Abstract
A series of DNA molecules labeled with 5-carboxytetramethylrhodamine (5-TAMRA) and the small nitroxide radical TEMPO were synthesized and tested to investigate whether the intramolecular quenching efficiency can be used to measure short intramolecular distances in small ensemble and single-molecule experiments. In combination with distance calculations using molecular mechanics modeling, the experimental results from steady-state ensemble fluorescence and fluorescence correlation spectroscopy measurements both show an exponential decrease in the quenching rate constant with the dye-quencher distance in the 10-30 A range. The results demonstrate that TEMPO-5-TAMRA fluorescence quenching is a promising method to measure short distance changes within single biomolecules. © 2005 by the Biophysical Society.
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CITATION STYLE
Zhu, P., Clamme, J. P., & Deniz, A. A. (2005). Fluorescence quenching by TEMPO: A sub-30 Å single-molecule ruler. Biophysical Journal, 89(5). https://doi.org/10.1529/biophysj.105.071027
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