质谱搜索算法并将基因组与cDNA序列进行比较,我们识别出总共11种典型的线粒体基因。将10个蛋白质编码基因系统地切成三至12个长度为60-350 bp的模块。相应的mRNA均被反式剪接。核糖体RNA的鉴定是最困难的。到目前为止,我们仅检测到大亚基核糖体RNA(rRNA)的3'-模块;它不与其他片段跨接。小亚基rRNA基因仍然难以捉摸。我们的研究结果为线粒体中线粒体转拼的生物化学和进化提出了新的有趣问题。

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