New England Biolabs Incorporated, Ipswich, Massachusetts 01938, USA.
Genome Res. 2022 Jan;32(1):162-174. doi: 10.1101/gr.275784.121. Epub 2021 Nov 23.
Determination of eukaryotic transcription start sites (TSSs) has been based on methods that require the cap structure at the 5' end of transcripts derived from Pol II RNA polymerase. Consequently, these methods do not reveal TSSs derived from the other RNA polymerases that also play critical roles in various cell functions. To address this limitation, we developed ReCappable-seq, which comprehensively identifies TSS for both Pol II and non-Pol II transcripts at single-nucleotide resolution. The method relies on specific enzymatic exchange of 5' mG caps and 5' triphosphates with a selectable tag. When applied to human transcriptomes, ReCappable-seq identifies Pol II TSSs that are in agreement with orthogonal methods such as CAGE. Additionally, ReCappable-seq reveals a rich landscape of TSSs associated with Pol III transcripts that have not previously been amenable to study at genome-wide scale. Novel TSS from non-Pol II transcription can be located in the nuclear and mitochondrial genomes. ReCappable-seq interrogates the regulatory landscape of coding and noncoding RNA concurrently and enables the classification of epigenetic profiles associated with Pol II and non-Pol II TSS.
真核转录起始位点(TSS)的测定一直基于需要 Pol II RNA 聚合酶转录本 5' 端帽结构的方法。因此,这些方法不能揭示也在各种细胞功能中发挥关键作用的其他 RNA 聚合酶的 TSS。为了解决这个限制,我们开发了 ReCappable-seq,它可以以单核苷酸分辨率全面识别 Pol II 和非 Pol II 转录本的 TSS。该方法依赖于特定的酶促交换 5' mG 帽和 5' 三磷酸与可选择的标签。当应用于人类转录组时,ReCappable-seq 识别的 Pol II TSS 与 CAGE 等正交方法一致。此外,ReCappable-seq 揭示了与 Pol III 转录本相关的丰富 TSS 景观,这些 TSS 以前在全基因组范围内都不容易研究。非 Pol II 转录的新 TSS 可以位于核和线粒体基因组中。ReCappable-seq 同时检测编码和非编码 RNA 的调控景观,并能够对与 Pol II 和非 Pol II TSS 相关的表观遗传特征进行分类。