4.6 Article

A facile graphene oxide-based DNA polymerase assay

Journal

ANALYST
Volume 137, Issue 17, Pages 3989-3994

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2an35585j

Keywords

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Funding

  1. Natural Science Foundation of China [90606003, 21175039, 20905023, 21190044]
  2. International Science AMP
  3. Technology Cooperation Program of China [2010DFB30300]
  4. Key Technologies Research and Development Program of China [2011AA02a114]
  5. Higher Education of China [20110161110016]
  6. Hunan Provincial Natural Science Foundation
  7. Hunan Provincial Science and Technology Plan of China [10JJ7002, 2011FJ2001]

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The DNA polymerase assay is fundamental for related molecular biology investigations and drug screenings, however, the commonly used radioactive method is laborious and restricted. Herein, we report a novel, simple and cost-effective fluorometric DNA polymerase detection method by utilizing graphene oxide (GO) as a signal switch. In this strategy, in the absence of DNA polymerase, the fluorophore-labeled template ssDNA could be strongly adsorbed and almost entirely quenched by GO. However, as DNA polymerase exists, the polymerized dsDNA product might lead to a much lower quenching efficiency after addition of GO due to the much weaker interaction of dsDNA with GO than ssDNA, thus resulting in a much higher fluorescence signal detected. As proof of concept, the quantitative DNA polymerase activity assay was performed using the Klenow fragment exo(-) (KF-) as a model. It was confirmed that, after optimization of detection conditions, KF- activity could be sensitively detected through facile fluorescence measurements, with a detection limit of 0.05 U mL(-1) and a good linear correlation between 0.05-2.5 U mL(-1) (R-2 - 0.9928). In addition, this GO-based method was further inspected to evaluate the inhibitive behaviors of several drugs toward KF- activity, the result of which firmly demonstrated its potential application in polymerization-targeted drug screening.

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