Prediction of binding sites from sequence can significantly help toward determining the function of uncharacterized proteins on a genomic scale. The task is highly challenging due to the enormous amount of alternative candidate configurations. Previous research has only considered this prediction problem starting from 3D information. When starting from sequence alone, only methods that predict the bonding state of selected residues are available. The sole exception consists of pattern-based approaches, which rely on very specific motifs and cannot be applied to discover truly novel sites. We develop new algorithmic ideas based on structured-output learning for determining transition-metal-binding sites coordinated by cysteines and histidine...
The structure of a protein determines its function and its interactions with other factors. Regions ...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
Metals have crucial roles for many physiological, pathological and diagnostic processes. Metal bindi...
We have developed a machine learning method named “MetalNet” to predict metal binding sites in prote...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Metal binding proteins or metallo-proteins are important for the stability of the protein and also s...
Zinc-binding proteins are the most abundant metalloproteins in the Protein Data Bank where the zinc ...
The protein sequence determines how it will fold into its unique three-dimensional structure. Once f...
The structure of a protein determines its function and its interactions with other factors. Regions ...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
The accurate prediction of the biochemical function of a protein is becoming increasingly important,...
Metals have crucial roles for many physiological, pathological and diagnostic processes. Metal bindi...
We have developed a machine learning method named “MetalNet” to predict metal binding sites in prote...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Metal binding proteins or metallo-proteins are important for the stability of the protein and also s...
Zinc-binding proteins are the most abundant metalloproteins in the Protein Data Bank where the zinc ...
The protein sequence determines how it will fold into its unique three-dimensional structure. Once f...
The structure of a protein determines its function and its interactions with other factors. Regions ...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...
MetalDetector identifies CYS and HIS involved in transition metal protein binding sites, starting fr...