The intrinsic fluorescence of tryptophan is frequently used to investigate the structure of proteins. The analysis of tryptophan fluorescence data is challenging: fluorescence (anisotropy) decays typically have multiple lifetime (correlation time) components and fluorescence spectra are broad and exhibit only minor shifts. In this work, we show that phasor approaches can substantially simplify tryptophan fluorescence analysis. To demonstrate this, we re-analyse previously recorded datasets of the denaturant (guanidinium hydrochloride, GuHCl) induced unfolding of a single-tryptophan-containing variant of apoflavodoxin from Azotobacter vinelandii. For three methods-(1) time-resolved fluorescence, (2) time-resolved fluorescence anisotropy and ...
AbstractSubmolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveale...
Fluorescence spectroscopy is an important tool for the characterization of protein folding. Often, a...
A double mutant of the single-domain protein barstar having a single tryptophan (W53) was made by mu...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
AbstractSubmolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveale...
This thesis presents studies of the protein folding problem, one of the most significant questions i...
Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are revealed by tim...
Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are revealed by tim...
ABSTRACT Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveal...
To understand protein stability and the mechanism of protein folding, it is essential that we gain a...
The reversible denaturation of Escherichia coli alkaline phosphatase (AP) was followed by monitoring...
A double mutant of the single-domain protein barstar having a single tryptophan (W53) was made by mu...
AbstractSubmolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveale...
Fluorescence spectroscopy is an important tool for the characterization of protein folding. Often, a...
A double mutant of the single-domain protein barstar having a single tryptophan (W53) was made by mu...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
During denaturant-induced equilibrium (un)folding of wild-type apoflavodoxin from Azotobacter vinela...
AbstractSubmolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveale...
This thesis presents studies of the protein folding problem, one of the most significant questions i...
Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are revealed by tim...
Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are revealed by tim...
ABSTRACT Submolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveal...
To understand protein stability and the mechanism of protein folding, it is essential that we gain a...
The reversible denaturation of Escherichia coli alkaline phosphatase (AP) was followed by monitoring...
A double mutant of the single-domain protein barstar having a single tryptophan (W53) was made by mu...
AbstractSubmolecular details of Azotobacter vinelandii apoflavodoxin (apoFD) (un)folding are reveale...
Fluorescence spectroscopy is an important tool for the characterization of protein folding. Often, a...
A double mutant of the single-domain protein barstar having a single tryptophan (W53) was made by mu...