ABSTRACT Disulfide bonds play an important role in stabilizing protein structure and regulating protein function. Therefore, the ability to infer di-sulfide connectivity from protein sequences will be valuable in structural modeling and functional analysis. However, to predict disulfide connectivity directly from sequences presents a challenge to computational biologists due to the nonlocal nature of disulfide bonds, i.e., the close spatial proximity of the cysteine pair that forms the disulfide bond does not necessarily imply the short sequence separation of the cysteine residues. Recently, Chen and Hwang (Proteins 2005;61:507–512) treated this problem as a multiple class classification by defining each dis-tinct disulfide pattern as a cla...
Motivation: Disulfide bonds stabilize protein structures and play relevant roles in their functions....
The formation of disulphide bridges among cysteines is an important fea-ture of protein structures. ...
Disulfide bridges strongly constrain the native structure of many proteins and predicting their form...
ABSTRACT Disulfide bonds play an important role in stabilizing protein structure and regulating prot...
Motivation: Disulfide bonds are primary covalent crosslinks between two cysteine residues in protein...
Motivation: Disulfide bonds are primary covalent crosslinks between two cysteine residues in protein...
[[abstract]]Disulfide bond is formed by two SH group of cysteines, and these two SH are oxidized to ...
Disulfide bridges strongly constrain the native structure of many proteins and predicting their form...
Motivation: Cysteine residues have particular structural and functional relevance in proteins becaus...
Motivation: Disulfide bonds play an important role in protein folding. A precise prediction of disul...
Abstract—Disulfide bonds play the key role for pre-dicting the three-dimensional structure and the f...
The problem of protein structure prediction (PSP) is one of the main challenges in structural bioinf...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Motivation: Disulfide bonds stabilize protein structures and play relevant roles in their functions....
The formation of disulphide bridges among cysteines is an important fea-ture of protein structures. ...
Disulfide bridges strongly constrain the native structure of many proteins and predicting their form...
ABSTRACT Disulfide bonds play an important role in stabilizing protein structure and regulating prot...
Motivation: Disulfide bonds are primary covalent crosslinks between two cysteine residues in protein...
Motivation: Disulfide bonds are primary covalent crosslinks between two cysteine residues in protein...
[[abstract]]Disulfide bond is formed by two SH group of cysteines, and these two SH are oxidized to ...
Disulfide bridges strongly constrain the native structure of many proteins and predicting their form...
Motivation: Cysteine residues have particular structural and functional relevance in proteins becaus...
Motivation: Disulfide bonds play an important role in protein folding. A precise prediction of disul...
Abstract—Disulfide bonds play the key role for pre-dicting the three-dimensional structure and the f...
The problem of protein structure prediction (PSP) is one of the main challenges in structural bioinf...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Disulfide bonds stabilize protein structures and play relevant roles in their functions. Their forma...
Motivation: Disulfide bonds stabilize protein structures and play relevant roles in their functions....
The formation of disulphide bridges among cysteines is an important fea-ture of protein structures. ...
Disulfide bridges strongly constrain the native structure of many proteins and predicting their form...