Publication: A general approach to visualize protein binding and DNA conformation without protein labelling
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Date
2016
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Nature Publishing Group
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Song, Dan, Thomas G. W. Graham, and Joseph J. Loparo. 2016. “A general approach to visualize protein binding and DNA conformation without protein labelling.” Nature Communications 7 (1): 10976. doi:10.1038/ncomms10976. http://dx.doi.org/10.1038/ncomms10976.
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Abstract
Single-molecule manipulation methods, such as magnetic tweezers and flow stretching, generally use the measurement of changes in DNA extension as a proxy for examining interactions between a DNA-binding protein and its substrate. These approaches are unable to directly measure protein–DNA association without fluorescently labelling the protein, which can be challenging. Here we address this limitation by developing a new approach that visualizes unlabelled protein binding on DNA with changes in DNA conformation in a relatively high-throughput manner. Protein binding to DNA molecules sparsely labelled with Cy3 results in an increase in fluorescence intensity due to protein-induced fluorescence enhancement (PIFE), whereas DNA length is monitored under flow of buffer through a microfluidic flow cell. Given that our assay uses unlabelled protein, it is not limited to the low protein concentrations normally required for single-molecule fluorescence imaging and should be broadly applicable to studying protein–DNA interactions.
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