Differential scanning calorimetry has revealed the presence of a new denaturation endotherm at 32 °C following UV irradiation of collagen, compared with 39 °C for the native triple helix. Kinetic analyses showed that the new peak was a previously unknown intermediate state in the collagen helix-coil transition induced by UV light, and at least 80% of the total collagen was transformed to random chains via this state. Its rate of formation was increased by hydrogen peroxide and inhibited by free radical scavengers. SDS-polyacrylamide gels showed evidence of competing reactions of cross-linking and random primary chain scission. The cross-linking was evident from initial gelling of the collagen solution, but there was no evidence for a dityro...
The triple helix structure of collagen can be degraded by collagenase. In this study, we explored ho...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...
Differential scanning calorimetry has revealed the presence of a new denaturation endotherm at 32 °C...
<p>The fraction (% denaturation) of the triple helix length unfolded in response to a train of heati...
The study of the influence of UV irradiation on collagen solutions has shown the destabilization of ...
This year marks the 50th anniversary of the coiled?–?coil triple helical structure of collagen, firs...
This year marks the 50th anniversary of the coiled?-?coil triple helical structure of collagen, firs...
AbstractCollagen is the fundamental structural protein, comprising 25–35% of the total body protein,...
International audienceThe origin of the triple-helix structure and high stability of collagen has be...
<p>A, DSC denaturation thermograms of pepsin-purified collagen (solid lines) and procollagen (dotted...
Collagen is a fibrous protein representing the main constituent of connective tissue in mammals, wit...
The triple-helical structure of a model collagen peptide possessing azobenzene-derived clamps integr...
Initially the present study was confined to the effects of ultraviolet irradiation on acid-soluble c...
Collagen forms a characteristic triple helical structure and plays a central role for stabilizing th...
The triple helix structure of collagen can be degraded by collagenase. In this study, we explored ho...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...
Differential scanning calorimetry has revealed the presence of a new denaturation endotherm at 32 °C...
<p>The fraction (% denaturation) of the triple helix length unfolded in response to a train of heati...
The study of the influence of UV irradiation on collagen solutions has shown the destabilization of ...
This year marks the 50th anniversary of the coiled?–?coil triple helical structure of collagen, firs...
This year marks the 50th anniversary of the coiled?-?coil triple helical structure of collagen, firs...
AbstractCollagen is the fundamental structural protein, comprising 25–35% of the total body protein,...
International audienceThe origin of the triple-helix structure and high stability of collagen has be...
<p>A, DSC denaturation thermograms of pepsin-purified collagen (solid lines) and procollagen (dotted...
Collagen is a fibrous protein representing the main constituent of connective tissue in mammals, wit...
The triple-helical structure of a model collagen peptide possessing azobenzene-derived clamps integr...
Initially the present study was confined to the effects of ultraviolet irradiation on acid-soluble c...
Collagen forms a characteristic triple helical structure and plays a central role for stabilizing th...
The triple helix structure of collagen can be degraded by collagenase. In this study, we explored ho...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...