Predicting protein structure from sequence remains a major open problem in protein biochemistry. One component of predicting complete structures is the prediction of inter-residue contact patterns (contact maps). Here, we discuss protein contact map prediction by machine learning. We describe a novel method for contact map prediction that uses the evolution of logic circuits. These logic circuits operate on feature data and output whether or not two amino acids in a protein are in contact or not. We show that such a method is feasible, and in addition that evolution allows the logic circuits to be trained on the dataset in an unbiased manner so that it can be used in both contact map prediction and the selection of relevant features in a da...
<div><p>We introduce a novel contact prediction method that achieves high prediction accuracy by com...
Given sufficient large protein families, and using a global statistical inference approach, it is po...
In Structural Bioinformatics, it is necessary to know the protein¿s tertiary structure because its s...
Proteins are important biological molecules that perform many different functions in an organism. Th...
We describe a method based on neural networks for predicting contact maps of proteins using as input...
Contact maps of proteins are predicted with neural network-based methods, using as input codings of ...
Motivation: Residue-residue contact prediction is important for protein structure prediction and oth...
none3siMotivation: Residue–residue contact prediction is important for protein structure prediction ...
This article presents recent progress in predicting inter-residue contacts of proteins with a neural...
Abstract — 1D protein sequences, 2D contact maps and 3D structures are three different representatio...
ABSTRACT We describe a new method for us-ing neural networks to predict residue contact pairs in a p...
Protein residue contact map is a compact representation of secondary structure of protein. Due to th...
Motivation: Accurate prediction of contacts between β-strand residues can significantly contribute t...
We introduce a novel contact prediction method that achieves high prediction accuracy by combining e...
The three-dimensional structure of proteins is useful to carry out the biophysical and biochemical f...
<div><p>We introduce a novel contact prediction method that achieves high prediction accuracy by com...
Given sufficient large protein families, and using a global statistical inference approach, it is po...
In Structural Bioinformatics, it is necessary to know the protein¿s tertiary structure because its s...
Proteins are important biological molecules that perform many different functions in an organism. Th...
We describe a method based on neural networks for predicting contact maps of proteins using as input...
Contact maps of proteins are predicted with neural network-based methods, using as input codings of ...
Motivation: Residue-residue contact prediction is important for protein structure prediction and oth...
none3siMotivation: Residue–residue contact prediction is important for protein structure prediction ...
This article presents recent progress in predicting inter-residue contacts of proteins with a neural...
Abstract — 1D protein sequences, 2D contact maps and 3D structures are three different representatio...
ABSTRACT We describe a new method for us-ing neural networks to predict residue contact pairs in a p...
Protein residue contact map is a compact representation of secondary structure of protein. Due to th...
Motivation: Accurate prediction of contacts between β-strand residues can significantly contribute t...
We introduce a novel contact prediction method that achieves high prediction accuracy by combining e...
The three-dimensional structure of proteins is useful to carry out the biophysical and biochemical f...
<div><p>We introduce a novel contact prediction method that achieves high prediction accuracy by com...
Given sufficient large protein families, and using a global statistical inference approach, it is po...
In Structural Bioinformatics, it is necessary to know the protein¿s tertiary structure because its s...