Non-Destructive Chemoselective Labeling and Bioorthogonal Enrichment of Pseudouridine-Containing RNA via Facile N 1-Selective Functionalization

Abstract Pseudouridine (Ψ), often referred to as the “fifth nucleotide”, constitutes the most abundant post-transcriptional RNA modification and plays pivotal roles in regulating RNA structure and function. However, the precise mapping and functional investigation of Ψ remain challenging due to the lack of mild, nondestructive detection methods. Herein, we report a robust chemical proof-of-concept strategy utilizing α-methylene-γ-butyrolactone (MBL) derivatives to regioselectively functionalize Ψ at its N1 position under aqueous conditions through a phosphate-promoted reaction. Crucially, this N1-selective modification preserves the Watson–Crick base-pairing interface of Ψ, retaining native base-complementarity information while remaining compatible with reverse transcription in the tested model RNA system. To evaluate the applicability of this chemistry in a macromolecular context, we coupled chemoselective MBL labeling with a bioorthogonal azide–alkyne click ligation and a cleavable biotin pull-down workflow. Using a 66-mer RNA model system, we achieved a 20-fold target enrichment, while downstream Sanger sequencing supported the preservation of native base complementarity under the tested conditions. Ultimately, this nondestructive and modular chemical toolkit lays a solid structural and mechanistic foundation for future advancements toward the high-confidence profiling of Ψ within complex biological transcriptomes.

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Publication Details

Journal
Analytical Chemistry
Published
2026-09-18
DOI
https://doi.org/10.1021/acs.analchem.6c02863
Primary Topic
RNA modifications and cancer
Type
article
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article

Non-Destructive Chemoselective Labeling and Bioorthogonal Enrichment of Pseudouridine-Containing RNA via Facile N 1-Selective Functionalization

Pan‐Lin Shao, Jingkai Yang, Jiahui Lv, Zexi Tang et al.
Analytical Chemistry
RNA modifications and cancer
article

Non-Destructive Chemoselective Labeling and Bioorthogonal Enrichment of Pseudouridine-Containing RNA via Facile N 1-Selective Functionalization

Pan‐Lin Shao, Jingkai Yang, Jiahui Lv, Zexi Tang, Bo Zhang, Jiaxin Li, Cheng Li, Tong Li, Mingkun Lv, Yanping Sun, Guanghui Wang, Hongjun Xiao
article en

Abstract

Abstract Pseudouridine (Ψ), often referred to as the “fifth nucleotide”, constitutes the most abundant post-transcriptional RNA modification and plays pivotal roles in regulating RNA structure and function. However, the precise mapping and functional investigation of Ψ remain challenging due to the lack of mild, nondestructive detection methods. Herein, we report a robust chemical proof-of-concept strategy utilizing α-methylene-γ-butyrolactone (MBL) derivatives to regioselectively functionalize Ψ at its N1 position under aqueous conditions through a phosphate-promoted reaction. Crucially, this N1-selective modification preserves the Watson–Crick base-pairing interface of Ψ, retaining native base-complementarity information while remaining compatible with reverse transcription in the tested model RNA system. To evaluate the applicability of this chemistry in a macromolecular context, we coupled chemoselective MBL labeling with a bioorthogonal azide–alkyne click ligation and a cleavable biotin pull-down workflow. Using a 66-mer RNA model system, we achieved a 20-fold target enrichment, while downstream Sanger sequencing supported the preservation of native base complementarity under the tested conditions. Ultimately, this nondestructive and modular chemical toolkit lays a solid structural and mechanistic foundation for future advancements toward the high-confidence profiling of Ψ within complex biological transcriptomes.

Analytical Chemistry
Southern University of Science and Technology (CN), Guangzhou Medical University (CN)
Life in Land
Openalex Percentile: Top 18%
RNA modifications and cancer
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