Updated Pseudo-seq Protocol for Transcriptome-Wide Detection of Pseudouridines.

IF 1 Q3 BIOLOGY
Yi Pan, Hironori Adachi, Xueyang He, Jonathan L Chen, Yi-Tao Yu, Paul L Boutz
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引用次数: 0

Abstract

Pseudouridine (Ψ), the most prevalent modified base in cellular RNAs, has been mapped to numerous sites not only in rRNAs, tRNAs, and snRNAs but also mRNAs. Although there have been multiple techniques to identify Ψs, due to the recent development of sequencing technologies some reagents are not compatible with the current sequencer. Here, we show the updated Pseudo-seq, a technique enabling the genome-wide identification of pseudouridylation sites with single-nucleotide precision. We provide a comprehensive description of Pseudo-seq, covering protocols for RNA isolation from human cells, library preparation, and detailed data analysis procedures. The methodology presented is easily adaptable to any cell or tissue type with high-quality mRNA isolation. It can be used for discovering novel pseudouridylation sites, thus constituting a crucial initial step toward understanding the regulation and function of this modification. Key features • Identification of Ψ sites on mRNAs. • Updated Pseudo-seq provides precise positional and quantitative information of Ψ. • Uses a more efficient library preparation with the latest, currently available materials.

用于在转录组范围内检测假尿苷的最新伪序列协议。
假尿嘧啶(Ψ)是细胞 RNA 中最常见的修饰碱基,不仅在 rRNA、tRNA、snRNA 中,而且在 mRNA 中也有许多位点。虽然已经有多种技术来鉴定Ψs,但由于近年来测序技术的发展,有些试剂与目前的测序仪不兼容。在这里,我们展示了最新的 Pseudo-seq,这是一种能在全基因组范围内以单核苷酸精度鉴定假酸化位点的技术。我们全面介绍了 Pseudo-seq,包括从人体细胞中分离 RNA、文库制备和详细数据分析步骤。所介绍的方法很容易适用于任何细胞或组织类型的高质量 mRNA 分离。它可用于发现新的假酰化位点,从而为了解这种修饰的调控和功能迈出关键的第一步。主要特点 - 鉴定 mRNA 上的Ψ 位点。- 更新的伪序列提供Ψ的精确定位和定量信息。- 使用当前可用的最新材料进行更高效的文库制备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.50
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0.00%
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