AbstractThermal unfolding of proteins at high temperatures is caused by a strong increase of the entropy change which lowers Gibbs free energy change of the unfolding transition (ΔGunf=ΔH−TΔS). The main contributions to entropy are the conformational entropy of the polypeptide chain itself and ordering of water molecules around hydrophobic side chains of the protein. To elucidate the role of conformational entropy upon thermal unfolding in more detail, conformational dynamics in the time regime of picoseconds was investigated with neutron spectroscopy. Confined internal structural fluctuations were analyzed for α-amylase in the folded and the unfolded state as a function of temperature. A strong difference in structural fluctuations between...
We review the key steps leading to an improved analysis of thermal protein unfolding. Thermal unfold...
Exploring the protein-folding problem has been a longstanding challenge in molecular biology and bio...
Protein unfolding thermodynamic parameters are conventionally extracted from equilibrium thermal and...
AbstractThermal unfolding of proteins at high temperatures is caused by a strong increase of the ent...
Holo- and apomyoglobin can be stabilized in native folded, partially folded molten globules (MGs) an...
AbstractA neutron-scattering investigation of the internal picosecond dynamics of lysozyme solvated ...
Holo- and apomyoglobin can be stabilized in native folded, partially folded molten globules (MGs) an...
We find that isoenthalpic and isoentropic temperatures characterizing the unfolding of small globula...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
ABSTRACT: We used 19F NMR to extend the temperature range accessible to detailed kinetic and equilib...
The folding stability of a protein is governed by the free-energy difference between its folded and ...
AbstractIn a case study on five homologous α-amylases we analyzed the properties of unfolded states ...
Thermally-induced protein unfolding is commonly described with the two-state model. This model assum...
We review the key steps leading to an improved analysis of thermal protein unfolding. Thermal unfold...
Exploring the protein-folding problem has been a longstanding challenge in molecular biology and bio...
Protein unfolding thermodynamic parameters are conventionally extracted from equilibrium thermal and...
AbstractThermal unfolding of proteins at high temperatures is caused by a strong increase of the ent...
Holo- and apomyoglobin can be stabilized in native folded, partially folded molten globules (MGs) an...
AbstractA neutron-scattering investigation of the internal picosecond dynamics of lysozyme solvated ...
Holo- and apomyoglobin can be stabilized in native folded, partially folded molten globules (MGs) an...
We find that isoenthalpic and isoentropic temperatures characterizing the unfolding of small globula...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
Internal subnanosecond timescale motions are key for the function of proteins, and are coupled to th...
ABSTRACT: We used 19F NMR to extend the temperature range accessible to detailed kinetic and equilib...
The folding stability of a protein is governed by the free-energy difference between its folded and ...
AbstractIn a case study on five homologous α-amylases we analyzed the properties of unfolded states ...
Thermally-induced protein unfolding is commonly described with the two-state model. This model assum...
We review the key steps leading to an improved analysis of thermal protein unfolding. Thermal unfold...
Exploring the protein-folding problem has been a longstanding challenge in molecular biology and bio...
Protein unfolding thermodynamic parameters are conventionally extracted from equilibrium thermal and...