DSC analysis has been used to quantify the reversibility of unfolding following thermal denaturation of lysozyme. Since the temperature at which protein unfolding occurs, Tm, varies with different solution conditions, the effect on the melting temperature and the degree of refolding after thermal denaturation in low ionic strength sodium phosphate buffers (5–1000 mM) over a range of pH (5–9) in the presence/absence of disaccharides is examined. This study compares the enthalpies of unfolding during successive heating cycles to quantify reversibility following thermal denaturation. The disaccharides, trehalose and maltose were used to assess if the disaccharide induced increase in Tm is reflected in the reversibility of thermally induc...
The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using thi...
AbstractA neutron-scattering investigation of the internal picosecond dynamics of lysozyme solvated ...
Studies of protein unfolding mechanisms are critical for understanding protein functions inside cell...
DSC analysis has been used to quantify the reversibility of unfolding following thermal denaturation...
DSC analysis has been used to quantify the reversibility of unfolding following thermal denaturation...
Folding and aggregation of proteins profoundly influence their functions. We have investigated the e...
Although unfolding of protein in the liquid state is relatively well studied, its mechanisms in the ...
Although unfolding of protein in the liquid state is relatively well studied, its mechanisms in the ...
The molecular thermodynamic model studied is based on the two-state mechanism of inactivation, in wh...
To investigate the relationship between conformational stability, reversibility of denaturation and ...
The reversibility of protein denaturation is an essential factor for biotechnology. Previous differe...
Determining the temperature at which the thermal unfolding of a protein starts becoming irreversible...
<p>The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using ...
<p>The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using ...
We have studied the refolding and thermal denaturation of hen egg white lysozyme in a wide range of ...
The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using thi...
AbstractA neutron-scattering investigation of the internal picosecond dynamics of lysozyme solvated ...
Studies of protein unfolding mechanisms are critical for understanding protein functions inside cell...
DSC analysis has been used to quantify the reversibility of unfolding following thermal denaturation...
DSC analysis has been used to quantify the reversibility of unfolding following thermal denaturation...
Folding and aggregation of proteins profoundly influence their functions. We have investigated the e...
Although unfolding of protein in the liquid state is relatively well studied, its mechanisms in the ...
Although unfolding of protein in the liquid state is relatively well studied, its mechanisms in the ...
The molecular thermodynamic model studied is based on the two-state mechanism of inactivation, in wh...
To investigate the relationship between conformational stability, reversibility of denaturation and ...
The reversibility of protein denaturation is an essential factor for biotechnology. Previous differe...
Determining the temperature at which the thermal unfolding of a protein starts becoming irreversible...
<p>The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using ...
<p>The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using ...
We have studied the refolding and thermal denaturation of hen egg white lysozyme in a wide range of ...
The amount of heat-denatured whey protein is typically determined by pH 4.6 precipitation. Using thi...
AbstractA neutron-scattering investigation of the internal picosecond dynamics of lysozyme solvated ...
Studies of protein unfolding mechanisms are critical for understanding protein functions inside cell...