AbstractWe performed a theoretical study to elucidate the coupling between protonation states and orientation of protein dipoles and buried water molecules in green fluorescent protein, a versatile biosensor for protein targeting. It is shown that the ionization equilibria of the wild-type green fluorescent protein-fluorophore and the internal proton-binding site E222 are mutually interdependent. Two acid-base transitions of the fluorophore occur in the presence of neutral (physiologic pH) and ionized (pH>12) E222, respectively. In the pH-range from ≈8 to ≈11 ionized and neutral sites are present in constant ratio, linked by internal proton transfer. The results indicate that modulation of the internal proton sharing by structural fluctuati...
A recently engineered mutant of cyan fluorescent protein (WasCFP) that exhibits pH-dependent absorpt...
AbstractIt was found that the absorbance and fluorescence of green fluorescent protein (GFP) mutants...
Neutron crystallography has been used to elucidate the protonation states for the enhanced green flu...
AbstractWe performed a theoretical study to elucidate the coupling between protonation states and or...
The neutral form of the chromophore in wild-type green fluorescent protein (wtGFP) undergoes excited...
AbstractThe three amino acids S65, T203, and E222 crucially determine the photophysical behavior of ...
The sub-millisecond protonation dynamics of the chromophore in S65T mutant form of the green fluores...
AbstractIn green fluorescent protein, photo-excitation leads to excited-state proton transfer from i...
The kinetics of proton transfer in Green Fluorescent Protein (GFP) have been studied as a model syst...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The photophysical properties of most green fluorescent protein mutants (GFPs) are strongly affected ...
AbstractProton pathways in green fluorescent protein (GFP) are more extended than previously reporte...
The photophysical properties of most green fluorescent protein mutants (GFPs) are strongly affected ...
Proton transfer is an elementary process in biology. Green fluorescent protein (GFP) has served as a...
The aim of this study is to identify the responsible molecular forms for the pH dependent optical pr...
A recently engineered mutant of cyan fluorescent protein (WasCFP) that exhibits pH-dependent absorpt...
AbstractIt was found that the absorbance and fluorescence of green fluorescent protein (GFP) mutants...
Neutron crystallography has been used to elucidate the protonation states for the enhanced green flu...
AbstractWe performed a theoretical study to elucidate the coupling between protonation states and or...
The neutral form of the chromophore in wild-type green fluorescent protein (wtGFP) undergoes excited...
AbstractThe three amino acids S65, T203, and E222 crucially determine the photophysical behavior of ...
The sub-millisecond protonation dynamics of the chromophore in S65T mutant form of the green fluores...
AbstractIn green fluorescent protein, photo-excitation leads to excited-state proton transfer from i...
The kinetics of proton transfer in Green Fluorescent Protein (GFP) have been studied as a model syst...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The photophysical properties of most green fluorescent protein mutants (GFPs) are strongly affected ...
AbstractProton pathways in green fluorescent protein (GFP) are more extended than previously reporte...
The photophysical properties of most green fluorescent protein mutants (GFPs) are strongly affected ...
Proton transfer is an elementary process in biology. Green fluorescent protein (GFP) has served as a...
The aim of this study is to identify the responsible molecular forms for the pH dependent optical pr...
A recently engineered mutant of cyan fluorescent protein (WasCFP) that exhibits pH-dependent absorpt...
AbstractIt was found that the absorbance and fluorescence of green fluorescent protein (GFP) mutants...
Neutron crystallography has been used to elucidate the protonation states for the enhanced green flu...