Klaus Tschira Institute for Integrative Computational Cardiology, University Hospital Heidelberg, 69120 Heidelberg, Germany.
German Center for Cardiovascular Research (DZHK), Partner site Heidelberg/Mannheim, 69120 Heidelberg, Germany.
RNA. 2023 Dec;29(12):1939-1949. doi: 10.1261/rna.079727.123. Epub 2023 Sep 6.
Nanopore long-read sequencing enables real-time monitoring and controlling of individual nanopores. This allows us to enrich or deplete specific sequences in DNA sequencing in a process called "adaptive sampling." So far, adaptive sampling (AS) was not applicable to the direct sequencing of RNA. Here, we show that AS is feasible and useful for direct RNA sequencing (DRS), which has its specific technical and biological challenges. Using a well-controlled in vitro transcript-based model system, we identify essential characteristics and parameter settings for AS in DRS, as the superior performance of depletion over enrichment. Here, the efficiency of depletion is close to the theoretical maximum. Additionally, we demonstrate that AS efficiently depletes specific transcripts in transcriptome-wide sequencing applications. Specifically, we applied our AS approach to poly(A)-enriched RNA samples from human-induced pluripotent stem cell-derived cardiomyocytes and mouse whole heart tissue and show efficient 2.5- to 2.8-fold depletion of highly abundant mitochondrial-encoded transcripts. Finally, we characterize depletion and enrichment performance for complex transcriptome subsets, that is, at the level of the entire Chromosome 11, proving the general applicability of direct RNA AS. Our analyses provide evidence that AS is especially useful to enable the detection of lowly expressed transcripts and reduce the sequencing of highly abundant disturbing transcripts.
纳米孔长读测序能够实时监测和控制单个纳米孔。这使我们能够在 DNA 测序过程中“自适应采样”来富集或耗尽特定序列。到目前为止,自适应采样(AS)不适用于 RNA 的直接测序。在这里,我们展示了 AS 对于直接 RNA 测序(DRS)是可行且有用的,因为它具有特定的技术和生物学挑战。我们使用经过良好控制的基于体外转录的模型系统,确定了 DRS 中 AS 的基本特征和参数设置,发现耗尽比富集更具优势。在这里,耗尽的效率接近理论最大值。此外,我们证明了 AS 可以有效地在全转录组测序应用中耗尽特定的转录本。具体来说,我们将我们的 AS 方法应用于人类诱导多能干细胞衍生的心肌细胞和小鼠整个心脏组织的多聚 A 富集 RNA 样本,并显示出高效的 2.5 到 2.8 倍耗尽高度丰富的线粒体编码转录本。最后,我们对复杂的转录组子集(即整个 11 号染色体)的耗尽和富集性能进行了特征分析,证明了直接 RNA AS 的普遍适用性。我们的分析提供了证据表明,AS 特别有助于检测低表达的转录本,并减少高度丰富的干扰转录本的测序。