The picosecond time-resolved fluorescence decay data of nine single-tryptophan (trp) proteins and two multi-trp proteins in their native and denatured states were analyzed by the maximum entropy method (MEM). In the denatured state (6 M guanidine hydrochloride) a majority of the single-trp proteins show bimodal (at 25 degrees C) and trimodal (at 85 degrees C) distributions with similar patterns and similar values for average lifetimes. In the native state of the proteins the lifetime distributions were bimodal or trimodal. These results (multimodal distributions) are contradictory to the unimodal Lorentzian distribution of lifetimes reported for some proteins in the native and denatured states. MEM analysis gives a unimodal distribution of ...
AbstractIn our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–173...
The interactions of tryptophan-59 (TRP-59) and its protein environment in ribonuclease-T1 (RNAse-T1)...
In our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–1734) we co...
The picosecond time-resolved fluorescence decay data of nine single-tryptophan (trp) proteins and tw...
The picosecond time-resolved fluorescence decay data of nine single-tryptophan (trp) proteins and tw...
The decay of the tryptophanyl emission in proteins is often complex due to the sensitivity of the tr...
The fluorescence lifetime value of tryptophan residues varies by more than a factor of 100 in differ...
The decay of the tryptophanyl emission in proteins is often complex due to the sensitivity of the tr...
The fluorescence lifetime value of tryptophan residues varies by more than a factor of 100 in differ...
AbstractThe Dead-End Elimination method was used to identify 40 low energy microconformations of 16 ...
The potentially highly informative, but complex fluorescence decay of amino acids in protein is not ...
Tryptophan fluorescence intensity decay in proteins is modeled by multiexponential functions charact...
The fluorescence decay properties of wild-type trp repressor (TR) have been characterized by carryin...
AbstractThe physical causes for wide variation of Stokes shift values in emission spectra of tryptop...
The single room temperature phosphorescent (RTP) residue of horse liver alcohol dehydrogenase (LADH)...
AbstractIn our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–173...
The interactions of tryptophan-59 (TRP-59) and its protein environment in ribonuclease-T1 (RNAse-T1)...
In our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–1734) we co...
The picosecond time-resolved fluorescence decay data of nine single-tryptophan (trp) proteins and tw...
The picosecond time-resolved fluorescence decay data of nine single-tryptophan (trp) proteins and tw...
The decay of the tryptophanyl emission in proteins is often complex due to the sensitivity of the tr...
The fluorescence lifetime value of tryptophan residues varies by more than a factor of 100 in differ...
The decay of the tryptophanyl emission in proteins is often complex due to the sensitivity of the tr...
The fluorescence lifetime value of tryptophan residues varies by more than a factor of 100 in differ...
AbstractThe Dead-End Elimination method was used to identify 40 low energy microconformations of 16 ...
The potentially highly informative, but complex fluorescence decay of amino acids in protein is not ...
Tryptophan fluorescence intensity decay in proteins is modeled by multiexponential functions charact...
The fluorescence decay properties of wild-type trp repressor (TR) have been characterized by carryin...
AbstractThe physical causes for wide variation of Stokes shift values in emission spectra of tryptop...
The single room temperature phosphorescent (RTP) residue of horse liver alcohol dehydrogenase (LADH)...
AbstractIn our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–173...
The interactions of tryptophan-59 (TRP-59) and its protein environment in ribonuclease-T1 (RNAse-T1)...
In our previous paper (Reshetnyak, Ya. K., and E. A. Burstein. 2001. Biophys. J. 81:1710–1734) we co...