A bisulfite-assisted and ligation-based qPCR amplification technology for locus-specific pseudouridine detection at base resolution

Author:

Fang Xin1,Zhao Ruiqi2,Wang Yafen3,Sun Mei1,Xu Jin4,Long Shengrong2,Mo Jing1ORCID,Liu Hudan4,Li Xiang2,Wang Fang5,Zhou Xiang16ORCID,Weng Xiaocheng16ORCID

Affiliation:

1. College of Chemistry and Molecular Sciences, Key Laboratory of Biomedical Polymers-Ministry of Education, Wuhan University , Wuhan , Hubei  430072 , P. R. China

2. Department of Neurosurgery, Zhongnan Hospital of Wuhan University , Wuhan , Hubei  430071 , P. R. China

3. School of Public Health, Wuhan University , Wuhan , Hubei  430071 , P. R. China

4. Medical Research Institute, Wuhan University , Wuhan , Hubei  430071 , P. R. China

5. Wuhan University School of Pharmaceutical Sciences , Wuhan  430071 , China

6. Wuhan TaiKang Center for Life and Medical Sciences, Wuhan University , Wuhan , Hubei  430071 , P. R. China

Abstract

Abstract Over 150 types of chemical modifications have been identified in RNA to date, with pseudouridine (Ψ) being one of the most prevalent modifications in RNA. Ψ plays vital roles in various biological processes, and precise, base-resolution detection methods are fundamental for deep analysis of its distribution and function. In this study, we introduced a novel base-resolution Ψ detection method named pseU-TRACE. pseU-TRACE relied on the fact that RNA containing Ψ underwent a base deletion after treatment of bisulfite (BS) during reverse transcription, which enabled efficient ligation of two probes complementary to the cDNA sequence on either side of the Ψ site and successful amplification in subsequent real-time quantitative PCR (qPCR), thereby achieving selective and accurate Ψ detection. Our method accurately and sensitively detected several known Ψ sites in 28S, 18S, 5.8S, and even mRNA. Moreover, pseU-TRACE could be employed to measure the Ψ fraction in RNA and explore the Ψ metabolism of different pseudouridine synthases (PUSs), providing valuable insights into the function of Ψ. Overall, pseU-TRACE represents a reliable, time-efficient and sensitive Ψ detection method.

Funder

Ministry of Science and Technology

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Oxford University Press (OUP)

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