AbstractThe triple helix of collagen shows a steep unfolding transition upon heating, whereas less steep and more gradual refolding is observed upon cooling. The shape of the hysteresis loop depends on the rate of temperature change as well as the peptide concentration. Experimental heating and cooling rates are usually much faster than rates of unfolding and refolding. In this work, collagen model peptides were used to study hysteresis quantitatively. Their unfolding and refolding profiles were recorded at different heating and cooling rates, and at different peptide concentrations. Data were fitted assuming kinetic mechanisms in which three chains combine to a helix with or without an intermediate that acts as a nucleus. A quantitative fi...
<p>The fraction (% denaturation) of the triple helix length unfolded in response to a train of heati...
Collagen adopts a characteristic supercoiled triple helical conformation which requires a repeating ...
BackgroundCollagen is the most abundant protein in animals. Each polypeptide chain of collagen is co...
AbstractCollagen is the fundamental structural protein, comprising 25–35% of the total body protein,...
AbstractFolding and misfolding of the collagen triple helix are studied through molecular dynamics s...
The refolding of thermally denatured model collagen-like peptides was studied for a set of 21 guest ...
Trans amide bonds and fast cis–trans isomerization of Xaa-Pro bonds are crucial for the stability an...
Folding of the collagen triple helix provides an opportunity to look at multichain molecular assembl...
AbstractCollagen molecules in solution unfold close to the maximum body temperature of the species o...
The folding of triple-helical collagen, the most abundant protein in nature, relies on the nucleatio...
Collagen forms a characteristic triple helical structure and plays a central role for stabilizing th...
Local unwinding of the collagen triple helix is a necessary step for initiating the collagen degrada...
Small-angle X-ray scattering (SAXS), circular dichroism (CD), and density measurements were made on ...
Chemical methods for the manipulation of the conformational properties and thermal stability of syn...
AbstractThe contribution of ionic interactions to the stability of the collagen triple helix was stu...
<p>The fraction (% denaturation) of the triple helix length unfolded in response to a train of heati...
Collagen adopts a characteristic supercoiled triple helical conformation which requires a repeating ...
BackgroundCollagen is the most abundant protein in animals. Each polypeptide chain of collagen is co...
AbstractCollagen is the fundamental structural protein, comprising 25–35% of the total body protein,...
AbstractFolding and misfolding of the collagen triple helix are studied through molecular dynamics s...
The refolding of thermally denatured model collagen-like peptides was studied for a set of 21 guest ...
Trans amide bonds and fast cis–trans isomerization of Xaa-Pro bonds are crucial for the stability an...
Folding of the collagen triple helix provides an opportunity to look at multichain molecular assembl...
AbstractCollagen molecules in solution unfold close to the maximum body temperature of the species o...
The folding of triple-helical collagen, the most abundant protein in nature, relies on the nucleatio...
Collagen forms a characteristic triple helical structure and plays a central role for stabilizing th...
Local unwinding of the collagen triple helix is a necessary step for initiating the collagen degrada...
Small-angle X-ray scattering (SAXS), circular dichroism (CD), and density measurements were made on ...
Chemical methods for the manipulation of the conformational properties and thermal stability of syn...
AbstractThe contribution of ionic interactions to the stability of the collagen triple helix was stu...
<p>The fraction (% denaturation) of the triple helix length unfolded in response to a train of heati...
Collagen adopts a characteristic supercoiled triple helical conformation which requires a repeating ...
BackgroundCollagen is the most abundant protein in animals. Each polypeptide chain of collagen is co...