Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Barcelona, Spain.
Garvan Institute of Medical Research, Sydney, New South Wales, Australia.
Nat Methods. 2023 Jan;20(1):75-85. doi: 10.1038/s41592-022-01714-w. Epub 2022 Dec 19.
RNA polyadenylation plays a central role in RNA maturation, fate, and stability. In response to developmental cues, polyA tail lengths can vary, affecting the translation efficiency and stability of mRNAs. Here we develop Nanopore 3' end-capture sequencing (Nano3P-seq), a method that relies on nanopore cDNA sequencing to simultaneously quantify RNA abundance, tail composition, and tail length dynamics at per-read resolution. By employing a template-switching-based sequencing protocol, Nano3P-seq can sequence RNA molecule from its 3' end, regardless of its polyadenylation status, without the need for PCR amplification or ligation of RNA adapters. We demonstrate that Nano3P-seq provides quantitative estimates of RNA abundance and tail lengths, and captures a wide diversity of RNA biotypes. We find that, in addition to mRNA and long non-coding RNA, polyA tails can be identified in 16S mitochondrial ribosomal RNA in both mouse and zebrafish models. Moreover, we show that mRNA tail lengths are dynamically regulated during vertebrate embryogenesis at an isoform-specific level, correlating with mRNA decay. Finally, we demonstrate the ability of Nano3P-seq in capturing non-A bases within polyA tails of various lengths, and reveal their distribution during vertebrate embryogenesis. Overall, Nano3P-seq is a simple and robust method for accurately estimating transcript levels, tail lengths, and tail composition heterogeneity in individual reads, with minimal library preparation biases, both in the coding and non-coding transcriptome.
RNA 多聚腺苷酸化在 RNA 的成熟、命运和稳定性中起着核心作用。响应发育线索,多聚 A 尾长可以变化,影响 mRNA 的翻译效率和稳定性。在这里,我们开发了纳米孔 3'末端捕获测序(Nano3P-seq),这是一种依赖纳米孔 cDNA 测序的方法,能够以单读分辨率同时定量 RNA 丰度、尾巴组成和尾巴长度动力学。通过采用基于模板转换的测序方案,Nano3P-seq 可以从其 3'末端测序 RNA 分子,而无需进行 PCR 扩增或 RNA 接头的连接,无论其多聚腺苷酸化状态如何。我们证明 Nano3P-seq 提供了 RNA 丰度和尾巴长度的定量估计,并捕获了广泛的 RNA 生物型多样性。我们发现,除了 mRNA 和长非编码 RNA 外,在小鼠和斑马鱼模型中,16S 线粒体核糖体 RNA 中也可以鉴定出多聚 A 尾巴。此外,我们表明,在脊椎动物胚胎发生过程中,mRNA 尾巴长度在同种型特异性水平上是动态调节的,与 mRNA 衰变相关。最后,我们展示了 Nano3P-seq 捕获各种长度的多聚 A 尾巴内非 A 碱基的能力,并揭示了它们在脊椎动物胚胎发生过程中的分布。总体而言,Nano3P-seq 是一种简单而强大的方法,可在编码和非编码转录组中以最小的文库制备偏差,在单个读段中准确估计转录本水平、尾巴长度和尾巴组成异质性。