We present a new approach for identifying features of ligand–protein binding interfaces that predict binding selectivity and demonstrate its effectiveness for predicting kinase inhibitor specificity. We analyzed a large set of human kinases and kinase inhibitors using clustering of experimentally determined inhibition constants (to define specificity classes of kinases and inhibitors) and virtual ligand docking (to extract structural and chemical features of the ligand–protein binding interfaces). We then used statistical methods to identify features characteristic of each class. Machine learning was employed to determine which combinations of characteristic features were predictive of class membership and to predict binding specificities a...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
For kinase inhibitors, X-ray crystallography has revealed different types of binding modes. Currentl...
Background: We present a machine learning approach to the problem of protein ligand interaction pre...
The Cyclin-Dependent Kinases (CDKs) are the core components coordinating eukaryotic cell division cy...
The discovery of selective inhibitors of biological target proteins is the primary goal of many drug...
Prediction of interaction between drugs or drug like compounds and targets, is of high importance in...
Prediction of interaction between drugs or drug like compounds and targets, is of high importance in...
Achieving selectivity for small organic molecules toward biological targets is a main focus of drug ...
Drug design is a difficult and multi-faceted problem that has led to extensive interdiscplinary work...
Predicting protein-ligand binding affinities constitutes a key computational method in the early sta...
<div><p>The protein kinases are a large family of enzymes that play fundamental roles in propagating...
Drug discovery programs frequently target members of the human kinome and try to identify small mole...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
For kinase inhibitors, X-ray crystallography has revealed different types of binding modes. Currentl...
Background: We present a machine learning approach to the problem of protein ligand interaction pre...
The Cyclin-Dependent Kinases (CDKs) are the core components coordinating eukaryotic cell division cy...
The discovery of selective inhibitors of biological target proteins is the primary goal of many drug...
Prediction of interaction between drugs or drug like compounds and targets, is of high importance in...
Prediction of interaction between drugs or drug like compounds and targets, is of high importance in...
Achieving selectivity for small organic molecules toward biological targets is a main focus of drug ...
Drug design is a difficult and multi-faceted problem that has led to extensive interdiscplinary work...
Predicting protein-ligand binding affinities constitutes a key computational method in the early sta...
<div><p>The protein kinases are a large family of enzymes that play fundamental roles in propagating...
Drug discovery programs frequently target members of the human kinome and try to identify small mole...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...
The central role of kinases in virtually all signal transduction networks is the driving motivation ...