AbstractIn nature, an α-helix is commonly used to build thermodynamically stable and mechanically rigid protein conformations. In view of growing interest in the mechanical rigidity of proteins, we measured the tensile profile of an alanine-based α-helical polypeptide on an atomic-force microscope to investigate the basic mechanics of helix extension with minimal interference from side-chain interactions. The peptide was extended to its maximum contour length with much less force than in reported cases of poly-L-Glu or poly-L-Lys, indicating that chain stiffness strongly depended on the physicochemical properties of side chains, such as their bulkiness. The low tensile-force extension originated presumably in locally unfolded parts because ...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
AbstractAn internal coordinate molecular mechanics study of unfolding peptide chains by external str...
The aim of this study is to investigate the mechanochemical behavior of foldamers able to change the...
AbstractIn nature, an α-helix is commonly used to build thermodynamically stable and mechanically ri...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
We have developed a statistical mechanical model of the force–extension behavior of α-helical polype...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
An internal coordinate molecular mechanics study of unfolding peptide chains by external stretching ...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
AbstractAn internal coordinate molecular mechanics study of unfolding peptide chains by external str...
The aim of this study is to investigate the mechanochemical behavior of foldamers able to change the...
AbstractIn nature, an α-helix is commonly used to build thermodynamically stable and mechanically ri...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
We have developed a statistical mechanical model of the force–extension behavior of α-helical polype...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
The aim of this study is to investigate the mechanochemical behavior of homopolypeptides able to cha...
An internal coordinate molecular mechanics study of unfolding peptide chains by external stretching ...
Secondary a-helix and b-sheet structures are key scaffolds around which the rest of the residues con...
AbstractAn internal coordinate molecular mechanics study of unfolding peptide chains by external str...
The aim of this study is to investigate the mechanochemical behavior of foldamers able to change the...