Origin, Nature, and Fate of the Fluorescent State of the Green Fluorescent Protein Chromophore at the CASPT2//CASSCF Resolution
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- 13 April 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (17) , 5452-5464
- https://doi.org/10.1021/ja037278m
Abstract
Ab initio CASPT2//CASSCF relaxation path computations are employed to determine the intrinsic (e.g., in vacuo) mechanism underlying the rise and decay of the luminescence of the anionic form of the green fluorescent protein (GFP) fluorophore. Production and decay of the fluorescent state occur via a two-mode reaction coordinate. Relaxation along the first (totally symmetric) mode leads to production of the fluorescent state that corresponds to a planar species. The second (out-of-plane) mode controls the fluorescent state decay and mainly corresponds to a barrierless twisting of the fluorophore phenyl moiety. While a “space-saving” hula-twist conical intersection decay channel is found to lie only 5 kcal mol-1 above the fluorescent state, the direct involvement of a hula-twist deformation in the decay is not supported by our data. The above results indicate that the ultrafast fluorescence decay observed for the GFP chromophore in solution is likely to have an intrinsic origin. The possible effects of the GFP protein cavity on the fluorescence lifetime of the investigated chromophore model are discussed.Keywords
This publication has 25 references indexed in Scilit:
- Vibrationally Resolved Photoabsorption Spectroscopy of Red Fluorescent Protein Chromophore AnionsPhysical Review Letters, 2003
- Low-Temperature Photochemistry and Photodynamics of the Chromophore of Green Fluorescent Protein (GFP)The Journal of Physical Chemistry A, 2003
- Chromophores of the green fluorescent protein studied in the gas phaseThe European Physical Journal D, 2002
- Viscosity-Dependent Fluorescence Decay of the GFP Chromophore in Solution Due to Fast Internal ConversionThe Journal of Physical Chemistry B, 2002
- Absorption Spectrum of the Green Fluorescent Protein Chromophore AnionIn VacuoPhysical Review Letters, 2001
- Radiationless Relaxation in a Synthetic Analogue of the Green Fluorescent Protein ChromophoreThe Journal of Physical Chemistry B, 2001
- Second-order perturbation theory with a complete active space self-consistent field reference functionThe Journal of Chemical Physics, 1992
- Structure of the chromophore of Aequorea green fluorescent proteinFEBS Letters, 1979
- Luminescence in HydromedusaeProceedings of the Royal Society of London. B. Biological Sciences, 1955
- STUDIES ON BIOLUMINESCENCEThe Biological Bulletin, 1921