AbstractWe report investigations on the properties of nanoenvironments around single-GFP-mut2 proteins in trehalose-water matrixes. Single-GFPmut2 molecules embedded in thin trehalose-water films were characterized in terms of their fluorescence brightness, bleaching dynamics, excited state lifetime, and fluorescence polarization. For each property, sets of ∼100–150 single molecules have been investigated as a function of trehalose content and hydration. Three distinct and interconverting families of proteins have been found which differ widely in terms of bleaching dynamics, brightness, and fluorescence polarization, whose relative populations sizably depend on sample hydration. The reported results evidence the simultaneous presence of di...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Conformational protein dynamics is known to be hampered in amorphous matrixes upon dehydration, both...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
We report investigations on the properties of nanoenvironments around single-GFP-mut2 proteins in tr...
AbstractWe report investigations on the properties of nanoenvironments around single-GFP-mut2 protei...
AbstractEmbedding protein in sugar systems of low water content enables one to investigate the prote...
Saccharides protect biostructures against adverse environmental conditions mainly by preventing larg...
Immobilization of proteins and other biomolecules in saccharide matrices leads to a series of peculi...
AbstractWe report on a molecular dynamics (MD) simulation of carboxy-myoglobin (MbCO) embedded in a ...
We report Small Angle X-ray Scattering (SAXS) measurements performed on samples of carboxy-myoglobin...
We review recent studies on the role played by non-liquid, water-containing matrices on the dynamics...
AbstractSugars are known to stabilize proteins. This study addresses questions of the nature of suga...
Some organisms can survive complete dehydration and/or high temperature in a state of suspended anim...
We review recent studies on the role played by non-liquid, water-containing matrices on the dynamics...
Trehalose, a non-reducing disaccharide of glucose, has a peculiar efficacy in the preservation of i...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Conformational protein dynamics is known to be hampered in amorphous matrixes upon dehydration, both...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...
We report investigations on the properties of nanoenvironments around single-GFP-mut2 proteins in tr...
AbstractWe report investigations on the properties of nanoenvironments around single-GFP-mut2 protei...
AbstractEmbedding protein in sugar systems of low water content enables one to investigate the prote...
Saccharides protect biostructures against adverse environmental conditions mainly by preventing larg...
Immobilization of proteins and other biomolecules in saccharide matrices leads to a series of peculi...
AbstractWe report on a molecular dynamics (MD) simulation of carboxy-myoglobin (MbCO) embedded in a ...
We report Small Angle X-ray Scattering (SAXS) measurements performed on samples of carboxy-myoglobin...
We review recent studies on the role played by non-liquid, water-containing matrices on the dynamics...
AbstractSugars are known to stabilize proteins. This study addresses questions of the nature of suga...
Some organisms can survive complete dehydration and/or high temperature in a state of suspended anim...
We review recent studies on the role played by non-liquid, water-containing matrices on the dynamics...
Trehalose, a non-reducing disaccharide of glucose, has a peculiar efficacy in the preservation of i...
Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the imp...
Conformational protein dynamics is known to be hampered in amorphous matrixes upon dehydration, both...
Saccharides, and in particular trehalose, are well known for their high efficiency in protecting bio...