Ultra-fast excited state dynamics in green fluorescent protein: multiple states and proton transfer.
- 6 August 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (16) , 8362-8367
- https://doi.org/10.1073/pnas.93.16.8362
Abstract
The green fluorescent protein (GFP) of the jellyfish Aequorea Victoria has attracted widespread interest since the discovery that its chromophore is generated by the autocatalytic, posttranslational cyclization and oxidation of a hexapeptide unit. This permits fusion of the DNA sequence of GFP with that of any protein whose expression or transport can then be readily monitored by sensitive fluorescence methods without the need to add exogenous fluorescent dyes. The excited state dynamics of GFP were studied following photo-excitation of each of its two strong absorption bands in the visible using fluorescence upconversion spectroscopy (about 100 fs time resolution). It is shown that excitation of the higher energy feature leads very rapidly to a form of the lower energy species, and that the excited state interconversion rate can be markedly slowed by replacing exchangeable protons with deuterons. This observation and others lead to a model in which the two visible absorption bands correspond to GFP in two ground-state conformations. These conformations can be slowly interconverted in the ground state, but the process is much faster in the excited state. The observed isotope effect suggests that the initial excited state process involves a proton transfer reaction that is followed by additional structural changes. These observations may help to rationalize and motivate mutations that alter the absorption properties and improve the photo stability of GFP.Keywords
This publication has 10 references indexed in Scilit:
- Red-Shifted Excitation Mutants of the Green Fluorescent ProteinNature Biotechnology, 1995
- Improved green fluorescenceNature, 1995
- Wavelength mutations and posttranslational autoxidation of green fluorescent protein.Proceedings of the National Academy of Sciences, 1994
- Green Fluorescent Protein as a Marker for Gene ExpressionScience, 1994
- Chemical structure of the hexapeptide chromophore of the Aequorea green-fluorescent proteinBiochemistry, 1993
- X-ray diffraction and time-resolved fluorescence analyses of Aequorea green fluorescent protein crystals.Journal of Biological Chemistry, 1988
- Reversible denaturation of Aequorea green-fluorescent protein: physical separation and characterization of the renatured proteinBiochemistry, 1982
- Renaturation of Aequorea green-fluorescent proteinBiochemical and Biophysical Research Communications, 1981
- Proton nuclear magnetic resonance and fluorescence spectroscopic studies of segmental mobility in aequorin and a green fluorescent protein from aequorea forskaleaBiophysical Journal, 1980
- EXCITED-STATE TWO-PROTON TAUTOMERISM IN HYDROGEN-BONDED N-HETEROCYCLIC BASE PAIRSProceedings of the National Academy of Sciences, 1969