Jiangsu Key Laboratory for Microbes and Functional Genomics, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, China.
RNA. 2018 Sep;24(9):1241-1254. doi: 10.1261/rna.064477.117. Epub 2018 Jun 28.
Mitochondrial gene expression is largely controlled through post-transcriptional processes including mitochondrial RNA (mt-RNA) processing, modification, decay, and quality control. Defective mitochondrial gene expression results in mitochondrial oxidative phosphorylation (OXPHOS) deficiency and has been implicated in human disease. To fully understand mitochondrial transcription and RNA processing, we performed RNA-seq analyses of mt-RNAs from the fission yeast RNA-seq analyses show that the abundance of mt-RNAs vary greatly. Analysis of data also reveals mt-RNA processing sites including an unusual RNA cleavage event by mitochondrial tRNA (mt-tRNA) 5'-end processing enzyme RNase P. Additionally, this analysis reveals previously unknown mitochondrial transcripts including the -derived fragment, mitochondrial small RNAs (mitosRNAs) such as mt-tRNA-derived fragments (mt-tRFs) and mt-tRNA halves, and mt-tRNAs marked with 3'-CCACCA/CCACC in Finally, RNA-seq reveals that inactivation of encoding mitochondrial tRNA 3'-end processing enzyme globally impairs mt-tRNA 3'-end processing, inhibits mt-mRNA 5'-end processing, and causes accumulation of unprocessed transcripts, demonstrating the feasibility of using RNA-seq to examine the protein known or predicted to be involved in mt-RNA processing in Our work uncovers the complexity of a fungal mitochondrial transcriptome and provides a framework for future studies of mitochondrial gene expression using as a model system.
线粒体基因表达在很大程度上受到转录后过程的控制,包括线粒体 RNA(mt-RNA)的加工、修饰、降解和质量控制。线粒体基因表达缺陷导致线粒体氧化磷酸化(OXPHOS)缺陷,并与人类疾病有关。为了全面了解线粒体转录和 RNA 加工,我们对裂殖酵母中的 mt-RNAs 进行了 RNA-seq 分析。RNA-seq 分析表明,mt-RNAs 的丰度差异很大。数据分析还揭示了 mt-RNA 加工位点,包括线粒体 tRNA(mt-tRNA)5'-端加工酶 RNase P 催化的异常 RNA 切割事件。此外,该分析还揭示了以前未知的线粒体转录本,包括由 5S rRNA 衍生的片段、线粒体小 RNA(mitosRNAs),如 mt-tRNA 衍生片段(mt-tRFs)和 mt-tRNA 一半,以及在 3'-CCACCA/CCACC 处标记的 mt-tRNAs。最后,RNA-seq 揭示,编码线粒体 tRNA 3'-端加工酶的失活会全局抑制 mt-tRNA 3'-端加工,抑制 mt-mRNA 5'-端加工,并导致未加工转录本的积累,这表明使用 RNA-seq 来研究已知或预测参与 mt-RNA 加工的蛋白质在 中的可行性。我们的工作揭示了真菌线粒体转录组的复杂性,并为使用 作为模型系统研究线粒体基因表达提供了框架。