Center for RNA Research, Institute for Basic Science, Seoul 08826, Korea.
School of Biological Sciences, Seoul National University, Seoul 08826, Korea.
Nucleic Acids Res. 2019 Mar 18;47(5):2630-2640. doi: 10.1093/nar/gky1293.
MicroRNAs (miRNAs) modulate diverse biological and pathological processes via post-transcriptional gene silencing. High-throughput small RNA sequencing (sRNA-seq) has been widely adopted to investigate the functions and regulatory mechanisms of miRNAs. However, accurate quantification of miRNAs has been limited owing to the severe ligation bias in conventional sRNA-seq methods. Here, we quantify miRNAs and their variants (known as isomiRs) by an improved sRNA-seq protocol, termed AQ-seq (accurate quantification by sequencing), that utilizes adapters with terminal degenerate sequences and a high concentration of polyethylene glycol (PEG), which minimize the ligation bias during library preparation. Measurement using AQ-seq allows us to correct the previously misannotated 5' end usage and strand preference in public databases. Importantly, the analysis of 5' terminal heterogeneity reveals widespread alternative processing events which have been underestimated. We also identify highly uridylated miRNAs originating from the 3p strands, indicating regulations mediated by terminal uridylyl transferases at the pre-miRNA stage. Taken together, our study reveals the complexity of the miRNA isoform landscape, allowing us to refine miRNA annotation and to advance our understanding of miRNA regulation. Furthermore, AQ-seq can be adopted to improve other ligation-based sequencing methods including crosslinking-immunoprecipitation-sequencing (CLIP-seq) and ribosome profiling (Ribo-seq).
微小 RNA(miRNA)通过转录后基因沉默调节多种生物和病理过程。高通量小 RNA 测序(sRNA-seq)已广泛用于研究 miRNA 的功能和调控机制。然而,由于传统 sRNA-seq 方法中严重的连接偏倚,miRNA 的准确定量受到限制。在这里,我们通过一种改进的 sRNA-seq 方案,即 AQ-seq(通过测序进行精确定量),对 miRNA 及其变体(称为 isomiRs)进行定量,该方案利用带有末端简并序列和高浓度聚乙二醇(PEG)的接头,在文库制备过程中最大限度地减少连接偏倚。使用 AQ-seq 进行的测量使我们能够纠正公共数据库中先前错误注释的 5'端使用和链偏好。重要的是,5'端异质性分析揭示了广泛存在的被低估的替代加工事件。我们还鉴定了源自 3p 链的高度尿嘧啶化 miRNA,表明在 miRNA 前体阶段存在由末端尿苷转移酶介导的调控。总之,我们的研究揭示了 miRNA 异构体景观的复杂性,使我们能够改进 miRNA 注释,并深入了解 miRNA 的调控。此外,AQ-seq 可以被采用来改进其他基于连接的测序方法,包括交联免疫沉淀测序(CLIP-seq)和核糖体图谱(Ribo-seq)。