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The human mitochondrial transcriptome

机译:人线粒体转录组

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The human mitochondrial genome comprises a distinct genetic system transcribed as precursor polycistronic transcripts that are subsequently cleaved to generate individual mRNAs, tRNAs, and rRNAs. Here, we provide a comprehensive analysis of the human mitochondrial transcriptome across multiple cell lines and tissues. Using directional deep sequencing and parallel analysis of RNA ends, we demonstrate wide variation in mitochondrial transcript abundance and precisely resolve transcript processing and maturation events. We identify previously undescribed transcripts, including small RNAs, and observe the enrichment of several nuclear RNAs in mitochondria. Using high-throughput in vivo DNaseI footprinting, we establish the global profile of DNA-binding protein occupancy across the mitochondrial genome at single-nucleotide resolution, revealing regulatory features at mitochondrial transcription initiation sites and functional insights into disease-associated variants. This integrated analysis of the mitochondrial transcriptome reveals unexpected complexity in the regulation, expression, and processing of mitochondrial RNA and provides a resource for future studies of mitochondrial function (accessed at http://mitochondria.matticklab.com).
机译:人类线粒体基因组包含一个独特的遗传系统,转录为前体多顺反子转录本,随后被切割以生成单独的mRNA,tRNA和rRNA。在这里,我们提供了跨多个细胞系和组织的人类线粒体转录组的全面分析。使用定向深度测序和RNA末端平行分析,我们证明了线粒体转录本丰度存在很大差异,并精确解析了转录本加工和成熟事件。我们确定以前未描述的成绩单,包括小RNA,并观察线粒体中几个核RNA的富集。使用高通量的体内DNaseI足迹,我们以单核苷酸分辨率建立了跨线粒体基因组的DNA结合蛋白占有率的全球概况,揭示了线粒体转录起始位点的调控功能以及对疾病相关变体的功能见解。线粒体转录组的这种综合分析揭示了线粒体RNA调控,表达和加工中意想不到的复杂性,并为线粒体功能的未来研究提供了资源(可从http://mitochondria.matticklab.com访问)。

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