AbstractStudies on collagen and collagen-like peptides suggest that triple-helical stability can vary along the amino acid chain. In this regard, it has been shown that lysine residues in the Y position and acidic residues in the X′ position of (GPO)3GXYGX′Y′(GPO)3 peptides lead to triple-helical structures with melting temperatures similar to (GPO)8 (where O is hydroxyproline), which is generally regarded as the most stable collagen-like sequence of this length. This enhanced stability has been attributed to the formation of salt bridges between adjacent collagen chains. In this study, we explore the relationship between interchain salt bridge formation and triple-helical stability using detailed molecular simulations. Although our results...
An understanding of the amino acid sequence dependent stability of polypeptides is of renowned inter...
The refolding of thermally denatured model collagen-like peptides was studied for a set of 21 guest ...
The folding of triple-helical collagen, the most abundant protein in nature, relies on the nucleatio...
AbstractStudies on collagen and collagen-like peptides suggest that triple-helical stability can var...
AbstractIn this study, we examine the relationships between the structure and stability of five rela...
Understanding the structure, folding, and stability of collagen is complex because of its length and...
AbstractThe contribution of ionic interactions to the stability of the collagen triple helix was stu...
AbstractBackground: The collagen triple helix is a unique protein motif defined by the supercoiling ...
Theoretical calculations have been carried out to investigate the effect of the 4(R)-substituents (O...
Although previous experimental studies have shown the positional preference of different amino acids...
Theoretical calculations have been carried out to investigate the effect of the 4(R)-substituents (O...
AbstractIonic residues influence the stability of collagen triple helices and play a relevant role i...
Collagen model peptides (CMPs), composed of proline–(2S,4R)-hydroxyproline–glycine (POG) repeat unit...
Chemical methods for the manipulation of the conformational properties and thermal stability of syn...
Collagen model peptides (CMPs), composed of proline–(2S,4R)-hydroxyproline–glycine (POG) repeat unit...
An understanding of the amino acid sequence dependent stability of polypeptides is of renowned inter...
The refolding of thermally denatured model collagen-like peptides was studied for a set of 21 guest ...
The folding of triple-helical collagen, the most abundant protein in nature, relies on the nucleatio...
AbstractStudies on collagen and collagen-like peptides suggest that triple-helical stability can var...
AbstractIn this study, we examine the relationships between the structure and stability of five rela...
Understanding the structure, folding, and stability of collagen is complex because of its length and...
AbstractThe contribution of ionic interactions to the stability of the collagen triple helix was stu...
AbstractBackground: The collagen triple helix is a unique protein motif defined by the supercoiling ...
Theoretical calculations have been carried out to investigate the effect of the 4(R)-substituents (O...
Although previous experimental studies have shown the positional preference of different amino acids...
Theoretical calculations have been carried out to investigate the effect of the 4(R)-substituents (O...
AbstractIonic residues influence the stability of collagen triple helices and play a relevant role i...
Collagen model peptides (CMPs), composed of proline–(2S,4R)-hydroxyproline–glycine (POG) repeat unit...
Chemical methods for the manipulation of the conformational properties and thermal stability of syn...
Collagen model peptides (CMPs), composed of proline–(2S,4R)-hydroxyproline–glycine (POG) repeat unit...
An understanding of the amino acid sequence dependent stability of polypeptides is of renowned inter...
The refolding of thermally denatured model collagen-like peptides was studied for a set of 21 guest ...
The folding of triple-helical collagen, the most abundant protein in nature, relies on the nucleatio...