Pulsed-interleaved excitation FRET measurements on single duplex DNA molecules inside C-shaped nanoapertures.

Fore, Samantha; Yuen, Yin; Hesselink, Lambertus; Huser, Thomas · Nano Lett · 2007

basic_science · Level V

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Abstract

Single-molecule fluorescence resonant energy transfer (FRET) is a widely accepted method for determining the spatial separation between molecules. In combination with pulsed interleaved excitation (PIE), additional information about the stoichiometry of molecular interactions is obtained. PIE-FRET, however, as implemented with standard confocal optics, requires the dilution of the sample to biologically low concentrations. Here, we show that PIE-FRET measurements inside nanometer-sized apertures yield meaningful biochemical data at 1000 x higher concentrations.

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