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Updated: Jun 24, 2026

Extremely Rapid and Specific Metabolic Labelling of RNA In Vivo with 4-Thiouracil (Ers4tU)
Published on: August 22, 2019
Fluorouridine labeling enables spatiotemporal mapping of transcriptomes and enhancers in vivo
Yuxuan Feng1,2, Yiwei Zhang1,3, Heyuan Lian1,3
1State Key Laboratory of Molecular Oncology, School of Basic Medical Sciences, Tsinghua University, Beijing, China.
Abstract:
Transient RNA-labeling tools can reveal transcriptional dynamics with high temporal precision, yet most approaches remain largely confined to cell culture. Here, we report a 5-fluorouridine (5-FUd)-based transient transcriptomics method, 5FU-seq, that surpasses standard strategies by enabling higher metabolic incorporation, greater sensitivity, and robust detection across a broad spectrum of transcripts. Applying 5FU-seq to the murine brain uncovered stimulus-dependent transcriptional networks and revealed a dynamic regulatory program associated with Nrf2 regulation in the hippocampus during anesthesia-induced unconsciousness. We further engineered a transgenic mouse line for cell type-specific transient transcriptomics in situ, enabling simultaneous mapping of gene expression and active enhancer activity with high spatiotemporal resolution. Benchmarking in myeloid cells responding to inflammatory cues against FACS-based RNA-seq and ATAC-seq confirmed the robustness of this dual chemical-genetic toolkit. Together, this work establishes a broadly applicable platform for integrated transcriptomic and epigenetic profiling in complex tissues.
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