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Labeling and sequencing nucleic acid modifications using bio-orthogonal tools.

Hui LiuYafen WangXiang Zhou
Published in: RSC chemical biology (2022)
The bio-orthogonal reaction is a type of reaction that can occur within a cell without interfering with the active components of the cell. Bio-orthogonal reaction techniques have been used to label and track the synthesis, metabolism, and interactions of distinct biomacromolecules in cells. Thus, it is a handy tool for analyzing biological macromolecules within cells. Nucleic acid modifications are widely distributed in DNA and RNA in cells and play a critical role in regulating physiological and pathological cellular activities. Utilizing bio-orthogonal tools to study modified bases is a critical and worthwhile research direction. The development of bio-orthogonal reactions focusing on nucleic acid modifications has enabled the mapping of nucleic acid modifications in DNA and RNA. This review discusses the recent advances in bio-orthogonal labeling and sequencing nucleic acid modifications in DNA and RNA.
Keyphrases
  • nucleic acid
  • induced apoptosis
  • cell cycle arrest
  • endoplasmic reticulum stress
  • cell therapy
  • signaling pathway
  • oxidative stress
  • mesenchymal stem cells
  • circulating tumor
  • cell proliferation