He Zhiyong, Qiu Weiqi, Zhou Huiqing
Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, USA.
bioRxiv. 2024 Jul 3:2024.07.03.601893. doi: 10.1101/2024.07.03.601893.
Pseudouridine (Ψ) is an abundant RNA chemical modification that can play critical roles in the biological functions of RNA, and RNA-therapeutic applications. Current Ψ detection methods are limited in identifying Ψs at base-resolution in U-rich sequence contexts, where Ψ occurs frequently. The N-cyclohexyl N'-(2-morpholinoethyl)carbodiimide (CMC) can selectively label Ψ in RNA by forming the CMC-Ψ adduct. Here we report that an evolved reverse transcriptase ("RT-1306") shows promoted read-through and mutation against the CMC-Ψ. The mutation signature can resolve the occurrence of Ψs within UU-containing sequences. We developed "Mut-Ψ-seq" utilizing CMC and RT-1306 for transcriptome-wide mapping of Ψ at base-resolution. The mutation signatures robustly identify reported Ψs in human rRNAs via the ROC analysis, and elongated CMC reaction duration increases the detection sensitivity of Ψ. We report a high-confidence list of Ψ sites in polyA-enriched RNAs from HEK-293T cells identified by orthogonal chemical treatments (CMC and bisulfite). The mutation signatures resolve the position of Ψ in UU-containing sequences, revealing diverse occurrence of Ψs in such sequences. This work provides new methods and datasets for biological research of Ψ, and demonstrates the potential of combining the reverse transcriptase engineering and selective chemical labeling to expand the toolkit for RNA chemical modifications studies.
假尿苷(Ψ)是一种丰富的RNA化学修饰,可在RNA的生物学功能和RNA治疗应用中发挥关键作用。目前的Ψ检测方法在识别富含尿苷(U)的序列背景下的碱基分辨率Ψ时存在局限性,而Ψ在这种序列背景中频繁出现。N-环己基-N'-(2-吗啉代乙基)碳二亚胺(CMC)可通过形成CMC-Ψ加合物来选择性标记RNA中的Ψ。在此,我们报告一种经过进化的逆转录酶(“RT-1306”)对CMC-Ψ表现出增强的通读和突变能力。这种突变特征能够解析含UU序列中Ψ的存在情况。我们利用CMC和RT-1306开发了“Mut-Ψ-seq”,用于在全转录组范围内以碱基分辨率绘制Ψ图谱。通过ROC分析发现,这种突变特征能够可靠地识别出人类核糖体RNA(rRNA)中已报道的Ψ,延长CMC反应时间可提高Ψ的检测灵敏度。我们报告了通过正交化学处理(CMC和亚硫酸氢盐)鉴定出的来自HEK-293T细胞的富含聚腺苷酸(polyA)RNA中高可信度的Ψ位点列表。这种突变特征解析了含UU序列中Ψ的位置,揭示了此类序列中Ψ的多样分布情况。这项工作为Ψ的生物学研究提供了新方法和数据集,并展示了将逆转录酶工程与选择性化学标记相结合以扩展RNA化学修饰研究工具集的潜力。