Understanding the key factors that influence the interaction preferences of amino acids in the folding of proteins have remained a challenge. Here we present a knowledge-based approach for determining the effective interactions between amino acids based on amino acid type, their secondary structure, and the contact based environment that they find themselves in the native state structure as measured by their number of neighbors. We find that the optimal information is approximately encoded in a 60 × 60 matrix describing the 20 types of amino acids in three distinct secondary structures (helix, beta strand, and loop). We carry out a clustering scheme to understand the similarity between these interactions and to elucidate a nonredundant set....
The protein structure is a cumulative result of interactions between amino acid residues interacting...
The prediction of the three-dimensional structures of the native states of proteins from the seq...
We have determined the interaction strengths of the common naturally occurring amino acids using a c...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
We discuss methods for the determination of the effective pairwise interactions between amino acids ...
We discuss methods for the determination of the effective pairwise interactions between amino ac...
Determining the factors in protein stability and identifying how amino acid types contribute to the ...
In structural genomics, an important goal is the detection and classification of protein-protein int...
We present and implement a distance-based clustering of amino acids within the framework of a statis...
ABSTRACT Knowledge of amino acid composition, alone, is verified here to be suffi-cient for recogniz...
We propose a novel method for the determination of the effective interaction potential between the a...
We outline a general strategy for determining the effective coarse-grained interactions between the ...
In this chapter we represent proteins by amino acid interaction networks. The nodes in these network...
The possibility of deriving the contact potentials between amino acids from their frequencies of occ...
The protein structure is a cumulative result of interactions between amino acid residues interacting...
The prediction of the three-dimensional structures of the native states of proteins from the seq...
We have determined the interaction strengths of the common naturally occurring amino acids using a c...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
Understanding the key factors that influence the interaction preferences of amino acids in the foldi...
We discuss methods for the determination of the effective pairwise interactions between amino acids ...
We discuss methods for the determination of the effective pairwise interactions between amino ac...
Determining the factors in protein stability and identifying how amino acid types contribute to the ...
In structural genomics, an important goal is the detection and classification of protein-protein int...
We present and implement a distance-based clustering of amino acids within the framework of a statis...
ABSTRACT Knowledge of amino acid composition, alone, is verified here to be suffi-cient for recogniz...
We propose a novel method for the determination of the effective interaction potential between the a...
We outline a general strategy for determining the effective coarse-grained interactions between the ...
In this chapter we represent proteins by amino acid interaction networks. The nodes in these network...
The possibility of deriving the contact potentials between amino acids from their frequencies of occ...
The protein structure is a cumulative result of interactions between amino acid residues interacting...
The prediction of the three-dimensional structures of the native states of proteins from the seq...
We have determined the interaction strengths of the common naturally occurring amino acids using a c...