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基于纳米孔的直接 RNA 测序对转录组进行分析,可鉴定新型 lncRNAs。

Nanopore-Based Direct RNA Sequencing of the Transcriptome Identifies Novel lncRNAs.

机构信息

Molecular Genetics, Technical University Darmstadt, Schnittspahnstr. 10, 64287 Darmstadt, Germany.

出版信息

Genes (Basel). 2023 Feb 28;14(3):610. doi: 10.3390/genes14030610.

Abstract

Trypanosomatids are single-cell eukaryotic parasites. Unlike higher eukaryotes, they control gene expression post-transcriptionally and not at the level of transcription initiation. This involves all known cellular RNA circuits, from mRNA processing to mRNA decay, to translation, in addition to a large panel of RNA-interacting proteins that modulate mRNA abundance. However, other forms of gene regulation, for example by lncRNAs, cannot be excluded. LncRNAs are poorly studied in trypanosomatids, with only a single lncRNA characterized to date. Furthermore, it is not clear whether the complete inventory of trypanosomatid lncRNAs is known, because of the inherent cDNA-recoding and DNA-amplification limitations of short-read RNA sequencing. Here, we overcome these limitations by using long-read direct RNA sequencing (DRS) on nanopore arrays. We analyze the native RNA pool of the two main lifecycle stages of the African trypanosome with a special emphasis on the inventory of lncRNAs. We identify 207 previously unknown lncRNAs, 32 of which are stage-specifically expressed. We also present insights into the complexity of the transcriptome, including alternative transcriptional start and stop sites and potential transcript isoforms, to provide a bias-free understanding of the intricate RNA landscape in .

摘要

锥虫是单细胞真核寄生虫。与高等真核生物不同,它们在后转录水平而非转录起始水平控制基因表达。这涉及所有已知的细胞 RNA 电路,从 mRNA 加工到 mRNA 降解,再到翻译,以及大量调节 mRNA 丰度的 RNA 相互作用蛋白。然而,不能排除其他形式的基因调控,例如长非编码 RNA(lncRNA)。锥虫中 lncRNA 的研究很少,迄今为止只鉴定出一种 lncRNA。此外,由于短读长 RNA 测序固有的 cDNA 重编码和 DNA 扩增限制,尚不清楚是否已知锥虫 lncRNA 的完整目录。在这里,我们通过在纳米孔阵列上使用长读直接 RNA 测序(DRS)克服了这些限制。我们特别强调 lncRNA 的库存,分析了非洲锥虫两个主要生命周期阶段的天然 RNA 池。我们鉴定了 207 个以前未知的 lncRNA,其中 32 个具有阶段特异性表达。我们还提供了对转录组复杂性的深入了解,包括转录起始和终止位点的替代以及潜在的转录异构体,以提供对 中复杂 RNA 景观的无偏见理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9a7/10048164/593946ef3d31/genes-14-00610-g001.jpg

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