DISTANCE‐DEPENDENT FLUORESCENCE QUENCHING OF TRYPTOPHAN BY ACRYLAMIDE
- 1 September 1994
- journal article
- Published by Wiley in Photochemistry and Photobiology
- Vol. 60 (3) , 205-214
- https://doi.org/10.1111/j.1751-1097.1994.tb05092.x
Abstract
We used GHz frequency-domain fluorometry to investigate the time-dependent intensity decays of N-acetyl-L-trytophanamide (NATA) when collisionally quenched by acrylamide in propylene glycol at 20 degrees C. The intensity decays of NATA became increasingly heterogeneous in the presence of acrylamide. The NATA intensity decays were not consistent with the Collins-Kimball radiation boundary condition (RBC) model for quenching. The steady-state Stern-Volmer plots show significant upward curvature. At low temperature in vitrified propylene glycol (-60%), where translational diffusion cannot occur during the lifetime of the excited state, quenching of NATA by acrylamide was observed. The Smoluchowski and RBC quenching models do not predict any quenching in the absence of translational diffusion. Hence, these frequency-domain and steady-state data indicate a through-space quenching interaction between NATA and acrylamide. The rate for quenching of NATA by acrylamide appears to depend exponentially on the fluorophore-quencher separation distance. Comparison of the time-resolved and steady-state data provides a sensitive method to determine the distance dependence of the fluorophore-quencher interaction. The distance-dependent rate of quenching also explains the upward curvature of the Stern-Volmer plot, which is often observed for quenching by acrylamide. These results suggest that the distance-dependent quenching rates need to be considered in the interpretation of quenching data of proteins by acrylamide.Keywords
This publication has 34 references indexed in Scilit:
- Long-Range Photoinduced Electron Transfer Through a DNA HelixScience, 1993
- RESOLUTION OF TWO EMISSION SPECTRA FOR TRYPTOPHAN USING FREQUENCY‐DOMAIN PHASE‐MODULATION SPECTRAPhotochemistry and Photobiology, 1989
- Theory of diffusion-influenced fluorescence quenchingThe Journal of Physical Chemistry, 1989
- Does the fluorescence quencher acrylamide bind to proteins?Biochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1987
- Transient effects in fluorescence quenching measured by 2-GHz frequency-domain fluorometryThe Journal of Physical Chemistry, 1987
- Picosecond kinetics of the initial photochemical electron-transfer reaction in bacterial photosynthetic reaction centersBiochemistry, 1985
- Penetration of small molecules into proteins studied by quenching of phosphorescence and fluorescenceBiochemistry, 1983
- Penetration of dioxygen into proteins studied by quenching of phosphorescence and fluorescenceBiochemistry, 1983
- Time-resolved fluorescence and anisotropy decay of the tryptophan in adrenocorticotropin-(1-24)Biochemistry, 1981
- Influence of solvent and temperature upon the fluorescence of indole derivativesThe Journal of Physical Chemistry, 1970