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深度测序短帽 RNA 揭示了新型非编码 RNA 家族。

Deep sequencing of short capped RNAs reveals novel families of noncoding RNAs.

机构信息

RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa 230-0045, Japan.

RIKEN Center for Life Science Technologies, Division of Genomic Technologies, Yokohama, Kanagawa 230-0045, Japan.

出版信息

Genome Res. 2022 Sep 27;32(9):1727-1735. doi: 10.1101/gr.276647.122.

Abstract

In eukaryotes, capped RNAs include long transcripts such as messenger RNAs and long noncoding RNAs, as well as shorter transcripts such as spliceosomal RNAs, small nucleolar RNAs, and enhancer RNAs. Long capped transcripts can be profiled using cap analysis gene expression (CAGE) sequencing and other methods. Here, we describe a sequencing library preparation protocol for short capped RNAs, apply it to a differentiation time course of the human cell line THP-1, and systematically compare the landscape of short capped RNAs to that of long capped RNAs. Transcription initiation peaks associated with genes in the sense direction have a strong preference to produce either long or short capped RNAs, with one out of six peaks detected in the short capped RNA libraries only. Gene-associated short capped RNAs have highly specific 3' ends, typically overlapping splice sites. Enhancers also preferentially generate either short or long capped RNAs, with 10% of enhancers observed in the short capped RNA libraries only. Enhancers producing either short or long capped RNAs show enrichment for GWAS-associated disease SNPs. We conclude that deep sequencing of short capped RNAs reveals new families of noncoding RNAs and elucidates the diversity of transcripts generated at known and novel promoters and enhancers.

摘要

在真核生物中,加帽 RNA 包括信使 RNA 和长非编码 RNA 等长转录本,以及剪接体 RNA、小核仁 RNA 和增强子 RNA 等较短转录本。长加帽转录本可以使用帽分析基因表达 (CAGE) 测序和其他方法进行分析。在这里,我们描述了一种短加帽 RNA 的测序文库制备方案,将其应用于人类细胞系 THP-1 的分化时间过程,并系统地比较了短加帽 RNA 与长加帽 RNA 的图谱。与有意义方向上的基因相关的转录起始峰强烈倾向于产生长或短的加帽 RNA,其中只有六分之一的峰在短加帽 RNA 文库中检测到。与基因相关的短加帽 RNA 具有高度特异性的 3' 端,通常与剪接位点重叠。增强子也优先产生长或短的加帽 RNA,其中只有 10%的增强子仅在短加帽 RNA 文库中观察到。产生长或短加帽 RNA 的增强子显示与 GWAS 相关疾病 SNP 的富集。我们得出的结论是,对短加帽 RNA 的深度测序揭示了新的非编码 RNA 家族,并阐明了在已知和新的启动子和增强子处产生的转录本的多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c1/9528987/6ff5dc24a320/1727f01.jpg

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