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CircRM: profiling circular RNA modifications from nanopore direct RNA sequencing

  • Jiayi Li
  • , Shenglun Chen
  • , Zhixing Wu
  • , Haozhe Wang
  • , Rong Xia
  • , Jia Meng
  • , Yuxin Zhang*
  • *Corresponding author for this work
  • Xi'an Jiaotong-Liverpool University
  • University of Liverpool
  • Wisdom Lake Academy of Pharmacy
  • Institute of Systems
  • CAS - Institute of Biophysics

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

Circular RNA (circRNA) represents a critical class of regulatory RNAs with distinctive structural and functional features. The functions of circRNAs are modulated by various RNA modifications. Here, we present CircRM, a nanopore direct RNA sequencing-based computational method for profiling RNA modifications in circRNAs at single-base and single-molecule resolution. By integrating circRNA detection, read-level modification detection, and quantitative assessment of methylation rates, CircRM identified 427 high-confidence circRNAs and enables systematic characterization of three major modifications, m5C (AUC=0.855), m6A (AUC=0.817) and m1A (AUC=0.769). It revealed distinct modification patterns compared with linear RNAs, highlighting RNA-type-specific regulations. We also identified the key features of circRNA-specific modifications, such as the enrichment near the back-splice junctions. Cross-cell line analyses further demonstrated conserved and cell-type-specific modification patterns. Together, these findings reveal, at the computational level, a unique epitranscriptomic landscape associated with circRNAs and establish CircRM as a powerful tool for advancing the study of RNA modifications in circular RNA biology.

Original languageEnglish
Article numberbbaf726
JournalBriefings in Bioinformatics
Volume27
Issue number1
DOIs
Publication statusPublished - 1 Jan 2026

Keywords

  • circular RNA
  • epitranscriptomics
  • nanopore direct RNA sequencing

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