4.7 Article

Engineering a Synthetic Dopamine-Responsive Riboswitch for In Vitro Biosensing

期刊

ACS SYNTHETIC BIOLOGY
卷 11, 期 7, 页码 2275-2283

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssynbio.1c00560

关键词

cell-free gene expression; TX-TL; biosensing; dopamine; human performance; riboswitch; aptamer

资金

  1. Air Force Research Laboratory Center of Excellence [FA8650-15-2-5518]
  2. Air Force Office of Scientific Research [19RHCOR085]
  3. Asian Office of Aerospace Research and Development [FA2386-21-1-4078]
  4. David and Lucile Packard Foundation
  5. Camille Dreyfus Teacher-Scholar Program
  6. NSF CAREER award [1452441]

向作者/读者索取更多资源

By converting RNA aptamers into functional riboswitches, direct detection and control of gene expression for analytes such as dopamine can be achieved. This research is expected to have broad applicability for the conversion of in vitro-generated RNA aptamers into fieldable molecular diagnostics.
The detection of chemicals using natural allosteric transcription factors is a powerful strategy for point-of-use molecular sensing, particularly using fieldable cell-free gene expression (CFE) systems. However, the reliance of detection schemes on characterized protein-based sensors limits the number of measurable analytes. One alternative solution to this issue is to develop new sensors by generating RNA aptamers against the target analyte and then incorporating them directly into a riboswitch scaffold for ligand-inducible genetic control of a reporter protein. However, this strategy has not generated more than a handful of successful portable cell-free molecular sensors. To address this gap, here we convert dopamine-binding aptamers into functional dopamine-sensing riboswitches that regulate gene expression in a freeze-dried CFE reaction. We then develop an assay for direct detection and semi-quantification of dopamine in human urine. We anticipate that this work will be broadly applicable for converting many in vitro-generated RNA aptamers into fieldable molecular diagnostics.

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