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Development and Comparison of 4-Thiouridine to Cytidine Base Conversion Reaction.

Sana OhashiMayu NakamuraSusit AcharyyaMasahito InagakiNaoko AbeYasuaki KimuraFumitaka HashiyaHiroshi Abe
Published in: ACS omega (2024)
To study transcriptome dynamics without harming cells, it is essential to convert chemical bases. 4-Thiouridine (4sU) is a biocompatible uridine analogue that can be converted into a cytidine analogue. Although several reactions can convert 4sU into a cytidine analogue, few studies have compared the features of these reactions. In this study, we performed three reported base conversion reactions, including osmium tetroxide, iodoacetamide, and sodium periodate treatment, as well as a new reaction using 2,4-dinitrofluorobenzene. We compared the reaction time, conversion efficacy, and effects on reverse transcription. These reactions successfully converted 4sU into a cytidine analogue quantitatively using trinucleotides. However, the conversion efficacy and effect on reverse transcription vary depending on the reaction with the RNA transcript. OsO 4 treatment followed by NH 4 Cl treatment showed the best base-conversion efficiency. Nevertheless, each reaction has its own advantages and disadvantages as a tool for studying the transcriptome. Therefore, it is crucial to select the appropriate reaction for the target of interest.
Keyphrases
  • gene expression
  • rna seq
  • transcription factor
  • cell proliferation
  • genome wide
  • combination therapy
  • cell death
  • oxidative stress