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Development of small molecule biosensors by coupling the recognition of the bacterial allosteric transcription factor with isothermal strand displacement amplification.

Yongpeng YaoShanshan LiJiaqian CaoWeiwei LiuKeqiang FanWensheng XiangKeqian YangDe-Ming KongWeishan Wang
Published in: Chemical communications (Cambridge, England) (2018)
Here, we demonstrate an easy-to-implement and general biosensing strategy by coupling the small-molecule recognition of the bacterial allosteric transcription factor (aTF) with isothermal strand displacement amplification (SDA) in vitro. Based on this strategy, we developed two biosensors for the detection of an antiseptic, p-hydroxybenzoic acid, and a disease marker, uric acid, using bacterial aTF HosA and HucR, respectively, highlighting the great potential of this strategy for the development of small-molecule biosensors.
Keyphrases
  • small molecule
  • transcription factor
  • label free
  • uric acid
  • nucleic acid
  • protein protein
  • dna binding
  • metabolic syndrome
  • room temperature
  • endoplasmic reticulum stress
  • risk assessment