This is our second type of model for protein folding where the configurational parameters and the effective potential energy function are chosen in such a way that all conformations are described and the canonical partition function can be evaluated analytically. Structure is described in terms of distances between pairs of sequentially contiguous blocks of eight residues, and all possible conformations are grouped into 71 subsets in terms of bounds on these distances. The energy is taken to be a sum of pairwise interactions between such blocks. The 210 energy parameters were adjusted so that the native folds of 32 small proteins are favored in free energy over the denatured state. We then found 146 proteins having negligible sequence simil...
To understand how a protein folds is a problem which has important biological implications. In this ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
Background: A common approach to the protein folding problem involves computer simulation of folding...
We have initiated an entirely new approach to statistical mechanical models of strongly interacting ...
Cluster distance geometry is a recent generalization of distance geometry whereby protein structures...
A fundamental problem of relevance to protein folding and structural comparison of biomolecules is t...
©1995 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
ABSTRACT The results of an optimization of a folding potential are reported. The complete energy fun...
The biological activity and functional specificity of proteins depend on their native three-dimensio...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
A statistical mechanics model of a polypeptide chain is used to simulate the folding process. Each r...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
A Protein is a large molecule that consists of a vast number of atoms; one can only imagine the comp...
A statistical mechanics model of a polypeptide chain is used to simulate the folding process. Each r...
To understand how a protein folds is a problem which has important biological implications. In this ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
Background: A common approach to the protein folding problem involves computer simulation of folding...
We have initiated an entirely new approach to statistical mechanical models of strongly interacting ...
Cluster distance geometry is a recent generalization of distance geometry whereby protein structures...
A fundamental problem of relevance to protein folding and structural comparison of biomolecules is t...
©1995 American Institute of PhysicsThe electronic version of this article is the complete one and ca...
ABSTRACT The results of an optimization of a folding potential are reported. The complete energy fun...
The biological activity and functional specificity of proteins depend on their native three-dimensio...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
A statistical mechanics model of a polypeptide chain is used to simulate the folding process. Each r...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
A Protein is a large molecule that consists of a vast number of atoms; one can only imagine the comp...
A statistical mechanics model of a polypeptide chain is used to simulate the folding process. Each r...
To understand how a protein folds is a problem which has important biological implications. In this ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
Background: A common approach to the protein folding problem involves computer simulation of folding...