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Enriching adenosine by thymine-rich DNA oligomers.

Mingchun LiuHuaiqing ChenYuhan HuangJian LiuQianfeng ChenHua ZuoLiang FangChengde Mao
Published in: The Analyst (2023)
Adenosine levels are important in various physiological and pathological activities, but detecting them is difficult because of interference from a complex matrix. This study designed a series of DNA oligomers rich in thymine to enrich adenosine. Their binding affinity ( K d range: 1.25-5.0 mM) to adenosine varied based on the DNA secondary structures, with a clamped hairpin structure showing the highest binding affinity. Compared to other designs, this clamped DNA hairpin underwent the least conformational change during adenosine binding. These DNAs also suppressed the precipitation of supersaturated adenine. Taken together, these results suggest that thymine-rich DNAs could be used to enrich and separate adenosine.
Keyphrases
  • circulating tumor
  • single molecule
  • protein kinase
  • cell free
  • binding protein
  • molecular dynamics simulations
  • mass spectrometry