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Updated: Aug 29, 2026

Determination of Protein-ligand Interactions Using Differential Scanning Fluorimetry
Published on: September 13, 2014
Structural and thermal stability characterization of Escherichia coli D-galactose/D-glucose-binding protein
Sabato D'Auria1, Fabrizio Alfieri, Maria Staiano
1University of Maryland at Baltimore, Center for Fluorescence Spectroscopy, 725 W Lombard Street, Baltimore Maryland 21201, USA. dauria@dafne.ibpe.na.cnr.it
Abstract:
The effect of temperature and glucose binding on the structure of the galactose/glucose-binding protein from Escherichia coli was investigated by circular dichroism, Fourier transform infrared spectroscopy, and steady-state and time-resolved fluorescence. The data showed that the glucose binding induces a moderate change of the secondary structure content of the protein and increases the protein thermal stability. The infrared spectroscopy data showed that some protein stretches, involved in alpha-helices and beta strand conformations, are particularly sensitive to temperature. The fluorescence studies showed that the intrinsic tryptophanyl fluorescence of the protein is well represented by a three-exponential model and that in the presence of glucose the protein adopts a structure less accessible to the solvent. The new insights on the structural properties of the galactose/glucose-binding protein can contribute to a better understanding of the protein functions and represent fundamental information for the development of biotechnological applications of the protein.
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