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长读直接 RNA 测序揭示酿酒酵母线粒体转录组中条件依赖性内含子丰度。

Long-read direct RNA sequencing of the mitochondrial transcriptome of Saccharomyces cerevisiae reveals condition-dependent intron abundance.

机构信息

Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.

出版信息

Yeast. 2024 Apr;41(4):256-278. doi: 10.1002/yea.3893. Epub 2023 Aug 29.

Abstract

Mitochondria fulfil many essential roles and have their own genome, which is expressed as polycistronic transcripts that undergo co- or posttranscriptional processing and splicing. Due to the inherent complexity and limited technical accessibility of the mitochondrial transcriptome, fundamental questions regarding mitochondrial gene expression and splicing remain unresolved, even in the model eukaryote Saccharomyces cerevisiae. Long-read sequencing could address these fundamental questions. Therefore, a method for the enrichment of mitochondrial RNA and sequencing using Nanopore technology was developed, enabling the resolution of splicing of polycistronic genes and the quantification of spliced RNA. This method successfully captured the full mitochondrial transcriptome and resolved RNA splicing patterns with single-base resolution and was applied to explore the transcriptome of S. cerevisiae grown with glucose or ethanol as the sole carbon source, revealing the impact of growth conditions on mitochondrial RNA expression and splicing. This study uncovered a remarkable difference in the turnover of Group II introns between yeast grown in either mostly fermentative or fully respiratory conditions. Whether this accumulation of introns in glucose medium has an impact on mitochondrial functions remains to be explored. Combined with the high tractability of the model yeast S. cerevisiae, the developed method enables to monitor mitochondrial transcriptome responses in a broad range of relevant contexts, including oxidative stress, apoptosis and mitochondrial diseases.

摘要

线粒体具有多种重要功能,拥有自己的基因组,其表达为多顺反子转录本,这些转录本经历共转录或转录后加工和剪接。由于线粒体转录组的固有复杂性和有限的技术可及性,即使在模式真核生物酿酒酵母中,有关线粒体基因表达和剪接的基本问题仍未得到解决。长读测序可以解决这些基本问题。因此,开发了一种使用纳米孔技术富集线粒体 RNA 并进行测序的方法,该方法能够解析多顺反子基因的剪接,并对剪接 RNA 进行定量。该方法成功捕获了完整的线粒体转录组,并以单碱基分辨率解析了 RNA 剪接模式,并应用于探索以葡萄糖或乙醇为唯一碳源生长的酿酒酵母的转录组,揭示了生长条件对线粒体 RNA 表达和剪接的影响。该研究揭示了在主要进行发酵或完全呼吸条件下生长的酵母中,第二类内含子周转存在显著差异。在葡萄糖培养基中积累这些内含子是否会对线粒体功能产生影响还有待探索。结合模式酵母酿酒酵母的高度可操作性,开发的方法能够在广泛的相关背景下监测线粒体转录组的反应,包括氧化应激、细胞凋亡和线粒体疾病。

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